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Radar, EO/IR, C-UAS, Night Vision & Surveillance

RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

October 24, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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24 Oct 25. DroneShield (ASX:DRO), a global leader in counter-drone technology, today announced the release of its latest White Paper: Best Practices for Counter-Drone Deployment at Civil Airports, alongside a strategic collaboration with SRI Group, an independent aviation security and technology advisory company led by former U.S. Transportation Security Administration (TSA) Deputy Administrator John Halinski. The White Paper: Best Practices for Counter-Drone Deployment at Civil Airports, was developed to help airports and regulators worldwide understand the scale of the drone threat, the technology available now, and the best practice frameworks available to address it. DroneShield authored the paper to advance global dialogue and policy on protecting airspace, due to civil aviation being increasingly at risk. But the Company’s role does not end with thought leadership. To ensure that airports can take meaningful next steps, DroneShield is partnering with SRI Group to provide independent, vendor-neutral Counter-UAS Threat & Risk Assessments.

From Best Practices to Real Action

SRI Group, led by John Halinski, brings unmatched credibility to this initiative. As former Deputy Administrator of the U.S. TSA and a 25-year U.S. Marine Corps veteran, Halinski has overseen aviation security operations worldwide, reformed risk-based security strategies, and worked directly with international aviation stakeholders. Under his leadership, SRI Group developed the Counter-UAS Threat & Risk Assessment platform that delivers the strategic intelligence airport leadership requires to identify critical vulnerabilities, prioritise mitigation investments, and build compelling business cases for counter-drone programs that protect passengers, preserve operational integrity, and address evolving airspace threats.

The Threat

Airports have long prioritised safety above all else, yet the proliferation of drones is creating new and complex challenges in maintaining secure skies. Recently in September 2025, Copenhagen Airport, Scandinavia’s busiest aviation hub, was forced to shut down for nearly four hours after unidentified drones infiltrated its airspace. The closure resulted in 77 flight cancellations and 217 delays, causing significant financial losses for airlines through flight diversions, passenger accommodations, and operational disruptions.

“DroneShield is doing more than publishing a paper—they are creating a pathway for airports to act,” said John Halinski, Principal at SRI Group. “By offering airport leadership access to independent Counter-UAS Threat & Risk Assessments, DroneShield is ensuring that decisions are based on objective data and operational realities. It shows a real commitment to the safety of airports and the passengers they serve.”

At the upcoming Airports Council World Annual Assembly, Conference and Exhibition in Canada, DroneShield will host SRI Group at its stand, where airport executives can initiate the drone threat assessment process. Qualified leaders will then receive a tailored assessment and recommendation report from SRI Group, providing actionable insights to move counter-drone programs forward.

“This is about more than technology, it’s about leadership,” said Oleg Vornik, Chief Executive Officer of DroneShield. “With the release of Best Practices for Counter-Drone Deployment at Civil Airports and our collaboration with SRI Group, we’re not only driving awareness but delivering the tools and insights airports need to protect themselves from aerial threats.”

Download the White Paper: Best Practices for Counter-Drone Deployment at Civil Airports.

Access the Counter-UAS Threat Assessments: https://droneshield.vesselscale.com/intake-form

 

20 Oct 25. MKS Unveils High-Resolution MWIR Zoom Lens for Next-Gen ISR. The new Ophir SupIR-X 15-300mm f/4 lens is purpose-built for 10 µm SXGA detectors, providing extended range & clarity for intelligence, surveillance & reconnaissance missions MKS Inc. has released the Ophir SupIR-X 15-300mm f/4 Mid-Wave Infrared (MWIR) Continuous Zoom Lens at ADEX Seoul. The next-generation optical solution is specifically engineered for 10 µm SXGA (1280 x 1024 pixels) detectors, aiming to improve clarity, precision, and operational reach for Intelligence, Surveillance, and Reconnaissance (ISR) missions across air, land, and sea. MKS, a global provider of enabling technologies, states that the SupIR-X 15-300mm f/4 lens is built on a proven legacy but designed to meet modern ISR needs by fully unlocking the thermal imaging performance of 10 µm SXGA detectors. The lens provides high-performance MWIR imagery, featuring low distortion, Line-of-Sight (LOS) stability, and boresight retention. It is fully compatible with the existing Ophir extender ecosystem, allowing the focal length to scale up to 1200mm. This capability is cited to extend vehicle detection ranges beyond 26km while maintaining a constant f/4 aperture. An integrated mechanical shutter is also included to ensure consistent image quality in dynamic environments.

Dr. Kobi Lasri, General Manager of Ophir Optics, said, “Optical precision and reach have long been a challenge for ISR missions. The SupIR-X 15-300mm f/4 lens represents a generational leap in MWIR zoom technology. Designed specifically for SXGA 10 µm detectors and integrated with the Ophir long-range extender suite, it empowers ISR electro-optics systems with the clarity, resolution, and range required for today’s evolving missions.”

The SupIR-X 15–300mm f/4 lens is optimized for 10 µm SXGA MWIR detectors in the 3.6-4.2 µm and 3.6-4.9 µm spectral bands. It delivers a horizontal Field of View (FOV) from 45° down to 2.4° with high spatial resolution and low distortion across the full image. Key specifications include a high transmission of 92% (high durability), high-speed motorized focus in less than one second, and fast zooming in eight seconds or less. The integrated shutter supports mechanical Non-Uniformity Correction (NUC), and an extended Back Focal Length (BFL) simplifies system integration. Compatibility extends to 19.4mm and 20.5 mm cold shield height detectors, supporting a wide range of leading MWIR sensors. The lens is described as rugged yet compact, measuring 93.4 x 132mm, weighing approximately 1kg, and able to withstand operating conditions from -32°C to +80°C with IP67 front element sealing. Configurations utilizing the Ophir optical extender ecosystem allow focal lengths to scale from 30mm up to 1200 mm, with options including 30-600mm, 35-690mm, 45-900mm, and 60-1200mm. These configurations enable vehicle detection ranges of more than 26km under standard operational conditions. Available in high durability and hard carbon coating configurations, the SupIR-X lens is engineered for harsh environments. With motorized focus and zoom, rapid response, and ruggedized mechanics, it is intended for use in border and homeland security, long-range ISR, Counter-Unmanned Aerial System (C-UAS) operations, critical infrastructure protection, coastal and maritime surveillance, law enforcement, and civil defense. The SupIR-X 15–300mm f/4 MWIR zoom lens is currently available. (Source: https://www.defenseadvancement.com/)

 

23 Oct 25. DroneShield (ASX:DRO), a global leader in counter-drone technology, today announced the integration of Automatic Dependent Surveillance–Broadcast (ADS-B) into its ecosystem. The integration fuses traditional aviation surveillance data with counter-drone detection, allowing operators to intuitively differentiate legitimate aircraft from potential drone threats. ADS-B is a widely adopted air traffic monitoring technology, used globally to broadcast the identity, position, altitude, and velocity of crewed aircraft. By receiving and fusing ADS-B data into DroneSentry-C2, DroneShield’s SaaS-enabled command-and-control platform can now provide operators with a clearer picture of both crewed and uncrewed activity in shared airspace. This reduces the risk of misidentification and enhances operator confidence when making time-critical decisions. The update comes as DroneShield has unveiled its DroneSentry-C2 Enterprise and several updates to its C2 software earlier this month, as part of its regular quarterly software update cycle. The need for integrated airspace awareness has been underscored in recent years, including high-profile incidents in the United States where unclassified aerial objects near sensitive sites triggered widespread concern. In environments where distinguishing between drones, conventional aircraft, and other aerial phenomena is becoming increasingly critical, DroneShield’s integration of ADS-B with multi-sensor counter-drone detection provides additional clarity and control for users. For public safety agencies, emergency services, and critical infrastructure operators, the integration supports further awareness in mixed airspace missions such as disaster response, emergency medical transport, and major event security. For defence and government customers, it reinforces airspace awareness while expanding the operational relevance of counter-drone solutions. DroneSentry-C2, DroneShield’s rapidly scaling command-and-control platform, is built on DroneShield’s proprietary artificial intelligence, the SensorFusionAI (SFAI) engine, DroneSentry-C2 ingests and cross-references data from radio frequency, radar, optical, and now ADS-B sources, creating a single operational picture that reduces false alarms and increases the range of effective response options available to end users, highlighting DroneSentry-C2’s role as more than a display tool.

“Integrating ADS-B data reflects our vision for a future of comprehensive airspace awareness,” said Angus Bean, Chief Product Officer at DroneShield. “By expanding DroneSentry-C2’s capabilities to include both crewed and uncrewed aviation ADS-B data, we are adding to our customers situational awareness that they need to make faster, safer, and more confident decisions in complex environments.”

 

22 Oct 25. VisionWave Holdings, Inc. (Nasdaq: VWAV) (“VisionWave” or the “Company”) today announced that its Counter-Unmanned Aerial System (C-UAS) technologies were featured and installed on a Tier-1 U.S. defense contractor’s platform during the Association of the United States Army (AUSA) Annual Meeting and Exposition held October 13–15, 2025, in Washington, D.C. one of North America’s largest and most influential defense exhibitions.

The joint display positioned VisionWave’s C-UAS system as a centerpiece integration, reflecting the strong partnership, technological confidence, and potential advantages that VisionWave brings to its defense partners. It is the goal for the collaboration between the companies to continue to grow stronger, with multiple new projects, integration efforts, and combined design initiatives now underway – illustrating the depth of the expanding relationship and potential opportunities ahead.

“We believe being showcased on a major defense partner’s platform at AUSA highlights the strength of our collaboration and the confidence placed in our technology,” said Noam Kenig, Chief Executive Officer of VisionWave. “This partnership is becoming even closer with the goal of introducing more programs and integration projects and establishing joint design efforts. It’s an exciting step forward for both companies.”

The installation demonstrated seamless interoperability with modern command-and-control frameworks and emphasized real-time multi-domain readiness for operational environments.

Key highlights:

  • Prime-level exposure: VisionWave’s C-UAS systems presented publicly for the first time as part of a Tier-1 contractor’s operational platform.
  • Deepening collaboration: Builds on ongoing joint engineering and integration work across unmanned, sensing, and protection systems.
  • Technological validation: Reinforces VisionWave’s potential advantage in AI-driven sensing and autonomous defense technologies.

About VisionWave Holdings, Inc.

VisionWave (Nasdaq: VWAV) is a defense technology company specializing in AI-powered sensing, on-edge autonomy, and threat-response systems. The Company’s portfolio includes super-resolution radar, multispectral/RF imaging, and the Evolved Intelligence™ (EI) engine for real-time perception, prediction, and control across air, land, and sea domains. (Source: PR Newswire)

 

23 Oct 25. Hanwha Systems is partnering with Diehl Defence to accelerate the global expansion of its radar business. On October 21, Hanwha Systems (CEO Son Jae-il) announced the signing of a Memorandum of Understanding (MOU) with German defence company Diehl Defence to establish a strategic partnership for mutual cooperation in the future and to cooperate on the supply of Multi-Function Radars (MFR) for the ground-based air defence (GBAD) air defence system. The agreement was signed during the Seoul International Aerospace & Defence Exhibition (ADEX) 2025, held in Goyang, Gyeonggi Province. Diehl Defence is a leading system house for state-of-the-art air defence systems as well as high-tech guided missiles, innovative ammunition solutions and special reconnaissance and protection systems. Its modern system solutions for ground-based air defence set new international standards. In Diehl Defence’s GBAD portfolio, IRIS-T SLM is the medium-range state-of-the-art, surface-to-air guided weapon system capable of intercepting not only missiles and fighter jets, but also UAVs and drones. The system gained worldwide recognition after being deployed in the Ukraine war in late 2022, achieving a success rate of almost 100 per cent. IRIS-T SLM serves as a core air defence asset within the European Sky Shield Initiative (ESSI)—a NATO-led project spearheaded by Germany with participation from over 20 European nations. ESSI aims to establish a multi-layered air defence network capable of intercepting enemy missiles, drones, and even hypersonic weapons at high, medium, and low altitudes.

* European Sky Shield Initiative (ESSI): Established after Russia’s invasion of Ukraine in February 2022, this NATO cooperation framework aims to enhance the Integrated Air and Missile Defence (IAMD) system across Europe, with participating nations including Germany, the UK, Belgium, Switzerland, and Austria. Completion is targeted by 2030.

Under the MOU, the two companies will pursue technical cooperation to integrate Hanwha Systems’ MFR with Diehl Defence’s systems. They plan to jointly analyze potential export markets and conduct system integration and verification using actual radar equipment.

Hanwha Systems, recognized as Korea’s premier provider of multi-layered air defence solutions, has developed and supplied MFRs for major programs such as: LAMD, Korea’s “final shield” against long-range artillery, M-SAM-II (Cheongung-II), Korea’ mid-range SAM system, and L-SAM and L-SAM-II, Korea’s long-range and high-altitude interceptor systems, often referred to as “Korean THAAD.”

Hanwha Systems’ Multi-Function Radar (MFR), a flagship product representing Korea’s defence exports, continues to attract attention from the Middle East. The company exported Cheongung-II MFRs to the United Arab Emirates (UAE) in 2022 and Saudi Arabia in 2024. Through its partnership with Diehl Defence, which maintains a robust European defence supply network, Hanwha Systems aims to diversify its export markets and further increase global radar system export.

Meanwhile, at ADEX 2025, Hanwha Systems also signed an MOU on October 22 with major European defense company. The two companies agreed to further strengthen their collavoration on combat aircraft AESA radar systems, which began in 2022, and to expand their partnership into electro-optics and avionics systems. Last year, Hanwha systems exported the antenna – the core component accounting for more that 50% of the total cost – of the GRIFO-EK AESA radar for light combat aircraft to Leonardo.

 

23 Oct 25. HENSOLDT supported the live firing of a German frigate with its non-rotating TRS-4D radar. Diehl Defence’s IRIS-T SLM air defense system was tested in combination with the marine radar. Like the ground-based TRML-4D air defense radar, the naval variant comes from the same “medium-range radar” product family. The TRML-4D radar has been integrated into the IRIS-T SLM for several years and is performing exceptionally well in reconnaissance missions in Ukraine. The family concept enables continuous product improvements and offers advantages in terms of spare parts supply and training. HENSOLDT has decades of experience with radar systems in the naval sector and is actively driving forward the further development of key technologies in this area. Various versions of the TRS-4D product family radars are already in use on board German Navy ships, including the F125 frigate and the K130 corvette.

“We can use software to expand the functionality of our products so that they can be used in different scenarios,” says Markus Rothmaier, Head of Naval & Ground Radars at HENSOLDT. “With our capabilities in motion, we are predestined for maritime applications. Therefore, the use of the TRS-4D radar at sea in combination with the IRIS-T air defense system is another logical step on our path to equipping maritime units for today’s requirements.”

 

22 Oct 25. German laser maker Trumpf, defense firm Rohde & Schwarz to build drone-zapping system. German laser maker Trumpf and defense tech firm Rohde & Schwarz said on Wednesday they are developing a system to detect, track, and shoot down drones with lasers. Trumpf, best known as a supplier to computer chip equipment maker ASML builds some of the most powerful lasers in the world. Rohde & Schwarz makes radar systems to detect, track and jam drones. “Investing in European defense, and specifically counter-drone technology, is of utmost importance,” Alexander Orellano of Rohde & Schwarz said in a statement. Financial terms of the partnership were not disclosed. (Source: Reuters)

 

21 Oct 25. Aselsan fly MURAD 100-A fire control radar on another UCAV. The radar flew on the single-engine, low observable, and aircraft carrier capable Bayraktar KIZILELMA fighter platform for the first time. Aleading Turkish defence company Aselsan has integrated its MURAD 100-A fire control radar onto another uncrewed aerial combat vehicle (UCAV). According to a release from 21 October, the radar flew on the single-engine, low observable, and aircraft carrier capable Bayraktar KIZILELMA fighter platform for the first time. MURAD 100-A already features on several crewed platforms, including the Turkish Air Force’s upgraded F-16s and the Hürjet light attack aircraft and several UCAVs such as the Bayraktar AKINCI and ANKA-III. The fire control radar component of any combat platform provides targeting data. In this case, MURAD utilises active electronically scanned array (AESA) radar technology which performs multifunctional tasks from tracking a number of targets while scanning for new threats simultaneously The system can also perform air-to-air and air-to-ground engagement capabilities at the same time. Due to the speed and efficiency of the AESA architecture as a standard for many radars systems across land, sea and air. The UK Royal Air Force, for example, are transitioning their Eurofighter fleet toward using the ECRS Mark II, another powerful AESA radar that will expand its electronic warfare capabilities. The successful first flight, Aselsan stated, confirms MURAD’s adaptability to different aerial platforms and readiness for operational deployment. Aselsan’s chief executive also told this reporter in a recent interview that MURAD 100-A also has defensive applications in Türkiye’s wider Steel Dome layered air defence ecosystem. In this case, MURAD would support the remote weapon stations, cannons, and other effects that are being integrated on various military vehicles, such as Aselsan’s KORKUT 100/25, equipped with artificial intelligence powered target detection and engagement capabilities, it reacts faster and more accurately against close-range threats.  All of these systems are indigenously manufactured which serves Türkiye’s foreign policy objectives to increase its defence industry competitiveness on the world stage. Both suppliers, Aselsan and Baykar, are two of Türkiye’s leading defence companies. (Source: airforce-technology.com)

 

22 Oct 25. Systematic supports Hensoldt radar integration. Integration of radar system into SitaWare Headquarters bolsters maritime domain awareness. Systematic engineers have recently completed the successful integration of the Hensoldt SharpEye Mk 11 radar system into SitaWare Headquarters, in support of the Irish Naval Services’ (INS’) Samuel Beckett-class offshore patrol vessels. Through the integration, absolute positions of vessels are identified by the radar, with tracks then added into the recognised maritime picture (RMP) in SitaWare Headquarters using an OTH-Gold data gateway.

“This integration gives the INS the ability to maximise the data gathered from its shipborne radar systems and distribute it across users in the maritime domain. By integrating it into SitaWare Headquarters, the ability to support the generation of a RMP that is updated and synchronised in near real-time brings major benefits to maritime operations,” says Systematic Lead Solution Architect Chris Harris.

Hensoldt’s SharpEye Mk 11 radar features the Kelvin Hughes solid-state SharpEye transceiver, with a solid-state pulse Doppler coherent radar system. The radar is designed to be used in poor weather, lighting, and visibility, and is used for marine navigation, collision avoidance, target surveillance, and situational awareness. The system provides advanced small target detection capability, as well as 2D surface surveillance capability. Defence Forces Ireland (DFI) employs SitaWare Headquarters on a range of levels – from SitaWare Headquarters on its ships and maritime patrol aircraft, to joint operations centres ashore that help to co-ordinate operations in the country’s expansive exclusive economic zone (EEZ). Operations conducted in support of national security, such as narcotics interdiction and fisheries protection, have all benefited from the use of the SitaWare suite. In addition to SitaWare Headquarters, the INS employs SitaWare Frontline and SitaWare Edge on rigid-hull inflatable boats (RHIBs) and with boarding teams. Featuring an open-architecture design, the SitaWare suite can be extended to support the integration of sensors and subsystems to ensure that the intelligence they create can be delivered around the battlespace. Leveraging over 20 different interoperability standards, the SitaWare suite is able to transfer and deliver data into a common operational picture in support of enhanced situational awareness. The synchronisation of operational data around the area of operations gives commanders the ability to have an overview of the disposition of their own units, contacts of interest, and more.

 

21 Oct 25. Cuashub.com said today that Ukraine begins production of 200 mph interceptor. A Ukrainian manufacturer, General Chereshnya, has begun serial production of the Bullet, a drone that the company says is designed to intercept Iranian-style strike drones. The firm announced the move after completing testing and said the system is ready for delivery to Ukraine’s armed forces. General Chereshnya said the Bullet was developed in close cooperation with military bodies that provided technical requirements and frontline feedback. Company engineers adapted the airframe and software for combat conditions, the firm added, accelerating the programme from concept to production in a short timeframe. The manufacturer provided several technical details about the Bullet. The vehicle can reportedly reach speeds of 309 km/h (192 mp/h), a characteristic the company says gives it high maneuverability and rapid response capability against incoming strike UAS. The design is optimised for high-speed flight and stability in adverse weather, and the flight software is described as capable of rapid reaction to changes in a target’s trajectory. Three variants of the platform will be produced providing a daytime version, a night-time version and a model fitted with terminal guidance. General Chereshnya framed the Bullet’s mission set as interception and neutralisation of hostile strike drones, citing Shahed-type UAS as an example of the threats the system is intended to counter. The company also said it is preparing to scale up production to meet anticipated demand from defence units. In parallel with manufacturing, General Chereshnya is launching the General Chereshnya Academy, a training programme for operators and technical personnel intended to support fielding by covering operation, maintenance and tactics to improve combat effectiveness. The announcement arrives as Ukraine continues to prioritise domestic development of counter-UAS capabilities in response to regular drone and missile attacks. Developers and military outlets have increasingly focused on fielding low-cost, fast interceptors and dedicated counter-drone assets that can operate in contested airspace. General Chereshnya said the Bullet has completed testing and is ready for delivery, although further information on deployment timelines was not provided. https://cuashub.com/en/content/ukraine-begins-production-of-200-mph-interceptor/ (Source: https://cuashub.com/

 

21 Oct 25. Cuashub.com said today that Drone smuggling surge exposes security challenges at UK prisons. Drone activity over prisons in England and Wales has surged to record levels, with more than 1,700 incidents reported over the past year, a 43 percent increase, raising concerns about the growing sophistication of criminal networks smuggling contraband behind bars. At facilities such as HMP Wandsworth in south London, observers have described frequent drone flights at night, often dropping drugs, mobile phones and other prohibited items directly to inmates’ windows. In some cases, packages are disguised as turf or debris and dropped into exercise yards. Despite visible warning signs and restricted airspace zones, the illicit drone trade continues to flourish. Authorities say that organised crime groups are driving the activity, taking advantage of both demand inside prisons and gaps in physical security measures such as damaged netting, broken windows and non-functioning surveillance cameras.

Charlie Taylor, the Chief Inspector of Prisons, said the issue reflects broader security weaknesses. “We saw CCTV cameras in high-security jails not functioning properly,” he noted, adding that effective prevention requires both better technology and well-trained staff.

Drone drops have become increasingly brazen. In one recent operation, police recovered a drone valued at £6,000 capable of carrying four payloads and flying for up to 40 minutes. The Ministry of Justice has said that such incidents are being met with tougher enforcement, including joint counter-drone operations with police forces. In July, a nationwide crackdown led to nine arrests at HMPs Wandsworth and Manchester. Yet, reports from residents near prison sites suggest that drone activity remains frequent, with some describing “daily” flights over facilities. The risks extend beyond smuggling drugs and phones. In one case, a taser disguised as a pen was dropped into HMP Wormwood Scrubs, marking what officials believe was the first attempt to deliver a weapon of that kind by drone. At HMP Long Lartin, a high-security prison housing terrorist offenders, an inmate allegedly stabbed a guard using a knife believed to have been delivered via drone. The Ministry of Justice says it is investing £40m in new counter-drone security measures, including reinforced windows, additional netting and partnerships with law enforcement to target the criminal groups behind the smuggling operations.

“The threat from drones is serious and evolving,” a ministry spokesperson said. “We are taking decisive action to strengthen prison security and disrupt the organised networks exploiting this technology.”

Officials and experts warn, however, that as drone technology advances, smugglers are adapting just as quickly, leaving prisons locked in a constant race to keep their airspace secure. https://cuashub.com/en/content/drone-smuggling-surge-exposes-security-challenges-at-uk-prisons/ (Source: https://cuashub.com/

 

21 Oct 25. Cuashub.com said today that EU and India conduct joint counterterrorism training to enhance drone defense. In a landmark initiative, the European Union and India held a joint counterterrorism training exercise from October 13 to 15, aimed at protecting critical infrastructure and soft targets from emerging threats posed by UAS. The increasing availability and misuse of drones by both state and non-state actors have introduced serious security challenges. With commercial drones becoming more advanced and accessible, violent extremists have leveraged them for surveillance and attacks. The three-day training brought together senior officers, instructors, and technical experts from India’s National Security Guard (NSG) and the EU’s High Risk Security Network (HRSN). The program focused on advanced UAS and Counter-UAS capabilities, combining tactical and technological instruction. It culminated in a joint exercise designed to enhance interoperability and lay the groundwork for future collaboration. Participants also strengthened their mitigation skills and explored deployment models for major events. Discussions included the evolving nature of drone threats – such as swarm and autonomous systems – and the need for cutting-edge detection and neutralization technologies like artificial intelligence, sensor fusion, directed energy, and kinetic countermeasures. The EU HRSN, a specialized European platform comprising 28 units from 21 EU Member States, deployed a team of UAS and C-UAS instructors and technical experts to Manesar, Gurugram. India’s elite NSG, operating under the Ministry of Home Affairs, led the training with its extensive experience in detecting, tracking, and neutralizing hostile drones. Special forces engaged in urban counterterrorism tactics using UAS, followed by a joint tactical simulation exercise. This allowed NSG and HRSN units to test and refine real-world response capabilities. Outcomes from the training will inform the development of standard operating procedures for integrated drone and counter-drone operations, as well as an Engagement Decision Matrix tailored to safeguard mass gatherings and critical infrastructure.

“This joint training shows how the EU and India are turning commitment into action, working side by side to keep our citizens safe. Like India EU and its Member States have been directly exposed to direct and deliberate drone-related threats,” H.E. Hervé Delphin, Ambassador of the European Union to India, said.

“Such threats evolve rapidly, as part of hybrid tactics. Only swift and coordinated responses will keep us ahead. Hence the importance of such a joint training seminar.”

The event marked a shift from dialogue to action in counterterrorism cooperation and was organized by the EU Delegation to India in collaboration with the NSG. It was facilitated by the EU project ESIWA+ (Enhancing Security Cooperation In and With Asia and the Indo-Pacific). This initiative builds on the College of Commissioners’ visit to India in February 2025 and the recently announced Joint Communication on a New Strategic EU–India Agenda, which prioritizes deeper counterterrorism collaboration. It also follows the India-EU Track 1.5 Roundtable on Countering Terrorist Exploitation of UAS held in February 2024. The training aligns with the EU’s Indo-Pacific Strategy and reinforces the ongoing EU-India Counterterrorism Dialogue.

EU and India conduct joint counterterrorism training to enhance drone defense

(Source: https://cuashub.com/

 

21 Oct 25. Cuashub.com said today that British troops may be awarded powers to shoot down drones near bases. British soldiers will soon be able to shoot down drones threatening UK military sites under new powers announced by Defence Secretary John Healey on Monday. The move marks a shift in the UK’s approach to countering the growing drone threat following a series of incursions at RAF bases used by U.S. forces and an increase in drone-related disruptions across Europe. The new “kinetic option,” first reported by The Daily Telegraph, will authorize troops and Ministry of Defence (MoD) police to destroy drones that pose an imminent risk to military installations. Existing protocols only permit the use of electronic countermeasures, such as GPS disruption or signal jamming, to divert drones, and kinetic action has until now been restricted to extreme cases. Officials say the expanded powers are intended to give on-site security forces greater flexibility and faster response options amid heightened concerns over aerial intrusions. While the powers will initially apply only to military locations, the government has suggested they could later be extended to civilian sites such as airports. Four UK bases used by U.S. forces reported drone incursions in November 2024. Around 60 RAF personnel were deployed to assist the U.S. Air Force in investigating the incidents. Neither UK nor U.S. officials have identified those responsible, but the affected bases hold significant strategic value, including hosting American F-22A fighter jets. The announcement comes amid growing European alarm over drone incursions attributed to Russia or unidentified actors. In September, 20 Russian drones reportedly crossed into Polish airspace, and Russian MiG-31 jets entered Estonian territory later that month. EU leaders met in Copenhagen earlier this month to discuss a proposed “drone wall,” a multilayered network of sensors and weapons designed to detect and neutralize hostile drones along the bloc’s eastern borders. Recent months have also seen multiple European airports shut down temporarily due to suspected drone activity, including incidents in Munich, Copenhagen and Oslo. Danish authorities said there was no direct evidence linking the activity to Moscow, though many European officials have described the incidents as elements of hybrid warfare. https://cuashub.com/en/content/british-troops-may-be-awarded-powers-to-shoot-down-drones-near-bases/ (Source: https://cuashub.com/

 

21 Oct 25. Cuashub.com said today that US Army to hold recurring competitions to field counter-drone tech. Rapid changes in drone warfare have prompted the U.S. Army to commit to a regular competition cycle so it can move cutting-edge counter-UAS systems into the field faster, service officials said Monday at the Association of the United States Army (AUSA) conference.

“We need to ensure that we continuously outpace the threat,” Col. Guy Yelverton, project lead for the Army’s counter-drone product office, said during a panel discussion. He told attendees the service will run competitions “at least at an every two-year cycle” to assess industry capabilities and accelerate procurement of systems for soldiers and units.

Yelverton outlined five lines of effort the Army is pursuing to counter small drones. Two efforts targeted by the competitions are soldier-carried kit, portable systems individual troops can carry, and unit common equipment such as sensing arrays mountable on vehicles like the Humvee. Separate efforts address protection for fixed sites and larger counter-UAS air-defense batteries, officials said. The Army’s work concentrates on smaller unmanned aerial systems, larger Group 4 and 5 platforms remain the purview of traditional air-defense assets such as fighter aircraft and missile batteries. The service is already wrapping up contests for a new fire-control system and is evaluating candidate equipment for soldier-borne counter-drone kits, Yelverton said. He noted about a dozen vendors are participating in an ongoing soldier-common-equipment competition and that the Army is willing to select multiple suppliers if they meet requirements:

“And if they’re all good, we’ll select all 12, because we need a lot of capability in the counter UAS environment,” he said.

Maj. Gen. David Stewart, director of long-range fires and integrated air and missile defense, described Group-3 drones as occupying a “vexing middle ground” because of their combination of speed, range and maneuverability. He warned that swarms of small Group-1 and Group-2 drones can produce effects comparable to single Group-3 attacks.

Col. Marc Pelini, military deputy for the Army’s fires future capability directorate, said high-power microwave (HPM) weapons may be the most economical and effective approach to countering swarm attacks, provided those systems can reach targets “at least a kilometer or two” away. The Army is also testing kinetic and semi-kinetic solutions, including missile interceptors such as the Coyote, which can be employed against drone swarms.

Officials emphasized the need for layered defenses:

“I don’t think there’s a silver bullet that can address the full range of the threats,” Pelini said, arguing for a “Swiss Army Knife of effectors” to protect forces across the spectrum of drone threats.

The competitions scheduled for fiscal 2026 will solicit industry for unit common equipment, sensors and electronic warfare capabilities, according to the Army presentation. https://cuashub.com/en/content/us-army-to-hold-recurring-competitions-to-fielding-counter-drone-tech/ (Source: https://cuashub.com/

 

21 Oct 25. Raytheon Delivers 1st PhantomStrike Radar for KAI FA-50 Fleet. Next-generation radar provides superior battlespace situational awareness. Raytheon, an RTX (NYSE: RTX) business, has delivered the first PhantomStrike® radar to Korea Aerospace Industries (KAI) for their FA-50 Light Combat Aircraft fleet. PhantomStrike is a first-of-its-kind, fully air-cooled, high efficiency Gallium Nitride, fire-control radar that is designed to provide long-range threat detection, tracking and targeting. At nearly half the cost of a typical fire control radar, it delivers superior radar capability due to its faster, more agile digital beam, advanced target detection and resistance to jamming.

“In an increasingly complex and contested battlespace, aircrew need to make informed, split-second decisions to ensure mission success,” said Dan Theisen , president of Advanced Products and Solutions at Raytheon. “Delivering the first PhantomStrike system to KAI marks a pivotal step in equipping our customers with the advanced technology needed to maintain a decisive advantage in combat.=PhantomStrike is designed for size, weight, and power constrained platforms that include uncrewed and light-attack aircraft, fighter jets and helicopters. It harnesses the fire control power of a fighter in its lightest form factor ever – weighing nearly half of a modern active electronically scanned array radar.

PhantomStrike is approved to be exported as a Direct Commercial Sale product.  This year, Raytheon completed a series of flight tests on its Multi-Program Testbed aircraft, demonstrating air-to-air and air-to-ground performance, and delivered a lab unit for aircraft integration testing in August. Production of PhantomStrike takes place in Forest, Miss. ; Tucson, Ariz. ; and Scotland , with support from Raytheon UK. Raytheon, an RTX business, is a leading provider of defense solutions to help the U.S. government, our allies and partners defend their national sovereignty and ensure their security. For more than 100 years, Raytheon has developed new technologies and enhanced existing capabilities in integrated air and missile defense, smart weapons, missiles, advanced sensors and radars, interceptors, space-based systems, hypersonics and missile defense across land, air, sea and space.  (Source: ASD Network)

 

20 Oct 25. UK aligns drone defence and interoperability with NATO. The Ministry of Defence has outlined how the UK is working to ensure its uncrewed and counter-drone systems are fully interoperable with NATO frameworks, standards and data-sharing protocols, according to recent parliamentary responses. Responding to written questions from Edward Morello, Liberal Democrat MP for West Dorset, Defence Minister Al Carns said that “the Defence Uncrewed Design Authority (DUxDA) has delegated authority to fulfil the UK Head of Delegation role at NATO Joint Capability Groups for Uncrewed Systems.” This role, he explained, provides the UK with influence within the NATO Standardisation Agreement (STANAG) process, shaping how future NATO standards for uncrewed systems are developed and implemented. Carns added that the DUxDA “has also mapped out all the UK and NATO standards that are applicable to Uncrewed Systems and are developing recommendations that will identify and enforce specific standards applied to all Uncrewed Systems development moving forward.” Alongside the work of the DUxDA, the UK has also contributed to the establishment of the NATO Joint Capability Group for Counter-Small Uncrewed Aerial Systems (C-sUAS), a forum intended to harmonise Allied approaches to drone defence. The group is focusing on establishing NATO-wide training programmes, ensuring common equipment standards and creating a shared lexicon for interoperability. Carns confirmed that the UK has taken a leading role in supporting the technical foundations of these initiatives through the SAPIENT architecture, a modular open standard developed by the Ministry of Defence to link autonomous sensors and effectors.

“To support the integration of equipment across NATO nations, the UK has funded and developed SAPIENT, a common architecture standard that enables interoperability between autonomous sensors and effectors,” he stated, noting that it had already been used operationally, including during the NATO Summit in The Hague. (Source: ukdefencejournal.org.uk/)

 

15 Oct 25. Dedrone by Axon and TYTAN partner to extend detection, mitigation capabilities. Dedrone by Axon has entered into several new strategic partnerships to advance technology for use in strengthening NATO airspace defence. The first of these is with TYTAN, a Munich-based defence technology company developing interceptor systems for Group 3 drones. Both companies share German roots and a commitment to advancing responsible innovation in defence, The collaboration combines Dedrone by Axon’s AI-powered sensor fusion and technology with TYTAN’s kinetic interceptors, creating a complete detect, track, identify, and mitigate (DTI-M) capability. This end-to-end solution expands Dedrone by Axon’s coverage from Group 1 through Group 3 threats, delivering the unified airspace picture NATO allies need to act faster and defend smarter, said the company in a press release.

“This alliance allows us to offer our customers a seamless CUAS platform that spans Group 1 through Group 3 threats,” said Aaditya Devarakonda, CEO, Dedrone by Axon. “Together, Dedrone and TYTAN are helping NATO and its partners build the connected network that will define the future of air defence.”

“Together, Dedrone and TYTAN aren’t just responding to emerging threats; we’re helping NATO and its partners build the connected network that will define the future of air defence,” said Balazs Nagy, Co-Founder and CEO of TYTAN. “Our partnership with Axon shows what true pan-NATO innovation looks like, built through collaboration across the US and Europe, proven in combat, and integrated with global allies to protect NATO airspace. This is Europe and NATO’s moment to lead, and TYTAN’s mission is to make that intent real — to turn collective vision into action.”

Through BRAVE1 and collaborations with companies both within Ukraine and in partner nations supporting its defence, Axon has also begun identifying and empowering startups developing the tools needed to protect dairspace, said the company. These innovation hubs and early-stage companies are becoming key partners in Axon’s broader effort to scale battlefield-proven technologies across NATO’s defence ecosystem.

“NATO is at an inflection point. The threats are already here — what’s missing is the speed and scale to counter them,” said Batuhan Yumurtaci, Co-Founder and CTO of TYTAN. “It’s no longer enough to announce new frameworks or strategies for our air defence; we have to build them.” (Source: www.unmannedairspace.info)

 

14 Oct 25. GrandSkY Air Force Base to become C-UAS system testing, development centre. GrandSKY today announced the deployment of a foundational counter-uncrewed aircraft system (C-UAS) architecture at Grand Forks Air Force Base. “This initiative marks a significant step toward establishing GrandSKY as a premier center for C-UAS testing, development, and operations,” said the organization in a press release. “The initial phase, now underway, includes the integration of AeroVironment’s AV_Halo COMMAND Mission software and radio frequency (RF)-based Titan-SV counter-UAS capability. This deployment provides the critical first layer of a comprehensive, layered defense system, focusing on the detection, identification, and tracking (DIT) of unmanned aerial threats. This seamless network of passive sensors and radars provides airspace situational awareness and serves as the beginning of a system that could become a cornerstone for protecting critical infrastructure.”

“We are building the future of air defence right here in North Dakota,” GrandSKY President Thomas Swoyer Jr. said. “This deployment reflects the strategic evolution of GrandSKY as it endeavors to create a national counter-UAS centrr of excellence. By integrating these advanced DIT capabilities, we are establishing the foundational sensor network necessary to understand and counter evolving drone threats. This deployment directly supports our collaboration with Grand Forks Air Force Base and positions us to be a leader in the development of robust, adaptable defense solutions for the nation.”

This partnership builds on the March 2025 memorandum of understanding (MOU) between GrandSKY and AV in support of Project ULTRA, a USD100 m public-private initiative to establish Grand Forks as the nation’s proving ground for advanced counter-UAS defense.

“Grand Forks continues to play a vital role in strengthening both North Dakota’s economy and America’s national security,” Senator John Hoeven (R-ND) said. “By leveraging these proven technologies at GrandSKY, we are ensuring our state remains at the forefront of innovation while providing the layered protection our nation needs against rapidly evolving threats.”

“Establishing the framework for limited area defense at Grand Forks marks an important step toward building a layered defense system for the nation against constantly evolving drone threats,” AV Chairman, President and CEO Wahid Nawabi said. “By combining our surveillance and edge-intelligence technologies with the vision of GrandSKY and the support of leaders, like Senator Hoeven, we are accelerating solutions that will protect critical U.S. military installations and the service members who operate within them.” (Source: www.unmannedairspace.info)

 

17 Oct 25. EU and India carry out joint C-UAS training to protect infrastructure from drone threats. The European Union (EU) and India organized a first of its kind counterterrorism training from 13 to 15 Oct 2025 to protect critical infrastructure and soft targets against emerging threats from unmanned aerial systems (UAS) or drones as they are commonly known, according to an EU press release. The three-day exercise brought together senior officers, instructors and technical experts from India’s National Security Guard (NSG) and the EU’s High Risk Security Network (HRSN), and focused on the use of advanced UAS and Counter-UAS (C-UAS) capabilities. “The peer-to-peer activity blended tactical and technological training, culminating in a joint exercise designed to strengthen interoperability and set the foundation for future collaboration,” said the press release. “It also strengthened mitigation skills and familiarised participants with deployment models for major events. Participants also deliberated on the future trajectory of drone threats, including swarm and autonomous systems and the need for advanced detection and neutralisation technologies such as artificial intelligence, sensor fusion, directed energy and kinetic countermeasures. The EU HRSN – a specialised European platform of 28 units from 21 European Union Member States – brought a team of UAS and C-UAS instructors and technical experts to Manesar, Gurugram. India’s elite counterterrorism force NSG, under the Ministry of Home Affairs, led the training with its extensive operational experience in detecting, tracking and neutralising hostile drones.

“Special forces training on UAS counter-terrorism tactics in urban environments, combined with a joint tactical simulation exercise, allowed NSG and HRSN units to test and strengthen real-world response capabilities,” continued the text.”The activity will result in the drafting of standard operating procedures for integrated drone and counter-drone operations in various settings, and an Engagement Decision Matrix tailored to protect mass gatherings and critical infrastructure.

The event was organised by the EU Delegation to India in cooperation with the NSG and facilitated by EU project ESIWA+ (Enhancing Security Cooperation In and With Asia and the Indo-Pacific). The initiative builds on the College of Commissioners’ visit to India in February 2025 and the recently announced Joint Communication on a New Strategic EU–India Agenda, which prioritises deeper collaboration on counter-terrorism. This training is a follow-up to the India-EU Track 1.5 Roundtable on Countering Terrorist Exploitation of UAS held in February 2024. The activity aligns with the EU’s Indo-Pacific Strategy and builds upon the ongoing EU-India Counterterrorism Dialogue (Source: www.unmannedairspace.info)

 

20 Oct 25. Anduril delivers C-UAS kits to USNORTHCOM. Anduril has delivered a rapidly deployable kit of counter-drone systems to USNORTHCOM. The system was recently demonstrated at Falcon Peak 25.2 at Eglin Air Force Base, validating that it meets NORTHCOM’s operational requirements. In 2024 alone, NORTHCOM reported over 350 unauthorised drone incursions across 100 installations.  Each Anduril kit delivers detect, track, identify and defeat capabilities. They include Mobile Sentry for autonomous detection and tracking, Wisp in a SkyFence configuration for wide-area passive IR coverage, Pulsar for RF detection and effects, and Anvil for low-collateral kinetic defeat. Power, compute and networking are also included. The system runs on the Lattice software platform and is designed for rapid deployment by military members. The kits are built for use inside US airspace, developed to operate within the constraints of Federal Aviation Administration regulations and other civilian considerations. (Source: www.unmannedairspace.info)

 

16 Oct 25. Laser-based C-UAS technology programmes – where the money is going. Over the last three years the US has committed over USD2.6 bn in funding research, development and acquisition of military laser weapon systems, according to Unmanned Airspace research. Currently there are around 20 countries in the world developing and deploying over 50 laser-based counter-UAS systems, in broadly, four areas: airborne, tactical, naval and infrastructure protection, with system capabilities ranging from 2kW to over 500 kW. The figures, taken from  Unmanned Airspace 2025 Global Counter-UAS Systems Directory, show that US military C-UAS laser weapon investment has focused on two key areas: protection of soldiers and vehicles on the battlefield from lone drone attacks and infrastructure protection against swarms. The research has been aimed specifically at ruggedising 20kW class laser systems for vehicle protection and integrating 100kW laser weapons with AI-based targeting and fire control systems. Israel’s government recently invested around USD500 m to extend its Iron Beam defence system and the UK has invested probably a similar amount in four programmes – RF Dew, Laser Directed Energy Weapon Land Demonstrator, DragonFire and DSTL’s Weapons Sector Research Framework. Despite this considerable investment there is little public evidence that any of the systems have reached a level of maturity to protect the cities of Ukraine. But in the drone war above Ukraine there is an evolutionary cycle with a predicable end-state: on the one side, AI enabled drone swarms exploiting machine learning and quantum technologies for navigation, targeting and communications while on the other, AI-enabled C-UAS direct energy weapon systems which can affordably shoot drone swarms out of the sky in seconds. While many manufacturers have demonstrated in trials that lasers can defeat small drones, the number of successful battlefield engagements against real enemies is still relatively small. In February 2025, Ukrainian officials announced the successful use of their domestic Tryzub laser weapon system against a drone while in May 2025 Rafael announced that its high-power laser systems have been used “to intercept aerial threats in combat during Israel’s conflict with Hamas in Gaza.”

Laser systems are complex and expensive, especially if they are being designed to take on swarms. Designers must integrate long-range detection with close-in identification and targeting sensors, linked to target prioritisation and sequencing software which allows for a three/four second engagement rate per target (in a 100kW laser for example) before moving to the next one, all within an AI-enable command and control system which can operate far faster than any human. They need a constant power source and a seriously effective cooling system. Problems with laser weapons include their susceptibility to atmospheric conditions like fog, dust, and rain, which scatter or absorb the beam. Smoke and reflective surfaces can also reduce their effectiveness. Despite these issues, we are on the verge of widespread implementation of both tactical (mobile) and infrastructure protection (fixed) systems, with one commercial supplier EOS having recently sold an operational fixed system to a European NATO nation. But in terms of affordability (once the initial purchase price has been taken care of –  a100kW system can cost as much as USD50 m) and effectiveness they offer the best protection against current future drone threats, with manufacturers quoting USD0.15 to USD1.00 per engagement. Unmanned Airspace research shows that the last two years have seen countries such as Azerbaijan and India invested heavily in laser weapons, with India’s DRDO developing a 100 kW system following the successful testing earlier this year of its 30 kW Mk-II(A) system – though Indian officials say these larger systems are unlikely to enter service this decade.  In September 2024, Azerbaijan’s 30kW Fireforce system was demonstrated at the ADEX-2024 exhibition in Baku.  The following table, a very edited version of the “Directed energy” section from Unmanned Airspace 2025 Global Counter-UAS Systems Directory, lists some of the key programmes under way around the world. (Source: www.unmannedairspace.info)

 

20 Oct 25. Military to get new powers to destroy drones threatening military bases.  British personnel will be handed new powers to shoot down drones, the Defence Secretary will unveil in a speech, meaning troops can take decisive action. The new powers to defend military bases will be included in the Armed Forces Bill, with John Healey pledging to “do what’s needed to keep the British people safe”. It comes after several British air bases utilised by US forces, including RAF Lakenheath, RAF Mildenhall, and RAF Feltwell, reported drone sightings in November last year, and drones violated European airspace numerous times in the last few months. Mr Healey will reference the incursion by Russian drones into Polish airspace, which led to Polish F-16 fighter jets shooting down uncrewed aerial vehicles, in his speech.

“Last month, we saw 19 drones cross the Polish border,” Mr Healey will say at the Lord Mayor of London Defence and Security Lecture on Monday evening.

“Days later, Russian jets violated Estonia’s airspace, while at the same time, Russia mounted a concerted campaign to subvert Moldova’s election.”

The new powers will only apply to military sites; however, the rules could be expanded to civilian locations such as airports, according to the BBC. The current guidance for personnel is that unknown drones must have their GPS signal disrupted or be moved away from the area. An unspecified drone can only be obliterated in extreme circumstances. These threats can threaten the UK, the Rawmarsh and Conisbrough MP will say.

“Here at home, we continue to defend ourselves daily from threats from the seabed to cyberspace,” Mr Healey will declare.

“We will always do what’s needed to keep the British people safe, and as we speak, we are developing new powers – to be put through our Armed Forces Bill – to shoot down unidentified drones over UK military sites.”

The UK deployed counter-drone experts to Denmark in September, equipped with advanced kit to detect, track, identify, and if needed, destroy hostile drones, following suspicious activity. Around 60 Royal Air Force personnel were involved in the investigation to find out what happened on the UK bases. Washington and London have not confirmed who flew the uncrewed aerial vehicles over the British bases. European leaders have backed plans to put up a drone ‘wall’ – a defensive system to protect the region. Russia has sent more than 3,000 one-way attack drones to Ukraine in October so far, following 5,500 last month. Moscow has denied any involvement in drones flying into airspace over Denmark, Poland, Estonia and Romania. (Source: https://www.forcesnews.com/)

 

20 Oct 25. Anduril Demos and Delivers Counter-UAS Capabilities to USNORTHCOM at Falcon Peak 25.2. To respond to the growing threat of unauthorized drones in the homeland, Anduril has delivered a rapidly deployable kit of our field-proven counter-UAS systems to USNORTHCOM. The system was recently demonstrated at Falcon Peak 25.2 at Eglin Air Force Base, validating that our counter-UAS solution meets NORTHCOM’s operational requirements in full. In 2024 alone, NORTHCOM reported over 350 unauthorized drone incursions across 100 installations. We’ve developed our kit for rapid deployability in support of short-duration counter-UAS operations to defend U.S. military infrastructure with complete kill-chain coverage. Each kit includes Mobile Sentry for autonomous detection and tracking, Wisp in a SkyFence configuration for wide-area passive IR coverage, Pulsar for RF detection and effects, and Anvil for low-collateral kinetic defeat. Power, compute, and networking are included. The system runs on the Lattice software platform and is designed for rapid deployment by military members. It delivers full-spectrum capability — detect, track, identify, defeat — in a single, field-ready package. At Anduril’s founding, we saw the gap between emerging threats and available capability. Our solution to USNORTHCOM is Anduril’s answer to the challenge of defending the homeland from small drone threats — designed not just for how the military operates, but where. Unlike battlefield systems, these kits are built for use inside U.S. airspace, optimized to operate within the constraints of FAA regulations and other civilian considerations. The delivery to NORTHCOM at Falcon Peak marks a decisive step forward in operationalizing mobile counter-UAS defense across the United States. (Source: ASD Network)

 

16 Oct 25. US Army picks Anduril for counter-drone fire control system. Anduril’s win paves the way for the defense tech firm to replace Northrop Grumman’s FAAD C2 system, which provides a common picture for operators to detect and defeat air-based threats. Anduril has prevailed in an Army and Defense Innovation Unit competition to provide a new system for managing defenses against drone threats, the Army announced Wednesday. In a press release disclosing Anduril’s win, the Army said the company will furnish the service with a modernized fire control system for counter-drone operations, also known as c-UAS. A fire control system fuses together sensor data to ensure an operator can effectively strike a target.

“The Army will continue working closely with Anduril to refine and integrate this cutting-edge technology into its C-UAS architecture, ensuring the highest level of protection for our warfighters,” the service said in the announcement, without disclosing the contract value. Anduril did not respond to a request for comment by press time.

The company’s selection comes amid an Army plan to hold “recurring” competitions for counter-drone technologies, ranging from equipment that could be carried by the common soldier to electronic warfare systems. Officials have reportedly said they want the new fire control system to handle a wide variety of short-range air defenses, but are focusing initially on the counter-drone mission.

“We need to ensure that we continuously outpace the threat,” Col. Guy Yelverton, the project lead for the Army’s counter-drone product office, said during a Monday panel discussion at the annual AUSA conference in Washington. “So we will have these competitions at least at an every two-year cycle, to make sure that we know and understand the capabilities out there from our industry partners, and that we continue to provide our warfighters the best capability so that we outpace that threat that’s evolving.”

In an apparent preview of the Anduril win, Yelverton said the winning fire control solution would replace the FAAD C2 (Forward Area Air Defense Command and Control) system currently provided by Northrop Grumman. The Northrop system combines sensor data to provide a comprehensive picture of the air space that can then direct a range of defenses to knock down an inbound threat.

Northrop previously revealed it was competing to replace its FAAD C2 system with a new offering dubbed AiON, though it’s not clear what other firms bid in the competition.

“We are incredibly proud of the groundbreaking innovation and dedication demonstrated by our talented team in developing and successfully testing AiON, our next-generation counter-drone system. In just a few months, we delivered a cutting-edge capability that enhances warfighter protection in dynamic and evolving threat environments,” Kenn Todorov, vice president and general manager of command and control and weapons integration at Northrop, said in a statement to Breaking Defense.

“We see significant future opportunities to partner with other customers and allies who recognize the critical need for innovative solutions like AiON,” Todorov added. (Source: Breaking Defense.com)

 

17 Oct 25. Cuashub.com said today that World Cup sparks counter-drone urgency in the US. The Trump administration is moving to harden U.S. airspace against potential drone threats ahead of next summer’s FIFA World Cup, launching a $500 m national program to help state and local governments deploy counter-drone defenses at major events. The new initiative, announced by Andrew Giuliani, director of the White House’s FIFA World Cup 2026 Task Force, will fund anti-drone tools and training in all 50 states, with a focus on the 104 matches being played across U.S. stadiums. The effort comes amid growing concern over the proliferation of drones that could threaten public gatherings, with many fearing that the U.S. is not prepared to counter such threats.

“Everybody from governors to police commissioners to stadium security chiefs say this is something they need in order to protect the sites,” Giuliani said.

He noted that the initiative reflects an urgent push to strengthen security for not only the World Cup, but also the U.S. 250th anniversary and 2028 Olympics in Los Angeles.

Under the plan, urban police departments and local agencies would be equipped with handheld systems capable of detecting, tracking and, when authorized, disabling rogue aircraft through jamming or command override. The Department of Homeland Security (DHS) will oversee grant disbursement, using funds drawn from the ‘One Big Beautiful Bill,’ enacted in July.

The mitigation issue

The program will also test the boundaries of drone mitigation authority, an issue that remains unresolved in Congress. Currently, only federal agencies, such as DHS and the Department of Justice, are legally authorized to intercept or disable drones. With a House bill extending those powers to local police stalled, the administration is considering temporary DOJ waivers that would allow states and cities to take down hostile drones during high-risk events.

“Drones are a disruptive technology. They have an amazing potential for both good and ill,” said Sebastian Gorka, senior director for counterterrorism at the National Security Council. “We will increase the enforcement of current laws to deter two types of individuals: evildoers and idiots, the clueless and the careless.”

World Cup host cities already receive security support through a $625 m DHS grant program, and additional guidance will soon be issued to help states apply for the new counter-drone funds.

Protection at the state level

Local authorities have been tasked with preparing to secure the public against drone threats for those matches that take place in their states. Lieutenant Mike Ward and Sergeant Brett McCormick of the New Jersey State Police will speak alongside Rob Robertson of the Arlington Aviation Authority at the Counter UAS Homeland Security USA conference in February, where the trio will offer some insight into the preparation taking place at the state level to secure World Cup matches against drone threats. The White House is also coordinating with Canada and Mexico, which co-host the 2026 World Cup, on joint airspace protection. The three nations held their first trilateral counter-drone meeting in Mexico City earlier this year. Beyond the tournament, administration officials say the initiative will advance U.S. leadership in drone defense technology, an area where they believe foreign competitors, particularly China, have gained ground.

Homeland Security Secretary Kristi Noem described the effort as part of a broader “weapons-technology revolution,” warning that drones “are being used to smuggle deadly drugs, target our infrastructure and spy on U.S. defenses.”

With just nine months until kickoff, officials say the timing leaves no room for delay:

“Let’s use the World Cup as the urgency,” Giuliani said. “There’s no pushing that back. So let’s get the equipment we need to make sure it’s as safe as possible.”

https://cuashub.com/en/content/world-cup-sparks-counter-drone-urgency-in-the-us/ (Source: https://cuashub.com/

 

17 Oct 25. Unseen and Unmatched: L3Harris Marks a 1st in Infrared Tracking Technology. New L3Harris sensor system gives warfighters the superpower to see clearly, completely undetected.

The Limits of Radar on the Battlefield

For decades, radar has been the bedrock for tracking and monitoring aircraft for both military and civilian applications. While useful for the FAA to monitor the friendly skies, the technology presents significant limitations for warfighters on the battlefield. Since radar actively emit radio waves, they can alert the enemy, putting lives and critical assets at risk.

“Radar systems are like shining a flashlight in a dark room,” explains George Reaves, Director of Engineering, L3Harris. “You can see everything. But now everyone can see you, too.”

The Rise of Passive Sensing Technology

This inherent vulnerability has spurred the development of electro-optical and infrared (EO/IR) technologies, which offer alternative ways to see the same picture. Unlike traditional radar, EO/IR systems do not emit signals, making them practically invisible to the adversary. This type of passive remote sensing is essential for survival in the modern era of electronic warfare.

A First in Infrared Tracking

The Infrared Search and Track (IRST) system by L3Harris detects and tracks targets anonymously by combining sensors that collect radiation, light and heat signatures, then uses a powerful processing system to convert that data into crisp, real-time imagery. This technology gives warfighters detailed situational awareness without compromising their position.

“With IRST, now you can see clearly and operate freely in the dark,” Reaves said. “Breakthroughs in passive remote sensing like IRST serve as a great example of how L3Harris keeps our customers safe and undetected in combat operations.”

Advanced Sensor Technology in Action

L3Harris has completed a successful flight test of IRST’s capabilities, using advanced Focal Plane Array (FPA) technology and real-time processing algorithms, an exponential leap forward in passive EO/IR system development.

“Think of it as having multiple pairs of eyes, each finely tuned to different wavelengths,” Reaves explains.

How the System Works

IRST combines several passive sensors to capture targeting data, including long-wave infrared sensors that detect heat signatures and low-cost micro-bolometers widely used in night-vision equipment. Adding mid-wave infrared sensors further enhances the system’s ability to operate day or night and in challenging environmental conditions.

Flight Test Success

During the test flight, L3Harris successfully demonstrated the capabilities of FPA sensors and computing power in a realistic operational setting. Flight engineers mounted an AgilePod on a host aircraft which housed the real-time image processor.

In addition to designating the target, the system detected, identified and tracked two commercial aircraft within the test field of view. The results demonstrate the system’s ability to properly process a range of signal inputs in a complex environment while avoiding false alarms and, more critically, friendly fire incidents.

A Milestone in Electronic Warfare

As the aircraft completed its test flight, the IRST team recognized they had reached a milestone. The silent guardians of the sky had marked a new era in electronic warfare and remote sensing. This advancement in passive EO/IR sensing was more than a technical achievement for L3Harris, it carried the promise of a safer, more secure future for U.S. and allied forces.

“We’re not just building targeting systems,” Reaves said. “We’re building the future of defense, one silent step at a time.”

Following its successful initial flights, the IRST system will undergo additional flight testing. These tests are a key part of the system’s ongoing technical maturation, allowing engineers to refine algorithms, validate performance across operational scenarios and ensure the system continues to meet warfighter needs. (Source: ASD Network)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

October 17, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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13 Oct 25. Echodyne Launches New Software Platform, EchoWare, To Quickly Deliver Advanced Radar Services Across Markets and Applications

Single interface for networks of deployed radars offering advanced features and capabilities

Echodyne, the radar platform company, is pleased to announce the launch of its next-generation software platform, EchoWare, to enable partners and customers to swiftly integrate and deliver advanced radar capabilities into their systems and solutions. With quickly maturing requirements for precise situational awareness data across markets and applications, from defense and security to drone as first responder (DFR) and a robust drone delivery infrastructure, EchoWare enables customers and integrators to quickly deploy and consistently deliver advanced radar capabilities across fixed, portable, temporary, and on-the-move (OTM) modalities.

“Radar is the foundation sensor, the building block upon which every great system and solution is delivered,” said Dr. Tom Driscoll, CTO of Echodyne. “When the building blocks are zeros and ones, MESA radars deliver more accurate and precise data than conventional ESA radars. EchoWare is the connective tissue for networks of radar systems delivering advanced cognitive radar capabilities to global markets.”

EchoWare is a robust software platform that acts as middleware between Echodyne radars and system Command and Control (C2) and solution platforms, delivering a single high fidelity data interface for Echodyne’s advanced cognitive radar capabilities. EchoWare combines configuration, deployment, and lifecycle management of individual radars into a single interface, allowing for seamless control and monitoring of deployed radar systems.  The most requested feature across all markets is Single Track ID, which maintains a single data identity across all radars in the system.

“We have learned a great deal from hundreds of customer engagements across all geographies and markets,” said Eben Frankenberg, CEO of Echodyne. “The path to high fidelity solutions is built on flexing advanced radar resources, like Single Track ID, to maintain precise geospatial data about every object in every radar’s field of view. EchoWare helps every customer reach that capability quickly.”

EchoWare capabilities enable an operator to:

  • Deploy Seamless Networks of Radars: Operators can configure, manage, and operate multiple EchoShield radars and integrate the C2 to ingest 10 Hz unified Track data in fixed and OTM modalities.
  • Customize Radar Performance: Operators can refine radar performance with filters and masks and record radar data, apply advanced features like Single Track ID across all radars in the network, as well as quickly toggle to advanced feature windows.
  • View Radar Data with 2D Mapping and Work Offline: With full offline capabilities for contested or austere locations, EchoWare plots Tracks on an interactive map with classification icons that clearly define the operating environment.

New integration embeds counter-drone intelligence into the widely adopted TAK platform, enhancing mission coordination for security and public safety operators.

 

13 Oct 25. New Trillium EO/IR Gimbal Boosts Performance of Group 2 sUAS Platform. Trillium’s lightweight HD59-MLVS-LD Electro-Optical/Infrared (EO/IR) gimbal with laser designator is integrated on AeroVironment’s Puma LE, bringing precision targeting to portable Group 2 UAS

Trillium Engineering‘s HD59-MLVS-LD payload has been integrated onto AeroVironment’s Puma™ LE small Unmanned Aerial system (sUAS).

The integration is seen as a major step forward in delivering precision targeting capabilities to Group 2 platforms.

At under 2kg, the HD59-MLVS-LD is believed to be the lightest Electro-Optical/Infrared (EO/IR) gimbal in its class to feature an integrated laser designator. The payload includes a 50mj STANAG 3733-compliant laser, a 64-megapixel EO camera, a narrow field-of-view mid-wave IR sensor, and see-spot short-wave IR. These combined sensors allow small units to independently identify and designate targets, accelerating decision-making and increasing mission autonomy.

Trace Stevenson, President of Autonomous Systems at AeroVironment, said, “Integrating a laser designator into Puma LE delivers a significant tactical advantage. Operators can now seamlessly transition from reconnaissance to precision target designation using the same lightweight, man-portable system – a capability previously reserved for larger and more complex platforms. Trillium Engineering has been an outstanding partner, and we are proud to collaborate with them on this new laser designator payload.”

Matt Carreon, Vice President of Business Development at Trillium Engineering, added, “We are proud to partner with AeroVironment on the integration of our HD59-MLVS-LD. This collaboration brings a powerful, multi-sensor EO/IR gimbal system to the field, enabling precision laser designation on a platform as portable as Puma LE. The combination dramatically enhances the operational independence and effectiveness of tactical teams worldwide.”

According to Trillium, the collaboration with AeroVironment expands what is possible for lightweight, man-portable Group 2 systems. Traditionally, capabilities like laser designation were confined to larger aircraft with heavier payloads. Now, tactical teams can achieve the same advanced effects in a compact, highly deployable package. (Source: https://www.defenseadvancement.com/)

 

16 Oct 25. L3Harris Integrates VAMPIRE Aboard GM Defense’s Infantry Squad Vehicle. VAMPIRE has been integrated onto GM Defense’s Infantry Squad Vehicle (ISV), providing a mobile solution to effectively and affordably counter small drone threats, enhancing tactical mobility and protection for U.S. Army operations. L3Harris Technologies recently installed its VAMPIRE™ counter-unmanned system aboard a GM Defense Infantry Squad Vehicle (ISV), demonstrating a mobile solution to take out drone threats.  VAMPIRE is a self-contained platform that delivers advanced reconnaissance and precision strike capabilities against drones and remotely piloted aircraft. It has been used extensively in support of European combat operations since 2023 and has successfully shot down hundreds of small drones.

“Deploying VAMPIRE on GM Defense’s ISV is a great example of how quickly and seamlessly this system can be used by our Army customer to defeat the rapidly growing threat of small, hostile drones,” said Tom Kirkland, Vice President and General Manager, Targeting and Sensor Systems, L3Harris. “Working together, we have swiftly responded to the urgent need to defeat small unmanned autonomous systems accurately and affordably while allowing ground forces to stay tactically mobile.”

The GM Defense ISV is uniquely engineered to fulfill U.S. Army requirements for rapid deployment. With robust off-road capabilities, the ISV significantly improves tactical mobility across a range of military operations. The vehicle is easily maintainable and highly adaptable to meet diverse mission and operational needs. GM Defense partners with companies like L3Harris to design and produce diverse kits to support the broad range of mission requirements for a variety of general purpose and special operations forces. Incorporating a Counter-small UAS system like VAMPIRE adds new capability to protect operators from hostile drone attacks.

“The versatility of the ISV is one of its core strengths, and integrating a critical counter-UAS capability like VAMPIRE showcases our ability to rapidly adapt the vehicle to meet evolving threats,” said John ‘JD’ Johnson, Vice President of Government Solutions and Strategy, GM Defense. “This successful integration highlights how the ISV’s modular design and commercial-based architecture can quickly incorporate next-generation technologies to deliver immediate value and enhanced protection to our warfighters.” (Source: ASD Network)

 

15 Oct 25. Raytheon expands Massachusetts plant for LTAMDS radar production. Raytheon broke ground on a new 23,000-square-foot expansion of its Andover, Massachusetts, integration and testing facility for the Army’s next-generation Lower Tier Air and Missile Defense Sensor, the company announced Oct. 15. The LTAMDS is planned to replace the Patriot system, which the company also produces, and is designed to counter such advanced threats as hypersonic weapons. The Army approved the new sensor earlier this year. Tom Laliberty, Raytheon president of land and air defense systems, recently told Defense News the new $53 m wing is part of an LTAMDS production expansion already exceeding $400 m. Raytheon has previously invested in software labs, areas for automated subsystem assembly, and an anechoic near-field range for antenna calibration. Laliberty said the new structure, including overhead cranes to move the radar in position, will allow assembly of full radar arrays, integrated with cooling, networking and processing gear. The company plans to complete the facility by the end of next year, although Laliberty said he hopes the facility will be finished by the end of the year’s third quarter. The LTAMDS itself has already passed a number of milestones. The Army this year approved the beginning of low-rate initial production for the program, after hundreds of hours of flight tests and radar qualification trials. Raytheon has already built six prototype units and is now building two improved units incorporating the results of testing and operational evaluation that are expected to be provided to the Army this year for further testing.

Meanwhile, an LTAMDS prototype was sent to Guam for testing and evaluation in an operational environment this year. Laliberty said Raytheon wants to triple its production rate. The Army plans to increase builds from six to 12 radars a year under the low-rate initial production contract, but the factory’s planned capacity will be up to 18 radars annually for foreign military sales. International demand is strong, according to Laliberty.

“There’s been about a dozen formal letters of interest … that ranges from classified briefing, defense design, requests for pricing and availability and then all-up [Letters of Request] for [Letters of Acceptance],” he said.

Poland has committed to buying 12 LTAMDS, along with 48 Patriot launchers as the first foreign customer to buy the new sensor. (Source: Defense News)

 

16 Oct 25. Dedrone by Axon Expands Capabilities to Further Protect NATO Airspace. Europe’s borders are no longer defined by terrain — they’re defined by the airspace that surrounds them. In the past year alone, Russian-origin drones have entered the airspace of many countries, including reports in Poland, Estonia, Lithuania, Latvia and Romania, triggering NATO intercepts and disrupting civil aviation. What once were isolated incidents are now deliberate tests of how fast democracies can adapt.

As these incursions grow more frequent, particularly from Group 3 drones classified under U.S. military standards such as the Shaheds, NATO allies are facing a pivotal challenge: how to build an air defense network that’s as agile and intelligent as the threats themselves. Group 3 drones sit in a “gray zone” of modern warfare — too small and inexpensive for traditional missile systems, yet too capable to be ignored. These are the drones increasingly used along NATO’s eastern borders, prompting urgent investment in scalable, AI-driven counter-UAS systems.

Dedrone by Axon is taking that challenge head-on, expanding its ecosystem to deliver end-to-end airspace defense across NATO’s operational landscape. The company’s AI-powered command-and-control platform now integrates with emerging partners to protect against Group 1 through Group 3 drone threats, creating a unified capability for defense and national security agencies.

Lessons from Ukraine: Innovation at the Edge of Conflict

Earlier this year, Axon CEO Rick Smith visited Ukraine, where he saw firsthand how necessity is accelerating innovation at the edge of conflict. From frontline engineers to defense accelerators like BRAVE1, Ukraine has become a model for how rapid iteration and collaboration must redefine national defense.

“Ukraine has become a proving ground for the future of defense innovation — especially in unmanned and counter-unmanned systems,” said Rick Smith, CEO and Founder of Axon. “Shahed-type drones have replaced cruise missiles as a cheaper, devastating way to hit critical infrastructure, while FPV drones have become the new IED — low-cost, everywhere, and deadly at the front lines. To meet these threats, the world needs bold advances in UAS and counter-UAS technology. The future of defense will be defined by how fast we can connect sensors, systems, and allies into one network that acts at machine speed.”

During that visit, Axon committed to advancing the next generation of UAS and cUAS technology emerging from Ukraine and its allies. Through BRAVE1 and collaborations with companies both within Ukraine and in partner nations supporting its defense, Axon has begun identifying and empowering startups developing the tools needed to protect democratic airspace. These innovation hubs and early-stage companies are becoming key partners in Axon’s broader effort to scale battlefield-proven technologies across NATO’s defense ecosystem.

 

15 Oct 25. Dedrone by Axon and TYTAN Partner to Strengthen NATO Airspace Defense. Building on these lessons, Dedrone by Axon has entered into several strategic partnerships to advance our technology for use in strengthening NATO airspace defense. The first of these is with TYTAN, a Munich-based defense technology company developing interceptor systems for Group 3 drones. Both companies share German roots and a commitment to advancing responsible innovation in defense — connecting leading-edge capabilities to protect lives and critical infrastructure. The collaboration combines Dedrone by Axon’s AI-powered sensor fusion and technology with TYTAN’s kinetic interceptors, creating a complete detect, track, identify, and mitigate (DTI-M) capability. This end-to-end solution expands Dedrone by Axon’s coverage from Group 1 through Group 3 threats, delivering the unified airspace picture NATO allies need to act faster and defend smarter.

“This alliance allows us to offer our customers a seamless CUAS platform that spans Group 1 through Group 3 threats,” said Aaditya Devarakonda, CEO, Dedrone by Axon. “Together, Dedrone and TYTAN are helping NATO and its partners build the connected network that will define the future of air defense.”

“Together, Dedrone and TYTAN aren’t just responding to emerging threats; we’re helping NATO and its partners build the connected network that will define the future of air defense,” said Balazs Nagy, Co-Founder and CEO of TYTAN. “Our partnership with Axon shows what true pan-NATO innovation looks like, built through collaboration across the US and Europe, proven in combat, and integrated with global allies to protect NATO airspace. This is Europe and NATO’s moment to lead, and TYTAN’s mission is to make that intent real — to turn collective vision into action.”

Expanding the Ecosystem of Democratic Defense

At the center of this effort is DedroneTracker.AI — a NATO-compatible platform that fuses radar, radio frequency (RF), optical, and acoustic inputs into a single, unified airspace picture. Integrated with TYTAN’s autonomous interceptor technology, this collaboration transforms detection into decisive action, closing the loop from identification to neutralization within seconds. TYTAN’s AI-driven kinetic interceptors, developed and manufactured in Europe, extend this capability into the higher, more militarized range of Class III UAS threats, giving NATO allies a complete, layered defense system that is both scalable and sovereign. Already deployed in more than 30 countries and responsible for over 800 m drone detections worldwide, DedroneTracker.AI enables operators to autonomously coordinate responses across agencies, critical infrastructure sites, and borders in real time. The platform scales from localized deployments with DedroneCity to nationwide networks, offering a flexible foundation for future command-and-control innovation.  By integrating with TYTAN’s interceptor technology, Dedrone by Axon extends its CUAS mitigation capability into a higher, heavier and more militarized range of drone threats — ensuring NATO allies have the intelligence, tools, and operational flexibility to defend airspace at every layer. This partnership embodies the shared values of technological sovereignty, responsible innovation, and the protection of democratic nations from emerging unmanned threats.

“NATO is at an inflection point. The threats are already here — what’s missing is the speed and scale to counter them,” said Batuhan Yumurtaci, Co-Founder and CTO of TYTAN. “It’s no longer enough to announce new frameworks or strategies for our air defence; we have to build them.”

At AUSA, Dedrone by Axon will highlight how AI, interoperability, and alliance-driven innovation is shaping the future of collective defense. The TYTAN partnership represents the first in a series of upcoming collaborations with emerging defense innovators, marking a new phase in Axon’s investment and support for technologies that protect democratic nations.

Because the nature of security is changing — and defending democracy now depends on how quickly nations can see, share, and respond together. Protecting life is a mission at Axon that has never stopped at public safety. It means standing up for nations that defend democracy — and building the technologies that make that defense possible. In every era, threats evolve. But with purpose, partnership, and innovation, so does protection.

 

14 Oct 25. DroneShield (ASX:DRO), a global leader in counter-drone technology, today announced the release of its RfPatrol-Plugin for the Team Awareness Kit (TAK) ecosystem, now available for RfPatrol Mk2 users via the DroneShield Access Portal. The plugin integrates DroneShield’s counter-drone intelligence directly into the civilian TAK command-and-control (C2) environment, supplementing existing data streams, gRPC API, and involvement in the SAPIENT ecosystem. This means that operators who use the widely adopted, government-developed Civil Team Awareness Kit (CivTAK) platform can now seamlessly incorporate their RfPatrol drone detection data into their operational view, improving situational awareness and coordination in real time. The plugin advances the Company’s strategy to deliver scalable, SaaS-enabled solutions that meet customers where they operate. CivTAK is the civilian variant of the TAK platform originally developed by the U.S. Department of Defense. Today, TAK is the de facto standard for real-time geospatial mapping, situational awareness, and data sharing across security, public safety, and critical infrastructure organisations. As of 2020, the TAK ecosystem had more than 250,000 users worldwide, a figure that has grown significantly since, underscoring the demand for trusted integrations such as DroneShield’s RfPatrol-Plugin. The RfPatrol-Plugin enables detections from the handheld RfPatrol Mk2 to appear directly on the CivTAK map interface in real time. Integrated notification cards provide instant alerts, helping field teams make faster decisions. Operators can overlay DroneShield detections with data from other sensors and telemetry from mobile devices, all within a single operational picture. The plugin has successfully passed the official TAK application vetting process and is now available to RfPatrol users for direct installation on Android devices worldwide via the DroneShield Access Portal. This ensures rapid accessibility for operators without the need for standalone systems. For end users, this integration delivers seamless situational awareness without the need for standalone systems. For DroneShield, it paves the way for the rest of the flagship range – including the DroneSentry-X Mk2 – to enter the TAK ecosystem, reinforcing the Company’s commitment to scalable, SaaS-enabled counter-drone capabilities.

“Delivering a native plugin into the TAK ecosystem reflects DroneShield’s philosophy of interoperability and customer focus,” said Angus Bean, Chief Product & Technology Officer at DroneShield. “By embedding our detection capabilities directly into the systems operators already rely on, we are expanding mission effectiveness and strengthening DroneShield’s position as the trusted leader in end-to-end counter-drone technology.”

CivTAK is subject to the Export Administration Regulations (EAR) administered by the Department of Commerce, Bureau of Industry and Security (BIS). CivTAK is not authorised for release to an embargoed or sanctioned country, to a party of concern, or in support of a prohibited end use. Laws limiting the availability of DroneShield products may apply in other jurisdictions, and any sale, lease, or use will be conducted only in compliance with the applicable laws.

 

15 Oct 25. CHAOS Industries and Forterra today announced a strategic partnership, successfully integrating their complementary technologies to address one of the Department of Defense’s most urgent operational challenges: countering rapidly evolving unmanned aerial system (UAS) threats. The collaboration brings together CHAOS Industries’ advanced sensing, detection, and protection capabilities with Forterra’s autonomous vehicle architecture. The integrated systems have been tested in multiple field environments and demonstrated seamless operation, proving their ability to detect, track, and respond to aerial threats with unprecedented flexibility. As part of recent trials, VANQUISH™, CHAOS’s distributed radar system, was embedded onto a Squad Multipurpose Equipment Transport (SMET) powered by Forterra’s AutoDrive. This configuration improves survivability and maneuverability. The joint system has been validated in field exercises ahead of the Army’s xTech Program scheduled for late October in Texas.

“Defense leaders have made clear they want deployable solutions, not experiments. Together with Forterra, we are bringing the best technologies in their respective categories together, and proving this works, now, in the field,” said John Tenet and Bo Marr, co-CEOs of CHAOS Industries. “By combining our air defense systems with Forterra’s autonomous mobility package, we’ve delivered a capability that is greater than the sum of its parts and immediately relevant to the warfighter.”

Forterra’s drop‑in autonomy package allows the pairing with CHAOS’s systems to be mounted flexibly across multiple vehicle classes—from small ground robots to squad‑level mobility platforms—without dependency on proprietary vehicle configurations. This enhances mobility for dispersed units and creates new options for applications ranging from frontline Army platoons to homeland defense missions.

“Forterra was founded on the belief that autonomy should be modular, adaptable, and quickly fieldable across mission sets,” said Josh Araujo, CEO of Forterra. “This partnership with CHAOS Industries demonstrates that principle in action. Together we offer the Department of Defense and allied customers a proven, integrated solution for counter‑UAS operations that can also scale to convoy protection, border security, and homeland defense.”

The partnership comes as the Pentagon evaluates industry offerings for ground‑based counter‑UAS systems under initiatives. The CHAOS‑Forterra integrated solution is positioned to meet the Department’s emphasis on solutions that are field‑proven, modular, and rapidly available.

CHAOS Industries and Forterra will jointly showcase the integrated system during upcoming demonstrations and at the Association of the U.S. Army (AUSA) Annual Meeting this fall.

About CHAOS Industries

CHAOS Industries is redefining modern defense with omniscient systems purpose-built for today’s realities. Designed and built by top U.S. military veterans and Silicon Valley innovators, CHAOS Industries’ products are powered by Coherent Distributed Networks (CDN™), empowering warfighters, commercial air operators, and border protection teams to act faster, adapt rapidly, and stay ahead of evolving threats. In a world where technological threats move at unprecedented speed, CHAOS Industries delivers advanced sensing and detection solutions that give the ultimate advantage: time.

CHAOS Industries was founded in 2022 and has raised a total of $490 m in funding from leading investors, including 8VC, Accel, and NEA. The company is headquartered in Los Angeles, with offices in Washington, D.C., San Francisco, Seattle, and London. For more information, please visit www.c1haosinc.com.

About Forterra

Forterra delivers autonomous mission systems for defense. From self-driving land systems, to coordinated swarms of robotic systems; we build scalable, robust, mission critical hardware and software platforms that empower our customers to deploy autonomy as a force multiplier, extending reach, survivability, and effectiveness across the battlespace and industrial applications. Forterra is headquartered in Clarksburg, Md., with offices in Washington, D.C., Winter Park, Fl., Ketchum, Id. and Palo Alto, Ca. To learn more, go to forterra.com. (Source: BUSINESS WIRE)

 

16 Oct 25. Jordan confirms Terrahawk acquisition. The Royal Jordanian Air Force (RJAF) is operating the Terrahawk Paladin anti-aircraft gun system made by British company MSI Defence Systems (MSI-DS), it was revealed during the Jordanian Armed Forces’ (JAF’s) Exercise ‘Sky Shield’. The Jordanian media reported that King Abdullah II attended an air-defence exercise on 29 September, but there was little coverage until the JAF released a 16-minute video on 14 October. In his briefing to the king, Brigadier General Suleiman al-Humaidah, thedirector of the JAF’s Royal Field Air Defence, said the Terrahawk had been acquired as part of a wider modernisation of the kingdom’s air defences. The coverage appeared to show two Terrahawks were deployed for the exercise, held near the Sheikh Mohammed bin Zayed al-Nahyan Training City east of Al-Zarqa. The commentator said the Terrahawk was operated by RJAF air-defence personnel rather than one of the Royal Field Air Defence’s units, which are part of the JAF’s ground forces, and credited it with shooting down a class one unmanned aerial vehicle (UAV). The Terrahawks were also used against simulated ground targets alongside the Royal Field Air Defence’s ZSU-23-4 Shilka and M163 Vulcan self-propelled anti-aircraft guns. Unveiled in 2022, the baseline Terrahawk is essentially MSI-DS’s Seahawk Lightweight remotely operated naval weapon station with a 30 mm Mk 44 Bushmaster II cannon mounted on a NATO-standard deployable pallet with the company’s Surveillance Acquisition Targeting Optical System (SATOS) and mast-mounted FIELDctrl radars supplied by Polish company Advanced Protection Systems (APS). According to MSI-DS, it is effective against low-cost UAVs at ranges up to 2 km when using programmable air-bursting ammunition. (Source: Janes)

 

16 Oct 25. Quantum Systems Tests Drone to Intercept UAVs at Distance of 25 km. The German company Quantum Systems is testing a new interceptor drone, the Jäger (in English – Hunter), designed to destroy enemy drones at a distance of up to 25 km. The device uses a combined electric and missile drive, according to the Hartpunkt defence and security analytical magazine.

First, the drone takes off vertically on four electric motors, then a rocket engine quickly takes it to an altitude of several thousand meters.

According to the company, the Jäger reaches 4,000 meters in just 30 seconds. After that, it switches to a normal electric flight.

Jäger

  • maximum flight altitude – 5,000 meters,
  • speed – 365-405 km/h,
  • range – up to 25 km,
  • weight – 2.5 kg,
  • payload – 800 g (of the total weight).

Quantum Systems positions Jäger as a low-cost countermeasure to NATO Class II drones. The estimated cost of one device is several thousand euros. The interception is based on the hit-to-kill principle: the drone destroys the target with a direct kinetic strike without explosives. This makes the system simple, fast, and cheaper to manufacture. Jäger has a secure communication channel and can operate even without satellite navigation, which allows it to work in jamming conditions. The control is fully automated, therefore the operator only confirms the target. Flight tests are being conducted at the Grafenwöhr Training Area in Germany. The company has already completed the development phase and is preparing the device for mass production. Quantum Systems notes that serial deliveries may begin at the end of the year after the technical requirements are agreed upon with customers. (Source: UAS VISION/MILITARNYI)

 

13 Oct 25. Israel Aerospace Industries (IAI), a global leader in defense and aerospace, announced today the unveiling of the new generation C-UAS Swarm solution at AUSA 2025. This cutting-edge defense system is designed to detect, identify, disrupt and intercept swarms of UASs and drones. It was developed in response to the needs of the Israeli defense ministry, and its operational readiness was demonstrated to senior officials. This system reflects the operational insights and evolving needs shaped by the current war. In recent months, the system was successfully demonstrated multiple times to senior Israeli defense officials, showcasing its advanced capabilities and operational readiness.

Boaz Levy, President and CEO of IAI: “As Israel’s radar systems house, IAI, plays a critical role in the nation’s defense, especially since the onset of the current war, where they successfully detected, classified and guided the interception of threats targeting Israel. The new generation counter swarms solution is another testament to IAI’s commitment to providing innovative, up-to-date and operationally relevant solutions to the evolving challenges faced by Israel’s defense forces. As part of our comprehensive suite of detection and interception systems, the new generation development represents a significant leap forward, enhancing Israel’s ability to defend against a broad spectrum of aerial threats with precision, speed and adaptability. This is the kind of high-impact, high-quality capability that reflects IAI’s legacy of excellence and its role at the forefront of defense technology.”

At the core of the new generation C-UAS solution is an advanced autonomous C4I mission system that integrates unique algorithms, artificial intelligence and machine learning to deliver real-time threat detection, analysis and response management. The system intelligently recommends optimal interception methods to operators, enabling rapid response to threats and performing neutralization and interception actions autonomously, while keeping human involvement in the decision-making process. Enabling a seamless sensor-to-target loop targeting and attack using a variety of interceptor configurations, the system is deployed across vast areas and equipped with electro-optical, radar and other sensors. These sensors provide the operator with a detailed, real-time aerial picture, allowing for coordinated launches of multiple interceptors per target until a successful interception is confirmed. The system can operate numerous detection assets in different layers, while deploying jamming and electronic warfare measures for soft-kill interceptions, or using various interceptors to provide a comprehensive response for low-altitude threats.

To date, IAI has provided hundreds of UAV detection and interception systems to customers worldwide, with cumulative sales totaling hundreds of ms of dollars and systems in operational use across the United States, Europe and Asia, providing critical protection for ground facilities, mobile platforms and strategic infrastructure. The new advanced C-UAS swarm solution represents the next generation of these detection systems, adding automation capabilities within an open architecture to enable seamless integration with a variety of sensors and interception tools, as well as rapid adaptation to diverse mission requirements.

 

15 Oct 25. Anduril introduces unified AI military system EagleEye. EagleEye integrates mission coordination, sensory perception, and unmanned asset management into a compact system.. Anduril has introduced EagleEye, a modular, AI-powered family of systems designed to integrate various aspects of battlefield operations into a unified platform. Building upon the US Army’s Soldier Borne Mission Command (SBMC) programme, EagleEye streamlines mission planning and enhances the perception and control of unmanned assets. By integrating these functions into a single, lightweight system, EagleEye aims to reduce both the physical load carried by soldiers and the cognitive demands placed upon them. The system’s foundation rests on the SBMC and SBMC-A programmes currently being delivered by Anduril to the US Army. These programmes offer a mixed-reality environment that furnishes soldiers with tools for situational awareness, mission planning, and training, ultimately enhancing decision-making processes and agility on the ground. EagleEye advances this platform by integrating mission command software with a heads-up display (HUD) and helmet-based equipment, ensuring equilibrium, safety, and efficiency in combat situations. A key feature of EagleEye is its high-resolution 3D sand table, which facilitates collaborative mission rehearsal and coordination. Operators can overlay live video streams onto terrain models to establish a collective operational understanding both prior to and during missions. The HUD component of EagleEye augments the user’s vision by superimposing digital data onto their natural view, providing essential contextual information. The system includes distinct HUDs optimised for both daylight and night-time operations. Furthermore, EagleEye utilises Anduril’s Lattice network to merge real-time data from distributed sensors across the battlefield, enabling threat detection even when visibility is compromised. In terms of survivability, EagleEye offers advanced ballistic protection and blast wave mitigation within an ultra-lightweight helmet shell designed for extended use. Additional sensors provide peripheral awareness while spatial audio and radio frequency detection systems warn operators of concealed or imminent dangers. EagleEye also enhances edge connectivity by consolidating networking and command tools into a wearable system. This enables soldiers to operate drones, request artillery support, and manage robotic allies on the move. The Lattice mesh network ensures reliable command and control capabilities in challenging environments characterised by limited or compromised communication infrastructure.= Anduril said that it has partnered with Meta, Qualcomm Technologies, OSI, and Gentex to bring proven commercial technologies into the defence sector. This collaboration is aimed at lowering costs, speeding up development timescales, and facilitating continuous improvements.

Anduril founder Palmer Luckey said: “We don’t want to give service members a new tool—we’re giving them a new teammate. The idea of an AI partner embedded in your display has been imagined for decades. EagleEye is the first time it’s real.”

In September 2025, Anduril secured a $159m contract from the US Army to embark on a prototyping phase aimed at developing an advanced helmet-mounted night vision and mixed reality system. (Source: army-technology.com)

 

15 Oct 25. Cuashub.com said today that Netherlands to provide €200m in C-UAS aid to Ukraine. The Netherlands will provide €200m in modern counter-drone systems to Ukraine, marking one of its largest single investments in electronic warfare and air defense systems since the start of the war. The package aims to strengthen Ukraine’s ability to detect, track and neutralize the Russian attack drones that continue to strike civilian and energy infrastructure across the country.

Dutch Defense Minister Ruben Brekelmans announced the initiative during a visit to Kyiv alongside the Chief of Defense, General Onno Eichelsheim: “Together with Ukraine, we are defending freedom and security against Russian aggression,” Brekelmans said. “By supporting Ukraine, we are keeping Putin at a distance and preventing Russia from becoming strong enough to destroy more of Ukraine – or threaten the rest of Europe, including the Netherlands.”

The counter-drone systems, which include sensor, jammer and interceptor technologies, will be delivered directly to the Ukrainian Armed Forces. They are designed to provide rapid detection and response against Russian Shahed drones and other unmanned aerial threats that have become central to Moscow’s long-range campaign. The announcement coincided with the signing of a new defense cooperation agreement between the Netherlands and Ukraine, allowing both nations’ industries to co-produce drones and related defense equipment. The initiative is part of Ukraine’s “Build With Ukraine” program, launched in August to expand European-based manufacturing of Ukrainian-designed military technologies. Dutch and Ukrainian firms will now collaborate on drone development and production in both countries, strengthening local supply chains and boosting European defense resilience. During the visit, Brekelmans also inaugurated the Dutch Defense Cluster in Kyiv, a coordination platform to support Dutch defense companies operating in Ukraine and facilitate industrial cooperation. The delegation later traveled to Odesa, where discussions with Ukrainian naval leaders focused on enhancing maritime and air defense capabilities. At an air defense command post, Brekelmans praised Ukraine’s ability to integrate radars, jammers and interceptor systems into a unified network to repel Russian drone attacks:

“We in the Netherlands can learn a lot from this,” he said.

The investment demonstrates the long-held European position that drone warfare, and the systems needed to counter it, will define future defense cooperation with Ukraine.Netherlands to provide €200m in C-UAS aid to (Source: https://cuashub.com/

 

15 Oct 25. Cuashub.com said today that DZYNE Technologies unveils vehicle-mounted Dronebuster kits. DZYNE Technologies has introduced new Dronebuster Vehicle Kits at the Association of the United States Army (AUSA) Annual Meeting in Washington, D.C., expanding its counter-drone portfolio to include vehicle-integrated systems for mobile defense operations. The new systems are designed to provide rapidly deployable protection against UAS for convoys, forward bases and other mobile or temporary installations. DZYNE says the kits build on its combat-proven Dronebuster line, which has been fielded in more than 50 countries with over 2,500 units delivered globally. According to the company, the vehicle kits combine detection, tracking, identification and mitigation capabilities in a lightweight, cost-effective package. Optional networking features allow multiple systems to be linked, creating a distributed defense network across large operational areas.

Two main variants were unveiled at AUSA:

  • The Autonomous Dronebuster Vehicle Kit, which integrates the Dronebuster 4 Fixed Site jammer on a precision gimbal with DZYNE’s Detection, Tracking and Identification (DTI) system. Supported by AI-driven target classification and a continuously updated drone library, the system offers automated or operator-assisted mitigation through a simple digital interface.
  • The Manual Dronebuster Vehicle Kit, which features the same DTI capability but focuses on operator mobility and responsiveness, including a handheld jammer for immediate manual engagement in dynamic environments.

Both configurations can detect and classify up to 30 drones simultaneously at ranges beyond 7 kilometers, distinguishing between aircraft and their controllers using passive, wide-spectrum sensing across 400 MHz to 6 GHz. The company says the new vehicle kits reflect growing military demand for scalable, mobile counter-UAS systems capable of keeping pace with the expanding threat from small, low-cost drones used in reconnaissance and attack roles.

DZYNE CEO Matthew McCue described the launch as part of a broader expansion effort, noting the company has doubled its workforce in Portland this year to meet rising production and R&D demands.

The Dronebuster Vehicle Kits are being positioned as ready-to-field, off-the-shelf solutions for U.S. and allied forces seeking adaptable counter-drone coverage in both static and maneuver operations. (Source: https://cuashub.com/

 

22 Sep 25. Honeywell Successfully Demonstrates Counter Swarm Drone Technology to Military Operators. Honeywell’s mobile system protected critical infrastructure, high-value assets from swarm drones. Honeywell (NASDAQ: HON) today announced it has successfully showcased its Stationary and Mobile UAS Reveal and Intercept system and its ability to counter swarm drones in two recent demonstrations to local military operators in the United States. The system was utilized in a format in which it can be operated directly from a ground vehicle. Key elements were also demonstrated from an aerostat at more than 1,000 feet above the ground.

“Swarm drones pose increasing risks to high-value assets – as a result, the ability to detect, track and counter them is a crucial part of modern military operations,” said Matt Milas, president, Defense and Space, Honeywell Aerospace Technologies. “Our recent successful demonstrations not only provided strong examples of how Honeywell’s Stationary and Mobile UAS Reveal and Intercept system can provide critical capabilities on the battlefield, but they also proved the technology is highly reliable, scalable and ready to integrate into existing defensive systems.”

Using Model Based System Engineering (MBSE), the Stationary and Mobile UAS Reveal and Intercept system provides a turnkey solution that integrates customer-selected detectors and effectors and meets Modular Open Systems Approach (MOSA) compliance standards for customer modeling, visibility and sustainment. It is designed to be easily operated by security forces or tower personnel. Honeywell also demonstrated the ability for rapid integration for new detectors and effectors to support operator requirements. With the Honeywell system, military operators can save time and money by optimizing prior investments into key components and integrating them into the overall solution. The system’s reliability is also key – Honeywell provides a single point of contact for updating all components as threat systems evolve. The system has been developed by integrating components from defense manufacturers such as Blue Halo, Leonardo DRS, Pierce Aerospace, Silent Sentinel, Walaris, Rocky Research and Versatol. These components include radio frequency detection with sensor technology that uses light to detect, track and identify objects as well as offensive drones to counter swarms. Additional demonstrations are available to both local and international operators seeking a commercial Counter-UAS offering.

Honeywell Unveils New System to Counter Swarm Drones, Protect High-Value Assets

  • U.S. Air Force selects multi-layered defense system for upcoming demonstration

 

16 Sep 24. Honeywell (NASDAQ: HON) launched a new Stationary And Mobile UAS Reveal And Intercept system to counter swarm drones. By combining beyond-visual-line-of-sight communication with command-and-control capabilities, the multi-layered system is able to detect, track and then counter drone swarms. It can be equipped on vehicles or fixed-based platforms to protect valuable assets. The U.S. Air Force Global Strike team via STRIKEWERX/AFWERX recently selected Honeywell’s Stationary And Mobile UAS Reveal And Intercept system to demonstrate the protection of high-value assets from swarm drones while on the move. The demonstration will take place in January 2025.

“Modern warfare is rapidly changing and the threat swarm drones pose to high-value assets can have a devastating effect on military operations,” said Matt Milas, president, Defense and Space, Honeywell Aerospace Technologies. “Our Stationary And Mobile UAS Reveal And Intercept system is a highly reliable, scalable and fully integrated defensive system that has been developed after extensive research and testing with the needs of military operators in mind. This system’s multi-layered defensive capabilities set it apart in the industry and enable it to not only track and detect, but also defeat multiple threats. We’re excited to demonstrate this technology for the Air Force and are confident the system can provide critical new capabilities on the battlefield.”

The system has been developed by integrating components from defense manufacturers such as Blue Halo, Leonardo DRS, Pierce Aerospace, Silent Sentinel, Walaris, Rocky Research and Versatol. These components include radio frequency detection with sensor technology that uses light to detect, track and identify objects as well as offensive drones to counter swarms.

 

16 Oct 25. DroneShield Ltd (ASX:DRO) (DroneShield or the Company), a global leader in counter-drone technologies, today announced the release of its 2025 Total Addressable Market (TAM) Report for Counter-Uncrewed Systems, which provides an analysis of the rapidly expanding global counter-uncrewed systems (CUxS) sector. The report estimates the total addressable market for CUxS technologies at US$63bn. The valuation highlights the significant and growing size of the CUxS market, shows the still ‑nascent customer saturation point, and a pivotal market shift: counter-drone technology is no longer confined to the battlefield.  As drones move from recreational use to criminal activity and sophisticated military operations, the demand for effective countermeasures has become a mainstream global security priority. This transition marks the emergence of CUxS as an essential layer of protection across military, government, and civilian infrastructure.

Key findings:

  • Military, Government, and Law Enforcement: US$34.7bn (56 percent of TAM)
  • Civilian: US$28.2bn (44 percent of TAM)

 

 

13 Oct. 25. Raytheon, an RTX (NYSE: RTX) business, has launched the initial production of its new SharpSight multi-domain surveillance radar. This next-generation system will provide high-altitude, real-time, high-resolution imaging with wide-area search and tracking for land and maritime surveillance, operating day or night in any weather condition. SharpSight fuses the capabilities of two of Raytheon’s proven radar families – the Highly Integrated Synthetic Aperture Radar (HISAR) and the SeaVue Multi-Role Radar (SVMR) – and can be rapidly integrated on a variety of manned and unmanned systems. Its open architecture enables inexpensive, rapid upgrades, ensuring operators remain ahead of emerging threats.

“This radar represents the next step in Raytheon’s long legacy of intelligence, surveillance and reconnaissance innovation,” said Daniel Theisen, president of Advanced Products and Solutions at Raytheon. “By merging the proven capabilities of HISAR and SeaVue, we’re delivering a flexible, exportable and affordable radar system designed to outperform on the most demanding multi-domain surveillance missions.”

SharpSight is designed for high-altitude precision and persistence, enabling critical missions such as anti-surface warfare, border protection, coastal monitoring, search and rescue, long-range surveillance, and more. It conforms with the latest U.S. Government export policy guidance enabling these advanced intelligence, surveillance and reconnaissance capabilities to be offered to global partners and allies. (Source: PR Newswire)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation. For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

October 9, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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10 Oct 25. L3Harris Supports American Rheinmetall’s Next-Gen Combat Vehicle. When it comes to innovation in global defense, L3Harris Technologies has a long-standing legacy of supporting the U.S. military through critical capabilities in secure communications and integrated mission systems. From interoperable, software-defined radios in combat zones to Intelligence, Surveillance, and Reconnaissance (ISR) platforms and electronic warfare solutions, its technologies have not only kept pace with joint force and multi-domain operations, but actively shaped them—evolving to meet new mission demands and threat environments.

Its reputation for delivering dependable, battle-tested technology made L3Harris a natural fit to team up with American Rheinmetall in advancing next-generation combat vehicle innovation. Central to L3Harris’ contribution is its third-generation sighting system, the WESCAM MX-GCS B—a multi-sensor, multi-spectral, electro-optical and infrared (EO/IR) system built to support surveillance, targeting and reconnaissance missions. Designed in a compact, low-profile form factor, the MX-GCS B enhances identification range while minimizing the vehicle’s visual signature. The stabilized unit supports both the gunner and commander stations and is engineered as a single-part configuration to streamline sustainment and improve field readiness.

During early collaboration phases, L3Harris provided a test unit of the MX-GCS MK2 to help familiarize American Rheinmetall with its integration and performance characteristics. This model was used to inform trade studies and guide platform design, ensuring optimal fit and function across the full system architecture. The fielded version integrates dual-band infrared sensors and active payloads, giving crews enhanced situational awareness and the ability to identify, mark and engage targets in a range of environments. Combined with spectral diversity and rugged stabilization, these tools also strengthen threat detection and survivability in complex battlefield conditions.

“With one sight system for multiple crew stations, we reduce complexity while delivering superior battlefield awareness,” said Matt Heath, Principal, Business Development at L3Harris and a former U.S. Marine Corps tank operator. “When it comes to stabilization, operators can maintain target lock and image clarity even under harsh vibration and shock.”

In addition to the sighting system, L3Harris processors power mission systems and support autonomous functions. These processors are built with scalability in mind. They enable persistent modernization across vehicle platforms and support AI-driven sensor fusion that reduces cognitive load and improves responsiveness. L3Harris’ communications systems also provide secure, real-time data sharing that offers collaborative targeting and coordination—a capability that not only protects mission-critical information but gives warfighters a digital edge in fast-changing operational environments.

“Our systems are built to meet current needs and to continue evolving as battlefield demands shift,” said Anthony Sarto, Engineering Fellow for Targeting and Sensor Systems at L3Harris Technologies. “Adaptability is central to what we deliver.”

All L3Harris technologies within American Rheinmetall’s next gen combat vehicle concept is built using a Modular Open Systems Approach (MOSA). Aligned with the Ground Combat Systems Common Infrastructure Architecture (GCIA), a U.S. Army framework that defines how mission systems should be integrated into future ground combat vehicles, L3Harris’ open architecture supports upgrades, capability insertion, and third-party integration across subsystems and sensors. This modularity helps avoid technology lock-in and accelerates adaptation to future mission needs, whether integrating a novel sensor or adjusting to multi-domain threats.

“Open architecture gives us the structure to integrate new capabilities as they emerge,” said Sarto. “That means faster fielding of next-gen tech and a combat system that remains responsive to battlefield changes.”

From the outset, L3Harris has been working closely with American Rheinmetall to conduct trade studies and systems validation, informing platform decisions and ensuring seamless technology integration. By evaluating space, weight, power and cost (SWaP-C) considerations early on, L3Harris guarantees smooth integration of its systems into the vehicle architecture. This commitment to early collaboration also includes lifecycle modeling and sustainment planning, which are part of the process from the beginning to maintain readiness and performance over time. The company supports this effort through 14 authorized maintenance and logistics centers worldwide. These facilities provide diagnostics, training and rapid-response support operations in strategically located areas, so service is close to where it’s needed most.

“We think about sustainment from day one,” Heath said. “We deliver products built for the mission, with the support infrastructure to ensure they perform wherever they’re deployed.”

A unique feature of L3Harris is its large veteran talent base, which brings firsthand knowledge of battlefield conditions to inform everything from product design to sustainment planning. Their experience helps translate operational requirements into practical capabilities that keep warfighters protected, connected and mission ready. “We build with purpose,” Heath added. “Every decision reflects our focus on the mission, because we know what’s at stake. It’s the people behind the systems who ensure reliability, because they’ve experienced the realities of battlefield demands and they’re committed to delivering what today’s warfighters need.”

As the character of modern warfare shifts, so must the technologies that support the mission. L3Harris and American Rheinmetall understand this imperative. With a shared focus on digital engineering, battlefield survivability and long-term adaptability, they’re advancing a next-generation combat vehicle designed to keep the warfighter ready now and into the future. “As threats change, so does the battlefield,” said Heath. “We’re making sure the next generation of combat vehicles gives our warfighters every advantage, because their edge is our mission.” (Source: ASD Network)

 

10 Oct 25. Cuashub.com said today that French Navy tests counter-drone defenses in Wildfire 25.2. The French Navy has completed its latest counter-drone exercise, Wildfire 25.2, designed to test the ability of naval crews to respond to complex multi-domain threats. The drills, conducted off southern France, featured coordinated attacks by aerial, surface and underwater drones, forcing participating units to react under near-combat conditions. Nearly 80 targets were deployed during the exercise by the French Armaments Directorate General (DGA) and private contractor Sea Owl, including Banshee and Snipe drones. Six French combat vessels, supported by naval aviation units and the French Air and Space Force, faced coordinated scenarios simulating saturation strikes. Crews employed a mix of countermeasures ranging from artillery fire and jamming systems to Martlet missiles, GBU-12 laser-guided bombs and Mistral surface-to-air missiles. A Royal Navy AW159 Wildcat multi-role helicopter joined the drills, operating from Hyères naval air base with a Martlet launcher fitted. The aircraft was observed conducting sorties over the DGA test range at Ile du Levant, a location frequently used for missile evaluations. Local photography and social media posts from the DGA confirmed the Wildcat’s participation, with indications that live Martlet firings were carried out against drone targets. Wildfire 25.2 also integrated emerging technologies under the French Navy’s Perseus approach, which accelerates the fielding of innovative solutions such as advanced radars, jammers, drone remote-control detection systems and neutralization tools. The exercise provided an opportunity to evaluate these systems under realistic conditions while strengthening interoperability with NATO observers present.

By stressing crews with unexpected and layered drone attacks, French officials said the exercise underscored the importance of tactical agility and coordination between ships, aircraft and allied partners. Lessons learned will feed back into the Navy’s training programs and the Naval Action Force’s Center of Expertise, helping refine Europe’s growing counter-drone capabilities.

French Navy tests counter-drone defenses in Wildfire 25.2 – cuashub.com (Source: https://cuashub.com/

 

10 Oct 25. Epirus, GDLS Partner on Leonidas Autonomous Robotic for Mobile Counter-UAS. Next chapter of neo-prime and prime partnership features Epirus’ Leonidas high-power microwave platform integrated with GDLS’s TRX robotic ground vehicle. Epirus and General Dynamics Land Systems (GDLS) today announced the introduction of Leonidas Autonomous Robotic (Leonidas AR), a mobile counter-UAS capability featuring Epirus’ Leonidas high-power microwave (HPM) platform integrated with GDLS’s Tracked Robot 10-ton (TRX) unmanned ground vehicle.

Leonidas AR, powered by GDLS TRX, is a robotic ground vehicle equipped with Epirus’ HPM technology for mobile counter-UAS and short-range air defense. The integrated system is highly maneuverable for counter-UAS on the move and a low-cost, low-collateral electronic defeat mechanism ideal for the evolving drone threat environment.

“Epirus’ partnership with General Dynamics Land Systems is an industry-leading collaboration that continues to deliver real results. Together, we are bringing world-first capabilities to market that directly answer the call of the Army Transformation Initiative,” said Andy Lowery, Epirus CEO. “The marriage of neo-primes and primes is how the U.S. defense industrial base can best ensure victory as the battlefield continues to rapidly evolve.”

Leonidas is a modular, scalable, proven HPM solution that uses weaponized electromagnetic interference (WEMI) to disable electronic targets. The platform delivers a one-to-many engagement for swarm defense by which one Leonidas system can disable entire swarms of drones.

Leonidas is software defined, which empowers operators to define safe zones and notch out specific frequencies for low-collateral effects, as well as the ability to alter waveforms, modulate energy outputs and introduce new tactics of engagement for greater effectivity on target. Software also enables rapid innovation and feature updates without removing the system from the battlefield.

General Dynamics Land Systems’ TRX features AI-enhanced design, lightweight material, a hybrid-electric propulsion system and dynamic suspension for all-terrain mobility across combat environments. The vehicle features integrated radar for 360-degree sensing, on-board computing for maximum capability, a state-of-the-art battery system that allows for 300-plus miles of range and a maximum speed of 45 miles per hour. It can be autonomously or remotely operated in high-risk environments to reduce manning and protect air defenders. General Dynamics Land Systems is also developing a wheeled variant to support customer needs.

“By combining General Dynamics Land Systems’ decades of leadership in development and deployment of ground combat vehicles with Epirus’ premier non-kinetic counter-UAS effector, Leonidas AR achieves the level of next-generation technology that today’s battlefields demand. This new capability was born out of a partnership that leverages the best of American innovation to help our warfighters stay a step ahead,” added Jim Pasquarette, Vice President, U.S. Strategy & Business Development, General Dynamics Land Systems.

Leonidas AR is the second mobile counter-UAS system co-developed by Epirus and General Dynamics Land Systems after the companies entered into a teaming agreement in 2021. In 2022, the companies introduced Leonidas Stryker, which features the Leonidas HPM platform integrated with General Dynamics Land Systems’ Stryker, the U.S. Army’s largest and most reliable combat vehicle fleet.

The partnership between General Dynamics Land Systems and Epirus underscores how victory in The Sixth Domain will come from blending the scale and sustainment of traditional primes with the agility and disruptive innovation of neo-primes, creating hybrid ecosystems that can rapidly integrate, produce at scale and deliver mission-ready solutions across the modern battlespace.

A full-scale Leonidas AR prototype system will be on display at Booth 7609 in Hall D/E during the Association of the U.S. Army’s Annual Meeting and Exposition in Washington, D.C. (Source: ASD Network)

 

10 Oct 25. Sweden to boost air defence with $524m investment. The allocation signifies the first use of the funds earmarked for ‘opportune purchases’ as outlined in the Spring Amending Budget. The Swedish Government has allocated over Skr5bn ($524m) to enhance the Swedish Armed Forces’ capacity to counteract drone threats and to improve the Gripen fleet. More than Skr1.5bn of this amount has been committed towards the enhancement of the JAS 39 Gripen combat air system. The investment in JAS 39 Gripen will cover new spare parts, mission equipment, and base infrastructure. This is expected to broaden the Swedish Air Force’s operational scope across various air bases and ensuring greater system readiness. Additionally, the upgrade will improve operations from makeshift road bases, thus bolstering the Swedish Air Force’s adaptability. This will enable more frequent missions in various conditions, from peacetime to conflict. The anti-drone initiative, receiving more than Skr3.5bn in funding, is set to advance the capabilities of Swedish Armed Forces units in addressing drone-related threats. By accelerating acquisition timelines by approximately eight years, the Swedish Armed Forces can now expedite the deployment of weapons and sensors designed to neutralise hostile drones. The investment will facilitate the purchase of weapons, sensors, and a variety of counter-drone equipment including warning systems, jammers, and interceptors to safeguard military installations. This proactive approach to defence spending enables the Swedish Armed Forces to reduce lead times dramatically, with initial plans for final delivery by 2036 now advanced to 2028. The Swedish Ministry of Defence highlighted that this marks the first allocation of funds from the Spring Amending Budget earmarked for ‘opportune purchases’.

Sweden Defence Minister Pål Jonson said: “The Government is now taking steps to rapidly operationalise anti-drone capabilities and increase the availability of our combat aircraft. There is a significant need for new anti-drone capabilities, and we are shortening lead times by eight years. This will result in increased safety and security for the Swedish Armed Forces and for Sweden.”

In September 2025, the Swedish Government disclosed intentions to significantly raise its defence budget in the 2026 fiscal plan.

An additional Skr26.6bn has been designated for defence spending, marking an 18% increase from the previous year.

Recently, Sweden also concluded an agreement with Brazilian aerospace company Embraer for the purchase of four C-390 Millennium multi-mission aircraft. (Source: airforce-technology.com)

 

09 Oct 25. Kopin Corporation (NASDAQ: KOPN) a leading provider of application-specific optical systems and high-performance microdisplays for defense, training, enterprise, industrial, consumer and medical products, today announced that the company will be in Washington, DC, October 13-15, during AUSA 2025. During the event, Kopin will present its latest advancements in soldier-worn augmented reality systems, including:

  • HUDS for daytime and nighttime see-thru AR defense applications
  • First Person Viewer (FPV) HUD demo for drone control with previously unavailable situational awareness
  • High brightness, high contrast, low power MicroLED technology
  • Training and simulation head-tracked binoculars
  • NeuralDisplay™ (bi-directional AI enabled microdisplay) prototype
  • Additional defense and training products designed to support warfighters in the field

Kopin will host demonstrations in its private suite and will also be featured in partner booths across the AUSA exhibit floor.

Kopin invites attendees to engage with its team of experts and explore how its cutting-edge technologies are shaping the future of Army readiness. To schedule a meeting, please contact: 

About Kopin

Kopin Corporation is a leading developer and provider of innovative display, and application-specific optical solutions sold as critical components and subassemblies for defense, enterprise, professional and consumer products. Kopin’s portfolio includes microdisplays, display modules, eyepiece assemblies, image projection modules, and vehicle mounted and head-mounted display systems that incorporate ultra-small high-resolution Active Matrix Liquid Crystal displays (AMLCD), Ferroelectric Liquid Crystal on Silicon (FLCoS) displays, MicroLED displays (µLED) and Organic Light Emitting Diode (OLED) displays, a variety of optics, and low-power ASICs. For more information, please visit Kopin’s website at www.kopin.com. Kopin is a trademark of Kopin Corporation. (Source: BUSINESS WIRE)

 

09 Oct 25. L3Harris Announces New Variants of its VAMPIRE System. L3Harris Technologies (NYSE: LHX) has expanded its VAMPIRE™ system, demonstrating the company’s ability to swiftly respond to the U.S. Department of War and allied partners’ urgent need to defeat small unmanned autonomous systems accurately and affordably. The expanded family of systems now includes specialized variants for land, maritime, air and electronic warfare operations.

VAMPIRE is a self-contained platform that delivers advanced reconnaissance and precision strike capabilities against drones and remotely piloted aircraft. The system has supported European combat operations since 2023.

“VAMPIRE users have successfully shot down hundreds of enemy drones,” said Jon Rambeau, President, Integrated Mission Systems, L3Harris. “Compared to traditional missile systems, VAMPIRE greatly reduces the cost per effect to defend against drone attacks.”

Building on the success of the baseline VAMPIRE system, L3Harris has incorporated additional sensor capabilities, precision weapons, electronic jammers and non-kinetic effects for use across several domains. The system uses artificial intelligence and machine learning to more swiftly detect, engage and defeat small and elusive unmanned threats.

VAMPIRE is one of several programs inside the company’s broader Counter-Unmanned Systems initiative. L3Harris has decades of expertise across the enterprise that will help continue to evolve the development of affordable and reliable solutions to combat the rapidly growing threat of unmanned systems across every domain. (Source: BUSINESS WIRE)

 

09 Oct 25. Motorola Solutions Showcases Counter Drone Defense at the AUSA 2025 Annual Meeting & Exposition. Today’s militaries operate in high-intensity, dispersed and contested spaces across land, air, sea, space and cyber domains, where the ability to analyze, visualize and disseminate vast quantities of data is essential to the mission. At AUSA 2025, Motorola Solutions (NYSE: MSI) will showcase data-driven technology solutions that support stronger decision making and combat readiness across each phase of the mission, from security on bases to operations at the tactical edge.

“There were reports of over 350 drone detections at 100 military installations last year alone,” said Joe Balchune, vice president, Federal Markets, Motorola Solutions. “Our counter drone solutions provide the operational intelligence to protect against these daily incursions, helping defense agencies outmaneuver adversaries and sustain mission readiness. We design technologies to detect threats early and unify insights for decisive action, because the right intelligence in the moment is critical to success.”

Motorola Solutions’ ecosystem of defense technologies enable secure, interoperable and resilient data-driven missions across diverse operational domains. At AUSA, the company will demonstrate:

  • Silvus MANET radio technology: Provides connectivity across varied geographies without the need for fixed infrastructure to enable highly secure voice, video, sensor and alerting technologies.
  • Command center technology: Unifies pertinent mission data and video feeds into a single operational view so command decisions are informed with accurate, timely intelligence, notifications and communications about what’s happening on the ground and in the sky.
  • Long-range thermal cameras: Hosts and connects with a wide range of sensors, radar, lidar and other detection technologies to identify anomalies and ground, naval and unmanned aerial systems (UAS) from up to 20 miles away (30 km).
  • SaaS platform for drone detection: Offers robust, cloud-based drone detection and airspace intelligence through a strategic alliance with SkySafe that streams live insights – like the real-time and historical flight path of a drone and its operator’s location – into the command center.
  • Radio frequency (RF) drone detection: Uses networked RF sensors to give a reliable early warning of RF emissions and out-of-the-ordinary electromagnetic pulses from drones and delivers real-time, forensic signal analysis to help identify signals’ sources and geolocations.
  • Drone operations: Offers an AI-enhanced, automated drone-in-a-box solution, in collaboration with Nokia, that provides enhanced situational awareness, streamlined remote operations and faster decision making in mission-critical settings.

These technologies, as well as Motorola Solutions’ extensive portfolio of mission-critical land mobile radio products, can be seen at AUSA 2025 in Washington D.C., Oct. 13-15, in booth #6721 for Motorola Solutions and booth #3645 for Silvus Technologies, a Motorola Solutions company. (Source: BUSINESS WIRE)

 

10 Oct 25. Anduril, GDLS team up on smarter battlefield radar. Anduril Industries is partnering with General Dynamics Land Systems to integrate its Spark Radar onto armored vehicles and other ground platforms, aiming to strengthen maneuver force protection against emerging threats such as drones and precision munitions.

The collaboration brings Anduril’s radar and battle management technologies into GDLS’ vehicle designs from the start, rather than adding them after production. The companies said the integration is a step toward coordinated, multi-vehicle defense systems that connect sensors, radars and command nodes across formations.

On the battlefield, loitering munitions, one-way attack drones and autonomous swarms can strike from multiple directions with little warning, Anduril said in a post announcing the deal.

Spark Radar is designed to detect both air and ground threats “with class-leading range, speed, and fidelity,” while using Anduril’s Lattice command-and-control software to share threat data between vehicles and command posts. Building Spark Radar into vehicle platforms from the outset will allow tighter integration and improved performance, while providing “a clear path to scalable protection across fleets,” Anduril said in the post. The company described the effort as part of a broader push to move survivability away from platform-specific defenses toward “coordinated, multi-vehicle systems of systems.” The companies plan to start with armored vehicles before expanding to command posts, missile launchers, and fires elements.

“General Dynamics Land Systems has long been at the forefront of designing and producing ground combat systems,” said Zachary Mears, Anduril’s senior vice president of strategy and growth.

GDLS is among the world’s largest producers of tracked and wheeled military vehicles, including the Abrams main battle tank and the Stryker combat vehicle. (Source: Defense News)

 

10 Oct 25.  L3Harris, Anduril to unveil SBMC prototype at Project Convergence. L3Harris Technologies, in conjunction with defence information technology (IT) firm Anduril, said the two companies will have a prototype variant of the new Soldier Borne Mission Command (SBMC) concept platform ready in time for the US Army’s Project Convergence capstone exercise in boreal summer 2026. The prototype platform for SBMC will consist of L3Harris’ AN/PSQ-42 Enhanced Night Vision Goggle-Binocular (ENVG-B) integrated with Anduril’s Lattice mesh networking software, according to Jay Abendroth, president of the Integrated Vision Solutions sector for L3Harris.

“We feel very confident that we already have [night-vision goggle] prototypes … working with Lattice, along with other [software] in the ecosystem” to demonstrate the SBMC technology in time for the 2026 Project Convergence capstone exercise, Abendroth told Janes .

With the company’s role in the SBMC competition, L3Harris “have actually started our conversation about how do we find our way [down] the digital path” in terms of interlinking the company’s legacy systems into ongoing combat networking strategies being developed by the Pentagon and service branches, he said during a September interview.

“We are making sure we are just not building analogue [night-vision] goggles,” he said noting company officials want to integrate capabilities that are “getting into situational awareness and how … we use the individual soldier to tie into a larger network”, Abendroth said, regarding integration of the ENVG-B system into the Anduril SBMC offering. (Source: Reuters)

 

13 Oct 25. DZYNE Technologies today unveiled its new Dronebuster® Vehicle Kits at the Association of the United States Army (AUSA) Annual Meeting in Washington, D.C. The expansion of the combat-proven Dronebuster® line brings mobile counter-UAS protection to vehicles, convoys, and infrastructure – extending capabilities already trusted by forces in over 50 countries, with more than 2,500 units fielded worldwide.

“The Dronebuster® Vehicle Kits are the next step in our integrated family of Counter-UAS systems. They provide operators with a lightweight, affordable CUAS system that detects, tracks, identifies, and mitigates UAS threats. The optional networking capability to enable a broad-area, distributed defense solution that keep operators ahead of the threat,” said George Schwartz, EVP, Products at DZYNE.

“This launch represents a milestone in DZYNE’s growth,” added Matthew McCue CEO of DZYNE. “We’ve doubled our workforce in Portland this year to meet demand and expanded our Counter-UAS product line – underscoring our role as a leading provider of layered defense solutions.”

Unlike traditional systems that are heavy, expensive, and slow to deploy, DZYNE’s Vehicle Kits deliver lighter weight, lower cost, readiness in minutes, and flexible autonomous or manual configurations. They can also integrate into mesh networks for scalable, layered defense across wide areas.

Two Configurations Available

DZYNE’s Dronebuster® Vehicle Kits in two powerful configurations designed to meet the evolving needs of mobile defense operations:

The Autonomous Dronebuster® Vehicle Kit delivers round-the-clock automated protection with minimal operator involvement. This system integrates the Dronebuster® 4 Fixed Site, mounted on a precision pan/tilt gimbal, with a fully integrated DTI System and an in-vehicle operator station equipped with TAK-enabled devices. Together, they provide continuous detection, tracking, and identification of UAS threats. Operators can manually select the target, cue the gimbal, and select the mitigation method or automate the kill chain. This is accomplished through a simple point-and-click interface, supported by AI/ML-driven identification technology and a continuously updated drone library. Scalable and adaptable, this configuration is ideal for securing convoys, bases, and critical infrastructure.

The Manual Dronebuster® Vehicle Kit offers maximum flexibility and rapid response capabilities for operators in the field. It features vehicle mounting hardware for seamless DTI System integration, an in-vehicle display providing TAK-enabled situational awareness, and a handheld Dronebuster® 4 for direct, on-the-spot engagement. This configuration ensures real-time drone alerts to operators on the move, delivering clear situational awareness and quick, decisive mitigation of hostile drones. Lightweight and cost-efficient, it is built for rapid deployment and dynamic mission environments.

Technology Backbone

The DTI System detects up to 30 drones simultaneously at 7+ km, differentiates drones and controllers, and assigns unique IDs for friend-or-foe recognition. It delivers spectrum-wide protection (400 MHz–6 GHz) with AI/ML-driven identification. Its passive, zero-emission design provides stealth and precision.

The Dronebuster® 4 Fixed Site, featured in the Autonomous Kit included spoofing and the powerful jamming capability across C2 channels and all GNSS constellations.

 

09 Oct 25. Leonardo DRS, Inc. (NASDAQ: DRS) announced today that it won first place in a Department of Defense counter drone competition by demonstrating an advanced electronic warfare system that can be integrated into the company’s range of proven and fielded counter-UAS (C-UAS) capabilities. This latest capability highlights the company’s leadership role as a developer and provider of proven counter-UAS and air defense systems that enhance force protection across today’s complex and dynamic battlespace.

During a demonstration event hosted by the DoD’s Joint Counter-small Unmanned Aircraft Systems Office (JCO), Leonardo DRS demonstrated the cutting-edge Ring C-UxS system that employs proprietary, advanced radio frequency-based electronic warfare capabilities to detect, identify, and defeat enemy drones and autonomous systems, from air, land, or sea.

Leonardo DRS and its technology partner, Regulus, excelled in the portion of the demonstration that focused on Dismounted Detect-Identify-Track-Defeat of group 1 and 2 UAS.  During the demonstration, Leonardo DRS successfully employed the system to detect, identify and defeat mock enemy drones with its radio frequency-based electronic warfare capabilities. The demonstration gave industry the chance to inform the JCO of new capabilities that are able to operate in a contested electromagnetic environment.

“We are proud to have been recognized with a first-place award in this critical JCO demonstration used to inform requirements for keeping ahead of the ever-growing small UAS threat,” said Aaron Hankins, senior vice president and general manager of the Leonardo DRS Land Systems business unit. “As an agile and experienced company in the space, we are honored to support the JCO as they identify capabilities that can be quickly integrated and deployed to defend our warfighters across the battlespace.”

The Ring system leverages radio frequency (RF) detection, unique Global Navigation Satellite Systems techniques, and RF datalink manipulation to counter both commercial and military uncrewed threats.  The technology has been actively deployed across multiple platforms and operational theaters and has demonstrated exceptional effectiveness against uncrewed threats—from commercial Group 1 systems to military Group 3 platforms.

The Ring demonstration highlights Leonardo DRS’ proven capability to identify and rapidly integrate best-of-breed technologies to enhance its counter-UAS and air defense portfolio to support the critical needs of its customer.  The company’s leadership in this space includes serving as prime contractor and lead systems integrator for the Mobile-Low, Slow Small Unmanned Aircraft Integrated Defeat System (MLIDS) program as well as developer and provider of the integrated Mission Equipment Package for the SGT Stout Maneuver Short Range Air Defense (M-SHORAD) program. The company’s integration capability also extends across all domains to support force protection, computer networking and C5I, as well as naval power and propulsion systems.

 

08 Oct 25. Velodyne Space announced today ground-breaking technology by serial inventor and entrepreneur David Hall to defend against, capture, and neutralize drones. After five years of private research and development, Hall’s new Drone Catching System (DCS) technology effectively combats the increasing threat that drones pose to public safety and in warfare. The release of the technology comes at a pivotal time as federal agencies prioritize advanced drone detection and counter-intelligence technologies.

“I am excited to show the world our new drone catching system that substantially advances our defense capabilities, is scalable and portable, and has been developed with careful consideration for both human health and environmental safety,” said Hall. “This is the future of drone defense technology.”

Hall’s technology responds specifically to the increasing threat posed by single and multiple drone activity. Drones have been seen already crossing over America’s homeland border, threatening airports, stadiums, and government facilities. Current defense systems can neutralize one drone at a time, but cannot counter swarms of incoming drones and often result in dangerous drone debris falling to the ground. Other failed methods including hacking and scrambling air waves pose unacceptable ‘side effect’ impacts such as the potential interruption of adjacent crucial civic technology. Hall has been developing electric/magnetic launch technology for the past five years as an alternative to gas powered rocket launch systems. Net launching for drone defense can be accomplished immediately as a by-product of the now mature, clean launch technology. Hall’s DCS system can neutralize one or more drones at new, unmatched speed using the proprietary electromagnetic launch system, the first commercial application of high-power coil gun technology with 30+ Megawatts peak power. Hall’s system is transported in, and functions from an inconspicuously designed launcher, totally enclosed for transport. The tracking system is equipped with AI-powered target identification capability with a range detection ability of over 1,000 feet. Once a high-speed aerial object such as a drone is identified and tracked, Hall’s innovative launch system fires projectiles equipped with nets semi-automatically at 5 nets per second. The nets are each 20′ in diameter to envelop and neutralize a drone. Once captured, a parachute emerges from the net to safely land the netted bundle.

“Public safety is at the forefront of everything we’re building,” said Hall. “The DCS provides a stealth, portable, kinetic, powerful and efficient way to detect, track and neutralize aerial threats without disruption or danger to the surrounding environment and unnecessary human and civic risk. The technology is a leap forward in how we respond to drones.”

Potential security applications include critical infrastructure such as energy facilities, airports, data centers, international borders, correctional facilities, large-scale public and private gatherings, military forward operations and base perimeter, and others.

The new technology is the latest example of Hall’s ongoing interest and dedication to public safety. In 2019 Hall and the president of Velodyne Lidar Inc, Marta Thoma Hall hosted and founded the first World Safety Summit for Autonomous Vehicles. The next summit in 2020 brought 300 government safety experts and autonomous enthusiasts from around the world together inside Santa Clara’s Levi’s Stadium to discuss public safety while deploying autonomous technology, including the dangers of prematurely labeling untested cruising systems as “autonomous.” Hall is known for inventions that have had major world impact. Hall impacted the audio industry by creating a method of cleaning bass sound for home theaters. In 2014 Hall invented 3D lidar visualization technology for the famous autonomous race, The Darpa Grand Challenge. He sold 3D lidar visualization systems to Apple, Google, Ford Motors, GM, Toyota, Volkswagen, BMW and more. His invention produced an entire, world-wide industry based on robotics and autonomous vehicles which continues today. Velodyne Space is currently taking orders for DCS, with first deliveries slated for 2026. For more information visit www.velodynespace.com. (Source: PR Newswire)

 

08 Oct 25. Germany to allow police to shoot down drones.

  • Summary
  • Rogue drones have disrupted European aviation in recent weeks
  • Some leaders have attributed them to hybrid war waged by Russia
  • Europe struggling over how to deal with the drones

Germany will grant police the power to shoot down rogue drones like those that have disrupted airports across Europe and that some European leaders have attributed to a hybrid war being waged by Russia.

The new law, agreed by the cabinet on Wednesday and awaiting parliamentary approval, explicitly authorises the police to down drones violating Germany’s airspace, including shooting them down in cases of acute threat or serious harm. Other techniques available to down drones include using lasers or jamming signals to sever control and navigation links. (Source: Reuters)

 

08 Oct 25. IEE Exhibiting Lineup of Rugged Displays at AUSA 2025. Support for Vehicle Protection Systems and Counter UAS. Industrial Electronic Engineers (IEE), a leading provider of ruggedized display systems for military applications, will present its latest display technologies at the AUSA Annual Meeting & Exposition in Washington, D.C., October 13th–15th. Rugged multi-function displays (MFDs) are essential for military vehicles to ensure safety and operational effectiveness. They also support detection, tracking, and the neutralization of small, hostile Unmanned Aerial Systems (UAS). Advanced rugged MFDs are central to an ergonomic and efficient crew station to manage growing operator workload for systems with increasing capability. They serve as the interface for fire control systems and other networked battle management tools, enabling rapid target identification and engagement. MFDs also take-in and fuse real-time data from various sensors on and off-board the vehicle to create a holistic Common Operating Picture (COP). The primary interface for visualizing C-UAS sensor data is the MFD, including radar tracks, RF sign detection, and optical/thermal camera feeds. They can display the drone’s flight path, range, and classification (if known) overlaid on a 3D tactical map. MFDs are critical to the Observe, Orient, Decide and Act (OODA) loop that enables soldiers to rapidly neutralize UAS threats on the battlefield.

“Our focus is on a modular framework that simplifies system integration to address rapidly evolving threats,” said Steve Motter, VP of Business Development at IEE. “MFDs are a critical component for enhancing military vehicle maneuverability, survivability, and lethality. These displays go beyond simple visuals, acting as integrated human-machine interfaces that aggregate, process, and present mission-critical data in harsh operational environments.”

13.3-Inch Full HD MFD Video Display

Engineered for use in both airborne and ground-based military vehicles, this 13.3-inch full-HD monitor delivers exceptional video clarity in a compact, widescreen format. Its low-profile bezel allows for seamless side-by-side mounting, making it ideal for panoramic display configurations. As a line-replaceable unit (LRU), it ensures consistent operation across platforms and is available with an optional touchscreen interface for added interactivity.

13.3-inch Key Specifications:

  • Enhanced, High-Bright 13.3” LCD
  • Contrast Ratio: 800:1 (typical)
  • Display Luminance (max): > 1,000 cd/m2
  • Full-HD (1920×1080) LCD bonded with high-strength cover glass including EMI shield, heater and anti-reflective/glare treatments
  • LED backlight supports both high-bright day (daylight readable) and NVIS (night vision imaging system) modes
  • 8 backlit soft key bezel layout
  • 2x Composite NTSC/PAL; 1x 3G-SDI
  • Inputs/Outputs: UART Serial Interface

Also featured at AUSA will be IEE’s 10.1 WUXGA Avionics MFD.

IEE’s 10.1-inch rugged mission display, is designed for demanding airborne environments, including fixed- and rotary-wing aircraft. Featuring a vibrant WUXGA (1920×1200) AMLCD, it provides outstanding brightness and a wide viewing angle. A dual-mode LED backlight ensures visibility in both direct sunlight and NVIS-compliant low-light conditions.

10.1-inch Key Specifications:

  • 10.1-inch WUXGA (1920×1200) color LCD
  • Brightness: 1,100 cd/m2 typical
  • Contrast Ratio: 800:1
  • Viewing Angle: ± 85º H / ± 85º V
  • 31 programmable tactile bezel pushbuttons, with NVIS-filtered, compatible backlighting
  • Control Interfaces:

o 3 rocker switches

o One brightness encoder

o Programmable dual-concentric encoder and 8-way joystick

  • On-screen display (OSD) managed via bezel keys
  • Video Interface: 2x 3G-SDI and 2x DVI-D
  • Serial Interface: RS-422

IEE is exhibiting in booth #708, October 13th-15th. Stop by or make an appointment with Steve Motter by calling 1-818-787-0311, ext. 327, or email: .

About IEE:

For almost 80 years, IEE has been a trusted provider of enhanced displays for military and industrial applications. From rapid prototyping of custom designs to full-scale production runs, IEE’s factory in Sylmar, CA produces innovative displays with advanced features like low-latency video processing, including scaling, overlays and multiple images arranged in selectable configurations, high-bright and NVIS backlighting, and lightweight, ruggedized enclosures. IEE’s in-house, direct control of critical process steps reduces costs, decreases production lead times and improves lifecycle management. IEE display products are ITAR-free and distributed worldwide. IEE is ISO 9001:2015 and AS9100D certified. For more information: visit ieeinc.com

Get our updates: Linked in: Industrial Electronic Engineers

 

13 Oct 25. Octasic and Octasic US today announced new ISR and spectrum-dominant solutions to be unveiled at AUSA 2025. These include Ravix™, a series of multi-mission, multi-function Modular Payload solutions, and other next-gen technologies designed to advance the electromagnetic modernization of defense operations. Among these new offerings is Ravix™, a compact, software-defined Modular Payload solution engineered for spectrum RF operations on UxS platforms deployed across uncrewed Group 1–5 aerial drones and maritime surface and underwater vessels.

Ravix™ introduces a modular approach to integrate high-impact EW, SIGINT, Cyber, and C5ISR applications into SWaP (Size, Weight, and Power)-optimized system deployments. This replaces the cumbersome single purpose box with a more versatile method of rapidly tailoring mission profiles to any CONOPS that require advanced capabilities swapped down range. Built for contested RF environments, Ravix™ is operated by Octasic mission-orchestration software. From a single pane of glass, teams can deploy and swap multiple capabilities without ever changing hardware. Ravix™ solutions can operate autonomously, thereby ensuring mission success even when faced with poor or lost connectivity.

Octasic’s field-proven experience with law enforcement and national security agencies also paves the way for new dedicated Ravix™ ISR systems that support key CONOPs for cellular 2G–5G SA localization and geolocation in support of modern ISR requirements.

“Ravix™ integrated solutions solve many tactical edge issues all at once,” said Sébastien Leblanc, CEO of Octasic. “The era of overly complicated single-use kits is over. A unified, modular approach is the future to scalable spectrum modernization.”

“The arsenal of the future is a drone fleet that benefits from plug-and-play payloads,” said Greg Gerou, President and General Manager of Octasic US. “Whether it’s performing mission planning, enabling our partner’s critical payloads or actively conducting ISR, adapting the Ravix™ software-defined mission profile in real time is a winning strategy for spectrum dominance.”

Ravix™ and other covert wireless solutions being introduced will be showcased at the Octasic Booth 8500 in Hall E, during AUSA, Washington, DC, from October 13–15, 2025.

Availability: Product availability of Ravix™ is expected by Q1 2026. Ravix™ payload systems include a selection of RF Front End options to meet various mission altitude and performance requirements.

About Octasic

Octasic engineers the wireless edge of modern conflict. Our 5G signal processing, low-SWaP Software Defined Radios (SDRs), and mission-tailored applications equip defense, law enforcement, and national security forces to adapt, dominate, and achieve mission success.

 

08 Oct 25. Belgium: Defence director’s warning highlights demand for clearer counter-drone guidelines. On 8 October, Thales Belgium Director Alain Quevrin warned that drone overflights are being detected at an increasing rate near the defence firm’s sensitive manufacturing sites, including the Évegnée Fort munitions factory (Walloon region). Quevrin has called for clearer legal guidelines for how companies can address the elevated threat of unidentified drone activity near sensitive sites, including the conditions during which they can detect, jam and/or shoot down drones. Under current EU regulations, critical national infrastructure (CNI) providers and defence firms are unable to neutralise drones without co-ordinating with the police or national security agencies. European states are exploring strategies to bolster lagging counter-drone measures, including the construction of a ‘drone wall’, though such efforts are unlikely to mitigate against the threat to sensitive sites in the short-to-medium term. Denmark plans to grant CNI operators autonomy to employ counter-drone systems; this will possibly prompt similar legislation in other EU states. However, we assess that legal and practical challenges – particularly the risk of collateral damage – will limit the legislation’s implementation. (Source: Sibylline)

 

08 Oct 25. Rheinmetall accelerates combat drone production – capacities significantly expanded. In recent years, drones and Loitering Munitions have become increasingly important in modern warfare. Rheinmetall has responded to this development, both in terms of the deployment of these modern weapons as well as the defence against them. A few months ago, Rheinmetall completed a modern production facility for assembly, testing and warhead production and integration of Loitering Munitions (LM). In the meantime, the series production is at full speed. The facility is operated by the Italian subsidiary RWM Italia at its sites in Musei and Domusnovas in Sardinia. Rheinmetall is cooperating with the manufacturer UVision Air Ltd on this project. Part of the production line is located at the Rheinmetall plant in Musei, where the inert and electronic components are assembled and tested. The warheads are manufactured and integrated into the munitions at the Rheinmetall plant in Domusnovas.

The current range of products includes:

  • • HERO 30 (small, portable LM for infantry usage)
  • • HERO120 (Medium-sized LM for precision strikes against armoured vehicles and immovable installations)
  • • HERO400 (Medium/long-range LM for precision strikes against fortified positions)

The current order backlog totals more than €200 m for various types of HERO LM’s to be delivered to eight different NATO and non-NATO countries in Europe.

Furthermore, Rheinmetall also has own drones and Loitering Munitions in its portfolio. These include the LUNA NG reconnaissance drone. With its uncrewed aerial systems, which are manufactured in Penzberg, among other places, Rheinmetall generated sales of around €120 m in 2024. Rheinmetall also cooperates with other well-known companies in this business area, such as Lockheed Martin and Anduril.

In addition, drone defence is another area in which Rheinmetall is a leader. Its portfolio covers the entire sensor-to-effector chain, from detection and identification to countermeasures using jammers, cannon-based air defence systems (e.g. “Skyranger”) or high-energy lasers.

 

09 Oct 25. Cuashub.com said today that Belgium accelerates C-UAS measures following drone incursions. Belgium is fast-tracking elements of its national counter-drone plan after suspicious drone flights were reported over the Elsenborn training area last week. Defence Minister Theo Francken announced on October 6 in San Francisco that measures originally scheduled for 2026 will now be deployed this year. According to Belgian media sources, the acceleration involves tighter integration between Belgium’s Defence Ministry, Skeydrone’s national detection network and a newly established National Air Security Centre in Bevekom. By fusing civil and military air pictures, the aim is to shorten the decision window from detection to action without requiring additional spending in 2025. The package builds on layered detection capabilities including short-range radars, passive RF sensors and EO/IR cameras, combined with data fusion at the Bevekom centre. Civil feeds from Skeydrone’s existing grid around airports, energy facilities, prisons and police zones will be cross-referenced with Defence sensors on military sites such as ranges, depots and air bases. Centralising tracks is intended to reduce false positives and speed up decisions on intent. Belgium’s approach gives priority to non-kinetic options, including jamming, GNSS denial and protocol-based takeovers. Hard-kill measures such as interceptor drones, net launchers or very short-range air defence remain available depending on the site and threat. Quick-reaction counter-UAS teams will also be positioned for event protection with mobile jammers, cameras and radar support. Francken has appointed Lieutenant General Michel Van Strythem as “drone general,” responsible for doctrine, training and cross-service integration. The move is designed to standardise reporting formats, strengthen cooperation, and avoid fragmented procurement across the armed forces. The decision comes amid a wider rise in suspicious drone activity across Europe, with incidents reported over military sites, refineries and airports since late September. Belgian officials frame the response as a way to harden the national air picture against hybrid threats below the conflict threshold, in coordination with NATO partners. https://cuashub.com/en/content/belgium-accelerates-c-uas-measures-following-drone-incursions/ (Source: https://cuashub.com/

 

09 Oct 25. Cuashub.com said today that Hungary tests anti-drone corridors in largest military exercise since Cold War. The Hungarian Army has practiced deploying anti-drone corridors during Exercise Adaptive Hussars 2025, the country’s largest military drills in modern history. According to the Ministry of Defence, the corridors were installed in the Martfű-Vézény area to shield convoys, maintenance sites and repair points from potential drone strikes. Footage released by the ministry shows troops setting up mesh barriers designed to block enemy FPV drones. The structures restrict maneuvering space, forcing drones to search for openings and reducing their ability to target vehicles or vulnerable positions. Officials said the added obstacle gives soldiers and equipment greater chances of survival in contested environments. The drills, conducted jointly with NATO allies, began on September 1 and run through mid-October, involving more than 22,000 personnel across Hungary. Participants include regular troops, reservists, special operations units, engineers, logistics specialists and aviation forces. The exercises aim to test combat readiness, mobility, and NATO interoperability while also practicing crisis cooperation between military and civilian agencies. Militarnyi previously reported that Hungarian forces had already crossed the Tisza River between Martfű and Vézény during the exercise. Engineers from the 2nd Engineer Regiment named after Ferenc II Rákóczi constructed a temporary bridge to allow Hungarian Lynx combat vehicles and Turkish M113 armored personnel carriers to cross under a simulated scenario where main bridges had been destroyed. Other units played specialized roles. The Hussar unit named after Count Ferenc Nádasdy used horses to establish a concealed observation post near the river crossing before leaving them in guarded shelter. Adaptive Hussars 2025 covers much of Hungary, with scenarios focused on logistics, command and control and nationwide equipment movements. The incorporation of anti-drone corridors reflects a mounting NATO effort to counter unmanned aerial threats across Europe. https://cuashub.com/en/content/hungary-tests-anti-drone-corridors-in-largest-military-exercise-since-cold-war/(Source: https://cuashub.com/

 

08 Oct 25. OBR CTM and SATIM Announce Strategic Partnership to Enhance Maritime Situational Awareness in the Baltic Region Through New Digital Baltic Platform Integration. Ośrodek Badawczo-Rozwojowy Centrum Techniki Morskiej S.A. (OBR CTM) and SATIM Monitoring Satelitarny sp. z o.o. have announced a strategic partnership that is focused on bringing a more complete and reliable maritime picture for Polish Ministry of Defense end users and international partners. OBR CTM is a member of the Polish Armaments Group (PGZ) and a leading Polish defense technology company specializing in naval systems and maritime domain awareness. It delivers the Digital Baltic platform — a comprehensive solution for monitoring activity across the Baltic Sea.Through this partnership, SATIM, a Polish defense-tech startup pioneering AI-based analysis of satellite Synthetic Aperture Radar (SAR) imagery, will focus on integrating its advanced detection and classification software OREC into Digital Baltic.By fusing Digital Baltic’s multi-sensor data environment with SATIM’s automated analysis of satellite radar imagery, the joint solution will deliver actionable insights based on the situation in the Baltic Sea. Digital Baltic was designed to give our customers a decisive advantage in maritime awareness by integrating diverse sources of information into one coherent picture. The partnership with SATIM allows us to add a unique space-based capability: automatic object detection from radar satellites. With MikroSAR satellites about to become operational, this integration will be a game-changer for our end users in the Polish MoD and will further increase the export potential of Digital Baltic.

Background on the Digital Baltic Platform

OBR CTM’s Digital Baltic is a modern, integrated maritime domain awareness system designed to provide decision-makers with a unified operational picture of the Baltic Sea. The platform aggregates and fuses information from multiple sources — including coastal radars, AIS, EO/IR sensors, and open-source feeds — to support situational awareness, security operations, and defense missions. By integrating with SATIM’s AI analytics, Digital Baltic will extend its reach into the satellite domain, making it one of the most advanced regional solutions for maritime monitoring.

Background on SATIM’s OREC Software

SATIM’s flagship product, OREC (Object Recognition), is the world’s first commercial software capable of fast, automated detection and classification of objects, including vessels, aircraft, and vehicles, on SAR satellite imagery. Leveraging a unique database of radar signatures and internally developed AI models fine-tuned with real data, OREC transforms complex radar images into operational intelligence. SATIM’s software works across all SAR constellations, making it a universal tool for defense and security customers.

About OBR CTMOBR CTM S.A., based in Gdynia, Poland, is a research and development center specializing in naval systems, underwater technologies, and maritime situational awareness solutions. With decades of expertise, OBR CTM provides advanced products and services to the Polish Armed Forces and international customers, ensuring security and operational advantage in the maritime domain. OBR CTM is a member of the Polish Armaments Group (PGZ), a majority state-owned enterprise.

About SATIM

 

08 Oct 25. DroneShield (ASX:DRO) announced its most substantial sensor and effector software release to date in the history of the business. Critical developments of the software release include:

  • New Emitter-based (Protocol Aware) Disruption Engine powered by DroneShield’s RFAI-ATK technology.
  • DroneShield’s RFAI-2 detection & tracking technology receives its single largest expansion of the database of radio frequency emitters including drones.
  • Hardware acceleration by doubling processing power for the DroneSentry-X Mk2 platform enabling faster detection and tracking performance.
  • Integration with SAPIENT, a leading CUAS open integration protocol, now supported across all DroneShield’s sensors.

DroneShield’s systems can now detect and respond to drones faster, more accurately, and across a wider range of threats, making them even more effective in protecting people and assets, and enabling broader deployment across allied defence networks through support for the widely adopted SAPIENT protocol.

These updates underscore the Company’s rapid technology evolution and its leadership in AI-powered SaaS counter-drone solutions. Delivering smarter disruption, an expanded drone detection database, accelerated processing, and new interoperability features that elevate mission readiness for defence and security customers worldwide.

 

07 Oct 25. Cuashub.com said today that UK deploys specialist Counter-UAS unit to Denmark amid rising drone threats. On October 2nd, the UK announced the deployment of a specialist Royal Air Force (RAF) Regiment C-UAS unit to Denmark in response to a surge in unidentified drone activity near civilian and military installations. The move comes as Denmark hosts two major European summits, including the EU Leaders’ Meeting and the European Political Community Summit, amid growing concerns over hybrid threats across Europe.

Rapid Response to Grey Zone Activity

The deployment follows reports of drone incursions disrupting air traffic at Danish airports. The UK’s Defence Secretary John Healey confirmed the decision, calling it a necessary step “in response to the drone attacks observed at its main airport and regional airports,”, adding, “no one should be in any doubt that we are facing a level of grey zone activity and aggression which is testing us and testing other countries.”

Strengthening NATO and EU Security

Denmark requested allied support to counter these threats, resulting in contributions from multiple nations, including France, Germany, the Netherlands, Sweden, Norway, Finland, Poland, the US, and Ukraine. These forces are now operating on Danish soil as part of a coordinated security effort.

General Michael Wiggers Hyldgaard, Chief of Danish Defence, emphasized the importance of allied cooperation: “The support we are currently seeing from our close allies is tangible proof of the strong international cooperation of which Denmark is a part, both in the EU and NATO. It enables us to adapt quickly to the present situation and demonstrate that, when it matters, we stand together.”

Specialist Counter-Drone Capabilities

The RAF Regiment unit brings advanced C-UAS technology and highly trained personnel capable of detecting, tracking, and neutralizing unauthorized drones. These capabilities are critical for safeguarding airspace and protecting high-profile events from potential UAV-based disruptions. The RAF continues to invest in C-UAS systems to protect UK and allied airspace from evolving threats. Public safety remains a top priority, and this deployment underscores the need for rapid, integrated responses to emerging drone challenges. https://cuashub.com/en/content/uk-deploys-specialist-counter-uas-unit-to-denmark-amid-rising-drone-threats/ (Source: https://cuashub.com/

 

09 Oct 25. Kratos Awarded Phase 1 for AN/SPY-1 Organic Sustainment Capability for the US Navy.

  • Projected Initial Ceiling Across Program Phases $175m
  • 155,000-Square-Foot Indiana Radar Integration Complex Will Deliver Next-Generation Readiness for Naval Surface Fleet

Kratos Defense & Security Solutions, Inc. (Nasdaq: KTOS), a technology company in defense, national security, and global markets, announced today that it has been awarded Phase 1 to begin developing an organic sustainment capability for the U.S. Navy’s AN/SPY-1 radar systems. Known internally to Kratos as Project Anaconda, the single-award agreement has an initial total projected ceiling of $175m across multiple phases. The AN/SPY-1 radar remains one of the most critical assets in the Navy’s fleet, enabling ballistic missile defense, integrated air and missile warfare, and persistent maritime domain awareness across Aegis-equipped cruisers and destroyers. With many systems projected to remain in service through 2065, the Navy has prioritized building long-term, organic sustainment and depot-level support capacity to ensure uninterrupted fleet readiness. Central to Kratos’ solution is the new, Kratos owned and operated, state-of-the-art Indiana Radar Integration Complex (IRIC), strategically located within 1.5 miles of Naval Surface Warfare Center (NSWC) Crane. The 155,000-square-foot facility is expected to be operational in 2027 providing the U.S. Navy with a dedicated infrastructure for AN/SPY-1 sustainment and modernization.

Under Phase 1, Kratos will lead a cross-industry team to:

  • Establish the foundation for the IRIC at NSWC Crane, a purpose-built facility to support AN/SPY-1 battle sparing, testing, and prototyping
  • Develop initial organic repair, overhaul, and modernization processes for AN/SPY-1 transmitter, signal processor, and antenna subsystems
  • Advance digital engineering, artificial intelligence–enabled data management, and prototype sustainment technologies
  • Coordinate closely with NSWC Crane, Program Executive Office Integrated Warfare Systems, and Navy fleet stakeholders to ensure alignment with fleet sustainment priorities and readiness

“This strategic award validates Kratos’ proven approach of making significant internal investments in national security-focused infrastructure and capabilities to generate significant value for all Kratos stakeholders, including the United States,” said Eric DeMarco, President and CEO of Kratos. “The AN/SPY-1 program and our new IRIC represent the intersection of Kratos’ core philosophies: rapidly developing affordable, real-world solutions for critical defense needs, while providing true long-term value to our government customers, the U.S. taxpayer, and our entire stakeholder community. We anticipate that the Anaconda program will generate multi-decade value for both the United States Navy and Kratos.”

“Kratos’ MACH-TB contract award, the establishment of Prometheus Energetics LLC, and now the AN/SPY-1 sustainment contract award demonstrate Kratos’ commitment to pursuing business in the Crane region,” said Dave Carter, President of Kratos Defense and Rocket Support Services Division. “Like our investments in Oriole, Zeus, Erinyes, and Prometheus, this initiative will rapidly provide the competency needed to sustain warfighter capabilities. Kratos is proud to be a member of the Indiana Uplands community.”

“Phase 1 at Crane sets the stage for the Navy’s first organic sustainment capability for the AN/SPY-1 radar,” said Roger A. Becker, Indiana site director for Kratos. “By combining advanced prototyping, workforce development, and strong industry-government collaboration, we are building a foundation that will ensure readiness is delivered through 2065.”

The contract will be executed in multiple phases, with additional work authorized as milestones are achieved. This phased approach allows the Navy and Kratos to mitigate risk, accelerate key capabilities, and scale sustainment infrastructure to meet long-term fleet requirements. (Source: ASD Network)

 

07 Oct 25. DroneShield Announces South Australia R&D Facility.

  • DroneShield will invest $13m over three years to establish a new counter-drone R&D facility in Adelaide, Australia.
  • The new facility will be led by Jeff Wojtiuk, a former Lockheed Martin Australia defence engineering leader with a strong background in RF design and electronic warfare.
  • Together with planned expansions to its Australian and international R&D footprint, including the new Adelaide facility, DroneShield’s has this week reached a significant company milestone, surpassing 400 employees globally.
  • This expansion in South Australia is concurrent with DroneShield’s Sydney, European, and US manufacturing initiatives, against the backdrop of record global demand and surging drone attacks.

DroneShield (ASX:DRO), a global leader in counter-drone and electronic warfare (EW) solutions, is pleased to announce a $13m investment in a new research and development (R&D) facility in Adelaide, South Australia. This $13m investment is a direct contribution to South Australia’s economy, covering three years of operational and capital expenditure. It will initially create around 20 high-skilled engineering roles in Adelaide, focused on radio frequency (RF) electronics, EW, and systems integration, to directly support DroneShield’s mission to deliver cutting-edge defence technologies. The South Australian expansion complements DroneShield’s existing engineering operations in Sydney and supports the Company’s continued growth in advanced RF electronics and EW capabilities. Adelaide has been chosen due to its proximity to leading global defence and aerospace organisations, a highly skilled engineering workforce, and established infrastructure supporting advanced technology development, particularly in EW and RF systems. The announcement comes as DroneShield reaches a significant company milestone, this week surpassing 400 employees globally, nearly doubling its team in the past year and more than quadrupling it over the last two years. Approximately 300 of these employees are software and hardware engineers, reinforcing DroneShield’s position as a world-leading technology company focused on delivering advanced defence capabilities. The Company also has around 100 open roles, reflecting its commitment to delivering on its technology roadmap and supporting customers and allies with speed and scale

DroneShield Chief Executive, Oleg Vornik, said, “South Australia is recognised as a national leader in defence and space industries, with Adelaide home to a highly skilled and experienced workforce. Establishing our first R&D office in Australia outside of our Sydney Headquarters – in Adelaide – is a strategic move that supports DroneShield’s mission to deliver world-leading counter-drone and EW solutions. DroneShield’s growth to 400 employees globally – with the majority of our team being engineers – reflects our commitment to deep technical capability and delivery.”

DroneShield Chief Product and Technology Officer, Angus Bean, said, “DroneShield’s new R&D facility in Adelaide marks a significant step forward in our commitment to ensuring our technology roadmap is being supported by the best engineering minds nationally. Our new facility is critical to accelerating the development of our next-generation counter-drone and EW technologies, while expanding our engineering footprint and supporting critical project development for global customers”. Premier of South Australia, The Hon Peter Malinauskas, said, “South Australia is the Defence State, and has been recognised by the Business Council as the best place in the country to do business. We welcome DroneShield making the choice to conduct research and development here in Adelaide, creating 20 highly skilled engineering roles. As a Government, we have a strong focus on growing our Research and Development ecosystem, which has the capacity to build our economic complexity and our state’s prosperity.”

 

06 Oct 25. AUSA 2025: SMARTSHOOTER to Showcase Combat-Proven SMASH Systems with Enhanced Connectivity. With 2025 U.S. Army and Marine Corps Contracts, SMARTSHOOTER Strengthens Its Position in the U.S. Defense Market.

AUSA 2025, Washington DC, Halls ABC Booth #4233

SMARTSHOOTER, a world-class designer, developer, and manufacturer of fire control systems, will present its combat-proven SMASH family of handheld and remotely operated fire control systems at the AUSA Annual Meeting and Exposition 2025. Building on significant momentum, including 2025 contracts with both the U.S. Army and U.S. Marine Corps for its SMASH Fire Control Systems, the company will showcase the system’s operational advantages, multi-platform versatility, and battlefield connectivity. Selected in 2025 by the U.S. Army for deployment within its Transformation In Contact (TIC2.0) formation, and by the U.S. Marine Corps expeditionary forces as their individual counter-sUAS solution, SMASH 2000L is already operational within multiple branches of the U.S. military and allied forces, contributing to enhanced precision and threat engagement on the battlefield. The lightweight, combat-proven fire control system dramatically enhances the ability of dismounted forces to engage ground and aerial threats with precision and speed.

SMARTSHOOTER’s SMASH fire control systems use artificial intelligence, computer vision, and advanced tracking algorithms to detect, track, and accurately engage targets. Once a threat is identified, SMASH locks, tracks, and synchronizes the shot release, enabling consistent hit accuracy against fast-moving drones and small UASs, as well as static or moving ground targets. At AUSA 2025, SMARTSHOOTER will also highlight recent advancements in battlefield connectivity. SMASH systems are designed for seamless integration with a range of external sensors and battle management systems. Recent integrations, such as with the U.S. Marine Corps’ MAGTAB, demonstrate how real-time target and friendly force data can be delivered directly into the user’s optic, enhancing situational awareness, accelerating decision cycles, and enabling coordinated operations at the squad level.

“The recent U.S. Army and Marine Corps contracts are a strong validation of the operational value and reliability of our SMASH fire control systems,” said Michal Mor, CEO of SMARTSHOOTER. “As demand continues to grow, we are expanding our U.S. presence, including scaling our local team and establishing dedicated maintenance and support infrastructure. This investment reflects our long-term commitment to meeting the evolving operational needs of U.S. forces and to deepening our strategic footprint in the U.S. defense market.”

SMARTSHOOTER’s booth will feature the SMASH family of fire control systems, including the SMASH 2000L, SMASH Hopper Light Remotely Controlled Weapon Station (LRCWS), and the SMASH Dome. The SMASH systems are already deployed by multiple U.S. military branches and NATO forces and have been combat-proven in active conflict zones.

SMARTSHOOTER’s U.S. operations are headquartered in Herndon, Virginia. For further information, contact Scott Thomspn, VP & GM US operations, at mobile (952) 913-256 or email or visit www.SMART-SHOOTER.com

 

29 Sep 25. Poland steps up counter-drone testing and acquisition for national air defence. Cezary Tomczyk, Polish Secretary of State of the Ministry of National Defence, has signed a decision regarding the testing of uncrewed aerial vehicles, uncrewed weapon systems, and countermeasures within the Polish Armed Forces. The new regulations are designed to ensure that the military can acquire the latest drone and counter-drone solutions much faster.

“This month, as previously announced, the latest solutions on the market – currently nearing the end of testing as part of the “Iron Defender 25″ exercise – will be delivered to the Polish Army,” Tomczyk said. “In the face of growing threats, we are simplifying the system for acquiring innovative technologies for the military. This gives Poland real capabilities to effectively respond to modern challenges.”

The new ministerial act consolidates previously fragmented competencies in the area of drone and counter-drone equipment testing. Among other measures, the new arrangement means tests will be carried out by organisational units of the Polish Ministry of National Defence; manufacturers and suppliers will undergo simplified counterintelligence verification; and coordination will be handled by the Inspectorate of Unmanned Troops of Weapon Systems of the General Command of the Polish Armed Forces. Over 500 proposals have been submitted for innovative projects supporting the construction of Poland’s East Shield, nearly 40 of which were tested during this September’s Iron Defender 25 exercise. These included uncrewed ground and air systems, as well as radars, detectors and other solutions that enhance situational awareness.  Counter-drone systems and air defence have been the Polish military’s zeitgeist even before hostile drones were detected in its airspace on the night of September 9/10. The Polish Army’s WISŁA programme is creating a multi-layered air defence system that is compatible with NATO technologies. On September 24, a contract for the supply Mobile Communication Nodes (MCC) for the needs of the second phase of the WISŁA programme was signed. The PLN 2 bn contract between the State Treasury – Armaments Agency and Wojskowe Zakłady Łączności No. 1 SA (Military Communication Works No. 1 SA) covers the delivery of 56 MCCs between 2027 and 2030, along with a logistics and training package.  Announcing the contract, Minister of National Defence, Władysław Kosiniak-Kamysz, said that “more and more money will be transferred to companies for the purchase of drone and anti-drone systems, anti-missile and anti-aircraft systems.” (Source: www.unmannedairspace.info)

 

30 Sep 25. Sweden’s new counter-drone concept used in live NATO mission. The Swedish Air Force’s new counter-drone concept, Loke, has been used in a live NATO mission for the first time.  The Loke concept is being developed by the Swedish Defence Material Administration, the Swedish Air Force and Saab, and has already become a central part of Sweden’s base-defence capability. The system was deployed during the Swedish Air Force’s contribution to NATO operations at Malbork Air Base in Poland between April and September 2025. Military units from the 21th Wing and 17th Wing supported the protection of allied facilities, including a key logistics hub for military aid to Ukraine. Loke was first evaluated earlier this year. It combines existing technologies into a modular system, integrating Saab’s Giraffe 1X mobile radar with a Trackfire remote weapon station armed with heavy and medium machine guns, as well as electronic-warfare components. The system has the capability to track both physical targets and signals in the electromagnetic spectrum, providing early detection and multiple options for neutralisation. Development continues with the Swedish Air Force’s 21th Wing now training to operate Loke as a platoon-level capability. Lessons from recent exercises, including Baltic Trust 2025 in Latvia, are feeding into the next stage of integration. Full implementation across wartime units is planned by the end of 2025. (Source: www.unmannedairspace.info)

 

29 Sep 25. Kongsberg and Aker to demonstrate North Sea drone detection. Kongsberg Discovery and Aker Solutions are joining forces to demonstrate a drone detection system in Stavanger, Norway, using Kongsberg’s Drone Detection Radar. Kongsberg said this marks the beginning of a broader rollout of infrastructure products in the North Sea.  Kongsberg Discovery and Aker Solutions plan to implement the drone detection system in phases, starting with a demonstrator at Aker Solutions at the Stavanger site to showcase to potential customers. The system will then be deployed offshore and gradually expanded with camera clusters and underwater sensors to enhance situational awareness.  Later phases include installation on supply vessels, integration with onshore control centres, broader rollout across rigs and vessels, and eventual expansion to other countries. Aker Solutions will act as system integrator, with Kongsberg Discovery as sub-supplier, and the demonstrator will be available for joint customer presentations. According to Cato Giil Eliassen, VP Infrastructure in Kongsberg Discovery, recent incidents again show the need for establishing a drone detection system in connection with critical infrastructure. “There have been many observations of drones close to critical infrastructure in the last couple of years. Few are properly documented. This cooperation between Aker Solutions and Kongsberg Discovery will provide the end customer with proper tools to monitor, record and document illegal, as well as legal, uncrewed aerial systems activity around installations.” (Source: www.unmannedairspace.info)

 

03 Oct 25. US government shutdown sees expiration of C-UAS authorities for critical infrastructure. The US government shutdown means that the country loses critical counter-drone authorities that were granted to the Department of Homeland Security and Department of Justice in 2018 to address the risk that unmanned aerial systems (UAS) can pose to airports and other critical infrastructure.  Frank Cilluffo and Kyle D. Klein of the McCrary Institute are concerned that the loss of these protections will make it easier for adversaries and criminals to exploit US airspace.

“Absent congressional action, the federal government’s ability to mitigate drone threats will be called into legal question, as key authorities lapse.  Should this occur, it will put our nation’s critical infrastructure and American lives at risk by creating an unnecessary gap in the fabric of our nation’s security,” they wrote as the shutdown loomed.

“Counter-unmanned aircraft system authorities were granted to the Department of Homeland Security and the Department of Justice in 2018 to address proliferating use of commercial and hobby drones and the risk they pose to critical infrastructure, particularly airports.  In the years since, Congress has wisely extended these authorities, as drone use has exploded. Today there are over one m drones registered with the Federal Aviation Administration in the U.S. By 2028, that figure is expected to triple. At the same time, the technology and protocols for detecting, interdicting and mitigating UAS has continued to evolve.”

In a podcast for the McCrary Institute’s Threat Beat, Cilluffo spoke with former Department of Homeland Security official, Matt Hayden to unpack what the expiration of the counter-drone legislation means and the growing dangers posed by UAS. Hayden explains why current authorities are essential for protecting the homeland and how they fall short when it comes to local law enforcement, airports and evolving drone technology. (Source: www.unmannedairspace.info)

 

06 Oct 25. Two Companies Selected to Support DIU’s C-UAS – NEXT Project. The Defense Innovation Unit (DIU) has started prototyping commercial and dual-use technology solutions to provide Counter UAS solutions that defeat group 3 and above adversarial threats, ensure the sovereignty of our national airspace, and protect our personnel, equipment, and facilities at home and abroad.  Focus areas of the Counter NEXT project include providing a deeper interceptor magazine for our forces while preserving exquisite interceptors for exquisite threats, simplifying and accelerating the reloading process, addressing the cost asymmetry of the current threats and interceptors in use, and integrating with the existing combat systems. DIU and our DoW partners selected Anduril Industries and Zone 5 Technologies to develop prototype solutions for the Counter NEXT program in fall 2024. These vendors were selected from more than 65 commercial and dual-use technology company applicants. Less than a year later, both vendors completed initial design and developmental sprints and successful baseline flight testing of their proposed solutions. Based on the data gathered, warfighter feedback and knowledge gained during the first sprint, iterative improvements are being made to both systems to ensure the solutions address the capability gap before additional flight testing and safety/qualification testing occur in the months ahead. Counter NEXT vendors are incorporating commercial off-the-shelf (COTS) components wherever possible to mitigate potential supply chain bottlenecks and keep costs low. The vendors are also leveraging modern air vehicle design concepts, ensuring air vehicles are not over-engineered for their intended mission but that they also minimize the use of expensive materials and enable high-rate production that is not possible with the more exquisite interceptors available today. To enable future design improvements and rapid integration of subsystems and components as they improve, the Counter NEXT prototypes are utilizing a modular open systems architecture and being designed for mass production using modern manufacturing techniques. Additionally, all components of the solution will be qualified and certified to some of the most stringent military standards in order to provide an enduring capability to the warfighter wherever the solution is deployed.

“The Counter NEXT project is focused on leveraging the best-in-breed commercially derived technology and processes to accelerate the development, production, and fielding of these vital Counter UAS interceptors to our warfighters,” said Joshua Zike, Counter NEXT Program Manager for DIU.  “While this solution is focused on a specific, pressing subset of the counter UxS problem set, variants for all domains should be developed and deployed to provide this vital layered kinetic counter UxS defeat capability to all our warfighters.”

Following Anduril and Zone 5’s recent successful flight demonstrations, both vendors received additional funding to further refine their rapid prototypes, integrate their systems with the mission partner’s combat systems, and conduct the safety testing required prior to a live fire test event in the summer of 2026. (Source: UAS VISION/Defense Innovation Unit)

 

03 Oct 25. Sweden urges EU to simplify drone procurement standards. Sweden’s Prime Minister Ulf Kristersson called on the European Union to simplify procurement standards for drones while maintaining that responsibility for strengthening anti-drone capabilities should lie with individual member states rather than the bloc as a whole. European leaders met in Copenhagen this week amid growing concerns over drone incursions, expressing support for bolstering drone defence measures across the region. Russia has denied responsibility for the incidents. Last month, European Commission President Ursula von der Leyen proposed a “drone wall” — a network of sensors and weapons designed to detect, track, and neutralise drones, though details on costs and implementation remain unclear.

“The EU is not a defence organization. (…) Every country needs to build up these capabilities, and then we need to cooperate very closely to be able to detect drones,” Kristersson told Reuters in an interview in Copenhagen late on Thursday. (Source: Reuters)

 

03 Oct 25. Swiss Army ramps up drone defence systems after sightings. Switzerland said on Friday it is beefing up its anti-drone defence systems to safeguard military infrastructure following a recent increase in drone sightings in Europe. The Swiss Army has tasked the federal office for defence procurement, armasuisse, with acquiring the systems following successful field trials this summer, the government said. “Based on these findings and in response to the increasing number of drone sightings,” the Army had instructed armasuisse to prioritize procurement of defense systems against micro and mini drones, the government said in a statement. (Source: Reuters)

 

01 Oct 25. Lockheed Martin, JMoD begin testing of ASEV antennas. The initial light off initiates a crucial testing phase to validate the full SPY-7(V)1 radar system’s performance. Lockheed Martin, in collaboration with the Japan Ministry of Defense (JMoD) and the Missile Defense Agency (MDA), has completed the initial light off of the Aegis System Equipped Vessel (ASEV) shipset 1 radar system. The test took place at the Production and Test Center in Moorestown, New Jersey. The initial light off involved all four AN/SPY-7(V)1 antennas and signifies the start of an extensive testing phase. This phase is essential for ensuring that the radar system meets performance standards when integrated with the Aegis system. The testing will also support the construction and commissioning schedule of the ASEV. Following this phase, shipset 1 will undergo further tracking exercises before its physical delivery to Japan next year. Concurrently, shipset 2 will enter its testing and verification stage, having been sold off to the JMOD. These steps are part of a series of milestones aimed at advancing the programme’s progress. Lockheed Martin vice president and general manager Chandra Marshall said: “By testing the complete SPY-7 radar system in a land-based facility, we’re able to verify the SPY-7 radar’s Ballistic Missile Defense and Integrated Air and Missile Defense capabilities meet warfighter needs ahead of shipboard installation, significantly reducing programme deployment risk.

“The complete SPY-7 radar system will be installed on Japan’s ASEV ships, serving as a critical component of Japan’s homeland defence.”

In June 2025, Lockheed Martin officially handed over all four AN/SPY-7(V) radar antennas for the first ASEV shipset to JMOD. However, the antennas remained at Lockheed Martin’s facility for testing purposes. Following a successful live track in December 2024, Navantia has successfully integrated SCOMBA consoles with Lockheed Martin’s SPY-7(V)2 radar at the Aegis SCOMBA Integration Center in Moorestown. This integration enables simulated engagements of live tracks, demonstrating a fully operational combat system that combines SCOMBA with Aegis and SPY-7 capabilities. (Source: naval-technology.com)

 

03 Oct 25. Indra Presents State-of-the-art Unmanned Systems, Counter-UAS and Radars at the Spanish Army’s 2E+I Forum 35, Strengthening Capabilities.

  • Indra directors and experts analyze key solutions to gain superiority in high-intensity land operations
  • Key technologies include sophisticated systems such as Indra’s Tarsis drone family, the company’s multipurpose aerial vehicle VALERO, mobile counter-drone protection bubbles under development, and the new MTR 5 radar, capable of detecting fire origins, alerting units to potential attacks, providing data to neutralize enemy fire, and deploying and withdrawing with great agility and stealth
  • Indra demonstrates a strong capability to develop comprehensive, mission-adapted solutions that armed forces are demanding to counter emerging threats

Indra participated in the eighth edition of the 2E+I Army 35 Forum, which brought together military leaders and industry representatives. The focus of this year’s edition was a new perspective on maneuver warfare, with Indra contributing insights into three strategic areas: battlefield automation, counter-drone defense, and firepower dominance. In a context where drone usage has become widespread, it is essential to have both proprietary systems and protection bubbles that allow units to move safely across terrain.

Manuel Rodríguez Cerezo, Director of Indra’s Weapons and Ammunitions division, spoke on the panel about battlefield robotization, moderated by Major General Enrique Silvela Díaz-Criado, Chief of Staff of the High Readiness Land Headquarters. Rodríguez Cerezo stated, “Ukraine has shown us that conflicts are increasingly moving toward robotized engagements, led by drones,” and highlighted “the capabilities offered by the Tarsis family of unmanned systems in its two versions: one designed for intelligence gathering, surveillance, and target designation (ISTAR), and the other additionally capable of carrying light weaponry to suppress unarmored targets.”

He also referred to VALERO, Indra’s multipurpose aerial vehicle-based weapon system, designed to disrupt enemy defenses, act as a decoy, or even function as a missile. It offers an optimized cost-effectiveness solution applicable across all domains.

José Carlos Hidalgo, Head of Counter-Drone Systems Engineering at Indra’s Weapons and Ammunitions unit, presented the mobile counter-drone solution the company is developing during the roundtable on counter-drone combat, moderated by Major General Ramón Armada Vázquez, Chief of Staff of the Canary Islands Command. The system integrates detection, electronic warfare, and distributed command and control across several interconnected vehicles, creating a mobile protection bubble.

Hidalgo emphasized that “success in delivering such a flexible and operationally adapted solution lies in deep knowledge of sensors and effectors, and the ability to integrate not only proprietary systems but also third-party ones.”

As part of the mobile C-UAS solution, Hidalgo highlighted the role of Nemus, a small, lightweight flat-faced AESA electronic scanning radar designed by Indra specifically to protect military vehicles. He noted that Indra is currently one of Europe’s leading manufacturers of counter-drone systems.

Indra’s participation in the forum also included Miguel Ángel de Díez, Operational Advisor for Land Systems, who spoke at the roundtable on fire superiority. Moderated by Major General Alberto Javier García Romera, Chief of Staff of the Land Force, de Díez showcased the capabilities of Indra’s new fifth-generation multifunction radar, the MTR 5. This cutting-edge system is specially designed for high-intensity scenarios, offering unique detection and tracking capabilities.

“The MTR 5 radar calculates the origin of enemy fire, alerts friendly units that may be threatened, provides data to interception systems to destroy projectiles in flight, and supports decision-making to issue counter-fire orders. It has a high detection capability for both surface (land and naval) and aerial targets, including those with low radar signatures such as UAVs, with a level of precision far superior to any current counter-battery radar,” explained de Díez.

With a range exceeding 90 kilometers, the radar is mounted on a vehicle for full mobility and rapid deployment and withdrawal. Its radar signature has also been reduced to make it harder to detect, and it can be used independently or integrated into a surveillance network. Additionally, it can act as a remote sensor for Indra’s Semi-Automatic Anti-Aircraft Artillery Operations Center (COAAAS), which controls medium-, short-, and very short-range weapon systems to protect a specific point or area. (Source: ASD Network)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

October 3, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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03 Oct 25. Thales’s Ground Fire Radar now in continuous series production for the new SAMP/T NG system.

  • Thales’s Ground Fire air surveillance and air defence radar has been in full series production since the start of 2025, further to successful conclusion of factory acceptance tests (FAT) in the presence of representatives from the French Armament General Directorate (DGA).
  • Intended for the French version of the new franco-italian SAMP/T NG system – the European Medium- and Long-range air defence-based ground system, the Ground Fire is a real game changer with a surveillance range of 400 km and 360° azimuth coverage, and a full 90° elevation coverage.
  • Eight Ground Fire air defence radars will be delivered to French armed forces from 2026, demonstrating Thales’ capacity to support France and Europe in their airspace protection and sovereignty needs through reliable production.
  • Thales tripled its production of surveillance and air defence radars in 2024 and continues to grow in order to be ready to meet the challenges of protecting the skies.

These factory acceptance test is the culmination of a long series of tests conducted at Thales’ Limours site (Paris region), aimed at ensuring the highest level of performance for the new standalone radar.   Based on fully digital multiple beamforming Active Electronically Scanned Array (AESA) technology in S-band, the Ground Fire radar delivers high performance in the detection, tracking, and classification of numerous targets, even in challenging environments such as mountainous regions and densely crowded airspaces. It offers a unique one-second refresh rate, with a surveillance range of 400 km, 360° azimuth coverage, and a full 90° elevation coverage, capable of detecting drones as well as ballistic missiles, while maintaining the mobility of a tactical radar. The Ground Fire’s 360° full elevation performance detection meets forces’ needs to stay alert on all fronts with a full recognised air picture. The open architecture of the system facilitates its integration and interoperability with other European systems, enhancing Europe’s air defence capabilities. It ensures strategic autonomy and rapid availability. Its design allows for high mobility with reduced encamp / decamp times and compact dimensions, equivalent to an ISO container for transport. The Ground Fire radar will serve the SAMP/T NG, replacing the Arabel radar in the SAMP/T system already in service to secure the airspace in various European countries. The Ground Fire maximises the performance of the next-generation ASTER 30 missiles, positioning France among the leaders in medium- and long-range air and missile defence. This programme is supervised by Organisation for Joint Armament Co-operation (OCCAR) for the French Armed Forces Ministry and the DGA. The prime contractor is Eurosam for the overall system, with Thales providing several components, including the fire control unit based on the Ground Fire radar.

“The Ground Fire, designed and produced in Europe, will contribute to a robust European air defence system. ​ We have implemented all the necessary processes to accelerate industrial production, tripling radar production in our factory in Limours from 2022 to 2024 and increasing the robustness of our supply chain and partner eco-system, to ensure swift on-time delivery to contribute to air surveillance and air defence of European nations.,” declared Eric HUBER, Vice-President, Surface Radars at Thales.

 

03 Oct 25. Hensoldt to produce TRML-4D and Spexer radars at new facility in Ulm. German-based defence manufacturer Hensoldt will produce TRML-4D air surveillance radars and Spexer ground and coastal surveillance radars at its new production site in Ulm, Germany, a company spokesperson confirmed to Janes on 2 October. Starting from 2027, around 1,000 radars are expected to be produced annually at the new facility, the spokesperson confirmed. The company has invested “a mid-double-digit million-euro amount” in the new production site in Ulm, according to a 2 October press release from Hensoldt. An industrial hall has already been leased and converted.

“Our main customers – above all the German Armed Forces – have urgent needs, and under the current structures, we are not in a position to meet these requirements. Therefore, expanding our capacities is not only necessary but also without alternative,” Hensoldt chief financial officer (CFO) Christian Ladurner said in the press release.

At its existing site in Ulm, Hensoldt has approximately 3,000 employees and develops and produces radars, electronic warfare (EW) systems, and components. A company spokesperson declined to comment on the number of radars being produced at the plant, citing the current security situation.

The TRLM-4D is a C-band (4–8 GHz) active electronically scanned array (AESA) radar designed for ground-based air defence (GBAD). The Spexer is a family of X-band (8–12 GHz) AESA radars and frequency-modulated continuous-wave (FMCW) radars based on digital beam-forming (DBF) technology. The 2000 3D MkIII is designed for ground, sea, and low-flying air targets, including unmanned aircraft systems (UASs), unmanned surface vehicles (USVs), and missiles. It is capable of tracking more than 300 targets within a 120° arc. (Source: Janes)

 

02 Oct 25. Denmark Deploys Terma’s C-UAS Solution. The recent rise in unidentified drone activity near airports, military sites, and critical infrastructure demands faster, smarter multi-domain awareness. In response, Terma has stepped up, helping deploy an integrated counter-UAS solution across multiple strategic locations, protecting critical infrastructure and military installations.  At the heart is an array of multiple SCANTER radars, combined with battlefield-proven Ultra-High Definition Electro-Optical and Infrared cameras with embedded AI models, fixed and taskable cameras securing critical approaches, fused into Terma’s situational awareness systems that combine multidomain data in real time to deliver a single, integrated picture.

“Hybrid threats require hybrid solutions, delivered with flexibility and speed,” said Jesper Bøhnke, EVP and Chief Technology Officer at Terma. “This is not about deploying one sensor or one radar. It’s about a next generation integrated approach that fuses data from multiple sensors and domains into a single operational picture – this is the only viable way to detect, classify, and respond before critical operations are disrupted.”

Designed for rapid fielding and continuous operation, the suite strengthens day-to-day resilience and scales for crisis response. It detects and tracks small, low-RCS drones and maintains performance in cluttered environments, helping operators manage hundreds of simultaneous targets and sustain situational awareness around vital assets.

“Recent incidents prove that even small drones can disrupt critical operations,” Jesper Bøhnke added. “Where many other systems stop at merely detection, our approach merges all data, stores all sensor data for forensic analysis hereby enabling operators to learn, adapt, and improve resilience. With deployment now underway, we are advancing Denmark’s ability to secure vital infrastructure and services and keep essential services running.”

The rollout builds on long-standing cooperation with Danish and NATO partners and reflects a broader pipeline of initiatives Terma is advancing with national authorities to counter evolving drone threats. The solution draws on decades of radar engineering, sensor integration, and mission-critical support.

 

01 Oct 25. Frankenburg Prepares for C-UAS Missile Production. Frankenburg Technologies has officially unveiled its Mk I counter-unmanned aircraft system (C-UAS) missile at its headquarters in Tallinn, Estonia, signaling a significant advancement in aerial defense capabilities amidst increasing UAV threats in various regions.

Strategic Deployment Plans

During a press briefing on September 22nd, Frankenburg’s CEO, Kusti Salm, shared insights into the missile’s impending production and deployment across Europe. Notably:

  • The Mk I missile has already been introduced in all three Baltic nations.
  • Future deployments are set for Poland and Denmark, with additional plans for Germany.

Frankenburg maintains a presence in several countries, including Denmark, Germany, Poland, Ukraine, and the United Kingdom.

Cost-Effective Alternative to Traditional Systems

Salm emphasized the economic advantages of the Mk I, which is priced at approximately one-tenth of the Stinger man-portable air defense system (MANPADS). While the Stinger system is geared toward countering helicopters, the Mk I is specifically tailored to address threats from low and slow-flying unmanned aerial vehicles (UAVs), a pressing concern for current defense scenarios in Ukraine.

Target Identification

The Mk I missile is designed to engage a variety of aerial threats, including:

  • Long-range attack drones like the Shahed
  • Reconnaissance UAVs such as Orlan and ZALA
  • Small and slow-moving UAVs
  • Loitering munitions, including Lancet and Mavic systems
  • First-person-view (FPV) drones

Technical Specifications and Features

Frankenburg characterizes the Mk I missile as a high-precision, compact, ultra-short-range air-defense system, enhanced by artificial intelligence (AI) capabilities. The mark 1 missile is a solid rocket motor which provides immediate acceleration, bringing the round quickly into an intercept geometry suitable for slow or medium-speed unmanned aircraft.

Guidance is handled on board. Once fired, the round does not require a persistent data link to the launcher, which keeps the engagement chain short and less vulnerable to local jamming or network dropouts. The warhead is sized for small aerial targets with a focus on producing a lethal fragment cloud in the last meters of flight. The body is light, which is not only a handling benefit for the crew but also a logistics advantage when hundreds of rounds must be moved by pickup or utility truck rather than by a dedicated ammunition column.

The launcher is deliberately minimal. The display unit combined two sealed pods on a compact traversing mount with integral power and guidance electronics. It can sit on a light vehicle roof, a static tripod, or a small boat, and it looks simple to bolt down and remove. The form factor is friendly to dispersed units that move frequently and do not want to tow a heavy trailer every time they reposition. Setup appears quick: a crew rolls in, powers up, accepts a sensor cue, fires, and relocates before the enemy triangulates the site.

In base defense, the same launcher can be tucked into shelters or behind revetments to cover final approach lanes that guns or non-kinetic systems sometimes miss.

Industrialization is the headline claim: Frankenburg talks about affordable components, short supply chains, and a design that trades materials for repeatable assembly. European sourcing is a recurring theme, which several ministries now ask for because wartime demand has chewed through imported stocks. The company’s target is not to out-range classic SHORAD but to change the arithmetic of the fight. If a battlefield receives dozens of hostile drones in a night, the defenders must be able to fire dozens of interceptors without agonizing over cost. That shift is more important than a few extra kilometers of range on a spec sheet.

Compatibility with the broader counter-UAS ecosystem appears central to the concept. The launcher can be cued by compact 3D radars already fielded with European users and, based on the demonstrations, accepts tracks from electro-optical sensors or acoustic arrays at the edge. Open interfaces matter here because frontline units rarely enjoy a neat, unified air picture. In practice, a perimeter team around a depot or a battalion command post will stitch together the radar they have, an EO tracker, and a local display. The interceptor’s autonomy after launch reduces the need to push bandwidth through that improvised network at the critical moment.

This is a point defense tool that sits close to what commanders want to protect. The missile’s quick boost and onboard endgame allow short reaction times against drones that pop up from cover or dive in from modest altitude. A typical drill would see a small radar catch the track, a tablet operator confirm type and heading, and the launcher execute a two-round ripple to raise kill probability without wasting expensive ammunition. Because the system is light and the pods are sealed, reloads should be relatively fast. Crews can carry spare pods in the same vehicle that transports the mount. That lends itself to shoot-and-scoot behavior and to dispersed tactics where several launchers cover overlapping sectors rather than one large battery drawing fire.

Key specifications include:

Length: Approximately 650 mm

Weight: Less than 2 kg

Deployment: Lightweight and user-friendly for rapid deployment in various operational environments, including urban and frontline settings.

Conclusion

The introduction of the Mk I missile represents a significant innovation in counter-drone technology, poised to enhance defense capabilities against emerging aerial threats. As global defense landscapes evolve, systems like the Mk I will play a crucial role in shaping strategic responses to UAV proliferation.

This breakthrough is part of a broader trend in which nations reassess and augment their air defense strategies in light of rapidly changing security dynamics. (Source: UAS VISION/DEFCROS News; Army Recognition)

 

01 Oct 25. South Korea selects L3Harris for airborne early warning programme. South Korea’s Defense Acquisition Program Administration (DAPA) has selected L3Harris to meet a requirement for a new airborne early warning and control (AEW&C) aircraft and formally approved a domestic project to develop a new long-range air-to-air missile (LRAAM). DAPA said on 30 September that the project to supply four AEW&C aircraft to the Republic of Korea Air Force (RoKAF) is worth nearly KRW3.1trn (USD2.2bn) up until 2032. The separate LRAAM programme is costed at KRW753.3bn and will run from 2026 to 2033. In a press release, DAPA said it selected L3Harris’ proposal, which features a Bombardier Global 6500 airframe equipped with the ELW-2085 multiband radar produced by Israeli firm Elta, following an evaluation of programme bidders. Janes has previously reported that other contenders for the contract included Saab’s GlobalEye AEW&C, which is also based on the Global 6500, and the Boeing E-7A Wedgetail, which is based on the Boeing 737-700 Boeing Business Jet. According to DAPA, the procurement aims to secure “additional AEW&C aircraft through an overseas acquisition to ensure a completeness of air surveillance and airborne control capabilities in response to increasing aerial threats from North Korea and neighbouring countries”. DAPA has termed the procurement its Airborne Early Warning-II (AEW-II) programme. The procured aircraft will augment the RoKAF’s existing four Boeing E-7A Wedgetails, which were acquired from 2011. According to L3Harris, its proposal for the RoKAF, which it has dubbed ‘Phoenix’, integrates a “modular open systems approach (MOSA)” digital backbone that enables upgrades to address new threats. In addition to the ELW-2085 radar, the proposal includes integration of Elta’s artificial intelligence algorithms, said L3Harris. (Source: Janes)

 

01 Oct 25. Cuashub.com said today that DIU advances rapid prototypes for lower-cost C-UAS interceptors. The Defense Innovation Unit (DIU) has begun prototyping commercial and dual-use interceptors under its Counter NEXT effort, aiming to field lower-cost, mass-producible systems that can defeat Group-3 and larger unmanned aerial threats while preserving higher-end interceptors for the most severe targets. DIU selected Anduril Industries and Zone 5 Technologies in fall 2024 from more than 65 applicants to develop prototype solutions. Both companies completed initial design sprints and baseline flight tests within a year, and DIU says iterative improvements are now under way based on flight data and warfighter feedback. Additional funding has been awarded to refine the prototypes, integrate them with mission partners’ combat systems and conduct safety and qualification testing ahead of a planned live-fire event in summer 2026. Counter NEXT focuses on several operational shortfalls identified by the services. The initiative is aimed at increasing interceptor magazine depth so forces have more shots available against massed or persistent threats, simplifying and accelerating reload processes, reducing the cost imbalance between inexpensive attack drones and expensive interceptors and ensuring seamless integration with existing combat systems. To meet those goals, DIU and its vendors are emphasising commercial off-the-shelf components and modern air-vehicle design to avoid over-engineering and to enable high-rate production. Prototypes employ a modular open-systems architecture so subsystems can be upgraded rapidly as technologies mature. DIU also said all components will be qualified to stringent military standards to deliver an enduring capability for deployed forces.

“The Counter NEXT project is focused on leveraging the best-in-breed commercially derived technology and processes to accelerate the development, production and fielding of these vital counter-UAS interceptors to our warfighters,” said Joshua Zike, Counter NEXT program manager for DIU.

Zike added that while the project targets a specific subset of the counter-UxS problem set, variants for other domains could follow. DIU described the approach as an attempt to close a persistent cost-asymmetry problem, using lower-cost, high-volume interceptors for common threats, while conserving higher-performance interceptors for the most challenging engagements. Further flight testing and safety qualification rounds are scheduled in the coming months as the prototypes are refined for operational assessment. https://cuashub.com/en/content/diu-advances-rapid-prototypes-for-lower-cost-c-uas-interceptors/ (Source: https://cuashub.com/

 

30 Sep 25. Cuashub.com said today that DefSecIntel and Origin Robotics partner to deliver Europe’s first integrated counter-drone shield. On September 25, DefSecIntel Solutions and Origin Robotics announced the signing of a Memorandum of Understanding (MoU) to launch a partnership aimed at delivering Europe’s first operational, integrated counter-drone shield. The announcement was made during Estonian Defence Week and marks a significant step toward the creation of the Baltic Drone Wall, a cross-border system designed to detect and defeat hostile drones. The collaboration addresses the rapidly growing threat of unmanned aerial systems (UAS), which requires mobile, cost-effective solutions capable of neutralizing diverse UAV types with multiple countermeasures.

EIRSHIELD: A Combat-Proven C-UAS Platform

DefSecIntel Solutions brings its EIRSHIELD system, a modular, turnkey C-UAS platform developed using operational insights from Ukraine. The system integrates advanced technologies from leading European companies and offers long-range detection, electronic warfare (EW) capabilities, and multi-layer sensor fusion.

“Politicians have called for a Drone Wall. We are ready to build it,” said Jaanus Tamm, CEO of DefSecIntel Solutions. “This is not a concept. This is a live, integrated system that’s ready today and already protecting Europe’s eastern flank. This is not a roadmap or a PowerPoint. We offer European end-users a turnkey C-UAS solution with the best available combat-proven effectors in the Baltic region against low-flying hostile drones.”

Origin Robotics’ BLAZE Interceptor

Origin Robotics contributes BLAZE, an autonomous drone interceptor designed to track, identify, and destroy high-speed aerial targets using onboard AI and computer vision. The man-portable system is equipped with an HE fragmentation warhead for precise threat elimination, even in contested environments.

“The need for a system like BLAZE is immediate; it’s driven by real-world operational demands that are unfolding right now,” said Agris Kipurs, CEO of Origin Robotics. “It delivers fast-launch interception at a fraction of the cost. No theory—this is already in the hands of real users.”

A Scalable, Multi-Layered Defence

The integrated solution combines long-range radar, signal disruption, and autonomous aerial interceptors, providing a fast, modular, and scalable defence against:

  • Loitering munitions
  • Fixed-wing reconnaissance UAVs
  • Swarming drone tactics

Fully operational and built on combat-proven platforms, the system is designed to adapt to rapidly evolving threat environments.

DefSecIntel and Origin Robotics partner to deliver Europe’s first integrated counter-drone shield

(Source: https://cuashub.com/

 

30 Sep 25. Cuashub.com said today that France deploys C-UAS detachment to Denmark following airspace incursions. France has sent a joint armed forces detachment to Denmark to support counter-drone operations, the French Defense Ministry announced Monday. The temporary deployment includes 35 personnel, a FENNEC helicopter and active counter-drone systems. French officials said the unit is already operational and is working in coordination with Danish authorities, stressing that the mission respects Denmark’s sovereignty. The move comes in response to a surge of unidentified drone flights over Danish territory, including incidents last week that forced temporary airport closures and flight diversions. Danish Prime Minister Mette Frederiksen described the activity as part of “a hybrid war unfolding on Danish soil.”

According to the French ministry, the detachment is meant to reinforce Denmark’s own military resources and demonstrate broader European solidarity at a time of heightened security concerns. The announcement was made ahead of an informal EU leaders’ summit in Copenhagen on October 1 – 2, where security along the bloc’s eastern and northern borders is expected to feature prominently. Danish authorities have imposed a week-long ban on civilian drone flights around the summit. Over the weekend, the Danish Armed Forces confirmed they had detected new drones hovering above several of their sites, adding to pressure on Copenhagen and its allies to strengthen airspace defenses.

France deploys C-UAS detachment to Denmark following airspace incursions

(Source: https://cuashub.com/

 

30 Sep 25. Cuashub.com said today that Sierra Nevada Corporation secures Pentagon contract to support Ukrainian counter-UAS programme. The United States Department of War has awarded Sierra Nevada Corporation (SNC) a contract worth nearly $15 m to support Ukraine’s counter-drone efforts. According to the official announcement, the agreement covers technical support, maintenance, and sustainment services for the Ukrainian Navy’s Counter-Unmanned Aircraft Systems (C-UAS) programme. As part of the deal, SNC will provide field services and subject matter experts to help maintain and improve the operational readiness of the systems currently in use. The contract also includes “reach back” support, offering remote technical and engineering assistance for equipment deployed across Eastern Europe under NATO operations. Work will be carried out across several locations: Rzeszów in Poland will handle the majority (52%), followed by Englewood, Colorado (44%), and Fort Walton Beach, Florida (4%). The project is scheduled to run until September 2027, with funding coming from the Ukraine Security Assistance Initiative. The full amount of $14,997,575 was committed at the time of the award. The Naval Air Warfare Center Aircraft Division, based in Patuxent River, Maryland, is overseeing the contract, which was issued as a sole-source acquisition. SNC, headquartered in Englewood, Colorado, is recognised for its expertise in electronic warfare, mission systems, and counter-drone technologies. This contract builds on ongoing U.S. efforts to strengthen Ukraine’s defences against threats such as loitering munitions and aerial surveillance platforms used by Russian forces. The agreement also contributes to NATO’s broader strategy to reinforce its eastern flank and improve the interoperability of allied forces.

Sierra Nevada Corporation secures Pentagon contract to support Ukrainian counter-UAS programme

(Source: https://cuashub.com/

 

22 Sep 25. US think tank says military’s drone defences are “insufficient.” The Center for a New American Security (CNAS), a Washington DC-based think tank, says US drone defences are insufficient and warns that China is scaling up its uncrewed warfare programme. In its new report, CNAS says that while the US defence department (currently operating under the moniker of the Department of War) has invested in both legacy and emerging counter–uncrewed aerial systems (C-UAS) capabilities for nearly a decade, these efforts have been hindered by insufficient scale and urgency.  At the same time, Beijing is rapidly advancing its drone capabilities by developing more autonomous systems and acquiring them at scale. “Without deep magazines of substantially enhanced counter-drone capabilities, the United States risks having its distributed warfighting strategies overwhelmed by massed Chinese drone attacks, and the United States could lose a war over Taiwan,” CNAs notes, calling on the US to act swiftly. “The stakes are not theoretical—without adequate defences, even the most advanced systems and tactics will be rendered irrelevant in the face of overwhelming drone attacks.” The think tank recommends expansion of current counter-drone training efforts and an improvement in testing new systems. It calls for a focus on layered and portable systems to meet an immediate need. For future drone threats, the report says investment in artificial intelligence (AI) to accelerate threat identification and engagement is essential and emerging technologies like high-power microwave should be transitioned to programmes of record. In addition, CNAS says long-range, high-resolution passive sensors offer a “survivable alternative” to active radars for finding drones. CNAS’ report is divided into six chapters. The first provides an overview of counter-drone operations and describes the various capabilities that can be used to defeat drones. The second evaluates US defence investments in counter-drone technologies. Chapters three and four present case studies of US Army operations in the Middle East and of US Navy and Air Force operations in the Red Sea. The fifth chapter provides insights about defeating Chinese drones in the context of a protracted conflict. The final chapter analyses the investments, case studies, and tabletop exercise insights to offer conclusions and recommendations. (Source: www.unmannedairspace.info)

 

23 Sep 25. Copenhagen, Oslo airports temporarily shut after rogue drone sightings. The Danish government today said that drones that halted flights at Copenhagen airport on Monday were the most serious attack yet on its critical infrastructure and linked them to a series of suspected Russian drone incursions and other disruptions across Europe, according to a Reuters report.

“The number, size, flight patterns, time over the airport. All this together … indicates that it is a capable actor. Which capable actor, I do not know,” Danish police inspector Jens Jespersen told reporters at a press conference. The drones in Denmark reportedly came from multiple directions, turning their lights on and off for several hours before disappearing.

Sightings of two or three large drones near Copenhagen airport late on Monday halted all take-offs and landings for nearly four hours. The drone incursions caused about 100 flight cancellations and disrupting travel for roughly 20,000 passengers. Oslo airport in Norway was also shut for three hours  after two drones were observed there.

For more information: https://www.reuters.com/world/europe/drones-that-shut-copenhagen-airport-flown-by-capable-operator-danish-police-say-2025-09-23/ https://www.euractiv.com/news/capable-actor-behind-drones-at-copenhagen-airport/ (Source: www.unmannedairspace.info)

 

24 Sep 25. How the counter-UAS industry supply chain is evolving – the new winners. How would the US army manage today against an enemy which deploys swarm attacks of AI-enabled fast, low-observable drones operating in a closely coordinated manner – with the lead drone flying above the battlefield to coordinate multi-directional deadly and decoy strikes, all linked by a communications network which cannot be hacked, spoofed or jammed? It is a truth, universally acknowledged, that the drone war in Ukraine is defining the size, shape and technical priorities for the global counter-UAS industry, at least in the military domain. As new drone challenges appear on the battlefield at least once a month – with the first elements of the scenario above already in place – military planners around the world are racing to identify and deploy systems which are technically capable, affordable and scalable enough to meet these evolving challenges. In September 2025 the general direction of travel for the industry is becoming clear. In terms of technology, RF detectors and mitigation measures are daily becoming less useful on the battlefield as both Russia and Ukraine deploy AI-based and fibre-optic cable systems which are not vulnerable to RF interference. Strategically (in defence of cities and vital infrastructure) C-UAS networks are required to defend against waves of drones, loitering munitions and ballistic missiles. These need to be not just effective but sustainable. According to Ukraine’s United24 media, 15,933 Shaheds were launched against Ukraine in June, July and August this year. The core technology to do this is available in the form layered defences, where a range of sensors (radar, acoustic, cameras) are integrated with a range of mitigation measures (guns, missiles, intercept drones, net-capture drones, electronic counter-measures). But these are expensive, static and very hard to fully integrate. Just over the horizon the prospect of 100kW AI-enabled laser systems, which have the power and speed to autonomously destroy individual drones at the rate of less than two seconds per engagement, offer a step-change in the ability of cities to defend themselves. On the frontline, where ubiquitous drone attacks have the 15km behind the front line a dead zone for crewed logistics vehicles, more affordable and agile C-UAS systems are urgently needed, with assault-rifle-based small drone targeting systems or low-cost interceptors required as a last-ditch defences alongside passive sensor systems which can provide early warning alerts.

In parallel, new unforeseen threats suddenly appear, such as Ukraine’s “Spider’s Web” operation in June 2025 which used Russia’s mobile telephone networks to coordinate an attack of 117 explosive drones against Russian nuclear-capable bombers across five regions.

The non-military C-UAS markets are also facing shifting challenges. As with the military, the drone threat is escalating with criminals, the careless and very, very occasionally terrorists increasing their presence in and around sensitive civilian and government buildings, including airports, prisons and power stations. Here, RF detectors and effectors are far more useful as 99% of the drone threats come from commercially available drones or homebuilt drones which reply on commercially available components.

“All drone incidents are local incidents first,” said Dr. Ryan Wallace, Professor of Aeronautical Science, Embry-Riddle Aeronautical University, speaking at the United States House of Representatives’ Subcommittee on Crime and Government Surveillance on September 16, 2025. “Often, the first response to these incidents will be sworn officers from one of the nation’s 17,541 state and local law enforcement agencies …. Most of these agencies lack formal training for dealing with drone incidents, and even fewer are equipped with tools to support the detection, tracking, and identification of UAS.” In the civil world often the detectors of rogue drone incursions are unlikely to have the authority to mitigate the problem. But with beyond visual line of sight (BVLOS) drones and eVTOLs about to enter the low-level airspace in vast numbers across North America, the Middle East and Europe, there is a growing imperative for security agencies to field systems which spot the rogue drone among swarm of medical and pizza delivery drones – and deal with it.

These operational drivers are creating high levels of churn in the supply chain.

For industry, the ultimate goal is to be able to sell and support a complete integrated system of networked detectors and mitigation measures woven together in a command-and-control system which can autonomously classify the threat and act on it. Most companies will be happy just to be part of the team. But to deal with the coming AI swarm-attack threat on the battlefield and the towns and cities behind, new layered C-UAS networks will be required, with new mitigation and detector systems incorporated into autonomous networks which can automatically respond to these attacks. Very few companies in the world have the expertise to provide this capability. The large-scale integrators (BAE Systems, Boeing, Leidos, Lockheed-Martin, Safran) have in the main been kept busy with huge amounts of government funding to develop strategic new technologies to defend existing ground and naval platforms. In the last few years around USD2 bn has been invested via organisations such as the Air Force Research Laboratory (AFRL), Office of Naval Research (ONR) and the US Army’s (Rapid Capabilities and Critical Technologies Office) in directed energy weapons, with most money going into naval programmes. When required, they have bought up niche suppliers to gain access to key technologies – but these are not agile companies. By and large, these big companies are excellent at deploying legacy command and control systems and integrated air defences but rubbish at meeting an urgent operational request for some of the key C-UAS affordable battlefield technologies which everyone wants now, such as low-cost intercept drones and missiles and low-cost battlefield passive detectors. Niche suppliers of these are in a happy place. In the last two years it is the companies in the middle of the supply chain who have been the real winners. These are small enough to respond in an agile fashion to urgent operational requirements but big enough to gain new niche capabilities through acquisition or partnerships. And in the vital corporate process of acquiring niche capabilities acquisition is much more valuable than partnership. The owner owns the IP. Investment, profit-share and marketing responsibilities are far more easily managed from a single company headquarters. These companies are now leading the industry not just in pioneering new technologies but also in offering more flexible, future-proof acquisition models for end-users. The companies that have been successful in this area – including Anduril, Dedrone , DroneShield, D-Fend, Dyzne, EOS, MyDefence, OSL – have been able to navigate the initial “fake it till you make it” stages of the C-UAS industry and develop complex technical capabilities organically, to the extent that many of these pioneers are in a far more capable place of developing and supporting complex layered C-UAS defence systems than the legacy major integrators.

For the unfortunate fact is the Ukraine war has separated the wheat from the chaff in terms of a C-UAS company being able to prove its operational performance matches its marketing spiel. Even governments have now recognised that the lessons of Ukraine – small, fast, effective, entrepreneurial, affordable C-UAS – need to be transferred asap into the C-UAS supply chain. It was something of a landmark moment when the UK Secretary of State for Defence John Healey speaking at DSEI UK 2025 in London in September, announced Project Octopus. In this, the UK will mass produce a new C-UAS capability which centred on Ukrainian engineers using “a piece of drainpipe” to build a system that costs less than 10% of the systems it is targeting.  “Through Project Octopus, with this drone, our Ukrainian friends will share the technology and intellectual property with the UK. In turn, together, we’ll rapidly develop this further and then mass-produce it, supplying thousands of interceptor drones back into Ukraine each month,” Healey explained. “For Ukraine, this means they can better protect their people, their homeland…for Britain, it means we have access to the best and developing battlefield technology for our own forces.” This is just one of several examples of European governments forging links with Ukraine’s C-UAS industry – and some of these capabilities will be required security forces as well as the military, as AI-enabled attack drones from Ukraine find their way into arsenals of drug cartels and terrorists. As new types of threats evolve, new types of companies are emerging which can respond far more quickly and flexibly to the technology and affordability C-UAS challenges than ever before. https://www.unmannedairspace.info/counter-uas-industry-directory/ (Source: www.unmannedairspace.info)

 

25 Sep 25. Defsecintel and Origin Robotics link to offer EU “Drone Wall” capability. During the Estonian Defence Week, Defsecintel Solutions (Estonia) and Origin Robotics (Latvia) signed a Memorandum of Understanding (MoU) confirming the launch of a partnership that will offer a significant contribution to the Drone Wall—Europe’s first operational, cross-border system purpose-built to detect and defeat hostile drones.

“The rapidly growing threat of hostile drones requires mobile and cost-effective C-UAS systems capable of detecting and neutralizing different types of UAVs with a wide range of countermeasures and various effectors,” said the two companies in a press release. “Defsecintel Solutions, drawing on operational insights from Ukraine, has developed and manufactures the EIRSHIELD system – a modular, turn-key C-UAS platform that integrates advanced technologies from leading European companies with combat-proven performance.

“Politicians have called for a Drone Wall. We are ready to build it,” said Jaanus Tamm, CEO of Defsecintel Solutions. “This is not a concept. This is a live, integrated system that’s ready today and already protecting Europe’s eastern flank. This is not a roadmap or a PowerPoint. We offer European end-users a turnkey C-UAS solution with the best available combat-proven effectors in the Baltic region against low-flying hostile drones.”

“Together, the companies offer a system providing long-range radar and signal disruption with autonomous aerial interceptors to deliver a fast, modular, and scalable defence against unmanned threats. The system is specifically designed to counter loitering munitions, fixed-wing reconnaissance UAVs and swarming drone tactics It is fully operational, built on combat-proven platforms, and designed to adapt to fast-changing threat environments.”

“Defsecintel Solutions, the developer of the EIRSHIELD system, brings advanced long-range detection, electronic warfare (EW) capabilities, and multi-layer sensor fusion—refined through active deployments in Ukraine. Origin Robotics contributes its autonomous drone interceptor, BLAZE, a man-portable, operator-supervised platform that can track, identify, and destroy high-speed aerial targets using onboard AI and computer vision. BLAZE has been engineered to counter drones that evade conventional air defense systems. Equipped with an HE fragmentation warhead, it ensures precise and effective threat elimination, even in contested environments.

 

09 Sep 25. MSI-Defence Systems Ltd., the British C-UAS and gunfire technology specialist, and Electro Optic Systems (EOS), the Australian weapon systems specialist have announced a new strategic relationship for mutual cooperation, at DSEI 2025 in London. Such cooperation is built on the recognition of the mutually beneficial advantages of on-shore presence and capabilities to manage the challenges faced in supporting in-service equipment from a vast distance, as well as future potential contracts. Under the auspices of AUKUS, both MSI-Defence Systems and EOS recognise each other’s mutually-complementary strengths and advantages in their respective home markets, to provide world-class defence and C-UAS systems and technologies to the UK MoD and Australian DoD, as well as service and support excellence. The relationship builds on the longstanding mutual recognition between the two key players in the defence sector, whose capabilities support remote weapon systems and C-UAS defence solutions in the land, naval, and air domains. It reflects the shared sense of commitment to strengthen security in respective home markets, and augment supply chain resilience and sovereignty to capably meet the future defence challenges of Australia and the United Kingdom.

John Meldrum, Managing Director at MSI-Defence Systems, said: “Two world-class weapon systems specialists are joining forces to work together in the UK and Australia. MSI-Defence Systems are proud to have continued supporting the UK MoD for over 40 years with cutting edge weapon systems and full in-service support across multiple equipment programmes. I believe this strategic relationship with EOS will not only further enhance what we offer to the UK MoD, but also open additional complimentary solutions to the UK MoD in support of their aims and ambitions. I firmly believe that in supporting each other to grow in our respective home markets, MSI-Defence Systems and EOS will be stronger working in cooperation with each other.”

Dr Andreas Schwer, CEO of EOS, said: “EOS has proudly delivered and supported more than 2,500 weapon systems to defence forces worldwide over 45 years of operations. From our foundation in ground systems, we have expanded into maritime solutions and today deliver world-leading C-UAS technology. Through this strategic relationship with MSI-Defence Systems, our complementary strengths will ensure we provide sovereign capability, assured manufacturing and dependable service in our home markets and for defence customers globally. We look forward to working with MSI-Defence Systems and to the opportunities this relationship represents.”

 

26 Sep 25. US military exercise focuses on defeating small drones. The North American Aerospace Defense Command and U.S. Northern Command held the Falcon Peak 25.2 counter-small uncrewed aerial systems (C-sUAS) exercise at the Eglin Test and Training Complex from September 3-18. The focus was on detecting, identifying, tracking and mitigating sUAS incursions at military installations, as well as gauging low-collateral defeat options within the United States. Soldiers from the 10th Special Forces Group played the adversary, flying aggressor UAS profiles representative of an actual threat. About 16 defence department and industry partners tried to counter the threats through sensing and mitigation platforms, allowing for real-time feedback which enables leaders to assess new and emerging C-sUAS technologies and advocate for the best resources to defeat those threats. USNORTHCOM demonstrated the capabilities of its new C-sUAS fly-away kit on September 17 and 18 on Eglin’s Santa Rosa Island range. The kit, produced by Anduril, will provide the combatant command with a rapid-response capability to defeat a UAS threat and includes a suite of sensors, effectors and software for homeland defence and deployment missions. During the demonstrations, an aggressor UAS flew over the range while the fly-away kit’s mobile sentry detected and tracked it before Anvil, a low-collateral defeat drone, was launched to intercept the UAS, knocking it out of the sky. As sUAS technology continues to develop, countermeasures will also need to evolve. Falcon Peak will continue to provide a platform where these countermeasures can be evaluated. (Source: www.unmannedairspace.info)

 

29 Sep 25. Denmark bans civil drone flights during EU summit week. On Sunday 28 September Denmark ordered a ban on civil drone flights from Monday to Friday this week “to eliminate the risk that enemy drones can be confused with legal drones and vice versa,” a statement issued by the transport ministry. The ban covers the period a Copenhagen European Union summit being held this week and has been introduced “after several unmanned aerial vehicles were witnessed at military facilities overnight, following a week in which drone sorties caused the temporary closures of several airports in the Nordic country,” say press reports. Earlier in the week, reported drone sighting closed several of the country’s airports, including Copenhagen Airport, On September 17 Denmark’s defence ministry gave more details of the new air defence measures being introduced to the country.

“The current geopolitical situation makes ground-based air defence an absolute top priority in building up the Danish Armed Forces,” said Minister for Defence Troels Lund Poulsen.”The Danish Armed Forces expect the first part of its ground-based air defence system to be operational later this year, and I am pleased that the parties to the Defence Agreement are responding with a long-term perspective on geopolitical developments,”

In June 2025, a decision was made to rapidly procure medium-range ground-based air defence systems in order to deliver operational effect as quickly as possible. Based on the military expert recommendation of the Chief of Defence, the parties to the Defence Agreement have now decided to procure a total of eight long and medium ranges systems. The rapidly procured medium-range systems will be included in this total., said the ministry. For the long-range system, the French-Italian-manufactured SAMP/T will be procured, while for the medium-range systems, a choice will be made between one or more systems from the Norwegian-manufactured NASAMS, the German IRIS-T, and the French VL MICA, said the ministry.

For more information: https://www.fmn.dk/en/news/2025/parties-to-the-defence-agreement-approve-historic-investment-in-ground-based-air-and-missile-defence-systems/ (Source: www.unmannedairspace.info)

 

25 Sep 25. Unmanned Airspace launches the 2025 Global Counter-UAS Systems Directory. Today we launch the Unmanned Airspace 2025 Global Counter-UAS Systems Directory. This is a new, essential reference guide for C-UAS system procurement agencies and a key market/competitor analysis tool for the global industry. It is the world’s only comprehensive, updated guide to C-UAS systems under development or in production around the world and contains over 550 company listings with over 1,000 programme and system descriptions. Since its first publication in 2017, the directory has become a vital source of market information for military, civil and security agency procurers around the world and is the most downloaded page from the www.unmannedairspace.info website. The new 2025 edition has been updated and considerably expanded. It allows readers to quickly and easily search for systems by type or country. It provides readers with the latest information on:

  • Manufacturer-derived C-UAS system technical data and capabilities (with sources)
  • Contract awards in the public domain
  • Countries of origin and website contact details
  • Partnership arrangements
  • Other relevant market information – approvals, financing etc

The Guide focuses on products and services which are being developed for, or are in operating in, the open market, including ITAR restricted items as well as products developed in Russia, China and Iran. For C-UAS technology suppliers, the Directory gives a unique view of competitor activity in terms of new products, customer buying history and industry partnerships.  There is a particular focus on Ukrainian C-UAS systems and companies, given the rapidly changing operational requirements in this region. The Unmanned Airspace 2025 Global Counter-UAS Systems Directory is available now in word, pdf and excel formats for £1,200.  The next update to the Directory will be published in January 2026. However, we can provide a bespoke update service on a weekly basis. To find out more about this service and to purchase the Guide or to get further information about the publication, please contact the editor Philip Butterworth-Hayes at  or telephone +44 7778 030 633. (Source: www.unmannedairspace.info)

 

29 Sep 25. Poland Adopts WLKM Gatling Gun for Drone Defence. Poland’s Ministry of Defence has confirmed plans to introduce the WLKM 12.7 mm Gatling gun, a domestically developed weapon designed to strengthen the country’s short-range air defense and counter-drone capabilities. The deputy head of the Polish Ministry of National Defence, Cezary Tomczyk, said in a post on X that the WLKM will be included in the equipment of the armed forces, where it “will be able to shoot at Russian aerial intruders.”   Produced by Zakłady Mechaniczne Tarnów (ZM Tarnów), the WLKM is a four-barrel rotary gun chambered in 12.7×99 mm NATO caliber. It is reported to achieve rates of fire of up to 3,600 rounds per minute, offering the saturation firepower needed to counter small drones or low-flying aircraft. The weapon is designed for integration into remote-controlled weapon stations, making it suitable for mounting on vehicles, naval platforms, or fixed defensive installations. The WLKM was initially developed as a large-caliber machine gun intended for anti-personnel use. However, the developers later shifted their focus to combating drones due to the system’s high fire density.

Role in Poland’s Defence

The unveiling comes in the wake of a major Russian drone incursion into Polish airspace on the night of September 9 to 10, 2025, which prompted a quick-reaction air response. Polish officials later said a Polish F-16-launched missile likely struck a house in the village of Wyryki during the operation, an incident now under investigation. The episode underscored both the operational risks and the cost asymmetry of engaging inexpensive one-way attack drones with high-end air-to-air missiles. AIM-120 AMRAAMs can cost over $1 m per round depending on variant, while Russian Shahed-type drones are typically priced in the tens of thousands to low six figures per unit, according to open-source estimates. The WLKM system is expected to complement Poland’s layered air defense network, which already includes Patriot PAC-3 missile systems, and the Pilica+, another short-range system produced by ZM Tarnów that combines 23 mm guns and a missile system. The system would provide a close-in defense option, capable of rapidly engaging unmanned aerial vehicles and other low-altitude targets. By relying on a domestic design, Warsaw also reinforces its policy of strengthening Poland’s defense industrial base while reducing reliance on foreign suppliers. The Polish Ministry of Defence has not disclosed the value of any contract or the timeline for production. It has also not detailed which military units will be the first to receive the system or the scale of the planned acquisition. If the system proves to be effective in service, it could lead to export opportunities. Other NATO members, including nearby Lithuania, which has also experienced multiple incursions by Russian drones, are looking for cost-effective counter-UAS solutions. (Source: UAS VISION/aerotime)

 

29 Sep 25. Recent drone incidents in Denmark and Norway, along with increasing sightings over critical infrastructure in Germany, clearly show that the threat posed by unmanned aerial vehicles (UAVs) is steadily rising. At the same time, incomplete or misleading information about effective countermeasures continues to circulate. With this release, Aaronia AG aims to provide clarity and explain how modern drone detection systems work – and which solutions are already reliably available today.

Sensor Fusion – Multiple Technologies for Maximum Protection

Modern protection systems don’t rely on a single technology but instead on sensor fusion: radio frequency (RF) detection, radar, and cameras complement one another to create a comprehensive situational picture.

  • RF detection provides the earliest warning signs.
  • Radar independently confirms position and flight path, even without RF signals.
  • Cameras enable visual verification, giving security forces the final basis for informed decisions.

RF Detection – The Heart of Early Warning

Many drones are controlled and monitored via radio links to their operators, while others (e.g., “kamikaze” or pre-programmed drones) fly autonomously without ongoing communication. That’s why any detection strategy must combine RF detection with additional sensor technologies.

The AARTOS system by Aaronia is a world leader in RF detection, offering:

  • Frequency Coverage: 10 MHz to 8 GHz – covering key civilian and many military bands.
  • Range: Detection possible up to 80 km in many scenarios – enough to secure large areas such as airports or industrial sites at an early stage.
  • Intelligent Signal Processing: Signals are not only detected but also characterized, localized, and in part decoded. Real-time data such as drone and operator position, altitude, speed, or even serial numbers can be extracted and displayed.
  • Jamming Capabilities: The AARTOS 360° Smart Jammer can precisely disrupt individual frequencies across a very wide range – not just standard bands. This makes it possible to counter non-standard or military frequencies with surgical precision, instead of indiscriminately blocking entire bands.

“RF detection is the foundation of effective protection,” explains Stephan Karschansky, CEO of Aaronia Austria. “Our systems often provide the earliest warning, long before a drone is visible. That gives security forces valuable time to assess the situation and plan appropriate measures.”

Radar and Cameras – Verification Stages

While RF detection delivers the first alert, radar independently verifies position and trajectory – even without a signal. Optical verification through cameras then enables clear identification. Only with this multi-step verification can security forces make sound decisions about countermeasures.

From Detection to Defense

Once a drone’s position is precisely located, targeted countermeasures become possible. The AARTOS system identifies both the drone and the potential source of its control signals, transmitting this information in real-time – for example via app – directly to security authorities.

Countermeasure Technologies

  • Jamming: Targeted disruption of control links. The AARTOS 360° Smart Jammer precisely interferes with any chosen frequency, including non-standard and military bands.
  • Spoofing: Manipulating GPS or navigation signals to mislead drones.
  • Takeover: Forcibly assuming control of a drone through technical means.

All countermeasures are subject to strict legal frameworks and may only be used by authorized entities. The goal of modern systems is always to combine effectiveness with minimal side effects.

Proven Protection Worldwide

With more than 650 installations worldwide, the AARTOS system has been extensively field-tested. Users include major international airports such as Changi (Singapore), Muscat (Oman), and London Heathrow (UK). The system has also successfully secured high-profile events, most recently the NATO Summit in The Hague and the G20 Summit in Rio de Janeiro.

“The threat from drones is increasing – and so is the responsibility to protect critical infrastructure and large-scale events,” says Karschansky. “With AARTOS, we deliver a solution that is already in use worldwide and demonstrates its capabilities every single day.”

 

26 Sep 25. Defense Innovation Unit and Marines Select FPV Platforms for Project G.I. Phase One. After eight days of flight demonstrations at Marine Corps Base Camp Pendleton, USMC evaluators selected First Person View (FPV) platforms from Auterion, ModalAI, Neros, and Nokturnal – as well as one component from Kraken Kinetics – to move from the FPV tactical kinetic effects Phase of Project G.I. These selections will now undergo verification for National Defense Authorization Act (NDAA) compliance and a cyber security review. Over the coming months, as these selections complete the verification process, the Blue UAS List and Blue UAS Framework will expand with new additions, double the amount of FPV’s available for purchase and use in the Department of War from two to four, provide capabilities like fiber optics not currently available, and deliver improved software capabilities.

Additional winners may be announced in the future.

The next six months will feature a series of three iterative 60-day sprints to develop new capabilities and improvements based on end user feedback provided by 3rd Light Armored Reconnaissance Battalion, the Marine Corps designated unit to provide end user feedback. Testing will occur in representative electronic warfare environments, in a variety of geographic locations, and will integrate companies with end users directly to remove bureaucracy from the feedback process. The addition of these new capabilities will continue to provide Department of War warfighters the ability to acquire these capabilities multiple years in advance of the current DoD program of record timeframes. As DIU completes the NDAA and cybersecurity verification process, updates to the Blue UAS List and the Blue UAS Framework will be published here. (Source: UAS VISION/Defense Innovation Unit)

 

26 Sep 25. Cuashub.com said today that U.S. and Saudi forces lead largest C-UAS exercise in Middle East. The United States and Saudi Arabia have conducted the Middle East’s largest live-fire counter-UAS exercise, bringing together more than 300 personnel and 20 different systems to test layered defenses against modern drone threats. The exercise took place Sept. 7 – 16 at the Shamal-2 Range in northeastern Saudi Arabia as part of the Red Sands Integrated Experimentation Center. It marked the fourth iteration of Red Sands since its launch in 2023 and focused on integrating radar, sensors, electronic warfare and kinetic effectors into a unified defensive architecture. Adm. Brad Cooper, the new commander of U.S. Central Command (CENTCOM), and Gen. Fayyadh bin Hamed Raqed Al-Ruwaili, Chief of the General Staff for the Royal Saudi Armed Forces, visited the event on Sept. 16. The trip was Cooper’s first to the region since assuming command.

“Threats posed by the proliferation of advanced drones are a pressing challenge,” Cooper said during the visit. “Working shoulder-to-shoulder with regional partners to innovate and adapt is more critical than ever.”

The training highlighted multi-domain responses to drone attacks, including ground-based systems such as Skyguard, Shikra and the Mobile-Low, Slow, Unmanned Integrated Defeat System (MLIDS), as well as electronic warfare tools. Newer detection technologies were also evaluated, including the Signal Hunter, a body-worn passive RF sensing and geolocation device, and the Buffer Passive Acoustic Detection System (BPADS). U.S. and Saudi aircraft including AC-130 gunships, AH-64 Apaches, F-15s and Typhoon fighters supported the exercises by engaging aerial targets. Scenarios culminated in close-range engagements using Drone Defeat Rounds (DDRs), 12-gauge shotgun shells carrying tungsten pellets designed to neutralize small drones. The Red Sands initiative was created to provide a testbed for new technologies and tactics while strengthening interoperability among U.S. and regional partners. Organizers said the latest iteration built on lessons learned in previous experiments and accelerated the integration of rapidly prototyped systems into operational training.

https://cuashub.com/en/content/u-s-and-saudi-forces-lead-largest-c-uas-exercise-in-middle-east/ (Source: https://cuashub.com/

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation. For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 26, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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25 Sep 25. NATO Tests Unmanned Airship as Maritime Surveillance Platform.  An unmanned hydrogen-powered autonomous surveillance airship the size of a small bus has been floating over Portuguese waters, collecting imagery of ships and other objects. The goal of these test flights is to see if this airship can provide NATO with situational awareness of the maritime domain. The flights are part of the alliance’s annual demonstration seeking new robotic technology to boost its defenses. The airship is one of several systems that NATO is evaluating during this exercise, which is called Robotic Experimentation and Prototyping using Maritime Unmanned Systems (REPMUS) 25 and Dynamic Messenger (DYMS) 25. NATO is also trialing unmanned surface and underwater vehicles, as well as other aerial ones, as part of the exercise. The airship being tested is made by the Finnish Kelluu company, which also operates the aircraft. It is one of about 10 that are providing imagery and other sensing capabilities for commercial and scientific purposes. With NATO already conducting maritime security missions, the company sees a potential military role for its airships to provide persistent, low-level surveillance. The Kelluu LTA is relatively small as far as airships go, clocking-in at about 12 meters long. It can fly for up to about 12 hours at low level, the company states. They are designed to carry an assortment of sensors, including electro-optical/infrared cameras and passive systems that can detect electromagnetic emissions. Able to launch from austere locations with no runways, these airships operate “very quietly and without emissions, providing real-time connectivity without being limited by radio-link ranges (BRLOS),” company CEO Janne Hietala told us on Wednesday. NATO officials did not want to elaborate on any particular system taking part in REPMUS25. However, they did discuss the overall goals for this demonstration.

“All of these systems require experimentation and integration into the operational environment,” Cmdr. Arlo Abrahamson, spokesperson for NATO’s Allied Maritime Command, told TWZ on Wednesday. “We want to place these systems in the hands of our operators and ensure those systems meet the operational requirements of Allied forces.”

Dynamic Messenger/REPMUS is working to bring new unmanned systems into the operational environment by gaining user feedback to spur development, Abrahamson told us. With the tests still being conducted, it is too early to say if or how an airship would be useful for NATO operations, Abrahamson noted. (Source: UAS VISION/The War Zone)

 

25 Sep 25. C-UAS System Accidentally Available in Rose-Gold. Engineers at a defense start-up accidentally ordered parts in a colour popular for cell phones and smart watches, but less so for drone-killing machine gun systems. The Austin, Texas-based start-up behind the machine — an automated tracking system designed to shoot down drones, and known as the Bullfrog — delivers the device in traditional military field colors — green, tan or black. But thanks to an ordering snafu, a recent shipment of cladding arrived in the pinkish-metallic hue known as rose gold. Which is how the company ended up with an in-house model they call “Rosie.” The Bullfrog is made by Allen Control Systems, which markets the device as a low-cost remote weapon system to combat the existential drone problem that 21st-century militaries will face. The Bullfrog uses artificial intelligence to track, detect and shoot down unmanned aerial systems, or UAS, that fly within small arms range of bases or vehicles. It’s compatible with weapons commonly used by infantry, like M240 medium machine guns. The system can work autonomously or be controlled by an operator, according to the company.  Company lore is mixed on how exactly it happened. CEO Mike Wior suspects someone intended to order a tan color but picked the gold hue instead.

President Steve Simoni says he thinks his team was following his orders to “make it look beautiful.”

“When you’re destroying drones, you want to look good,” said Simoni, who also referred to it as “the iPhone of turrets.”

Company officials shared pictures of the fashionably clad mounts with reporters, including Task & Purpose.

“It’s for the girls,” said one female defense reporter.

The company has shopped the drone-killer equipment to all military services but is still in conversations over formal contracts. They are primarily targeting work with the Army and Special Operations Command, which is known for being an early adopter of new defense tech.

“Look, if SOCOM wants it in rose gold, it’s certainly available,” Wior said. “I think the Saudis and the Emirates might buy the rose gold.”

AI-Powered Drone Kills

The Bullfrog uses electro-optical systems for scanning the skies — instead of radar like other detectors — so the weapon doesn’t emit an electromagnetic signature, which is key for the modern battlefield where detection can be deadly. The Bullfrog is classified as a remote-controlled weapon system, which Simoni said means it would normally be controlled by a human using a joystick to aim and fire.

“In our remote weapon station, now, that can be done autonomously, which allows you to hit much faster, smaller, moving targets like drones,” Simoni said. “With a joystick control, they can’t hit drones because the drone moves out of the screen too quickly.”

The company says the system is capable of taking out drones up to 800 meters away that are classified as Groups 1, 2 and 3 UAS, which range from lightweight, handheld sizes to others that weigh over 1,000 pounds. For the modern battlefield, the Bullfrog was built to do point defense against short-range threats, Simoni said. This applies to “any asset that you want to defend in a one-mile, one-kilometer radius around it,” he said. “Any sort of vehicle that’s driving, like a logistics convoy, tanks, things like that, all need a point defense right now. They have no point defense against drones, which is why you see in Ukraine that there’s not a lot of tanks running around right now.” The company also hired video game engineers to feed its algorithm with synthetic data from “realistic models,” Wior said. These engineers design thousands of images of a wide variety of drones in different environments and at different times of day, images that are then used to train the system’s AI.

“Imagine a new drone is on the battlefield wreaking havoc. You wanna be able to recognize that drone specifically and the model as quickly as possible,” Wior said. “If it just hits the battlefield, it could take months, years, [to compile] enough data to feed a computer vision system for it to be able to reliably detect and identify that specific drone.”

Newcomer to Defense Tech

Allen Control Systems was founded by Wior, Simoni and Luke Allen, the chief technology officer. Simoni and Allen are both former Navy nuclear engineers.

Wior said the fact that they’re part of conversations, even with technology that has not been battle-tested, shows the direction that the military is going. While the Pentagon used to invest in technology “that was just on paper,” now they’re getting more experimental, which is the core focus of the Army’s Transforming in Contact initiative.

“Working with companies like ours, what it means is I’m gonna start paying for getting this integrated onto a vehicle platform so that when this is ready to be put in soldiers’ hands, I already have a plan to install it on a tank, on a Bradley, on a Paladin, on any of the ground combat vehicles, [unmanned surface vehicles],” he said. “That’s the type of conversations that we’re having with the military.” (Source: UAS VISION/Task & Purpose)

 

25 Sep 25. BIRD Aerosystems, a global provider of innovative airborne defense solutions, today announced that it has achieved a significant milestone with the certification of a new Supplemental Type Certificate (STC) by the Israeli Civil Aviation Authority (CAAI) for the KING AIR 350C platform. This STC enables comprehensive enhancements tailored to Intelligence, Surveillance, and Reconnaissance (ISR) and special mission operations, dramatically increasing the aircraft’s versatility and mission readiness. Key provisions of the certified configuration include center fuselage hard points capable of supporting payloads of up to 390kg (860lbs), as well as front fuselage hard points supporting up to 100kg (220lbs). The certification also incorporates advanced mission provisions such as four separate GNSS antennas, an AIS/LOS data link antenna, and dedicated cabin wiring for intercom and crossover panels, enabling seamless power and data integration between onboard sensors and operator workstations. These features allow for the integration of a broad range of ISR payloads such as EO/IR sensors, multi-mode radars, and NATO-standard 30” pylons, transforming the KING AIR 350C into a highly adaptable, multi-role platform.

Tal Haloutz, VP Solutions at BIRD Aerosystems, stated: “The KING AIR 350C STC is another important step in expanding our ASIO portfolio. By providing our customers with a flexible, multi-role platform that can be rapidly adapted for ISR and special missions, we are reinforcing our commitment to delivering cutting-edge solutions for every mission and every challenge.”

BIRD’s ASIO (Airborne Surveillance, Intelligence and Observation) solution is a field-proven, end-to-end ISR system designed for maritime and ground surveillance, search and rescue, patrol, and border protection missions. Leveraging BIRD’s proprietary MSIS (Mission Management System), ASIO integrates data from a wide range of sensors and communication systems to deliver real-time, accurate intelligence to decision-makers and field operators. Highly customizable and rapidly deployable, ASIO enables even small crews to cover vast geographic areas with enhanced situational awareness and operational efficiency. This latest certification adds to BIRD Aerosystems’ growing portfolio of certified airborne platforms and reflects the company’s ability to deliver mission-ready solutions across a wide range of aircraft- light planes, turboprops, and jet- for defense and homeland security agencies worldwide.

 

23 Sep 25. Raytheon, an RTX (NYSE: RTX) business, has unveiled the latest iteration of its combat-proven APG-82 radar, the APG-82(V)X. The new radar variant incorporates cutting-edge gallium nitride (GaN) technology to enhance the radar’s effectiveness, delivering increased range, advanced air-to-air, air-to-ground and electronic warfare capabilities.  APG-82(V)X enables faster target detection, tracking and engagement with multi-function fire control and electronic warfare capabilities. As an advanced active electronically scanned array radar, it uses thousands of transmit and receive modules, which enable the radar to rapidly switch between transmitting and receiving signals, providing greater reliability and more precise targeting against aerial threats like cruise missiles, drones and modern fighter aircraft.

“The enhanced capability of this next-generation radar enables aircrew to detect and engage threats at longer ranges than ever before, providing a crucial first-look, first-shoot advantage,” said Dan Theisen, president of Advanced Products and Solutions at Raytheon. “As the threat environment evolves, this new radar will ensure faster decision making and superior situational awareness in contested environments.”

The APG-82(V)X radar incorporates GaN technology, which provides greater range without needing additional power. It’s scalable and built with open architecture standards, with next generation technology and improved processor speed, providing significantly increased capability to current and future generation aircraft. Development of the radars has begun in El Segundo, California and production of the radars will leverage mature production lines in Forest, Mississippi. (Source: PR Newswire)

 

22 Sep 25. Cuashub.com said today that DroneShield to expand AI R&D in Virginia for DoD alignment. DroneShield has announced it will significantly expand its research and development operations in the United States, more than doubling its U.S. workforce and adding a second location to its headquarters in Virginia. The Australian-listed company said over 30 percent of the new positions will focus on software development, particularly in artificial intelligence. The expansion is intended to accelerate product development cycles and improve support for U.S. customers, according to company officials. DroneShield’s move in Virginia follows recent steps to expand production capacity in Australia and open a new office in the European Union. The company framed these efforts as part of a broader strategy to increase its presence in key markets and respond to what it described as rapidly growing global demand for counter-UAS technology. Executives said the U.S. expansion will also allow the company to align more closely with the Department of Defense’s push for faster acquisition of counter-drone capabilities.

“This investment enables us to be more responsive to the growing needs of our U.S. customers across the various sectors we serve,” said Tom Branstetter, Vice President of Sales and Business Development at DroneShield LLC.

DroneShield, which develops systems for detecting, tracking and defeating drones, has in recent years positioned itself as a supplier to military, government and critical infrastructure operators facing the growing challenge of small uncrewed aerial systems. https://cuashub.com/en/content/droneshield-to-expand-ai-rd-in-virginia-for-dod-alignment/ (Source: https://cuashub.com/)

 

23 Sep 25. Cuashub.com said today that Ukrainian forces down $7m Russian drone. Ukrainian troops have destroyed a Russian Forpost UAS, a system used for reconnaissance and precision strikes, according to the 95th Separate Air Assault Brigade. The brigade said its paratroopers intercepted the UAS on September 22 during a combat mission.

“That Forpost still had a slim chance to escape, since its speed exceeded 160 km/h. But it did not help. We destroyed it… and went to look for a new target,” the unit stated in a post on social media.

The Forpost, estimated to cost about $7 m, is considered one of the more expensive drones in Russia’s arsenal. The system is capable of carrying guided munitions such as KAB-20 bombs in addition to its reconnaissance equipment. Specifications include a maximum altitude of up to 7 kilometers, a control range of 250 kilometers, and a payload designed for both surveillance and strike missions. The platform was originally developed using Israeli technology and has been in Russian service for several years. It is frequently deployed for frontline surveillance and precision targeting. Ukrainian officials have stressed that destroying such systems reduces Russia’s capacity to conduct long-range reconnaissance and strike operations. This is the latest effort by Ukrainian forces in an ongoing campaign to degrade high-value Russian aerial assets. In April, the 414th Separate UAV Brigade reported the downing of another Forpost drone during a high-altitude mission, reportedly struck by a first-person-view drone at 4,000 meters. https://cuashub.com/en/content/ukrainian-forces-down-7-m-russian-drone/ (Source: https://cuashub.com/)

 

23 Sep 25. Cuashub.com said today that EU ramps up talks on “Drone Wall” to protect its eastern border. European Union officials and frontline member states are accelerating discussions on creating a so-called “drone wall” to protect the eastern border following a string of Russian airspace violations involving both aircraft and drones. On Friday, representatives from Estonia, Latvia, Lithuania, Finland, Poland, Romania and Bulgaria are set to meet with Ukraine and European Commissioner for Defence and Space Andrius Kubilius to discuss the proposal, according to the European Commission. The meeting will focus on assessing needs, capabilities and possible EU support measures. The renewed urgency follows a September 19 incident when three Russian jets violated Estonian airspace for 12 minutes before being intercepted by Italian F-35s and earlier Russian drone incursions into Poland that Polish and NATO forces responded to.

“Recent attacks and incursions have already occurred in Romania and Poland,” Commission spokesperson Thomas Regnier said, noting the project is a direct follow-up to President Ursula von der Leyen’s State of the Union pledge to back an EU-funded drone wall.

Kubilius told Reuters he will also convene a separate video conference with Eastern European defence ministers and a Ukrainian representative to advance the idea.

“We want really to move ahead with very, very intensive and effective preparations to start to fill this gap, which is really very dangerous for us… as quickly as we can do it,” he said.

The commissioner, a former Lithuanian prime minister, described the envisioned system as a mix of sensors, jamming equipment and weapons to detect and neutralise drones.

He added that Ukraine could contribute lessons learned from its extensive counter-UAS operations since Russia’s 2022 invasion. Ukrainian Defence Minister Denys Shmyhal has already announced plans for joint training between Ukrainian and Polish forces on counter-drone measures. Discussions are still at an early stage, with cost and timelines not yet clear. Analysts have suggested such a network could be established within a year, though a previous €12m joint funding request from Estonia and Lithuania was rejected by the Commission earlier this summer. EU leaders are expected to revisit financing options at an October 1 meeting in Copenhagen. https://cuashub.com/en/content/eu-ramps-up-talks-on-drone-wall-to-protect-its-eastern-border/ (Source: https://cuashub.com/)

 

24 Sep 25. Kongsberg Discovery and Aker Solutions are joining forces to showcase a drone (UAV) detection system in Stavanger, using Kongsberg’s Drone Detection Radar. This marks the beginning of a broader rollout of infrastructure products in the North Sea to enhance situational awareness around offshore assets and transit lanes. Kongsberg Discovery develops subsurface, acoustic, navigation, and marine robotics systems, including AUVs and USVs. The company’s technologies are used in navigation and infrastructure protection, offering products such as Drone Detection Radar, Mobile Broadband Radio, integrated camera systems, and acoustic solutions for subsea monitoring and surveillance. Aker Solutions brings integrated energy solutions, enabling low-carbon oil & gas and advancing renewables like offshore wind, CCS, and hydrogen. Kongsberg Discovery and Aker Solutions plan to implement the drone detection system in phases, starting with a demonstrator at Aker Solutions at the Stavanger site to showcase to potential customers. The system will then be deployed offshore and gradually expanded with camera clusters and underwater sensors to enhance situational awareness. According to Joachim Hovland, Head of Drones and Robotics in Aker Solutions, this cooperation sets a new standard

“This collaboration marks the beginning of a scalable solution to enhance situational awareness at critical infrastructure, offshore and onshore. By combining Kongsberg Discovery’s technology expertise with Aker Solutions’ integration and domain knowledge, we are setting a new standard for safety and security at sea.”

Later phases include installation on supply vessels, integration with onshore control centres, broader rollout across rigs and vessels, and eventual expansion to other countries. Aker Solutions will act as system integrator, with Kongsberg Discovery as sub-supplier, and the demonstrator will be available for joint customer presentations.

According to Cato Giil Eliassen, VP Infrastructure in Kongsberg Discovery, recent incidents again show the need for establishing a drone detection system in connection with critical infrastructure:

“There have been many observations of drones close to critical infrastructure in the last couple of years. Few are properly documented. This cooperation between Aker Solutions and Kongsberg Discovery will provide the end customer with proper tools to monitor, record and document illegal, as well as legal, UAV activity around installations.” For further information please see https://www.kongsberg.com/discovery

 

22 Sep 25. Cuashub.com said today that. Tron Future Tech and Huneed Technologies sign MOU at TADTE 2025. Tron Future Tech announced the signing of a Memorandum of Understanding (MOU) with South Korea’s Huneed Technologies during the Taipei Aerospace & Defense Technology Exhibition (TADTE). The agreement sets the framework for joint research, development and market expansion in areas including maritime drone defense and military wireless communications. The signing ceremony was attended by Tron Future Tech CEO Dr. Yu-Jiu Wang and Huneed Technologies Head of Industrial Cooperation Russell Kim. Under the agreement, the companies plan to combine Tron Future’s radar and counter-drone expertise with Huneed’s capabilities in communication networks and maritime platforms. Both executives highlighted the context of rising defense budgets in Taiwan and South Korea, pointing to shared security challenges in the region. They framed the partnership as a step toward strengthening cooperation in defense technology while also positioning the companies to pursue opportunities beyond their domestic markets. The collaboration will focus on advancing multi-domain defense solutions, with an emphasis on artificial intelligence, advanced sensing and integrated communications. Company representatives said the partnership is intended to support not only market growth in Taiwan and South Korea but also wider engagement in international defense programs. The agreement marks one of the higher-profile announcements at this year’s TADTE, reflecting growing interest in regional defense cooperation amid heightened geopolitical tensions in East Asia. https://cuashub.com/en/content/tron-future-tech-and-huneed-technologies-sign-mou-at-tadte-2025/ (Source: https://cuashub.com/)

 

22 Sep 25. Cuashub.com said today that Sentrycs wins Army Technology Innovation Award for counter-drone system. Counter-drone technology provider Sentrycs has been named a winner in the 2025 Army Technology Excellence Awards, receiving recognition in the Innovation category for its work in the counter-UAS field. The annual awards, organized by GlobalData, highlight companies identified through analysis of large-scale datasets on innovation, R&D, product launches and business growth across the defense sector. Sentrycs’ award focused on its Cyber over RF (CoRF) system, which uses protocol-level analysis of radio frequencies to detect, identify and mitigate drones. The company says the system can provide security operators with data including drone serial numbers, flight characteristics and the location of operators, supporting more rapid responses to unauthorized drone activity. The CoRF approach is designed for use in both fixed-site and mobile deployments, with a single sensor able to monitor a 10-kilometer diameter. Sentrycs also promotes compatibility with other established counter-drone platforms, such as Rafael’s Drone Dome and Leonardo’s Falcon Shield. The company has positioned its technology for use by military forces, homeland security agencies, border protection units and operators of critical infrastructure. Its Horizon engine, which applies AI to the RF environment, is intended to track both commercially available drones and custom-built systems operating on non-standard frequencies. GlobalData described this year’s winners as setting benchmarks in defense innovation across more than 200 countries. https://cuashub.com/en/content/sentrycs-wins-army-technology-innovation-award-for-counter-drone-system/ (Source: https://cuashub.com/)

 

22 Sep 25. Cuashub.com said today that NORTHCOM to field rapid-response counter-drone teams for US bases. The U.S. military is preparing to stand up quick-reaction teams capable of responding within 24 hours to drone incursions at domestic installations, according to Gen. Gregory Guillot, head of U.S. Northern Command (NORTHCOM). The announcement came during Falcon Peak 25.2, a counter-drone evaluation held at Eglin Air Force Base, Florida, where NORTHCOM demonstrated one of the new “fly-away kits” designed for the mission. The move follows a sharp rise in drone activity reported near U.S. bases. According to NORTHCOM, there were about 230 reported incursions between September 2023 and September 2024, a figure that grew to roughly 420 over the following year. Previously, NORTHCOM’s role was limited to advising installation commanders and facilitating the loan of equipment. The new response teams will be able to deploy with detection and defeat systems, including low-collateral kinetic interceptors, to directly support base commanders facing incursions they cannot manage with local assets.

“This is the first quick reaction force for drone response that we’ve had in the homeland,” said Jason Mayes, NORTHCOM’s deputy test director.

The initial team will be based at Peterson Space Force Base, Colorado, with C-130 Hercules aircraft from the co-located 302nd Airlift Wing available to transport the kits nationwide. The plan is to expand to three teams covering the East Coast, West Coast, and Alaska.

The first kit, developed by Anduril, integrates multiple sensors and effectors, including the Anvil interceptor drone, which was demonstrated at Eglin by destroying an aggressor drone in flight. Guillot stressed, however, that the command does not plan to rely on a single vendor and will evaluate additional systems for future kits. The response teams are not intended to counter surprise one-off attacks but to provide layered defense in the event of sustained or complex incursions. Guillot acknowledged that demand for such capabilities will likely grow.

“We’re at a million drones flying in the U.S. annually. I think we’re going to go over 2 m very, very quickly,” he said. “I’d expect to see more and more of these engagements.”

https://cuashub.com/en/content/northcom-to-field-rapid-response-counter-drone-teams-for-us-bases/ (Source: https://cuashub.com/)

 

22 Sep 25. DroneShield (ASX:DRO), a global leader in counter-uncrewed systems (CUxS) technology, today announces it is significantly expanding its research and development (R&D) operations in the United States. This move emphasizes DroneShield’s commitment to expand its R&D and testing capabilities and will result in more than doubling its workforce in the U.S. Over 30% of the new roles will be dedicated to software development and further strengthening its artificial intelligence (AI) team and capabilities. As part of this strategic investment, DroneShield will be adding a second location to its U.S. headquarters in Virginia, reinforcing its dedication to breakthrough technology and better positioning the team to meet rapidly growing global demand for advanced CUxS solutions. This U.S. expansion follows the company’s recent announcement of its expansion of production facilities in Australia and new office established in the European Union. DroneShield’s global strategic investments are part of a concerted effort to broaden its international footprint and establish a stronger physical presence near customers in key markets.

“As we continue to scale our operations globally, this expansion in the U.S. plays a crucial role in enhancing our ability to innovate and deliver advanced solutions for the evolving defense industrial base right here in the U.S.,” said Matt McCrann, CEO of DroneShield LLC. “We’re investing in the future of defense, and our growing footprint and impact in the U.S. market directly supports that effort.”

The expanded U.S. facility will enable DroneShield to accelerate its product development cycles and better service its growing customer base. The addition of key personnel to the R&D team will help drive forward-thinking technological advancements and ensure the company remains responsive to the needs of its customers.

“We’re not just expanding our operations, we’re doubling down on our commitment to providing best-in-class counter-drone solutions,” said Tom Branstetter, Vice President of Sales and Business Development, DroneShield LLC. “This investment enables us to be more responsive to the growing needs of our U.S. customers across the various sectors we serve.”

Combined with expanded R&D and planned U.S. production initiatives, the robust growth positions DroneShield to support U.S. Department of Defense’s push for fast, risk-embracing acquisition of cutting-edge counter-drone solutions.

“Expanding our U.S. technology team strengthens our ability to support critical programs and deliver advanced solutions with greater speed and precision. This investment ensures end users benefit from responsive, real-time support and the depth of expertise required for mission success,” said DroneShield’s Chief Product and Technology Officer, Angus Bean.

This expansion supports DroneShield’s bold strategy for global growth. With a commitment to innovation and leadership in counter-UxS technology, DroneShield is positioning itself to meet the increasing global demand for advancing security solutions. These strategic moves ensure that the company remains at the forefront of the industry, ready to address the evolving challenges of an interconnected and rapidly changing world.

 

22 Sep 25. Northrop Grumman Teams with Industry Partners to Deliver Advanced Radar to Taiwan. Northrop Grumman Corporation (NYSE: NOC) has formed a team of in-country partners to deliver advanced radar capabilities to Taiwan. Ramatek Company, Champion Auto, and Vivian and Vincent International Trading Company Ltd. have signed memoranda of understanding with the company to bring the AN/TPS/78 Advanced Capabilities Radar to Taiwan.

Greg Teitelbaum, vice president, land and maritime sensors, Northrop Grumman: “The AN/TPS-78 ADCAP radar is a proven, long-range and highly mobile system that will significantly enhance Taiwan’s air surveillance capabilities. We are dedicated to partnering with Taiwanese industry to strengthen Taiwan’s self-defense capacity.”

Built on more than 60 years of company experience in high-performance radars, the long-range AN/TPS-78 ADCAP is fielded worldwide. Operating in the S-band frequency to reduce bandwidth interference, the system delivers superior performance in highly cluttered environments. The stacked beam architecture allows it to detect high- and low-altitude targets in all weather conditions. Its compact system size is designed for reliability and mobility, providing an easily transportable solution with low-cost logistics.  (Source: ASD Network)

 

18 Sep 25. UK Ministry of Defence reveals civil C-UAS deployments.

The Ministry of Defence (MoD) has released new details on Military Aid to the Civil Authorities (MACA) tasks carried out by 2 Counter-Uncrewed Air Systems (C-UAS) Wing since 2022.

The UK Defence Journal reports that in response to a written question from Ben Obese-Jecty MP on 16 September, Defence Minister Al Carns confirmed that the Wing has been deployed on 13 MACA requests between 2022 and September 2025.

The response noted several deployments in support of UK police forces:

  • 24 July – 10 August 2022: Birmingham – West Midlands Police
  • 9 – 14 September 2022: Edinburgh – Police Scotland
  • 13 – 20 September 2022: London – Thames Valley Police
  • 3 – 8 May 2023: RAF Northolt – Metropolitan Police and Thames Valley Police
  • 8 – 14 May 2023: Liverpool – Merseyside Police
  • 15 – 17 June 2023: London – Metropolitan Police
  • 20 – 23 June 2023: London – Metropolitan Police
  • 3 – 6 June 2024: Portsmouth – Hampshire Police
  • 15 – 29 July 2024: Blenheim Palace – Thames Valley Police

(Source: www.unmannedairspace.info)

 

24 Sep 25. Dutch radar firm Robin turns bird-spotting skills into drone defense. Robin Radar got into drone detection in the early 2010s, when the company needed predictable targets to validate its bird-spotting radars, founder and CEO Siete Hamminga recalls. The Dutch startup considered partnering with a pigeon club to release homing pigeons, the executive told Defense News in an interview at the DSEI UK defense show in London earlier this month. In the end, the company turned to drones, their controlled flight allowing to validate detection – a practical move that would prove to be fortuitous. Today, drone detection accounts for a majority of Robin Radar’s revenue, with defense applications dominant, Hamminga said. As small drones and swarms becoming a staple of modern war, “you need to be able to detect a large number of targets simultaneously,” Hamming said. “Since we came from the bird-radar world, in which there are always huge amount of birds in the air, that was no challenge for us.” Robin Radar was Europe’s second-fastest growing company in aerospace and defense behind Finland’s ICEYE, according a Financial Times ranking published in March, with revenue jumping to €43m ($51m) in 2023 from €5.5m in 2020. Hamminga expects to scale up production capacity to at least six radars per week by the end of 2025, after the company increased the pace to four radars per week last year. Robin was producing around 20 radars annually about five years ago, the CEO said. The Dutch Ministry of Defence in 2023 bought 51 of the company’s IRIS drone-detection radars to donate to Ukraine, then the biggest contract in Robin Radar history. The ministry ordered the same number of systems for Ukraine in 2024, with the newer radars equipped to be used on the move, and doubled that this year, according to Hamminga. Roughly the size of a fat beer keg, the IRIS radar weighs 29 kilograms and can be mounted on a vehicle or a tripod. The radar costs less than $1 m per unit, Hamminga said. The CEO says more than 200 of the company’s radars are now deployed in Ukraine to help detect Russian drones. He said Robin reached out to the Dutch MoD after seeing what drones were doing in the embattled country.

“Like other countries, the Netherlands asked Ukraine, `how can we help?’ and a lot of answers were in the direction of air defense, counter-drone systems,” Hamminga said.

As for many Western defense firms, the war in Ukraine has been a test bed for Robin. Feedback from the frontline prompted the development of a mobile version of IRIS, and the company this month rolled out a software update to extend the radar’s detection range to 12 kilometers from 5 kilometers, based on direct input from Ukrainian operators. The company says the latest upgrade makes IRIS one of the first off-the-shelf radars proven to detect and classify Shahed loitering munitions and other fixed-wing drones at long distances, with every kilometer of extra detection providing defenders with “more precious seconds” to react. The money from defense orders has allowed Robin Radar to scale up its business and hire talent, including “fantastic engineers” who wouldn’t have joined the company 10 years ago, according to the CEO. He expects to end the year with around 225 employees, from around 25 in 2020. Within defense, the company is now seeing a shift from Ukraine to NATO countries investing in their own capabilities, as Western military leaders consider how to deal with a mass drone threat similar to the one on the Ukrainian battlefield.

Hamminga said Robin doesn’t compete with defense primes but fills a gap for short-range, cost-efficient drone radars, having distribution agreements with Thales, Saab and other radar suppliers. It’s a niche also being pursued by the likes of Echodyne in the United States and Blighter in the United Kingdom, though neither shares Robin Radar’s background in bird science.

Robin Radar was among the first to commercialize a technology called micro-Doppler for drone detection, looking into the details of a radar echo to measure the Doppler effect caused by moving parts such as rotors.

A plan to identify bird species on radar through a database of wing beats didn’t work out in part due to the “ridiculously large” number of species, but was the key to distinguishing birds from drones, the executive said. Robin Radar is now combining micro-Doppler signatures with machine learning to grow the classification database for drones. Work on the underlying technology started at Dutch research institute TNO in 1980 as a project to prevent bird strikes for the Royal Netherlands Air Force, called Radar Observation of Bird Intensity. Hamminga, a tech entrepreneur working with TNO, spun out the company from the institute in June 2010.

The CEO said Robin couldn’t build something like the Thales Smart-L long-range radar, and “we don’t have that ambition,” but the French company used Robin Radar systems to help protect the Olympic Games in Paris.

As the defense business grows, Robin Radar remains committed to civilian markets, the CEO said, calling the radar maker typical of a new breed of company not focused solely on defense. He said both airports and wind farms are growth markets for bird radar.

“I think you will see in the next five years that the most successful companies and successful scale-ups will have that characteristic, dual use, civil and military,” Hamminga said.

The company’s 2030 plan envisages Robin Radar entering the market for unmanned traffic management as drones integrate in commercial airspace, with the radar maker “moving from protecting against drones to also facilitating commercial drone cases,” Hamminga said.

Robin Radar won its first major order in 2012 from Amsterdam’s Schiphol airport, its launch customer, and the civil business these days is roughly split between bird-detection radars for aviation and wind farms, according to Hamminga.

The company in 2014 received a Dutch government grant to pursue a feasibility study into solutions for detecting and eliminating drones. Dutch investment firm Parcom became a majority owner in 2024, as Hamminga sought a new shareholder able to “bring Robin Radar to the next level.”

“This is a private equity who will fund almost any good idea if it makes sense, so it gives me flexibility to grow,” the CEO said. “Of course, I feel the pressure – I can be very satisfied about the growth we had, but for them that’s point zero, and now we need to go times three.” (Source: Defense News)

 

23 Sep 25. Drone Busting: Smart Devices Work Together to Knock Out UAS Threats. What’s harder to shoot down than a small drone in the sky? Students at the War Department’s only joint training center for countering aerial threats will likely say it’s what they practice on — balloons attached to those small drones. Drones can fly at racecar speeds, making them difficult targets to hit by an individual on the ground. At the Joint Counter-Small Unmanned Aircraft System University, located at Fort Sill, Oklahoma, students use handheld smart devices to help them increase their probability of scoring a hit. Known as the Dronebuster and Smart Shooter, these two handheld systems work in tandem as a layered defense that uses electronic and kinetic warfare to do the hard work for the shooter. Students who attend JCU learn about various drones and the intricate service-specific systems used to engage with them. The Dronebuster and Smart Shooter, however, are two of the few used by service members on the ground, such as patrol members or personnel guarding installation towers.

So, how do these tandem devices work?

When service members are warned of a drone presence, the Dronebuster can be held up like a weapon to scan the area. Once it identifies a hostile target, the service member simply presses a button on the device to disrupt the target using electronic warfare.

“It’ll start jamming the command and controls, severing that connection between the drone and the operator,” explained JCU operator’s course instructor Paul Bliefernich.

The drone remains frozen in the air. That’s when a second operator picks up the Smart Shooter, an optic system that attaches to a weapon to control how it fires.

“Typically, when you pull the trigger, you’re used to a gun going ‘bang.’ doesn’t do that,” explained JCU operator’s course supervisor Fred Hill. “It calculates, and then it shoots when it’s ready to shoot.”

“When get to the target they want, they’ll hit the ‘lock’ button … and start squeezing the trigger,” Bliefernich explained. However, the weapon doesn’t immediately fire. Instead, its computer takes over and displays a set of crosshairs in the scope that the operator aligns with the target. When the computer decides there’s a good probability of a hit, it sends a command to the pistol grip, allowing the operator to complete the trigger pull and fire the weapon.

Bliefernich said it can take from a few seconds up to two minutes. “It’s doing calculations and taking a lot into consideration,” he added.

Since shooting down several drones per class isn’t cost-effective, JCU students mostly shoot balloons attached to drones. It’s a more challenging target, but with practice, it can make them a better shot.

“The balloons are harder to shoot than the drone,” Hill said. “Once the shooter gets toward the end of the training, we’ll put up the aircraft and let them shoot at the aircraft.”

“It takes a lot of time and practice,” Bliefernich said.

The students are also able to train on the Smart Shooter in the virtual reality lab beforehand, which instructors said is both cost-effective and safer.

“It’s getting the soldiers, airmen and sailors familiar with the equipment before they ever come and start shooting on the ground,” said Army Sgt. 1st Class Alan Buhl, JCU instructor.

The school teaches soldiers, sailors, airmen and Marines much more than just how to operate handheld drone equipment. Students also learn how to use various fixed-site counter-small UAS systems, as well as how to plan strategies, train others and better prepare their installations for future threats. Joint Counter-Small Unmanned Aircraft System University became operational in 2023. Fort Sill is home to the Army Field Artillery School, the Army Air Defense Artillery School, the 75th Fires Brigade and the 31st Air Defense Artillery Brigade, all of which have nurtured counter-small UAS strategies since the threat first emerged.  (Source: U.S. DoD)

 

16 Sep 25. US House hearing to discuss rise of malicious drone use. The United States House Judiciary Subcommittee on Crime and Federal Government Surveillance will hold a hearing today (September 16) at 2:00 p.m. ET on the emerging threats from drones. The hearing, “Unmanned and Unchecked: Confronting the Rising Threat of Malicious Drone Use in America,” will focus on the growing threat posed by unauthorised and criminal use of uncrewed aerial systems (UAS) in both domestic and international airspace. The subcommittee notes a surge in UAS incursions near US airports as well as the exploitation of drones by criminal organisations and cartels for smuggling, surveillance and attacks. The hearing will examine how these emerging threats endanger public safety and law enforcement operations. Speakers are scheduled to include Sgt Robert Dooley, Statewide UAS / C‑UAS Coordinator within the Office of Emergency Operations, Department of Highway Safety and Motor Vehicles; Brett Feddersen, Vice President of Strategy & Government Affairs, US, at D-Fend Solutions; and Dr. Ryan Wallace, Professor of Aeronautical Science, Embry-Riddle Aeronautical University. (Source: www.unmannedairspace.info)

 

16 Sep 25. Dedrone by Axon, MCS develop C-UAS trailer for Australian, Pacific markets. Dedrone by Axon reports it has collaborated with Mobile Camera Security (MCS) to develop and manufacture a locally-produced DedroneRapidResponse counter-drone trailer specifically for the Australian, New Zealand and Indo-Pacific markets.

“The joint effort has been unveiled at the Australia New Zealand Intelligence Forum (ANZIF), where the new Australian-built trailer will be demonstrated outside the main exhibit hall,” said the company in a press release. “Together, the two companies are seeking to strengthen sovereign counter-drone capability and showcase Australian innovation.

“DedroneRapidResponse is a mobile, trailer-based airspace security solution that offers unparalleled counter-drone capabilities, deployable in under 20 minutes with multi-sensor drone detection including passive radio frequency (RF) sensors, radar and Pan-Tilt-Zoom (PTZ) cameras. As Australian pioneers in diesel and solar-powered mobile surveillance, MCS brings extensive experience in extreme-environment operations and autonomous systems to the solution, ensuring reliable performance for the vast distances and challenging terrain across the Indo-Pacific region.

This Australian manufactured DedroneRapidResponse trailer will be available for live demonstration at ANZIF, where attendees can experience the integrated counter-drone system in operation, said the company.

“The partnership with Queensland-based MCS comes as Dedrone by Axon celebrates its selection for Phase 1 of the Australian Defence Force’s LAND 156 Counter-Uncrewed Aircraft Systems programme, where a number of Dedrone solutions are being evaluated as part of the procurement process. The LAND 156 programme represents Australia’s commitment to rapidly acquiring and deploying layered counter-drone capabilities to protect military and civilian environments.”

For more information: https://www.axon.com/newsroom/announcements/dedrone-by-axon-partnering-with-mcs-to-deliver-australian-built-counter-drone-trailer-for-anz-and-indo-pacific(Source: www.unmannedairspace.info)

 

19 Sep 25. FN Herstal and HENSOLDT team up for Belgian C-UAS tender. FN Herstal and HENSOLDT have signed a Memorandum of Understanding to collaborate on an upcoming tender for the creation of a long-term counter-uncrewed aerial system (C-UAS) partnership for the Belgian defence department. One of the partnership’s objectives is to enhance the protection of military air bases. (Source: www.unmannedairspace.info)

 

19 Sep 25. Laser Photonics and Fonon Technologies C-UAS reaches final in US critical tech challenge. The Laser Shield Anti-Drone (LSAD) system from Laser Photonics Corporation and partner Fonon Technologies (FTI) has been selected as a finalist in the counter-uncrewed aerial systems area of interest under the United States’ Autonomy, AI and Cyber Critical Technology Challenge. FTI will present the development stage technology during the Defense TechConect Innovation Summit and Expo from November 19-21, 2025.

The LSAD system offers precision laser targeting capabilities designed to protect military bases, critical infrastructure facilities, and frontline personnel and equipment. Building on earlier proof-of-concept success, the LSAD has now successfully neutralised an active drone during short-range field tests. Extended range trials at a certified counter-drone testing facility are planned for the next step. (Source: www.unmannedairspace.info)

 

22 Sep 25. Tron Future Tech announces Canadian AI partnership and Sweden contract. Tron Future Tech of Taiwan and Canadian startup AiNOS AI have signed a Memorandum of Understanding on drone management, AI defence and smart city innovation. Under the agreement, Tron Future Tech will contribute its drone detection radars and integrated interception technologies, while AiNOS AI will bring its AI software capabilities from teams in Canada, the United States and South Korea. The companies will build an AI operating system, uncrewed traffic management platform and drone ecosystems. Initial experimental testing will take place in Jeju Island, South Korea, with plans to extend the technology through Tron Future’s Japan office to support Iwate Prefecture’s smart city initiatives. The two companies will deepen collaboration in artificial intelligence through AiNOS AI’s Research & Innovation Lab at the University of Toronto’s SRIC campus and the firms’ global academic network. In other news from Tron Future Tech, the company and Skygaard have signed a purchase order to deploy Tron Future’s drone detection systems in Sweden, with potential for expansion across the Nordic region. Skygaard, headquartered in Stockholm, detects, tracks and counters unauthorised drone flights. Its service includes locating drone operators, neutralising or repelling unapproved drones, and offering 24/7 monitoring, tracking and mitigation. (Source: www.unmannedairspace.info)

 

22 Sep 25. Wescom Defence Launches New IR Eflare at DSEI.

Wescom Defence, in partnership with Eflare, unveiled the new IR Eflare (IR700) at this year’s DSEI exhibition in London. Purpose built for today’s complex operational environments, the IR700 delivers a rugged, high performance infrared beacon designed for covert military use. Emitting an 850 nm near infrared (NIR) light with full 360° coverage, the IR700 enables discreet signalling, identification, and marking without compromising visibility to the naked eye. Optimised Fresnel optics ensure uniform IR distribution for maximum detection by night vision systems, while the non-reflective housing reduces the risk of unwanted visual detection. With extended battery life, over 100 hours flashing and 50 hours steady on operation, and a discreet LED low battery indicator, the Eflare IR700 provides dependable, long duration performance in demanding field conditions.

The Eflare IR700 is designed for a wide range of military scenarios, including:

  • Marking helicopter landing zones (LZ) and CASEVAC points at night
  • Covert personnel or vehicle identification for air and ground forces
  • Route and perimeter marking during night manoeuvres
  • Search and rescue / personnel recovery operations
  • Special operations insertion and extraction

Speaking at the launch, Wescom Defence highlighted that the new IR Eflare represents a step forward in soldier survivability and mission effectiveness, complementing the company’s broader portfolio of detection, signalling, and screening solutions. The unveiling at DSEI underscores Wescom Defence’s commitment to delivering Survival Solutions You Can Trust, reinforcing its position as a complete capability partner to military and security organisations worldwide.

 

22 Sep 25. AIDC unveils new directed energy weapon for air-defence networks.

Taiwan’s Aerospace Industrial Development Corporation (AIDC) has unveiled a new ‘high-energy’ directed energy weapon (DEW) that the company said can be used to destroy unmanned aerial vehicles (UAVs) at ranges of more than 1,000 m.

Speaking to Janes during the Taipei Aerospace & Defense Technology Exhibition (TADTE) 2025, held in Taiwan from 18 to 20 September, Ru-Woei Hsia, AIDC’s energy business director of Program Technology Implementation, said the laser weapon, which currently has an energy output of 8 kW, has a range of between 1 and 2 km.

However, according to Ru-Woei, efforts to assess the effective range of the weapon have encountered a special problem – limited space to conduct longer-range tests.

“So far, we have tested the system up to 150 m. Because Taiwan is a small island and testing the laser is dangerous, we have to find a closed-off place to conduct additional long-range tests. So, our efforts to extend the test range up to 1 km and 2 km [are] ongoing,” he said.

Systems integrator

Ru-Woei described AIDC’s role in the weapon programme as being that of a systems integrator. “This is because the high-energy directed weapon uses systems from multiple companies in both Taiwan and overseas,” he said.

The system’s electro-optic/infrared (EO/IR) camera is proprietary AIDC technology and is used for the real-time detection of UAVs, according to Ru-Woei. However, the system’s fire-control radar (FCR) is an active radar unit from US company Echodyne. The radar unit shown alongside the DEW at TADTE 2025 appeared to be Echodyne’s EchoShield system. (Source: Janes)

 

19 Sep 25. Cuashub.com said today that Think tank warns US is unprepared for mass drone threats. The United States military is unprepared to counter the growing threat of low-cost drones and must urgently expand its defenses, a Washington-based think tank has warned. In a new report, the Center for a New American Security (CNAS) said American forces face mounting risks from drones used as mass precision weapons, both in current operations in the Middle East and in potential future conflict with China over Taiwan. The report, authored by CNAS Defense Program director Stacie Pettyjohn and research assistant Molly Campbell, argues that drones have already undermined U.S. air dominance. Since 2004, Iran has equipped proxy groups with unmanned aircraft that are more accurate than rockets or missiles but far cheaper to produce. U.S. troops have at times used interceptors costing ms of dollars to destroy drones valued at roughly $50,000, a cost imbalance the report described as unsustainable. The study also highlighted the scale of China’s drone development, calling Beijing Washington’s “foremost strategic threat.” The People’s Liberation Army, it said, is rapidly advancing autonomous systems and fielding them in large numbers.  As part of the analysis, CNAS conducted a tabletop exercise simulating Chinese drone operations in a prolonged conflict over Taiwan. In that scenario, U.S. forces deployed on a Japanese outlying island and in the Philippines struggled to withstand sustained drone strikes across the Indo-Pacific’s wide geography. The report concluded that massed Chinese drones could suppress U.S. operations and overwhelm defenses such as jammers, missile interceptors and directed-energy systems. CNAS recommended building large stockpiles of counter-drone weapons and investing in mobile defenses that can be repositioned quickly to protect dispersed forces.

“Without deep magazines of substantially enhanced counter-drone capabilities, the United States risks having its distributed warfighting strategies overwhelmed by massed Chinese drone attacks, and could lose a war over Taiwan,” the report said. https://cuashub.com/en/content/think-tank-warns-us-is-unprepared-for-mass-drone-threats/ (Source: https://cuashub.com/)

 

19 Sep 25. Three Polish Partners Join to Build Unmanned Counter-Drone Aircraft. Three Polish organizations have formed a strategic consortium to build what they claim is Europe’s first unmanned fighter aircraft designed to combat the growing threat of drones, drone swarms and loitering munitions on the modern battlefield. The industry partners — trade company MBF Group S.A., consulting firm Squadron Sp. z o.o. and the technology-focused nonprofit Polish Industrial Lobby — launched the IRYDA Plus project on Sept. 15 to craft a pilotless platform able to neutralize any drone in a cost-effective manner. The wars of the last decade, especially the war in Ukraine and conflicts in various parts of the world, have shown that drones have become an essential tool of the modern battlefield. Swarm attacks, low-budget designs and the ability to carry armaments, and resistance to interference are making classic air defense systems inadequate. The answer to these challenges is the IRYDA+ project, a Polish concept for an unmanned fighter aircraft designed to effectively combat drones, their swarms and circulating munitions, which is a component of the anti-drone system.

Theory and Assumptions

The essence of IRYDY+ is to create an unmanned platform capable of neutralizing any drone – from mini to tactical drones and cruise munitions. The technical assumptions include:

  • top/chase speed: 250-280 km/h,
  • cruising/patrol speed: 180-200 km/h,
  • minimum speed: 50-60 km/h,
  • flight duration: 8-10 hours,
  • payload capacity: 15-20 kg,
  • Armament: carbine cal. 7.62 mm, in a 360° rotating gondola,
  • TAS (Target-Aim-Shot) system supported by artificial intelligence.

This combination of the traditional way of air combat with modern automation makes it possible to create a system that is cost-effective, yet extremely efficient.

Contemporary Theaters of Action

The conflict in Ukraine has shown that effective air defense requires flexible and mobile solutions. IRYDA PLUS will find use in border protection, securing critical infrastructure, protecting command posts and communications nodes, as well as in UN peacekeeping missions. The project meets the needs not only of the army, but also of security services and international organizations.

New Economics of Air Combat

One of the most important strengths of the IRYDA+ project is its economy. Today, missiles costing more than $1 m per unit are often used to shoot down a low-cost drone worth a few thousand dollars. Sometimes combat aircraft such as F-16s and F-35s are pitted against imitation drones, generating huge operational and logistical costs and accident risks for pilots. IRYDA PLUS changes this logic – instead of straining budgets and consuming strategic resources, it offers a solution that is fast, efficient and, above all, many times cheaper to operate. This is an argument that makes the project attractive not only to the military, but also to taxpayers and policymakers.

First steps – Conceptual Model

The project was first presented at MSPO in Kielce in 2023. The trade show mock-up generated a lot of interest and confirmed the potential of the concept. In 2024, it was presented at MSPO to Ukrainian delegates and confirmed its need for existence. Since then, development has accelerated – from tactical studies, simulations, preliminary design, to the final selection of weapons and creation of a conceptual design.

Project Milestones

The development of IRYDY PLUS provides for several stages of implementation (Work Packages):

  • WP1: design and construction of a shooting device with a mockup of a carbine,
  • WP2: integration of gondola with control station and computer simulation (3 combat scenarios),
  • WP3: design and construction of a mock-up airframe with the nacelle installed,
  • WP4: design and construction of a transportation container.

Each stage culminates in a milestone – from the finished nacelle, to simulations, to a full model of the airframe.

Squadron Agreement

In September 2025. An agreement was signed between MBF Group SA and the company Squadron Sp. z o.o. (ASE Group). The document deals with the development and deployment of unmanned systems, including combat and anti-drone systems. They also agreed on all terms of non-denial, confidentiality and terms of cooperation for future planned projects.

Strategic Consortium

The IRYDA PLUS project is not an endeavor of a single institution, but a joint effort of three complementary entities that combine knowledge, experience and resources in a formally established consortium. They are formed by MBF Group SA, Squadron Sp. z o.o. (ASE Group) and Polish Industrial Lobby im. Eugeniusz Kwiatkowski (PLP).

  • MBF Group SA serves as leader of the consortium. The company, which has been listed on the NewConnect market for more than a decade, has been consistently developing its business in the area of advanced technology and military systems, in addition to its experience in the raw materials and logistics sectors. MBF is responsible for the business side of the project – raising capital, investors and strategic coordination. Thanks to its presence on the public market, it ensures transparency of operations and full compliance with regulations for listed companies, which increases the credibility of the venture in the eyes of international partners and counterparties.
  • Squadron Sp. z o.o., part of the ASE Group, brings key technical and operational competencies in unmanned aircraft and their integration systems to the consortium. It is a company of engineers and specialists drawn from the Polish Armed Forces, with an extensive track record in the design and testing of UAV platforms, communications systems and anti-drone technologies. Squadron is responsible for the technological side of the project, including the construction of demonstrators, systems integration and development of kinetic drone combat technology.
  • Polish Industrial Lobby im. Eugeniusz Kwiatkowski (PLP). serves as an expert-scientific and opinion-making facility. The organization has been integrating the industrial, academic and defense communities in Poland for years, conducting numerous conferences and analytical work on strategic industries. PLP is strengthening the project through access to a pool of scientists, experts and lobbyists, as well as through promotion among policy and economic decision makers. It is headed by Prof. Paweł Soroka, Ph.D., who has been shaping the discourse around the Polish defense industry and the concept of national industry development for many years, among others. As part of the Central Industrial District 2 (COP2) idea.

The synergy of these three entities makes the IRYDA PLUS consortium holistic – combining practical military experience, technical and engineering background, scientific competence and market credibility. This ensures that the project not only has a solid conceptual foundation, but also a viable ability to be implemented, scaled and commercialized in domestic and international markets.

Schedule of Activities

  • Year 1: construction of a demonstrator and ground testing of the shooting system,
  • Year 2-3: integration with the aerial platform and flight tests,
  • Milestone: first unit capable of viable operations in 2-3 years.

Summary

RYDA PLUS is Poland’s answer to global drone challenges. The project combines innovation, military experience and business logic. With MBF Group, Squadron and PLP working together, it has a real chance of implementation and commercialization. It is a solution that can change the rules of the game on the modern battlefield and become an important element in the security of Poland, Europe and the world. (Source: UAS VISION/MBF Group; National Defense)

 

19 Sep 25. Big Radar Power for Small Aircraft. Raytheon’s new PhantomStrike radar brings powerful sensing to more of the fleet. Ten minutes into the test flight, it was time to see what the new radar could do. A member of the mission crew pressed the button, and pilot Rob Swaringen glanced at the display. While he’s not allowed to describe in detail what he saw on the screen, he made one thing clear: This little, lightweight radar was doing some seriously heavy lifting. The engineers and program representatives on board couldn’t help but sneak into the cockpit for a peek.

“It’s the first time this thing is flying, and it worked like a champ,” said Swaringen, a former F-16 pilot who went by the call sign Houdini.

The test, conducted aboard a modified commercial jet Raytheon uses as a flying test bed, marked an important milestone for the business’ new PhantomStrike® radar. The radar puts the power of active electronically scanned array in a package compact and light enough for just about any aircraft – even small UAVs – and, in doing so, opens up a world of capabilities to a rapidly changing fleet.

An onboard air picture

The PhantomStrike radar is cooled entirely with air pulled straight from the platform. This means fewer lines to run and systems to connect, so installation took only a matter of hours, Swaringen said.

Swaringen, Raytheon’s chief test bed pilot, knows firsthand the importance of superior situational awareness in every mission scenario – whether it’s in combat with hostile aircraft buzzing from every angle or in a high-stakes test flight. He said technology like PhantomStrike would have come in handy when he was logging hours on the F-16.

“It [shows] 10 times what I could see with previous capabilities,” he said. “Just having that excellent air picture in your own cockpit – regardless of what’s coming across the radio, what’s on the link display – to have that in your own ship is a real game changer.”

Proving the point

The radar-scanned images captured during that first flight test showed the California terrain clearly and in detail: stretches of dry land next to dense forest, mountains, lakes, islands off the coast. To Larry Martin, what mattered most was that PhantomStrike had worked as he had expected. Martin is a senior technology fellow at Raytheon, an RTX business, and the technical lead for the PhantomStrike radar. Years ago, he and his team had set out to develop a system like nothing else on the market. Now it was airborne.

“It was the cherry on top to see it work,” Martin said.

Program teams, working on an accelerated schedule, had done the legwork to install the radar on Raytheon’s Multi-Program Testbed aircraft, a Boeing 727 modified to carry, integrate and test sensors and electro-optical/infrared systems.

“Once we were integrated on the plane, it was a big relief,” he said. “A lot of questions were answered on our initial flights.”

The result, he said, is a radar that is truly the first of its kind.

How small is it?

The PhantomStrike radar can scale down to about the size of a gaming computer, and it weighs less than 130 pounds. That makes it suitable for integration into platforms such as light-attack aircraft, rotary-wing aircraft and uncrewed aerial vehicles.

Dave Kupfer, a senior systems engineer and former PhantomStrike program manager, said that scalability benefit comes from the front end of the radar’s sub-panel.

“It’s basically a large, printed wiring board, so we can cut it to any kind of shape to meet the demands of the tiny aircraft or the SWaP-C-constrained aircraft,” he said.

For military aviation, a strong but small radar has big implications. When a group of several expendable UAVs can see farther, over greater distances, they allow crewed platforms to stay farther from the fray.

The AESA advantage

The radar follows a pattern that’s common in consumer technology: making things smaller but more capable – think about the progression from bulky, basic cellular phones to small but versatile smartwatches. In this case, the PhantomStrike radar gives many more platforms the advantages of AESA technology. Those advantages include digital beam forming and steering, the ability to function in multiple modes and simultaneously track and engage both airborne and ground-based targets. To the aircrews in the adrenaline-fueled heat of the fight, Swaringen said the AESA radar can help them see everything and decide what to focus on first.

“Not only can I see where [the targets] are and what they’re doing, but now I can use that information to manage what missiles I have and then to identify what is friendly, what is foe,” he said.

An early adopter of the PhantomStrike radar is Korea Aerospace Industries, which has contracted Raytheon to outfit more than 50 FA-50 Light Combat Aircraft with the system. Other companies have shown serious interest, said Richard Sandifer, director for strategic pursuits for Advanced Products & Solutions at Raytheon.

“We want to get these things moving out the door,” he said. “We are aggressively working with the U.S. government to expand this around the world.” (Source: ASD Network)

 

22 Sep 25. Honeywell (NASDAQ: HON) today announced it has successfully showcased its Stationary and Mobile UAS Reveal and Intercept system (SAMURAI) and its ability to counter swarm drones in two recent demonstrations to local military operators in the United States. The system was utilized in a format in which it can be operated directly from a ground vehicle. Key elements were also demonstrated from an aerostat at more than 1,000 feet above the ground.

“Swarm drones pose increasing risks to high-value assets – as a result, the ability to detect, track and counter them is a crucial part of modern military operations,” said Matt Milas, president, Defense and Space, Honeywell Aerospace Technologies. “Our recent successful demonstrations not only provided strong examples of how Honeywell’s SAMURAI system can provide critical capabilities on the battlefield, but they also proved the technology is highly reliable, scalable and ready to integrate into existing defensive systems.”

Using Model Based System Engineering (MBSE), the SAMURAI system provides a turnkey solution that integrates customer-selected detectors and effectors and meets Modular Open Systems Approach (MOSA) compliance standards for customer modeling, visibility and sustainment. It is designed to be easily operated by security forces or tower personnel. Honeywell also demonstrated the ability for rapid integration for new detectors and effectors to support operator requirements. With the Honeywell system, military operators can save time and money by optimizing prior investments into key components and integrating them into the overall solution. The system’s reliability is also key – Honeywell provides a single point of contact for updating all components as threat systems evolve.  The system has been developed by integrating components from defense manufacturers such as Blue Halo, Leonardo DRS, Pierce Aerospace, Silent Sentinel, Walaris, Rocky Research and Versatol. These components include radio frequency detection with sensor technology that uses light to detect, track and identify objects as well as offensive drones to counter swarms. Additional demonstrations are available to both local and international operators seeking a commercial Counter-UAS offering.

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation. For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 18, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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17 Sep 25.  Jobs boost as UK set to build military aircraft for United States for first time in over fifty years. More than 150 jobs to be created in Birmingham by new contract to deliver advanced surveillance aircraft for US Air Force, with a further 190 jobs supported across the UK.

  • More than 150 jobs to be created in Birmingham by new contract to deliver advanced surveillance aircraft for US Air Force, with a further 190 jobs supported across the UK
  • Contract delivers an additional over £36m to UK economy and cements world-leading status of Britain’s defence industry which will help build military aircraft in the UK for the United States for the first time in over fifty years
  • Builds on UK-US special relationship, deepening defence industrial ties and boosting national security while making defence an engine for growth

For the first time in over fifty years, Britain will help build military aircraft under contract for the US Air Force. A new contract between the UK and Boeing will create more than 150 new jobs in Birmingham and secures a further 190 jobs across the UK. It will see two existing Boeing 737 passenger aircraft significantly overhauled and upgraded to create two highly advanced prototype early-warning surveillance aircraft. The contract delivers an additional over £36m to the UK economy. The UK has already ordered three state-of-the-art Boeing E-7 Wedgetail early-warning aircraft, which will form a vital cornerstone of the UK’s national defence by using radar and sensors to detect incoming hostile aircraft, missiles, or drones, from more than 300 miles away. Wedgetail is scheduled to enter service with the Royal Air Force in 2026.

Currently, the E-7 Wedgetail programme supports 190 highly skilled jobs in Britain, with 130 of those based in Birmingham. As Boeing expands its production line, the new 150 jobs in the UK will modify two prototype E-7A Wedgetail aircraft using the airframe from new commercial aircraft which will be the first E-7A models received by the US.

The announcement comes after the launch of the Defence Industrial Strategy last week, which set out £250 million of new funding for new defence growth deals across the UK, and £182m to fund a new skills package to be delivered by five new defence technical excellence colleges to train and upskill thousands of workers.

Defence Secretary, John Healey MP, said: “The relationship between the UK and US has never been stronger, and this new deal with Boeing creates and supports hundreds of jobs across the UK – making defence an engine for growth and strengthening our collective security. This deal is a vote of confidence in Britain’s world-leading defence industry and delivers on the commitments set out in our Strategic Defence Review and Defence Industrial Strategy, making us secure at home and strong abroad. The deal benefits both UK and US national security by strengthening the special relationship, while developing the fleet of surveillance aircraft both nations will share in the future – building skills among the workforce while ensuring military operations are more coordinated as a result of using the same systems.”

More than 40 UK-based suppliers are involved in the UK E-7 programme, including the construction of two new engineering facilities at RAF Lossiemouth, built with local Scottish suppliers. US companies also stand to benefit from the deal, with several major defence firms building individual parts to contribute to the global E-7 supply chain. Hundreds of American workers and engineers across the US will then continue to support the aircraft when it is delivered for final assembly and check out. The Royal Air Force’s own fleet of E-7 Wedgetail aircraft are currently being fitted out at the modification facility in Birmingham ahead of delivery of the first aircraft in 2026. (Source: https://www.gov.uk/)

 

18 Sep 25. Trillium Unveils HD59 EO/IR Gimbals for Advanced UAS Missions. Trillium’s new HD59 EO/IR gimbal series delivers multi-spectral sensing, AI-enabled processing, and precision targeting in a lightweight, rugged package optimized for UAS, launched effects, and contested ISR operations Trillium Engineering has unveiled its HD59 series, a new line of advanced electro-optical/infrared (EO/IR) gimbal systems designed for small unmanned aircraft systems (sUAS), mid-sized systems, and launched effects. The HD59, optimized for Long-Range Reconnaissance (LRR), Medium-Range Reconnaissance (MRR), and multi-domain missions, combines industry-leading performance with a rugged design and optimal size, weight, and power profile. With its range of configurations, the HD59 series is purpose-built to support a broad spectrum of mission profiles. From long-endurance defense and security ISR to maritime domain awareness, border surveillance, and infrastructure protection, each gimbal delivers the clarity and precision required in complex operational environments. Its low SWaP-C design also makes it ideally suited for launched effects platforms, where lightweight, rugged payloads with advanced multi-spectral and targeting capabilities extend both reach and survivability in contested battle spaces.

The HD59 series includes three configurations tailored for mission versatility:

  • HD59-LLVV — Dual LWIR + HD EO sensors, maximized for simultaneous wide and narrow thermal sensing at the lightest weight in its class.
  • HD59-MLVV — MWIR + LWIR + Dual HD EO sensors, enabling superior target identification at extended ranges, in both day and night operations.
  • HD59-MLVS — Four-sensor powerhouse with MWIR, LWIR, EO, and SWIR, plus a 50mj laser designator for advanced targeting and designation, in an industry leading  weight under 2kg.

(Source: https://www.defenseadvancement.com/)

 

17 Sep 25. Cuashub.com said today that USMC launches drone task force summits to accelerate lethal UAS adoption. The Marine Corps has begun a series of drone task force summits aimed at speeding the service’s ability to operate small unmanned aerial systems at scale, service officials said in a posting on Sept. 8. The initiative draws on recent experimentation across units including Marine Corps Special Operations Command, the Infantry Battalion Experiment, and the Marine Corps Attack Drone Team (MCADT). The task force’s stated purpose is to organise, train and equip Marine Air-Ground Task Force elements to employ both lethal and nonlethal unmanned systems across distributed operations. Officials say the effort builds on years of development and fielding of organic precision fires capabilities for infantry formations and is designed to give small units concentrated effects at operationally relevant distances.

The Secretary of Defense’s “Unleashing U.S. Military Drone Dominance” memo is expected to accelerate procurement pathways that the summits aim to take advantage of.

MCADT, established in January 2025 by Training Command and the Marine Corps Warfighting Laboratory, has driven much of the Corps’ recent progress on armed FPV drones. Based at Weapons Training Battalion, Quantico, the team has worked to translate lessons from modern drone warfare into doctrine training and fleet integration.

In April, the MCADT carried out the service’s first kinetic live-fire FPV strike at Quantico. The writeup notes that a single FPV strike can cost under $5,000 compared with more than $80,000 for current infantry battalion organic missiles. It also says these drones can reach up to 20 kilometres, substantially extending squad and platoon reach beyond the 1–2 kilometre envelope of existing small-unit systems.

The task force is turning operational learning into formal guidance and training. Initiatives under way include a UAS/C-UAS integration handbook, expanded operator training pipelines, updated procurement “Blue List” systems, signature management training, and creation of communities of interest across the Corps.

The service is also integrating small UAS into marksmanship competitions and working with the Defense Innovation Unit to procure and distribute FPV and one-way attack drones.

To establish a training baseline, MCADT and the Marine Corps Tactics and Operations Group have drafted the Corps’ first Armed Drone Employment Tactics Techniques and Procedures pamphlet.

Squad certification against that pamphlet begins this fall, and the service will host the first Armed FPV Drone Employment Competition in October 2025 at MCB Quantico, followed by events in INDOPACOM at Camp Hansen, Okinawa in December and MCB Hawaii in January 2026.

Service officials say the task force will continuously feed experimental results into the broader effort to field lethal unmanned systems at scale so that units are organised, trained and equipped for the modern battlefield. (Source: https://cuashub.com/)

 

16 Sep 25. Cuashub.com said today that EOS debuts laser weapon capable of downing 50 drones per minute. Electro Optic Systems (EOS) has debuted its new its new high-energy laser weapon dubbed “Apollo,” at the DSEI event in London last week. The Canberra-based company said Apollo is scalable up to 150 kilowatts and designed to counter small and medium-sized drones. EOS describes the system as capable of destroying between 20 and 50 drones per minute, with a rapid retargeting rate and the ability to sustain engagements when connected to an external power source.

The launch follows an August contract with an undisclosed European NATO member for the export of a 100-kilowatt-class laser weapon. EOS said the deal marked the first international sale of a system in that power range, a milestone for both the company and the wider directed energy sector.

Apollo is packaged in a 20-foot ISO container for mobility and can reportedly be deployed in under two hours. EOS states the system can engage drones within a 3-kilometer range and disrupt sensors on larger platforms at distances of up to 15 kilometers. It is designed to integrate into NATO command-and-control and air defense networks or operate as a stand-alone platform.

EOS has been working on directed energy systems for more than four decades, moving from non-lethal dazzlers to higher-powered lasers. Apollo represents the next stage in that development, following the company’s introduction last year of a lower-power laser system for drone sensor disruption.

Dr. Andreas Schwer, EOS Group CEO, said the system is intended to address the growing challenge posed by drones in modern conflicts. He added that the platform is fully controlled by EOS and does not fall under U.S. export restrictions.

EOS debuts laser weapon capable of downing 50 drones per minute – cuashub.com (Source: https://cuashub.com/)

 

16 Sep 25. QinetiQ US has entered into an agreement through an Other Transaction Agreement (OTA) with Consortium Management Group, Inc. (CMG) on behalf of Consortium for Command, Control and Communications in Cyberspace (C5) with the U.S. Army Program Executive Office Intelligence, Electronic Warfare and Sensors (PEO IEW&S) to support Phase 0 specification development of the Future Advanced Long-range Common Optical/Netted-fires Sensor (FALCONS) system. This next-generation target acquisition system will enhance the Army’s battlefield sensing capabilities, establishing the foundation for Army sensor capabilities that will serve warfighters well into the 2030s and beyond.

FALCONS is designed to replace the current Long-Range Advanced Scout Surveillance System (LRAS3) and Fires Support Sensor System (FS3). The system will integrate the Army’s third-generation Forward-Looking Infrared (3GEN FLIR) technology with artificial intelligence for enhanced target detection and recognition, more than doubling current detection ranges while reducing soldier workload.

“This OTA enables QinetiQ US to leverage our next-generation sensor expertise from the ground up, shaping a program that will revolutionize Army target acquisition,” said Jonathan Riksen, executive vice president and general manager of QinetiQ US’ Solutions business. “Our deep understanding of soldier needs and proven capabilities in AI-enabled target recognition will be critical as we work with PM Ground Sensors to define a system that more than doubles current detection ranges while revolutionizing how warfighters acquire and engage targets.”

Through this Phase 0 effort, QinetiQ US will help define critical system specifications, ensuring FALCONS reflects both current operational needs and future battlefield requirements through technology assessments, system modeling, and direct soldier feedback.

This latest award builds upon QinetiQ US’s long-standing partnership with the U.S. Army in developing and deploying advanced sensor and targeting systems. The company will apply lessons learned from previous successful Army programs to accelerate FALCONS development, ensuring the system meets both current and emerging battlefield requirements.

 

17 Sep 25. DroneShield (ASX:DRO) is pleased to announce it has surpassed 4,000 systems sold worldwide with the receipt of a package of 2 standalone contracts totalling $7.9 m for handheld systems for delivery to the U.S. Department of Defense. DroneShield expects to deliver all equipment in Q4 2025, with cash payment expected in Q4 2025. No additional material conditions need to be satisfied. There is no obligation for any additional contracts from this customer.

DroneShield has previously received standalone orders from this customer. These repeat orders strengthen DroneShield’s position as a trusted provider of mission-critical solutions to address the growing challenge of drone threats on the modern battlefield and the civilian sector.

The latest orders build on existing Department of Defense programs already deploying DroneShield systems. With this milestone, more than 4,000 DroneShield solutions are now fielded globally, highlighting sustained end-user confidence and the solutions’ effectiveness in operational environments.

“Passing 4,000 systems in service is an important milestone for our team and our customers,” said Matt McCrann, U.S. CEO of DroneShield. “It underlines the performance and dependability of our solutions in the field, and the trust placed in DroneShield by those who rely on them.”

 

16 Sep 25. Cuashub.com said today that Oklahoma Guard holds major counter-drone training at Camp Gruber. The Oklahoma National Guard staged its largest counter-drone exercise to date on September 13, as Soldiers of the 45th Infantry Brigade took part in Exercise Thunderstruck 2.0, a capstone event designed to test tactics for countering unmanned aerial threats. The training brought together state leaders, industry representatives, active-duty personnel and emergency management officials to observe how units are adapting to drone warfare. Scenarios included a Chinook helicopter insertion, movement through wooded terrain and the clearance of a simulated enemy trench under multi-domain threats.

Maj. Gen. Thomas Mancino, Oklahoma’s adjutant general, described the effort as critical preparation for future conflicts: “The purpose of Operation Thunderstruck is to place our Soldiers and Airmen in scenarios where they can experience drone warfare firsthand to develop the expertise needed on the future battlefield,” he said.

The exercise follows a July directive from the Pentagon titled Unleashing U.S. Military Drone Dominance, which called for the services to treat drone warfare as a core element of readiness.

Lt. Col. Brent Hill, who oversees the Guard’s counter-UAS and launched effects program, said the training reflects lessons from Ukraine: “We are preparing for the future battlefield and constantly evolving, constantly learning,” Hill said.

Camp Gruber has expanded its infrastructure to support such efforts, including the construction of a trench-warfare lane modeled after positions seen in Ukraine. It is currently the only active trench training site in the National Guard. Work is also underway on a new complex dedicated to unmanned systems and launched effects, featuring operations centers, fabrication facilities and launch pads.

The Oklahoma Guard launched its UAS/Launched Effects Program in 2022 in partnership with state agencies, industry and academia. Earlier this year, it hosted Thunderstruck 1.0 as part of the same series. Looking ahead, the Guard plans Exercise Lightning Strike in April 2026, which will focus on drones in emergency response and domestic operations.

“Oklahoma is having an impact on issues of national and strategic importance,” Mancino said, noting support from state leadership in building what he called a “leading laboratory” for counter-drone development.

Oklahoma Guard holds major counter-drone training at Camp Gruber – cuashub.com (Source: https://cuashub.com/)

 

16 Sep 25. Cuashub.com said today that DroneShield expands DroneSentry capabilities through Sentrycs integration. DroneShield announced yesterday that it has expanded the capabilities of its DroneSentry counter-drone platform by integrating technology from Sentrycs. This update introduces advanced cyber takeover features, controlled drone landing, and forensic analysis tools to the existing multi-layered system.

The DroneSentry solution already includes detection technologies from partners such as Echodyne, Bosch, and Teledyne FLIR, as well as directed-energy defeat capabilities from Epirus. These components are managed through the DroneSentry-C2 command-and-control platform, which now benefits from the addition of Sentrycs’ cyber-over-RF capabilities.

Sentrycs specialises in protocol-level detection and mitigation, offering modular systems designed to identify and neutralise unauthorised drones. The integration allows operators to detect drones in real time, locate their controllers, and take control of them safely.

DroneShield described the result as “market-leading fused cyber and RF detection and mitigation functionality.” The DroneSentry-C2 platform has been updated to process cyber-RF (CoRF) data through its SensorFusionAI (SFAI) engine, enhancing analytics and response speed.

Angus Bean, Chief Product and Technology Officer at DroneShield, stated, “This collaboration provides operators with a stronger, more adaptable solution to the complex challenges of modern airspace security, giving them greater control and a wider range of effective response options. DroneShield has a number of deployed multi-sensor DroneSentry solutions deployed around the world today, with substantial demand for a significantly higher amount in near term. Adding Sentrycs further strengthens the defensive posture available to our customers.”

Tal Cohen, Chief Technology Officer at Sentrycs, also commented, “We’re proud to bring our Cyber over RF technology into this strategic collaboration with DroneShield. This integration combines precise protocol-level drone detection and takeover with powerful situational awareness tools, empowering operators to safely neutralise threats with zero collateral damage. This joint solution meets customer requirements, and sets a new standard for effectiveness, simplicity, and operational flexibility in the counter-UAS space.”

Operators using the upgraded system can now rely on a combination of radar, RF, optical, and thermal sensors. This multi-sensor approach improves detection accuracy, reduces false positives, and strengthens situational awareness. The CoRF layer adds further control options, allowing for safer and more flexible responses to drone threats.

Some of the new featured introduced include:

  • Autonomous detection and tracking of multiple drones, including identification of model, serial number, altitude, location, and operator.
  • Cyber takeover functions that disconnect drones from their controllers, reprogramme their home positions, and guide them to designated landing zones for recovery and analysis.
  • Enhanced situational awareness tools, including Identification Friend or Foe (IFF), real-time alerts, and detailed analytics to support decision-making and assist law enforcement.

According to DroneShield, this partnership offers “unmatched situational awareness, layered response, and operator choice in one unified solution.”

DroneShield expands DroneSentry capabilities through Sentrycs integration – cuashub.com

(Source: https://cuashub.com/)

 

16 Sep 25. Cuashub.com said today that IPG Photonics unveils new laser C-UAS system. IPG Photonics has publicly introduced its CROSSBOW MINI 3 kW high-energy laser (HEL) system during the Defence and Security Equipment International (DSEI) event in London this week. The system is designed to address the growing challenge posed by unmanned aerial systems (UAS), particularly smaller drones categorized as Group 1 and Group 2. The CROSSBOW MINI is a compact, battery-powered laser platform intended for field deployment. It can operate independently or be integrated with existing command and control systems and radar networks. According to IPG, the system is capable of operating for up to 12 hours on internal battery power, with options for extended use via external sources. Other models in the CROSSBOW product line include the 500 W Dazzler, which is currently available, and the 8 kW HEL system, which is open for pre-orders.

IPG reports that the 3 kW version has been tested in field conditions and has successfully neutralized over 100 drones in various scenarios, including swarm attacks. The system is intended for use in both military and civilian settings, such as protecting infrastructure like government buildings, ports, and public venues.

“The CROSSBOW product line establishes IPG as a complete laser defense systems provider,” said Ben Allison, VP of IPG Defense Products. “It transitions us from a component supplier to a full solution partner, delivering top-tier software, optics, and lasers in a single operational package while leveraging our extensive manufacturing capabilities and laser expertise.”

Lockheed Martin has incorporated the CROSSBOW system into its Sanctum counter-UAS framework. The integration has been demonstrated in multiple field exercises, aimed at showcasing a scalable and modular approach to drone defense.

“The modern battlespace demands integrated and layered defense against small UAS,” said Tyler Griffin, Lockheed Martin’s C-UAS Director. “To address this need, Lockheed Martin developed the Sanctum C-UAS ecosystem with end-to-end capability to detect, track, identify, and defeat small UAS. Sanctum features a scalable, modular architecture, and these core design principles were proven during our recent integration with IPG’s CROSSBOW.”

IPG Photonics unveils new laser C-UAS system – cuashub.com

(Source: https://cuashub.com/)

 

16 Sep 25. Cuashub.com said today that MARSS and Frankenburg Technologies partner to deliver scalable air defence solution. MARSS and Frankenburg Technologies formalised a new partnership with the signing of a Memorandum of Understanding (MOU) at DSEI 2025 this week. The agreement will see Frankenburg’s advanced missile technology integrated into MARSS’s NiDAR Command and Control (C4) platform, creating a layered defence system aimed at countering emerging aerial threats with greater affordability and scalability.

Redefining the Economics of Air Defence

Modern air defence is increasingly shaped by cost dynamics. While adversaries deploy inexpensive drones and loitering munitions in large numbers, defenders often rely on effectors that cost hundreds of thousands of pounds per intercept. This imbalance places a heavy financial burden on defence systems.

Frankenburg Technologies, headquartered in Estonia, is working to shift that equation. Its new interceptor missiles are designed specifically to neutralise class 1–3 drones. These solid rocket-fuelled missiles are lightweight, fast, and built for mass production, reducing intercept costs by over tenfold. Delivered in simple “click-on, click-off” canisters, they allow for quick reloads without specialised equipment, offering a practical and scalable solution for modern air defence.

NiDAR is already deployed at more than 50 sites globally, including ports, naval platforms, and critical infrastructure. It provides multi-domain protection across air, land, surface, and sub-surface environments. The system is sensor and effector agnostic, integrating data from diverse sources into a single, intuitive interface.

With the addition of Frankenburg’s missile system, MARSS is enhancing NiDAR’s layered defence architecture. Operators can now select from a broader range of countermeasures – including RF jammers, Remote Weapon Systems, autonomous interceptors, and affordable missiles – guided by NiDAR’s autonomous threat response recommendations.

Josh Harman, Senior Vice President of Business Development at MARSS, commented, “The signing of this MOU is a major step forward in redefining the economics of air defence for our customers. Frankenburg’s technology is one of the first affordable, mass-manufacturable effectors designed specifically for today’s air defense threats, including UAS. By integrating it into NiDAR, we are giving our customers the ability to protect lives and infrastructure at a sustainable cost, while still maintaining access to the full suite of effectors.” He continued, “This partnership is about delivering choice, scalability and smarter defence.”

Bringing Innovation to New Regions

While Frankenburg has primarily focused on NATO and European markets, the collaboration with MARSS opens doors to new regions, including the Gulf, where MARSS already has a strong customer base and operational footprint. The companies aim to offer a unified, cost-effective solution to both military and civil clients facing persistent drone and loitering munition threats.

Kusti Salm, CEO of Frankenburg Technologies, said, “Partnering with MARSS brings our interceptor missiles into a proven C4 environment, where detection, classification and engagement come together. Our missiles are designed from the ground up to defeat drones – fast to launch, easy to handle, and built for mass production so that defending against drones can finally be affordable at scale. Together with MARSS, we are expanding layered air defence to meet the growing drone threat for allied nations.”

MARSS and Frankenburg Technologies partner to deliver scalable air defence solution – cuashub.com (Source: https://cuashub.com/)

 

09 Sep 25. Olsen Actuators and Drives have successfully delivered a series of development Commanders Armoured Sight Hood actuators to Rheinmetall BAE Systems Land (RBSL) a leading defence engineering company specialising in the design, manufacture and support of military vehicles used by the British Army. RBSL has a proud heritage, having designed and delivered many of the British Army’s armoured vehicle fleets. RBSL provides in-service support for these vehicles, including one of the UK’s latest vehicle programmes for the British Army, the Challenger 3. The Challenger 3 is a network-enabled, digital Main Battle Tank with state-of-the-art lethality, upgraded survivability, plus world-class surveillance and target acquisition capabilities.

After working successfully on the Bunker Blast Door project, Olsen and RBSL have collaborated to deliver a mission critical vision system for the commander on the Challenger 3. Over the past three years, Olsen has worked closely with RBSL to develop a fully custom solution that meets their specification, fully qualifying the manufactured actuators to specified defence standards.

The custom rotary actuator solution, designed and manufactured in the UK, provides a highly precise, high torque and near zero backlash solution to ensure the safety of the British Army crew in the field. In addition, the longevity and low maintenance of electro-mechanical actuation systems was especially valuable to RBSL, where system failure or downtime can have mission-critical consequences.

Adam Bargh, Technical Director, Olsen Actuators & Drives, added: “It has been a great opportunity to continue our work with RBSL on our second project. We’re proud to deliver lifesaving technology for the British Army on a second project on the Challenger 3.”

Emilie Weaving, Survivability Engineer, RBSL, commented: “Working with Olsen Actuators over the last 3 years has been a very positive experience. We trust their expertise in electro-mechanical actuation systems and look forward to working with them in the future to help protect British forces.”

Following the successful delivery of the development actuators, Olsen is set to manufacture 148 production actuators for the Challenger 3 fleet. (Source: www.joint-forces.com)

 

15 Sep 25. Red Cat Holdings, Inc. (Nasdaq: RCAT) (“Red Cat” or the “Company”), a U.S.-based provider of advanced, all-domain robotic solutions for defense and national security, today announced a strategic collaboration with Safe Pro Group Inc. (Nasdaq: SPAI) (Safe Pro), a leading provider of artificial intelligence (AI)-computer vision technologies. Through this collaboration, Safe Pro’s patented AI-powered image analysis technology will be embedded into Red Cat’s Black Widow drones, enabling U.S. and allied ground personnel to rapidly identify and locate more than 150 types of explosive threats including landmines, anti-personnel mines, cluster munitions, and unexploded ordnance (UXO) in real-time. The integration will allow Safe Pro’s Object Threat Detection (SPOTD) system to process real-time 4k video onboard the Black Widow at the tactical edge and deliver live threat data directly to military situational awareness platforms such as the U.S. Army’s Tactical Assault Kit (ATAK) software ecosystem, enhancing and accelerating decision making critical to mission success.

The Black Widow will also integrate with Safe Pro’s new SPOTD Navigation, Observation and Detection Engine (NODE), a powerful, edge-based solution designed to process, map and share mission critical information collected by drones. Supporting rapid deployment at the edge, the SPOTD NODE “kit” enables end users to collect real-time visual data, receive threat alerts, and utilize that imagery to create 2D and 3D interactive maps and plot hazard detections. This capability provides enhanced situational awareness, supporting a wide array of ground missions even in connectivity-denied environments.

Powering Safe Pro’s SPOTD technology is one of the world’s largest real-world landmine and UXO datasets consisting of high-resolution imagery and GPS-tagged geospatial data encompassing over 1.88 m drone images analyzed to date, and 34,200+ threats identified across 8,119 hectares (20,062 acres) in Ukraine.

“The Black Widow continues to distinguish itself as a leading sUAS platform for defense and security, ideally suited to supporting the evolving needs of the U.S. Army and its global allies. By incorporating field-proven innovations such as Safe Pro’s unique AI-powered threat detection technology, we continue to redefine the future of force protection and battlefield awareness,” said Jeff Thompson, Red Cat CEO.

“As demonstrated in Ukraine, the battlefield is dramatically evolving, establishing a critical need to provide today’s warfighter with access to enhanced, real-time situational awareness. By harnessing the power of the Black Widow with Safe Pro’s battle-tested threat detection technology, we have created a platform that can uniquely support the needs of the U.S. Army for real-time battlefield intelligence, and we look forward to bringing this capability to our warfighters,” added Dan Erdberg, Chairman and CEO of Safe Pro Group Inc.

 

15 Sep 25. L3Harris and Kongsberg partner to offer C-UAS protection to land vehicles. L3Harris has signed an agreement with Kongsberg Defence & Aerospace to supply WESCAM MX™-10D EO/IR sensor systems, enabling the delivery of ready-now land vehicles with effective Counter-Unmanned Systems (C-UxS/ C-UAS).

“Field-proven and equipped with high-performance tracking software and advanced image processing, WESCAM MX-Series EO/IR systems provide high-performance targeting and designating capabilities to counter new threats from unmanned systems,” said the companies in a press release. “This agreement marks L3Harris’ successful track record of integrating its EO/IR sensor systems on multi-role and C-UxS platforms. The MX-Series of multi-sensor, multi-spectral, EO/IR systems support ISR and target acquisition missions on platforms across all domains.

“L3Harris Counter-UxS solutions, including our WESCAM MX-Series EO/IR sensor systems, are pushing the boundaries of kinetic solutions for UAS engagement,” said Tom Kirkland, Vice President & General Manager, Targeting & Sensor Systems, L3Harris Technologies. “New land platforms from Kongsberg are a tremendous opportunity to further prove the effectiveness of our systems against the growing global UAS threat.” (Source: www.unmannedairspace.info)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation. For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 13, 2025 by

 

Sponsored by Echodyne

 

www.echodyne.com

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12 Sep 25. Indra and Tata Advanced Systems commission first Lanza Naval 3D Air Surveillance Radar system for Indian Navy.

  • The first 3D Air Surveillance Radar (3D-ASR) – Lanza-N, naval variant of Indra’s Lanza 3D radar, one of the most advanced long-range air defence and anti-missile radars, is now commissioned aboard an Indian Navy warship
  • Following the first commissioning, additional radar systems are being installed across Indian Navy frigates, destroyers and aircraft carriers
  • The milestone showcases Indian and Spanish defence collaboration in delivering state of art Air Surveillance Radar systems

Indra, a leading global technology and consulting companies and world leader in engineering technology for aerospace, defence and mobility business headquartered in Spain, in collaboration with Tata Advanced Systems Limited, one of India’s leading aerospace and defence company, successfully delivered and commissioned the first 3D-ASR – Lanza-N, aboard an Indian Navy warship.

The radar has been seamlessly integrated with all systems of this Indian Navy warship. Its acceptance and induction followed rigorous sea trials, during which various naval and aerial platforms were deployed to test performance across a range of radar cross-sections.

To support ongoing production, a radar assembly, integration and testing facility has already been established at Tata Advanced Systems’ facility in Karnataka, which will accelerate deliveries.

Market Dynamics, Scenario and Opportunity Analysis, and Leading Companies

Ana Buendía, Head of Indra’s Naval Business Unit, said, “This project goes far beyond the delivery and deployment of radars for a large number of vessels. It has also enabled us to establish a significant collaboration with Tata Advanced Systems, with whom we have worked to establish a radar factory in Bengaluru. This now provides us with local support to produce systems more efficiently and offer closer service to the client.”

Sukaran Singh, Chief Executive Officer & Managing Director, Tata Advanced Systems said, “Our collaboration with Indra reflects a shared commitment to strengthening radar manufacturing capabilities in India. By leveraging on-ground synergies, technical expertise, and a robust local supply chain, we are building a strong ecosystem for advanced defence technologies.” (Source: ASD Network)

 

12 Sep 25. Cuashub.com said today that AAPA pushes for more C-UAS authority at American ports. The American Association of Port Authorities (AAPA) has called on Congress to explicitly include seaports in any federal counter-UAS pilot program. In a letter sent last week to leaders of the House Transportation and Infrastructure Committee, AAPA urged bipartisan action to expand counter-UAS authorities and provide ports with the tools to respond to growing drone threats.

AAPA President and CEO Cary S. Davis noted that seaports are designated as critical infrastructure by the Department of Homeland Security but currently lack the legal authority to counter unauthorized drones.

“Understanding that implementation will rely on partnership with SLTT law enforcement, we respectfully request that seaports be explicitly recognized as potential sites for pilot deployment,” Davis wrote.

Ports handle more than 70 percent of U.S. trade and support over 31 m jobs, yet several facilities have reported drone incidents that disrupted operations and posed safety risks around sensitive storage and perimeter areas.

In its letter, AAPA backed the reintroduction of the Counter-UAS Authority Security, Safety and Reauthorization Act, asked for explicit inclusion of seaports in the pilot program and called for clear distinctions between detection technologies and active mitigation to enable lawful layered defenses.

The association said it is working with Congress, its Security Committee, and Board of Directors to ensure ports are recognized as key partners in national airspace security.

Committee staff reportedly responded positively to the letter, noting the importance of industry engagement as legislative language is finalized. AAPA said it will continue pressing for ports to be named in any pilot program and plans to provide technical input as lawmakers refine the bill. AAPA pushes for more C-UAS authority at American ports – cuashub.com (Source: https://cuashub.com/)

 

 

12 Sep 25. Royal Navy declares two drone systems ready for front-line operations.

  • The Malloy T-150 and Peregrine drones are now operational, enhancing Royal Navy and Royal Marines capabilities.
  • The Malloy T-150 delivers critical supplies in challenging environments for the Royal Marines, while the Peregrine boosts intelligence and reconnaissance for the Fleet.
  • After rigorous trials worldwide, these systems are set to transform modern military operations

Royal Navy warships and Royal Marines operating behind enemy lines will be supported from the air by two drone systems now ready for front-line operations.

After two years of trials and development, including collaboration with operational partner forces, a fleet of Malloy T-150 Uncrewed Air Systems will be deployed to carry ammunition, weaponry, food, personal and medical supplies to Royal Marines Commandos operating in all manner of extreme environments.

Meanwhile, Royal Navy warships will gain valuable intelligence, surveillance and reconnaissance capabilities thanks to the Peregrine mini helicopter’s formal entry into service.

Royal Marines and the Royal Navy’s drone operators from 700X Naval Air Squadron and Commando Logistic Regiment have put the Malloy T-150s through a demanding set of tests and exercises – from the freezing Arctic to the Indian Ocean – over the past eight months.

This work has resulted in the systems being declared ready to Release to Service,which means they are ready to be used during operations.

The Malloy UAS has proved immensely valuable in rapidly bringing supplies over complex terrain, reaching places where traditional supply lines are simply unviable.

With eight rotor blades – each around two feet in length – an endurance of up to 40 minutes, top speed of 60mph, and the ability to lift up to 68kg (comparable to the weight of half a dozen general purpose machine guns), the Malloy T-150 is a proven, capable and versatile platform.

It needs a team of two, one remote pilot and a second to monitor the drone’s command unit, and can be flown manually or autonomously to designated waypoints with an underslung cargo.

Brigadier Chris Haw, Head of the Commando Forces Programme, said: “The UK Commando Force continues to be at the vanguard of operational change in embedding digital and autonomous systems into the way we fight.

“The introduction of logistic drones represents a significant expansion in the Commando Force’s use of Uncrewed Aerial Systems, beyond those already in-service for surveillance/reconnaissance, and importantly reduces the risk to personnel during tactical re-supply.

“Tested in operationally representative conditions, and developed in close collaboration with Malloy, the equipment and operators have made considerable progress. The T-150 has great potential for broader use-cases as we have recently seen in operational theatres and on the Carrier Strike deployment.”

Neil Appleton, CEO Malloy Aeronautics, said: “The UK Release to Service of our T-150 platform is a milestone we’re incredibly proud to be a part of.

“As a multi-role UAS, the T-150 can be used for Replenishment at Sea one day and resupplying deployed Royal Marines Commandos the next.

“It’s a game-changer for the modern battlefield and we are proud to deliver this capability to those who need it most.

“We’ve partnered with the UK Armed Forces throughout this programme, from the Royal Marines Commando Force to wider Ministry of Defence organisations to deliver this capability at pace, including training and in service support.

“We welcome this further strengthening of our partnership with the UK armed forces and remain committed to expanding the capability of our multi-role solutions for the UK.”

The Malloy T-150 is also undergoing operational evaluation with the UK Carrier Strike Group in the Indo-Pacific, recently delivering supplies from aircraft carrier HMS Prince of Wales to destroyer HMS Dauntless in an historic first.

Meanwhile, Peregrine has been developed and delivered in partnership with Thales and Schiebel, providing the RN with a cutting-edge, shipborne uncrewed aerial uncrewed system that extends the eyes and ears of the Fleet beyond the horizon.

Peregrine – which has proven its worth on drugs busting missions in the Gulf – is equipped with the powerful Thales IMaster radar, providing world-class, all weather, day and night surveillance, tracking and target identification to support commanders in complex maritime and coastline areas.

Marie Gayrel, Thales Vice-President Intelligence, Surveillance and Reconnaissance Business Line, said: “As Thales, along with Schiebel, we are proud to partner with the Royal Navy in delivering the Peregrine capability. Its operational success aboard HMS Lancaster demonstrates the potential of rotary wing uncrewed air systems to transform maritime operations.

“This milestone highlights our shared commitment to innovation, safety and delivering critical capability to the Fleet, fully aligned with the Royal Navy’s transformation agenda.”

Captain Dave Gillett, Head of Navy Develop’s Maritime Aviation & Carrier Strike, added: “The introduction of Peregrine into service is a game-changer for our surface fleet. Its successful deployment with HMS Lancaster shows how uncrewed systems can deliver real operational advantage, extending our surveillance reach and enhancing our decision-making in theatre.

“With the integration of the IMaster radar, Peregrine provides exceptional surveillance capability and is a vital step for wider Maritime Aviation Transformation, ensuring the Royal Navy remains at the forefront of innovation in naval aviation.” (Source: Royal Navy)

 

12 Sep 25. Cuashub.com said today that Poland requests Article 4 activation after shooting down Russian drones. Poland has formally requested the activation of Article 4 of the NATO Treaty after reporting 19 drone incursions into its airspace overnight, many of which crossed from Belarus. Prime Minister Donald Tusk said four of the drones were shot down, the last at 6:45 a.m. local time.

“The fact that these drones, which posed a security threat, were shot down changes the political situation,” Tusk said, confirming that allied consultations would now take place under NATO procedures. He added that Poland needed “more than expressions of solidarity” from its partners.

Tusk stressed that Poland is not at war but described the current environment as the most dangerous since 1945. Article 4 requires NATO members to consult whenever they believe their security or territorial integrity is under threat.

Russia rejected Warsaw’s claims. Andrey Ordash, Russia’s chargé d’affaires in Poland, said no evidence had been presented proving Russian involvement and called the accusations “groundless.” He confirmed he had been summoned to the Polish Foreign Ministry.

Ukrainian President Volodymyr Zelensky said Kyiv had provided Poland with information on drone movements overnight, adding that several drones had transited Belarus before entering Polish territory. Updated Ukrainian assessments suggested as many as two dozen drones may have crossed into Poland.

Polish daily Rzeczpospolita reported 23 incursions and argued the scale made it unlikely the incident was accidental, describing it instead as a deliberate Russian operation to test Poland’s defenses. The outlet also criticized delays in the development of national counter-drone systems, including the halted SkyCTRL program.

In response to the incident, Poland scrambled fighter jets in coordination with NATO allies and temporarily closed four airports, including Warsaw and Rzeszów. Local reports said one drone struck a house near the Belarusian border, damaging the roof but causing no injuries.

The episode coincided with one of Russia’s largest aerial barrages in months, striking 15 Ukrainian regions. Kyiv warned Moscow was “testing the West” and said drones could threaten targets further inside Europe.

https://cuashub.com/en/content/poland-requests-article-4-activation-after-shooting-down-russian-drones/ (Source: https://cuashub.com/)

 

12 Sep 25. Cuashub.com said today that MARSS debuts autonomous capabilities for NiDAR system. MARSS debuted a new capability within its NiDAR C4 platform at DSEI 2025, introducing what it calls Autonomous Mission Management (AMM). The feature is designed to allow operators to task, deploy and recover uncrewed assets, such as drones, unmanned surface vessels (USVs) and unmanned ground vehicles (UGVs), directly from within NiDAR, without requiring pilot input.

According to the company, AMM enables NiDAR to act as a central command hub for multi-domain operations by fusing live video and sensor feeds from uncrewed systems with other data sources. This process provides automatic geolocation of threats on operational maps and reduces the need for manual verification by operators.

The architecture is intended to extend layered defense across multiple environments, including air, land, maritime and subsurface domains. NiDAR AMM can manage both sensor platforms and effectors, with human operators retaining final engagement authority.

At the exhibition, MARSS will demonstrate the capability in partnership with Milrem Robotics and EOS. The demonstration will feature Milrem’s THeMIS Combat unmanned ground vehicle equipped with the EOS R150 remote weapon station, integrated into NiDAR’s AMM environment.

MARSS positions the upgrade as a significant step forward for its command-and-control offering, describing it as moving beyond situational awareness to active mission management. The company says NiDAR AMM is already deployable and is aimed at military and security operators seeking to integrate autonomous platforms into layered defense strategies.

https://cuashub.com/en/content/marss-debuts-autonomous-capabilities-for-nidar-system/ (Source: https://cuashub.com/)

 

12 Sep 25. Aimpoint, the leading manufacturer and innovator of red dot sighting technology, celebrates a half a century of excellence in 2025.

With the first prototype optic developed by a Swedish hunter in 1974, Aimpoint was formed in 1975 by family-owned Sandberg Development, and has garnered a reputation of extreme durability, reliability, and exclusivity.

Celebrating the 50th anniversary, Aimpoint honors five decades of precision engineering and steadfast commitment to those who demand the very best. From the battlefield to backcountry, in competitions to everyday carry, Aimpoint® optics have remained the trusted choice for professionals and skilled enthusiasts who refuse to compromise.

THE ORIGINAL RED DOT SIGHT

Beginning with a simple goal of improved accuracy and faster target acquisition, AIMPOINT sights have set the standard in red dot sighting technology and innovation.

AIMPOINT products are subjected to brutal testing, including exposure to extreme heat, cold, physical abuse, and submersion under water.  From arctic temperatures to desert sand, the ruggedness of AIMPOINT red dot sights stand up to any challenge.

In 1997, Aimpoint rose to prominence in the United States when awarded a contract to supply the U.S. Army with 100,000 Aimpoint Comp® M sights, also known as the M68 Close Combat Optic (M68CCO). Since then, over 2 m red dot optics have been fielded by the U.S. Armed Forces. Today, AIMPOINT optics are also trusted by military forces, police agencies, and elite teams around the world.

“This year marks a major milestone for all of Aimpoint and we are only getting started,” says Thane Smith, President, Aimpoint Inc. “As we celebrate throughout 2025, we are reminded of the legacy of innovation and commitment to the highest quality standards for providing optics to support every mission from personal protection to combat zones world-wide.”

About Aimpoint

As the originator of red dot sighting technology, Aimpoint is trusted as the worldwide leader of reflex sights in both quality and technical support. For 50 years, AIMPOINT has been the top choice of military, law enforcement, hunters, and sport shooters worldwide.  For more information on AIMPOINT products, visit the company’s webpage: www.aimpoint.us

 

12 Sep 25. L3Harris Providing EO/IR targeting systems to Kongsberg Defence & Aerospace for new C-UxS Land Vehicle.

L3Harris recently signed an agreement with Kongsberg Defence & Aerospace (KDA) for the supply of WESCAM MX-10D RSTA electro-optical/infrared (EO/IR) sensor systems. The agreement enables the delivery of ready-now C-UxS land vehicles equipped with advanced targeting capabilities.

Field-proven and equipped with high-performance tracking software and advanced image processing, WESCAM MX-Series EO/IR systems provide high-performance targeting and designating capabilities to counter new threats from unmanned systems.

This agreement marks L3Harris’ successful track record of integrating its EO/IR sensor systems on multi-role and C-UxS platforms. The MX-Series of multi-sensor, multi-spectral, EO/IR systems support ISR and target acquisition missions on platforms across all domains.

“L3Harris Counter-UxS solutions, including our WESCAM MX-Series EO/IR sensor systems, are pushing the boundaries of kinetic solutions for UAS engagement,” said Tom Kirkland, Vice President & General Manager, Targeting & Sensor Systems, L3Harris Technologies. “New land platforms from Kongsberg are a tremendous opportunity to further prove the effectiveness of our systems against the growing global UAS threat.”

KDA is a leading integrator of modular, scalable and operationally flexible C-UxS systems. Focused on land-based platforms, KDA is leveraging its proven land vehicles and adapting its solutions with advanced sensor systems, command & control systems and kinetic and non-kinetic effectors.   (Source: ASD Network

 

10 Sep 25. AimLock, a pioneer in autonomous targeting and engagement systems, announced it is collaborating with Teledyne FLIR Defense to provide autonomous kinetic capabilities for the company’s SUGV™ 325 and Kobra™ 725 ground robots.  AimLock’s systems, powered by the company’s Core Targeting Modules (CTMs), will support Teledyne FLIR’s robots in delivering decision-accelerating kinetic autonomy across key mission sets in Counter-UAS, Force Protection, Direct Action, Integrated Defense, Strike Anti Armor, and Support by Fire. As the autonomous battlefield continues to evolve, both companies will be displaying these mission-critical systems at their booths during DSEI.

On Display at Teledyne’s Booth (S3-110):

Teledyne FLIR’s SUGV 325, Integrated with AimLock’s RS-2 Solution with Dual 40mm Grenade Launchers

SUGV 325, a backpackable robot that offers a versatile solution for a variety of missions, will be integrated with AimLock’s RS-2, a remote engagement speed and accuracy system that powers automated target acquisition and firing solutions. R-S2 can be affixed with a range of weapon systems: dual 40mm grenade launchers, quad M72 rocket launchers, a lightweight machine gun, .50 caliber semi-automatic rifle, and more.

The R-S2 provides:

  • Multi-sensor AI targeting: The system uses edge-processed, multi-modal sensors with AI-enhanced target detection, classification, recognition, and identification.
  • Automated stabilized firing: two-axis stabilized positioners provide automated firing solutions with corrections for target and platform motion, environmental conditions, and targeting ranges.
  • Flexible integration: open architecture control interfaces integrate into larger combat systems or standalone use, with platform kits available for manned and unmanned air and ground vehicles.

On Display at AimLock’s Booth (N5-260):

Teledyne FLIR’s Kobra 725, Integrated with AimLock’s RM-1

The Kobra 725, a powerful, heavy-payload robot, will be integrated with AimLock’s RM-1, a semi-autonomous remote weapon station for medium machine gun platforms. The RM-1 provides:

  • An advanced targeting system: The R-M1 combines day/night sensors, laser range-finding, active stabilization, autonomous detection, classification, tracking, and automatic firing to deliver fast, accurate engagement, even while on the move.
  • Multi-threat capability: It detects and tracks small drones, vehicles, and enemy combatants, enabling 7.62mm and .338 Norma Mag machine gun engagement out to the host weapon’s effective range.
  • Flexible deployment: The ultra-portable system can be mounted on tripods, buildings, vehicles, boats, and helicopters for maximum operational versatility.

“As autonomy on the battlefield continues to become the status quo, our unique ability to provide autonomous kinetic capabilities is more important than ever,” said Bryan Bockmon, CEO of AimLock. “We are pleased to collaborate with Teledyne FLIR Defense to power their robots with the kind of technology that helps keep warfighters safe and bring them home from the most precarious of missions.”

“Globally, our customers are placing a sharper focus on lethality for unmanned systems, which is why our collaboration with Aim-Lock is a win-win,” said Nate Winn, director of product management, Unmanned Systems North America, at Teledyne FLIR Defense. “Whether it’s our SUGV or Kobra robots or Rogue 1 UAS, our highly modular platforms can easily integrate a wide range of kinetic effect systems that are proving to be difference-makers in modern warfare.”

About AimLock

AimLock is a US-based company that researches, develops, and manufactures autonomous targeting and engagement systems for Defense applications.

Its Core Targeting Modules (CTMs) deliver decision-accelerating autonomy across key mission sets in Counter-UAS, Force Protection, Direct Action, Integrated Defense, Strike Anti Armor, and Support by Fire. Fully networked with a modular open systems approach (MOSA), AimLock’s solutions apply to small arms, grenades, rockets, missiles, and laser target designators deployed to individuals, UxS, rotary-wing, fixed-wing, maritime surface, subsea, and beyond.

Founded in 2013, the company, one of the premier developers of aided target recognition technology, is rooted in an ongoing commitment to provide force-overmatch by increasing the speed and accuracy of engagements for US and Allied Combat Forces. AimLock is headquartered in Denver, Colorado. For more information, please visit www.Aim-Lock.com.

About Teledyne FLIR Defense

Teledyne FLIR Defense has been providing advanced, mission-critical technology and systems for more than 45 years. Our products are on the frontlines of the world’s most pressing military, security and public safety challenges. As a global leader in thermal imaging, we design and build sophisticated surveillance sensors for air, land and maritime use. We develop the most rugged, trusted unmanned air and ground platforms, as well as intelligent sensing devices used to detect chemicals, biological agents, radiation and explosives. At Teledyne FLIR Defense we bring together this expertise to deliver solutions that enable critical decisions and keep our world safe – from any threat, anywhere. To learn more, visit us online or follow @flir and @flir_defense.

 

10 Sep 25, Robin Radar Systems today unveils a breakthrough software upgrade to its flagship IRIS counter-UAS radar, extending instrumented range from 5km (3.1 miles) to 12km (7.45 miles). The innovation makes IRIS one of the first off-the-shelf radars proven to detect and classify Shahed loitering munitions at long distances, providing operators with crucial early warning against one of the most lethal weapons in modern conflict.

The new Long-Range Mode (LRM) was first developed and stress-tested through Robin’s significant number of IRIS deployments in Ukraine, where Shahed drones have become a near-daily threat to critical infrastructure. Direct feedback from Ukrainian operators has been fed back into Robin’s development cycle, enabling the company to deliver the upgrade in record time.

Unlike costly missile-tracking radars, IRIS is a compact and lightweight mobile system that can be deployed in minutes and integrated seamlessly into multi-sensor CUAS architectures. The software-only upgrade requires no hardware replacement, ensuring all IRIS units can be field-upgraded.

For Ukrainian forces, the 12km range will offer a potentially life-saving window of warning to prepare for incoming Shaheds travelling at over 180 km/h (111Mph). For U.S. and European customers, the battlefield-tested technology is set to be rolled out to critical government agencies, including key European Ministries of Defense and Interior, as well as the US Department of Homeland Security Science & Technology, to ensure domestic innovations reflect the best available technology currently being used in live conflict zones.

Siete Hamminga, CEO of Robin Radar Systems, added: “This upgrade marks a step-change in what counter-drone radar can achieve. By listening to our users on the frontline, we’ve redefined the capabilities of an off-the-shelf system—delivering a battlefield-proven solution that is now being made available worldwide. As software continues to transform defence, Robin Radar will hold its position at the forefront of innovation.”

Kristian Brost, General Manager of Robin Radar USA, said: “This upgrade isn’t just about range—it’s about time. Every extra kilometer of detection gives defenders more precious seconds to react, more chances to protect critical infrastructure, and ultimately, more lives saved. By delivering this leap forward entirely through software, we’re showing how the decisive edge in counter-drone defense is no longer just built—it’s coded.”

 

12 Sep 25. Tilt Angle Drones Appoints OcuSight as Exclusive Value Added Reseller for Defence Sector. Tilt Angle Drones (TAD), a leading innovator in unmanned aerial systems, is proud to announce the appointment of OcuSight as its exclusive Value-Added Reseller (VAR) for the Defence market sector. This strategic partnership marks a significant step forward in delivering cutting-edge Unmanned Air Vehicles (UAVs) tailored to meet the evolving needs of Defence clients. TAD and OcuSight are collaborating on a versatile range of UAV platforms, offering bespoke solutions that can be precisely configured to meet specific end-user requirements.

From airframe design, motors, flight control systems, and electro-optical payloads, every component can be produced in UK sovereign, Five Eyes, or NATO-compliant versions—ensuring operational security and alignment with allied standards.

The product roadmap includes a full spectrum of UAVs, ranging from lightweight tactical drones to heavy-lift, long-range platforms, all engineered for high performance, reliability, and mission adaptability.

“We’re excited to partner with OcuSight to bring our advanced UAV technologies to the Defence sector,” said Mark Webber of Tilt Angle Drones. “Their expertise and market reach make them an ideal partner to deliver tailored aerial solutions that meet the highest standards of capability and compliance.”

This partnership reinforces both companies’ commitment to innovation, sovereignty, and operational excellence in Defence technology.

 

11 Sep 25. BAE Systems and Thales today announced a new phase in their long-standing collaboration on submarine sonar capability, marked by the signing of a Memorandum of Understanding (MoU). In support of the MoU, BAE Systems proposes the appointment of Thales as the pan-flotilla Main Sonar Design Authority and Integrator (MSDA&I). ​ This role recognises Thales’s deep expertise and ensures that the evolution of the submarine sonar enterprise remains centred on delivering enhanced capability to the armed forces.

Building on more than two decades of close collaboration, BAE Systems and Thales have developed a streamlined delivery construct that accelerates the deployment of advanced sonar solutions. Sonar products and components will continue to be sourced from across the UK sonar enterprise on a “best athlete” basis, reinforcing the sector’s sovereign strength and industrial resilience.

“The underwater battlespace is one of the most complex and unforgiving environments in defence, where threats are often unseen but always present. By combining the complementary strengths of Thales and BAE Systems, we are bringing together world-class innovation and proven expertise to deliver cutting-edge sovereign capability for the UK to maintain decisive advantage at sea.” Paul Armstrong, Managing Director for Underwater Systems, Thales in the UK.

“BAE Systems is delighted to sign this MoU with Thales and build upon our long standing, successful and collaborative relationship working to deliver operational advantage to the Royal Navy. This MoU unlocks the opportunity to further improve how we work together across all of our submarine programmes and provides a clear and joint focus in delivering the UK sovereign sonar capability of the future. This collaborative relationship will continue to ensure that we deliver world leading technologies and capabilities to the Royal Navy.” Henry Parker, BAE Systems Integrated Combat Systems Programme Director.

 

11 Sep 25. HENSOLDT unveiled its new TAROSS solution, an electro-optical sensor system for target acquisition and reconnaissance. TAROSS is a modular, scalable sensor box designed for use on remote weapon stations, medium-calibre turrets, light reconnaissance vehicles and unmanned ground vehicles. The system offers a direct interface to HENSOLDT’s Ceretron and can be easily integrated into existing or future vehicle and weapon systems.

Reconnaissance, precise target acquisition and engagement are key elements of any military operation. They include both reconnaissance of the terrain and gathering information deep within enemy territory. To minimise the risk to troops, TAROSS offers the option of conducting these operations from a safe distance. ‘Our troops must be equipped with reliable, mission-proven and battle-tested capabilities in the areas of intelligence, surveillance, target acquisition and reconnaissance (ISTAR),’ explains Josef Reif, Product Manager for the TAROSS system family. The modular optronic target acquisition and reconnaissance system TAROSS was developed precisely for this purpose and combines HENSOLDT’s typical high optical performance with the software-defined defence approach for forward-looking technologies.

As a complete product family for a range of applications, TAROSS offers maximum precision and sensor equipment tailored to the mission. TAROSS is modular and can be equipped with a variety of customised sensor sets. It is also available with a fully stabilised pan-tilt unit (PTU) as well as cooled and uncooled thermal imaging cameras.

With its modern hardware and software architecture, TAROSS provides a glimpse into the future of connectivity and software-defined defence by supporting our troops in the sensor-to-shooter process.

 

12 Sep 25. USMC personnel assigned to I Marine Expeditionary Force partnered with the Defense Innovation Unit and industry leaders during phase two of the DIU’s Project GI challenge to evaluate commercial small unmanned aerial systems in realistic operational environments, Aug. 18-29. The 12-day event brought together Marines assigned to 1st Marine Division — including operators, leaders and subject matter experts — to test vendor-loaned systems across multiple ranges. The training period included four days of Marine-led familiarization, followed by six days of scenario-based demonstrations. Assessments will directly inform War Department procurement decisions and accelerate the integration of resilient, cost-effective small UASs into the joint force.

“The GI challenge puts our Marines at the center of capability development. Their expertise, combined with the innovation of our industry partners, is shaping the next generation of unmanned systems,” said Marine Brig. Gen. Michael Nakonieczny, deputy commanding general of I Marine Expeditionary Force. “I MEF is proud to play a leading role in advancing technologies that directly enhance the lethality and survivability of our Marines.”

Marines evaluated systems against operational criteria, including setup, deployment time, weatherproofing, payload capacity and performance across varying terrain and climates. Evaluations emphasized how each system affected tactics, techniques and procedures during realistic combat scenarios.

“Robotics are revolutionizing the battlefield, and it’s no secret that first-person-view drones have become one of the most lethal and disruptive weapons worldwide,” said Marine Maj. Steven Atkinson, I Marine Expeditionary Force DIU event lead planner. “Our mission is to ensure America’s warfighters get the very best, battle-tested technology so they can be effective anywhere in the world.”

The challenge represents the second phase of a three-part competitive selection process. Phase one involved an initial screening in which the DIU reviewed vendor proposals and chose the most promising systems for further testing. Phase two brought those selected vendors to Marine Corps Base Camp Pendleton, California, for hands-on evaluation by the I Marine Expeditionary Force. A final phase three round will determine which systems advance to procurement, with winning platforms expected to be added to DOW’s “Blue UAS Cleared List” — drones compliant with current law and policy, validated as cybersecure and available for DOW purchase and operation — by March 15, 2026.

“Bottom-up refinement is something the Marine Corps has always valued. The ability for dedicated to test, stress and provide input on these products is exactly what was needed for this project and the service,” said Marine 2nd Lt. Kienan Morrissey, an intelligence officer assigned to 3rd Light Armored Reconnaissance Battalion who participated in the evaluation of the vendor-loaned small UAS platforms.

Marines stress-tested the systems in contested environment simulations, focusing on modern kill chain operations and first-person view effects capabilities. Vendors were required to provide at least three prototypes for testing, though some platforms received exemptions due to design characteristics or employment concepts.

Following evaluations, Marines conducted detailed debriefs to capture feedback that will guide procurement and influence future small UAS capability development across DOW. Units within I Marine Expeditionary Force will continue working with selected systems beyond the challenge to provide additional recommendations for improvement.

The DIU’s Project GI challenge represents one of the Marine Corps’ largest field-based industry engagements, focusing on emerging drone technology and directly supporting modernization priorities identified by Marine Corps and Pentagon leaders for operations against peer adversaries.

“Events like these ensure our Marines will have the best available tools at their disposal in the next conflict,” Morrissey said. (Source: U.S. DoD)

 

11 Sep 25. DroneShield Integrates Sentrycs into its Multi-Layered DroneSentry Counter-Drone Solution. The partnership expands DroneShield’s layered counter-drone solution with protocol-level takeover, controlled landing, and forensic capabilities. DroneShield (ASX:DRO), a global leader in counter-drone technology,  announces a further layer to its DroneSentry solutions via integration with Sentrycs, introducing protocol-level cyber takeover, controlled landing, and advanced forensic capabilities.

This expanded capability builds on DroneShield’s long-standing ecosystem of integrated partners, alongside its own radio frequency detection and smart disruption defeat capabilities via its DroneSentry-X solutions. The existing partners include Echodyne, Bosch, and Teledyne FLIR on detection, and Epirus on directed-energy defeat—converging within the DroneSentry-C2 command-and-control platform. Together, these integrations deliver unmatched situational awareness, layered response, and operator choice in one unified solution.

Key developments include:

  • A newly added technology layer for detection and defeat capability in the DroneSentry-C2 platform.
  • Full-integration of DroneShield and Sentrycs solutions, delivering market-leading fused cyber and RF detection and mitigation functionality
  • Optimisation of DroneSentry-C2’s SensorFusionAI (SFAI) engine to ingest ‘cyber-RF’ (CoRF) detection data, supporting enhanced real-time analytics and response.

 

09 Sep 25. Chess Dynamics, part of the Cohort plc Group, has announced the launch of OMEGA, its most powerful multi-purpose positioner to date. Designed to meet the growing demands of defence and security customers, OMEGA joins the company’s established portfolio alongside the combat-proven Cobra, Viper and IOTA systems.

OMEGA marks a significant leap in performance and resilience for mission-critical payload handling. Supporting payloads up to 500kg (½ tonne) it delivers increased torque, precision, and stability for large and complex sensor systems. This enables it to handle the heaviest and most complex sensor suites used in today’s multi-domain operations — including radar, multi-sensor pods, and long-range precision surveillance systems.

As defence and security missions increasingly rely on multi-sensor integration and real-time situational awareness, precision positioners are vital to delivering performance under pressure. OMEGA ensures rock-solid tracking accuracy and reliability – even under the environmental and physical stresses of today’s contested battlespace.

Mark Byfield, Managing Director at Chess Dynamics comments, ‘OMEGA is a direct response to operational needs we’ve seen in the field. With sensor payloads growing complexity and therefore size and weight, our customers need platforms that can deliver uncompromising performance in real-world conditions. OMEGA brings that power.’

High Torque, Outstanding Resilience and Full integration Flexibility

Engineered for demanding payloads, OMEGA is purpose-built for large sensor configurations, providing smooth, precise control in the toughest operational environments. Its robust build ensures reliable tracking even under vibration, recoil, or environmental stress, from pothole-laden roads to mast-mounted maritime platforms.

Like the Chess Dynamics’ Viper (optimised for mobile platforms with EO systems up to 60kg) OMEGA is based on an open, modular architecture that supports integration with a wide range of sensors and effectors. It is platform-agnostic, adaptable to land vehicles, naval vessels, fixed infrastructure or deployable systems.

OMEGA key features include:

  • Payload flexibility for advanced RF, radar, and EO systems.
  • Increased torque capacity for smooth, accurate control even with heavy sensor configurations.
  • Maintains precise pointing under gusting or persistent wind conditions.
  • Stabilised options for dynamic platforms.
  • Supports advanced multi-sensor heads without compromising responsiveness or stability.

 

12 Sep 25. AV Partners with ARKEUS to Deliver Hyperspectral Optical Radar Payload for Jump20 Uncrewed Platform. Today, AeroVironment (“AV”) (NASDAQ: AVAV) unveiled the newest payload for its Group 3 JUMP 20 uncrewed autonomous system (UAS)–the Arkeus Hyperspectral Optical Radar (HSOR). The HSOR-equipped JUMP 20 redefines autonomous Intelligence, Surveillance, and Reconnaissance (ISR) missions and equips forces with comprehensive situational awareness across domains.

Integrating the autonomous, real-time Arkeus HSOR on the long-range, multi-mission AV JUMP 20 is a transformative step forward in reconnaissance technology. Built for congested and degraded visual conditions, the HSOR-equipped JUMP 20 offers long standoff and increased situational awareness in operational environments where visibility is limited, electromagnetic conditions are constrained, and payload flexibility is essential. Utilizing hyperspectral imaging to analyze materials’ unique spectral “fingerprint” enables rapid environmental analysis, including water depth, foliage density, subterranean activity, and more–day and night.

“The JUMP 20 is the first and only uncrewed platform to integrate Arkeus HSOR, which itself is the first real-time, wide-area scan, hyperspectral sensor,” said Trace Stevenson, President of Autonomous Systems for AV. “The technological innovation is groundbreaking and important. But most important is the capability we can now deliver to the warfighter.”

Leveraging an AI-driven data engine and rapid environmental assessments, the HSOR-equipped JUMP 20 provides operators with persistent detection, classification, location, and tracking of hundreds of contacts simultaneously–across land, sea, littoral, and transitional zones with no recalibration or hardware changes. With more than eight times the range in degraded visual environments as compared with traditional Electro-Optical Infrared (EO/IR) sensors, it is ideal for wide-area ISR, maritime domain awareness, search and rescue, counter narcotics operations, border security, and more.

“This HSOR-equipped JUMP 20 heralds a new era in multi-mission operations for forces that prioritize situational awareness across domains as the cornerstone of operational success,” said Simon Olsen, President & CEO of Arkeus. “Together with AV, we are enhancing operational efficiency and decision-making processes for warfighters in contested, congested battlespaces.”

The JUMP 20 is a vertical takeoff and landing (VTOL), fixed-wing uncrewed aircraft system (UAS) that provides advanced multi-sensor ISR services. The system delivers 13+ hours of endurance with a Line of Sight (LOS) operational range of 185 km (100nm) and a Beyond Line of Sight (BLOS) range of over 500nm. Operators can set it up and deploy it in less than 30 minutes without the need for launch or recovery equipment. With a 30-pound payload bay and common autopilot and ground control system architecture, the JUMP 20 is a highly customizable, modular platform that can be custom-configured to meet operational or customer requirements.

(Source: ASD Network

 

12 Sep 25. Babcock and CiTech sign MOU to develop rapidly deployable communications, ISR and counter-UAS systems for Eastern Europe. Babcock International Group (Babcock), the defence company, and Australian company Critical Infrastructure Technologies (CiTech) have signed a Memorandum of Understanding (MOU) to develop a rapidly deployable hub that can house a combination of 5G communication, Intelligence, Surveillance & Reconnaissance (ISR) and counter-UAS systems for the Eastern Flank and other defence and national security applications.

The MOU, signed at DSEI, will involve both parties working exclusively on opportunities to supply Eastern Europe with a system based on CiTech’s Nexus 20 platform.

The 20ft container sized product, which can be transported on a truck, will house 5G communications, counter UAS, and ISR technology. It can unload itself, adapt to sloping or uneven ground and deploy 20m cyclone rated tower.

As part of the MOU, Babcock and CiTech will also explore the development Nexus 16 assembly hub in Eastern Europe and opportunities across NATO’s Eastern Flank.

Western Australian based CiTech was one of the first companies to join Babcock’s Global Supply Chain Program (GSCP) which strengthens Australian industry’s access to international defence markets by opening up new commercial pathways.

Babcock’s dedicated GSCP delivery team is strategically situated in both Australia and the UK to provide continual advocacy at a global level and identify gaps in that have the potential to be filled by Australian supplier capability.

Mark Goldsack, Babcock’s International Director, said: “We are delighted to be signing this partnership with CiTech, where we can deliver a rapidly deployable communications, counter-UAS and ISR capability as well as develop a dedicated assembly hub to support further opportunities.”

Brenton Scott, CEO of CiTech, added: “As an Australian defence industry SME, partnering with Babcock unlocks a pathway for the Nexus 20 to be rapidly scaled across Eastern Europe. This isn’t a single deployment – it’s the beginning of a regional expansion that positions CiTECH’s Nexus 20 as a benchmark capability across NATO’s Eastern Flank.”

 

08 Sep 25. Welsh companies OcuSight Limited and Optical Tool for Industry (OTI) unveil digital PDP Periscope upgrade delivering unassisted 0.5 mLux performance — no image‑intensifier tubes required

Drop‑in digitisation of legacy PDP periscopes adds day/night imaging, real‑time Image signal processor (ISP), and on‑screen overlays to extend service life and reduce cost of ownership.

OcuSight, in collaboration with Optical Tool for Industry (OTI), today announced a re‑engineered PDP Periscope Digitisation Pack that replaces legacy image‑intensifier tube assemblies with a modern low‑light digital camera and real‑time ISP. The upgrade enables unassisted operation down to 0.5 mLux as well as full daylight performance, eliminating reliance on costly — and increasingly obsolete — intensifier tubes while retaining much of the original PDP periscope hardware. The solution will debut at DSEI 2025, ExCeL London, 9–12 September at the ADS Pavilion (stand number N6-165)

“Modernising proven periscope platforms doesn’t have to mean full replacement,” said Mark Faux, Director, OcuSight. “By digitising the PDP optical path with a low‑SWaP camera and ISP, we’ve created a practical, affordable route to true day/night capability — and we’ve done it while reusing existing housings, mechanics and interfaces to minimise downtime, risk and cost.”

Key capabilities

  • True day/night imaging: Unassisted 0.5 mLux low‑light performance and daylight operation in a single digital module.
  • Real‑time image pipeline: Integrated ISP with auto‑exposure, contrast, gain, and tone‑mapping/gamma algorithms for consistent, high‑quality imagery across lighting conditions.
  • Drop‑in digitisation: Reuses many PDP periscope components (mechanical structure, seals and interface geometry) to simplify retrofit and preserve platform integration.
  • Operational overlays: Optional track overlays and compass rose graphics to enhance situational awareness for the operator.
  • Sustainment and cost reduction: Removes dependence on image‑intensifier tubes and associated supply chains; reduces maintenance exposure and extends system service life.

“OTI’s precision opto‑mechanical engineering, combined with OcuSight’s imaging and processing expertise, means customers can now bring legacy sighting systems into the digital era in weeks, not years,” said Kyle Parry, Director, Optical Tool for Industry (OTI). “The PDP upgrade shows how careful re‑use of existing assemblies can accelerate capability while controlling programme risk

Live at DSEI 2025

Visitors can see the Periscope on the OcuSight stand in the ADS Pavilion at ExCeL London from 9–12 September 2025. To book a meeting contact .

Technical snapshot

  • Sensor & ISP: Low‑light CMOS module with embedded real‑time ISP (auto‑exposure, contrast, gain, tone mapping/gamma).
  • Low‑light performance: Unassisted 0.5 mLux (moonless night) with high‑resolution output; day‑light operation supported.
  • Periscope integration: PDP mechanical envelope preserved; digital module designed to accommodate existing PDP periscope components and seals.
  • Digital features: Configurable track overlays, compass rose, optional metadata output.
  • Upgrade philosophy: Reuse where sensible; digitise where it counts — delivering rapid modernisation without full system replacement.

Availability

The PDP Periscope Digitisation Pack is available for evaluation and integration trials with OEMs and platform primes. Early‑access kits and engineering support can be scheduled email .

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 10, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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09 Sep 25. Echodyne Launches EchoShield® Rapid Deployment Kit. Echodyne, the radar platform company, today announces the immediate availability of the Rapid Deployment Kit (RDK) for its market-leading metamaterials electronically scanned array (MESA®) EchoShield radar. EchoShield is a software-defined, multi-mission, multi-domain, multi-modal radar with exceptional accuracy and advanced AI-based classification in increasingly high demand for air domain awareness and counter-unmanned aircraft systems (C-UAS) solutions. With the proliferation of drones in the airspace comes a requirement for rapidly establishing situational awareness zones that detect, track, identify, and enable mitigation of threats. The RDK is designed for quick and straightforward deployment of four radars for robust, high accuracy hemispherical coverage. Adding the RDK to the EchoShield portfolio creates leading positions in every modality, from fixed sites and full on-the-move (OTM) capabilities to now include rapidly deployable temporary missions.

Key benefits of the EchoShield RDK include:

  • High durability and rapid assembly: The RDK is made of durable steel components and a multi-axis tripod and designed to be operational in less than one hour (<1 hr).
  • An integrated junction box and power supply unit: Engineered to withstand the harshest environments, the tripod-mounted radar platform includes simplified wiring and power management through an integrated junction box and power supply unit (see junction box and power supply unit specifications below).
  • Access to high-accuracy hemispherical coverage: The RDK provides a 25km high-accuracy situational awareness hemisphere to detect, track, and classify drones of all shapes, sizes, models, and capabilities.
  • Junction Box Specifications: Ready mount for tripod, 4-channel junction box for 4x EchoShield radars, Integrated Layer-2 Switch, Single C2 interface, Single Power interface.
  • Power Supply Unit Specifications: Ready mount for tripod, COMROD ComPact 2400 PSU, Supports 4x EchoShield + other equipment, Available with 5-15P, Type E/F, Type G cable options.

“Drones have changed the very nature of how we think about perimeter surveillance and situational awareness,” said Eben Frankenberg, CEO of Echodyne. “Our MESA radar systems have been central to ensuring that one sensor can provide heightened awareness simultaneously in air and surface domains. The EchoShield Rapid Deployment Kit allows every customer to quickly establish high-accuracy hemispherical situational awareness.”

Echodyne combines the lowest size, weight, and power (SWaP) requirements with the industry’s most robust on-radar software platform. With radars leading in short- and medium-range categories, Echodyne’s RDK accelerates EchoShield deployments and ensures mission success. For more information, please contact your company representative or visit Echodyne.com. (Source: BUSINESS WIRE)

 

12 Sep 25. IPG Photonics displays C-UAS laser system. US-based laser manufacturer IPG Photonics showcased its Crossbow Mini 3 kW laser directed energy weapon (LDEW) for counter-unmanned aircraft system (C-UAS) operations at the Defence and Security Equipment International (DSEI) 2025 exhibition held in London from 9 to 12 September. Ben Allison, vice-president of IPG Defense, told Janes that despite this being the company’s first defence product, they believed that their established production base as a commercial supplier of laser modules would mean competitive price points and delivery capability. IPG has worked with unnamed partners to create a 181 kg LDEW system with electro-optic and midwave infrared (MWIR) cameras and command-and-control (C2) software, called Crossbow. The 3 kW Crossbow Mini has a range of 300–1,300 m, effective against group one and two UASs, usually quadcopters under 1 m in diameter. Defeat times are usually under 10 seconds per UAS, Allison said. Lockheed Martin selected Crossbow as the laser weapon for its Sanctum C-UAS and conducted four field tests with it in the United States since February. Allison said the company is working with the US Department of State to register its products to comply with International Traffic in Arms Regulations (ITAR) legislation for possible future sales. IPG is working on a larger 8 kW system. Allison said increased laser power of that increment contributes more to shorter UAS defeat times and less to increased range. Batteries for the systems can be charged from ordinary domestic 220–240 V power supplies or down to as little as 12 V and are easy to switch for new ones. Each 5,000 Ah battery for the mini system provides 35 minutes of firing time. (Source: Janes)

 

09 Sep 25. Cuashub.com said today that US Army trials ODIN for armored vehicles. R2 has announced the first deployment of its ODIN spectrum awareness system on U.S. Army armored platforms during a recent live maneuver exercise. The trial marked the first time passive radio frequency (RF) sensors have been integrated and operated on tanks and armored vehicles under field conditions. According to the company, ODIN was installed, tested and validated over the course of more than a week at one of the Army’s largest training areas. The system was embedded into Abrams tanks, Bradley Fighting Vehicles, and Joint Light Tactical Vehicles, where it operated on the move in live combat maneuver scenarios against first-person view (FPV) drones. Unlike active sensing technologies, ODIN is passive and emits no signals, which R2 says provides situational awareness without revealing a platform’s position. The exercise tested the platform’s ability to detect, geolocate and integrate data with existing Army command-and-control systems while under operational stress. R2 said the demonstration showed ODIN’s potential to enhance survivability and lethality for armored forces by providing early warning of unmanned aerial threats in contested environments. The company added that ODIN has been shortlisted by the U.S. Army as a candidate passive RF solution for armored brigades, describing the exercise as a significant step toward future fielding decisions.

US Army trials ODIN for armored vehicles

(Source: https://cuashub.com/)

 

09 Sep 25. Cuashub.com said today that Argus Interception unveils drone-to-drone interceptor system. Germany-based counter-drone firm Argus Interception has announced the launch of its A1-FALKE system in the UK, presenting a quadcopter designed to detect, track and capture unauthorized drones in flight. Founded in 2023 by former military officers, Argus Interception developed the A1-FALKE as a sensor-equipped interceptor drone that combines radar, lidar and AI-enabled software with a net launcher for physically capturing targets. The system can be mounted on vehicles, deployed at temporary sites, or operated from fixed locations, as well as integrating with existing command-and-control platforms. The A1-FALKE operates by flying to a designated intercept point, where its onboard sensors take over before engaging. Operators retain decision-making authority, with intervention carried out through a single command to direct the interceptor to capture a target. According to the company, the system is designed for ease of operation, maintenance and rearming. Argus Interception states that the A1-FALKE has already been deployed operationally and recognized by European security agencies. The company is positioning the system for use in both defense and civil security contexts where safe recovery of drones is required. https://cuashub.com/en/content/argus-interception-unveils-drone-to-drone-interceptor-system/ (Source: https://cuashub.com/)

 

09 Sep 25. Singapore selects Boeing P-8 Poseidon as its next Maritime Patrol Aircraft. Defense Minister Chan Chun Sing told US Secretary of Defense Pete Hegseth about the decision during a meeting at the Pentagon. according to a government statement. Singapore has decided to acquire the Boeing P-8A Poseidon multi-mission maritime patrol aircraft, according to a statement from the Southeast Asian nation. Singapore’s Ministry of Defence said in a news release that Defense Minister Chan Chun Sing told US Secretary of Defense Pete Hegseth about the decision during a meeting at the Pentagon on Sept 9. The release said that Singapore will acquire four P-8As as the first phase of Singapore’s recapitalization of its maritime security capabilities, which seek to strengthen its maritime situation awareness and ability to counter sub-surface threats. It is unclear what the future phases of Singapore’s efforts to refresh its maritime security capabilities would entail. The P-8As will replace five Fokker 50 maritime patrol aircraft currently operated by the Republic of Singapore Air Force. Singapore had said in March that it was considering the P-8A, alongside the Airbus C-295, as its next maritime patrol aircraft. Singapore has made a number of naval-related acquisitions in recent years. It is taking delivery of six Invincible-class diesel-electric submarines from Germany’s TKMS and will be introducing six multi-role combat vessels and four offshore patrol vessels in the coming years. It is also upgrading its six existing Formidable-class frigates, including the installation of the Blue Spear anti-ship missiles. Singapore’s economy is heavily dependent on its busy ports, and the island naton is located at the narrow choke point where the Straits of Malacca meets the South China Sea, which are heavily trafficked by commercial shipping plying the shipping lanes between Asia and the Middle East as well as Europe. Additionally, the MoD statement noted that the first of 20 F-35s for Singapore is under production, with delivery “on track” for end of 2026. (Source: Breaking Defense.com)

 

09 Sep 25. US Army launches FALCONS programme. The US Army has launched its Future Advanced Long-range Common Optical/Netted-fires Sensor (FALCONS) programme, which once mature will replace the ground service’s legacy Long Range Advanced Scout Surveillance System (LRAS3), service officials said in August. Programme officials from the army’s Product Manager Ground Sensors (PM GS), which is spearheading the development effort, signed three separate Other Transaction Authority (OTA) agreements in August for Phase 0 work on the FALCONS initiative, according to the officials. Phase 0 work will consist of research and development efforts to construct viable prototypes of the FALCONS system, the officials said in a statement at the time. Each OTA industry partner, which includes Leonardo DRS, Elbit Systems of America, and QinetiQ, will receive USD2 m as part of the Phase 0 FALCONS prototype contract, which is anticipated to last for 12 months, programme officials said in the statement. The entire FALCONS development effort is expected to progress across four separate phases, with OTA awards being issued for each phase. The entire prototype development initiative is scheduled to last over 54 months in total, programme officials said in the August statement. Phase 0, specifically, will consist of “technology maturity assessments, preliminary system model development, system specification review, and soldier feedback opportunities” of FALCONS’ prototype technologies, programme officials said. A phased approach to the FALCONS development will “set the conditions for a prototype development phase that will maximise competition” for the overall programme, said US Army Lieutenant Colonel Ryan Welch, product manager for Ground Sensors.(Source: Janes)

 

09 Sep 25. INVISIO announces H-Series: A new generation of tactical smart hubs that drastically improves battlefield efficiency Tactical communication expert INVISIO is announcing the H-Series, a new generation of tactical smart hubs for professionals in mission-critical environments. It unifies radios, sensors, EUDs, laptops, audio, and power into a single connected system resulting in a faster setup, fewer failure points, and quicker decisions under pressure. Communication on today’s battlefield relies on data, not just voice. Soldiers carry radios, digital devices, batteries, smartphones, and laptops – often from different generations and vendors. These devices don’t naturally work together. Traditional hubs only pass power and signals, forcing operators to juggle adapters, manual setups, and device-specific apps. In high-pressure missions, that complexity can put success – and safety – at risk.  A tactical smart hub is different. It unifies separate devices into one system. By removing all the complexity, it delivers faster access to mission-critical data, streamlined power distribution, and simplified control. The result is reduced cognitive load on the operator, and more focus on the mission.

H-Series: Designed for the modern battlefield

The INVISIO H-series meets the need of modern soldiers. It dramatically reduces operator burden and accelerates mission readiness by offering:

  • Embedded computing: Mission-critical software can run on the hub itself, not just on the EUD. This reduces latency and keeps essential functions online.
  • Data routing: The hubs act as a router; prioritizing and forwarding data between radios, EUDs, and sensors, so teams receive the right information at the right time.
  • Centralized power control: Power is distributed and prioritized based on role or mission profile to maximize system run-time and keep the most critical devices alive.
  • Open and updatable: An optimized operating system with secure boot, no storage of data-at-rest, a web-based configuration UI, and over-the-air updates turn the hub into an adaptable, serviceable asset, not a black box.
  • Interoperability: Bridges legacy and modern devices, so organizations can modernize and interoperate with partners without full replacement.

Two models for different mission profiles

  • H4: 4-port, low-profile, lightweight hub for streamlined setups.
  • H6: 6-port hub with expanded connectivity for complex mission profiles.

“In dynamic tactical operations, being prepared and performing at speed are non-negotiable,” highlights Colin Argue, Product Line Director at INVISIO. “The H-Series delivers precisely this: empowering users with a simplified setup, faster coordination, and improved overall operational effectiveness.”

Preparing for what’s next in tactical operations

With the H-series, INVISIO is enabling organizations to prepare for a future of tactical operations that is increasingly software-defined, networked, and mobile. As platforms and systems evolve, hubs like the INVISIO H-Series will be key to bridging legacy systems with emerging tech. From drone feeds to Battle Management System overlays, the hub will enable the unification of equipment, faster sharing of information and greater precision in planning and execution.

“This launch reflects the broader direction of INVISIO; delivering modular and scalable systems that are ready for what’s next in modern missions,” says Lars Højgaard, CEO at INVISIO. “This is more than a product announcement. It’s a step toward the kind of integrated systems that modern operations demand. We’re committed to leading that shift.”

The H-Series is expected to be available for shipment in 2026, contact INVISIO for more information.

The H-Series will be presented at DSEI September 9-12 in London, booth number S13-510. Visit INVISIO there, or alternatively, visit Invisio.com or contact your local INVISIO representative.

To access high-resolution visuals, please click here.

Additional product data are available on request.

 

09 Sep 25. Axon (Nasdaq: AXON), the global leader in public safety technologies, today announced that Dedrone by Axon released a comprehensive report, The Current & Future State of Airspace Defense[1] , revealing how low-cost, rapidly evolving drone threats are reshaping battlefields and national security strategies worldwide. The report debuts at DSEI 2025, where Dedrone is exhibiting their cutting-edge counter-drone solutions and also delivering an element of the airspace security for the event. Drawing on comprehensive operational datasets from Dedrone’s global sensor network across Europe, the Middle East, and Asia, the report reveals concerning trends in drone behavior across the region, including a 4.3x increase in DIY drone detections in 2025 as compared to 2024 and an observation that 37.5% of all 2025 detections to date occurred in low-visibility conditions.

“The drone threat is evolving faster than most defences can respond,” said Aaditya Devarakonda, CEO of Dedrone by Axon. “At DSEI, we’re not just talking about the problem; we’re demonstrating solutions that are live, operational and ready to scale. This report is both a warning and a roadmap: nations that fail to modernise will find themselves outpaced in the next era of airspace warfare.”

Dedrone’s report exposes critical vulnerabilities in current defense approaches. While 83% of 2025 detections were still DJI drones, it shows a meaningful drop from the 95% of detections that were DJI in the year before over the same time period. This growing prevalence of a much broader array of drone types including DIY and even RF-silent flights signals a tactical shift that could blind existing sensor networks.

“We’re witnessing the collapse of the old air defence economics,” said Ash Alexander-Cooper OBE, VP EMEA and APAC at Dedrone by Axon. “A $20,000 Shahed drone can prompt the launch of a $4 m Patriot missile. The asymmetry is unsustainable unless we fundamentally rethink how we detect, classify and defeat these threats.”

As both exhibitor and an element of the airspace security provision for DSEI 2025, Dedrone is demonstrating its field-proven capabilities with a DedroneRapidResponse trailer positioned at the venue entrance. Dedrone live detection streams across the globe can be accessed on ruggedized tablets at each of our DedroneOnTheMove solution partner vehicles including Supacat’s Jackal, Thales’ Bushmaster and Polaris’ MRZR.

 

08 Sep 25. Leonardo DRS, Inc. (NASDAQ: DRS) announced today the launch of its new product line of high-performance AI-enabled Ground Vehicle Architecture Smart Display systems called Rugged Smart Displays – Ground (RSD-G).  The next-generation, tactical computing systems are designed to set a new standard for ruggedness, performance, and connectivity over existing tactical smart display systems used in ground combat vehicles. The new modular RSD-G systems bring the latest in advanced combat smart display technology.  By integrating Intel Core™ i7 extended temperature processors with embedded AI capability, users have significant advantages in performance, autonomy, and responsiveness on the battlefield.  The displays combine advanced computing technology with high-resolution, multi-function displays in four sizes, enabling military customers to modernize with common computing architecture across platforms. At the heart of the RSD-G family is the embedded powerful AI capability designed to quickly analyze data from various vehicle-based sensors (cameras, radar, thermal imaging, and more), and combine it into a single comprehensive view for operators.  By quickly providing reliable real-time situational awareness, users are able to make faster and more informed decisions during stressful combat scenarios.

“We are excited to launch this cutting-edge family of rugged smart displays designed to provide our military and allied forces with a decisive advantage in today’s complex battlespace,” said Denny Crumley, senior vice president and general manager of the Leonardo DRS Land Electronics business unit.  “And by meeting the growing demand for AI-enabled, modular architectures for ground combat vehicles with this capability, we have proudly reinforced our position as industry leader in mission computing technology.”

Network computing and integration is a key strategic focus for Leonardo DRS as it continues to be the leading provider of advanced C5I technologies with the U.S. military, the U.K. Ministry of Defense, and allied militaries around the world.  These capabilities are enabling increased data and communications needed for situational awareness in multi-domain battlefield operations. The company is investing in the future of C5 through the development of next-generation battle management systems, AI processing solutions and advanced C5ISR/EW Modular Open Suite of Standards/ Sensor Open System Architecture aligned mounted systems – all aimed at enabling future network and platform processing to improve sensor fusion, situational awareness, and reduce the cognitive burden for commanders and crews.

 

09 Sep 25. Sensor solutions provider HENSOLDT is now offering its Spexer radar family as naval solution. An initial contract has already been signed with the navy of a NATO country. The naval version focuses on the detection and defence against drones at sea. In addition, the Spexer radar scans the sea surface for anti-ship missiles and submarine periscopes. The Spexer radar family offers high-performance surveillance radars for various ranges for the automatic detection and classification of ground, sea and low-flying air targets. The Spexer 2000 is part of Rheinmetall Air Defence’s new Skyranger 30 anti-aircraft gun tank (FlakPz). It is also used in the German cUAS programmes for the protection of field camps (ASUL), HoWiSM (high-energy laser for drone defence) and German Armed Forces’ NNbS air defence system for close and short-range protection. HENSOLDT has decades of experience with radar systems in the naval sector and is actively driving forward the further development of key technologies in this area. Various versions of radars from the TRS-4D product family are already in use on board ships belonging to NATO partners.

“We can use software to expand the functionality of our products so that they can be used in various scenarios,” says Markus Rothmaier, Head of Naval & Ground Radars at HENSOLDT. “With our capabilities in motion, we are predestined for maritime applications. Therefore, the use of the Spexer radar at sea is another logical step on our path to equipping maritime units.”

 

09 Sep 25. Elbit Systems Ltd. introduces Frontier, its cutting-edge wide-area persistent surveillance system, designed to address the increasing complexity and intensity of border defense challenges. Presented for the first time at the DSEI 2025 exhibition, Frontier is built to autonomously detect, classify, and assess threats in real-time. Frontier leverages advanced artificial intelligence (AI) to optimize intelligence gathering and decision-making in land, air, and maritime domains. As global threats continue to evolve, intelligence teams are burdened with monitoring and managing thousands of alerts and massive amounts of data in real time. This challenge places significant demands on operational teams, often requiring substantial resources and risking potential errors. To address these needs, Elbit Systems developed Frontier, a smart, AI-based edge system designed to enhance surveillance operations.

Key features of Frontier include:

  • AI Based Adaptive Routine Learning: using cutting edge computing capabilities the system continuously learns and adapts to routine operations by analyzing vast amounts of data to detect anomalies and deviations.
  • Autonomous Threat Classification: Leveraging AI, the system autonomously identifies and classifies threats in real-time, enabing fast and accurate responses.
  • Smart Decision-Making Support: Frontier prioritizes and assesses the risk of potential threats, providing operators with clear, actionable insights.
  • Sensor Integration: Maximizes the capabilities of multiple sensors, turning data overflow into a coherent understanding of the peremiter.
  • Operational Efficiency: Reduces the workload on operating teams, and lowers operational costs, while improving mission success rates.

Frontier autonomously operates various types of sensors to visually confirm and classify threats, transmitting only the most relevant and analyzed information to the appropriate forces.

 

 

09 Sep 25. Hensoldt supplies long-range radar for German training facility. The Parow school will utilise the system as a facility for testing, referencing, and training purposes. -range radar at the Parow Naval Technical School. Credit: © Hensoldt AG. Hensoldt has completed the initial delivery of a long-range radar system to the German Navy’s Naval Technical School in Parow. The delivery marks a step in the project aimed to “eliminate obsolescence” of the Sachsen-class F124 ships’ long-range sensor systems. The project, which commenced in 2021, covers delivery of three TRS-4D LR long-range radars for the F124 frigate and an additional system for the Parow school. The system at the Parow school will serve as a facility for testing, reference, and training purposes. It provides a platform for both user and technician training, as well as for advancing system developments. Hensoldt Naval & Ground Radars head Markus Rothmaier said: “The installation of the first long-range sensor at the Naval Technical School in Parow is an important step in the project. Hensoldt has partnered with ELTA Systems, a subsidiary of IAI, for this project. The S-band radars will endow the German armed forces with ballistic missile defence capabilities for the first time. Parallel to this navy project, Hensoldt secured a contract to upgrade land-based airspace surveillance within the Hughes Air Defence Radar Successor programme for the German Air Force. The TRL-4D LR radar systems used here are similar to those for the navy and are also produced in collaboration with ELTA Systems. In both contracts, Hensoldt is responsible for producing transmitter and receiver modules, ensuring component availability within Germany. Additionally, Hensoldt is enhancing the German Navy’s F126 frigate programme through a joint effort with Thales to supply TRS-4D naval radars, aiming to improve fleet surveillance and combat functions. At DSEI 2025 in London, the company is exhibiting TRML-4D air defence radar and other solutions. (Source: naval-technology.com)

 

27 Aug 25. Revolutionising Wide-Area Surveillance: Introducing the PANOCAM Passive Sensor System. In a breakthrough for automated passive surveillance technology, OcuSight proudly unveils PANOCAM, a cutting-edge wide-area sensor system designed to redefine how critical infrastructure and expansive environments are monitored. At the heart of PANOCAM lies a novel configuration of three Long-Wave Infrared (LWIR) detectors, uniquely packaged to deliver an unprecedented 147-degree field of passive detection. This innovative design enables comprehensive coverage without mechanical movement or active emissions—ideal for stealthy, low-profile deployments.

Edge Intelligence Meets Operational Efficiency

PANOCAM is more than a sensor—it’s a smart surveillance platform. Integrated onboard video processing enables real-time:

  • Location / Orientation
  • Detection
  • Classification
  • Streaming of thermal video

All data is transmitted securely to a wide array of command-and-control networks via wireless protocols. The system is fully aware of its location and orientation, dramatically reducing the need for manual calibration and enabling actionable intelligence with minimal human intervention.

Designed for Deployment at Scale

  • Ultra-low power consumption for extended field operation
  • Compact and lightweight for easy transport and installation
  • Cost-effective for scalable deployment across large areas
  • Manufacturing-ready with a complete data pack available for licensed production

Whether protecting critical infrastructure, monitoring remote perimeters, or enhancing situational awareness in complex environments, PANOCAM delivers unmatched performance in a compact, scalable package.

Availability

PANOCAM™ is now available for pilot programs and strategic partnerships. A full technical data pack is ready for evaluation and licensing, enabling rapid integration into existing surveillance ecosystems or new product lines.

Contact

For further information on PANOCAM or to request a demonstration, please contact or visit OcuSight at DESI N6-165

About OcuSight

OcuSight is a pioneering Defence Micro SME based in North Wales, dedicated to transforming the landscape of passive surveillance and high-end motion control. With a mission to revolutionise how critical environments are monitored and secured, OcuSight develops cutting-edge technologies that deliver precision, reliability, and operational advantage. Leveraging deep expertise in defence-grade optics, motion systems, and AI-enhanced situational awareness, OcuSight serves a growing portfolio of clients across defence, security, and critical infrastructure sectors. The company’s agile, innovation-led approach enables rapid development and deployment of bespoke solutions tailored to the most demanding operational requirements. OcuSight is proud to be part of the UK’s sovereign defence ecosystem, contributing to national resilience and technological leadership from its base in North Wales.

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 8, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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08 Sep 25. OcuSight Launches PARS: A Compact Pitch and Roll Stabiliser for Autonomous Platforms. OcuSight, a Defence Micro SME leading innovation in motion control and passive surveillance, is proud to announce the launch of its latest stabilisation solution: the Pitch and Roll Stabiliser (PARS). Designed for seamless integration onto autonomous vehicles and vessels, PARS delivering a low-cost image stabilised in a compact form factor. At the heart of PARS is a two-axis gimbal architecture, enabling stabilised motion across pitch and roll axes. The system incorporates a Long-Wave InfraRed (LWIR) camera, uniquely housed to provide the second axis of motion without the need for complex external mechanisms. PARS is engineered for ease of integration. A single connector handles both camera and stabiliser functions, while an integrated Inertial Measurement Unit (IMU) ensures motion tracking and control. This streamlined design makes PARS ideal for deployment on a wide range of autonomous platforms, from unmanned ground vehicles (UGVs) and Unmanned surface Vessels (USVs) and one way mission applications. Now available for demonstration, PARS represents a cost-effective stabilised imaging for Defence. PARS will be live on the OcuSight DSEI stand N6-165. For demo requests, technical specifications, or partnership inquiries, please contact:

About OcuSight

OcuSight is a pioneering Defence Micro SME based in North Wales, dedicated to transforming the landscape of passive surveillance and high-end motion control. With a mission to revolutionise how critical environments are monitored and secured, OcuSight develops cutting-edge technologies that deliver precision, reliability, and operational advantage. Leveraging deep expertise in Defence-grade optics, motion systems, and AI-enhanced situational awareness, OcuSight serves a growing portfolio of clients across Defence, Security, and critical infrastructure sectors. The company’s agile, innovation-led approach enables rapid development and deployment of bespoke solutions tailored to the most demanding operational requirements.
OcuSight is proud to be part of the UK’s sovereign Defence ecosystem, contributing to national resilience and technological leadership from its base in North Wales.

 

04 Sep 25. T&I committee approves reorganisation of US government C-UAS agencies. The US House of Representatives Transportation and Infrastructure Committee has approved legislation to reauthorize, reform, “and reasonably expand the existing counter-unmanned aircraft system (counter-UAS) authorities of the Department of Homeland Security (DHS) and the Department of Justice (DOJ).”

According to the Committee: “Transportation and Infrastructure Committee Chairman Sam Graves (R-MO) and Ranking Member Rick Larsen (D-WA) joined Homeland Security Committee Chairman Andrew Garbarino (R-NY) and Ranking Member Bennie Thompson in introducing the Counter-UAS Authority Security, Safety, and Reauthorization Act (H.R. 5061). Judiciary Committee Ranking Member Jamie Raskin is also an original co-sponsor. H.R. 5061 improves coordination requirements amongst the authorized agencies, establishes standards for counter-UAS training programs, and establishes the first ever Counter-UAS Mitigation Law Enforcement Pilot Program. The bill also establishes a special program to ensure eligible state and local law enforcement agencies have the necessary tools to maintain safety and security from credible threats posed by UAS for major events, including the upcoming FIFA World Cup and the 2028 Summer Olympics. Furthermore, the legislation addresses counter-UAS detection and mitigation protection at critical infrastructure sites and in the airport environment. As the skies continue to evolve with new technology, it’s important that we ensure the safety of those in the air and on the ground,” said T&I Committee Chairman Graves. “This legislation reauthorizes and reforms federal counter-UAS authorities while allowing the National Airspace System to remain safe and open to drone innovation. This bill allows us to stay one step ahead of emerging drone threats and begin to put tools into the hands of law enforcement to detect, identify, and, if necessary, mitigate threats posed by unlawful drone usage. With upcoming multinational events like the 2026 FIFA World Cup and the 2028 Olympics, we must be proactive about securing our airspace. I want to thank Chairman Garbarino and the other committee leaders for their work on this bill, as well as T&I Ranking Member Larsen for his bipartisan partnership.”

According to the committee, in summary the bill: Protects Certain Facilities and Assets from Unmanned Aircraft Systems (UAS) Threats

  • Clarifies and improves coordination requirements between DHS, DOJ,  and the Federal Aviation Administration (FAA) in the event of an unlawful UAS incursion.
  • Increases Americans’ privacy and civil liberty protections by ensuring information gathered by approved counter-UAS systems is not misused or retained for an extended period.
  • Requires DHS to maintain a list of evaluated and approved models of counter-UAS detection and mitigation equipment and technologies.
  • Requires DHS and DOJ to establish training standards for counter-UAS system training programs.

Expands Authorities to Detect, Identify, Monitor, and Track UAS

  • Allows DHS to authorize state and local law enforcement agencies to partner with critical infrastructure facility operators and others, to deploy advanced drone detection systems around covered sites— marking the first time this authority has ever been given to non-Federal entities.
  • Equips the FAA with counter-UAS authorities to carry out its mission of ensuring safe and efficient operations in the National Airspace System (NAS).
  • Establishes an Office of Counter-UAS activities within the FAA to carry out its counter-UAS activities with other federal agencies and eligible entities.

Establishes a Counter-UAS Mitigation Law Enforcement Pilot Program

  • Requires DHS, in coordination with DOJ and FAA, to establish the first-ever pilot program authorizing eligible non-Federal law enforcement agencies to mitigate threatening drones at certain sites and events.
  • The program will start with five state and covered local law enforcement agencies, each able to protect up to four covered sites.
  • Following a review of the preliminary results of the pilot program, DHS may expand the size of the pilot program by 10 state or covered local law enforcement agencies after 18 months.
  • If the program is successful, DHS may add an additional 12 state or covered local law enforcement agencies, 18 months after the previous expansion.
  • For purposes of the pilot program, covered events, such as outdoor sporting events or large outdoor gatherings, can be covered by such law enforcement agencies without counting against their four covered sites cap.

Creates Special Program for Multinational Sporting Events

  • Requires DHS to establish a program to enable the deployment and operation of approved counter-UAS mitigation systems by state and local law enforcement responsible for securing the following events: the 2026 FIFA World Cup; the 2028 Summer Olympics; and the Summer Paralympic Games.
  • Following the conclusion of the multinational sporting events, state and select local law enforcement participating in the special program will transition into the mitigation pilot program without counting against the program’s cap.

Increases Counter-UAS System Planning and Deployment at Airports

  • Requires the FAA, in coordination with DHS and DOJ, to develop a plan for counter-UAS operations at U.S. airports.
  • Directs the FAA, in coordination with DHS and DOJ, to deploy counter-UAS detection systems at large hub, medium hub, and three cargo mega hub airports.
  • Requires the FAA and DHS to establish a counter-UAS mitigation pilot program at up to five of the Core 30 airports, to assess the feasibility of mitigating errant UAS operations within the airport environment.

Modernizes Drone Safety Statements

Requires manufacturers of small unmanned aircraft systems (sUAS) to make available to the operator of such system a safety statement, which includes information about applicable laws and regulations as well as information about temporary flight restrictions (TFRs) and airspace restrictions applicable to sUAS. (Source: www.unmannedairspace.info)

 

05 Sep 25. US Marines “split C-UAS investment across multiple budget lines.” The US Marines are spreading counter-drone investments across multiple budget lines, according to budget projection analysis from technology and contracting consultant Justin Nerdrum. In a LinkedIn post, Nerdrum said there was not one obvious drone defence category, and that his analysis suggests a “roughly USD 847M split” between force protection, electronic warfare, and air defence.

According to Nerdrum, the likely breakdown based on Marine Corps priorities is:

  • Mobile Force Protection Systems (~USD 312m)
  • Next-Gen Electronic Attack (~USD 289m)
  • Low Altitude Air Defense (~USD 246m)

Analysing the Marines’ procurement, he says the purchases make sense.

“L-MADIS upgrades with AI targeting. Current systems need multiple Marines to operate. Goal? One Marine is managing the autonomous engagement of 50+ targets simultaneously. Directed-energy weapons under 2,000 lbs for JLTVs. At $10-20 per shot versus $ 120,000+ for Stinger missiles. Ukraine taught us an economics lesson. Electronic warfare pods that jam swarms without killing friendly comms. The technical holy grail everyone’s chasing.”

Nerdrum says the practice of using small arms against drones at forward bases is not sustainable when adversaries can build 1,000 drones for the price of one missile.

“Three opportunities are emerging now: Power systems for mobile lasers, because current batteries tend to drain quickly under continuous operation; AI edge processors for target discrimination; and resilient comms that survive in jammed environments.” (Source: www.unmannedairspace.info)

 

05 Sep 25. ParaZero completes net-launching C-UAS trial with Israel’s homeland security authority. ParaZero Technologies Ltd. has successfully completed a field trial of its DefendAir Stationary Turret system with Israel’s homeland security authority.

The critical infrastructure field trial was conducted in real-life conditions in Israel and tested the DefendAir system’s ability to counter hostile drones using an optical detection and tracking subsystem combined with an automated net-launching turret. The company reported on September 4 that the system achieved 100 percent interception success in the demonstration.

The turret configuration complements ParaZero’s existing portable, hand-held net gun configuration, and is designed to safeguard critical infrastructure and sensitive facilities. The system is designed to autonomously detect, track and neutralise hostile drones across a full 360-degree perimeter.  (Source: www.unmannedairspace.info)

 

05 Sep 25. Toshiba and ZSE test critical infrastructure drone detection at DronePort. DronePort in Sint-Truiden is currently hosting a test campaign that brings together Belgian technology company ZSE and Japan’s Toshiba.  Throughout September, the two partners are carrying out practical trials with Toshiba’s long-range radar, a system designed to detect drones up to 10 kilometres away. The aim is to explore how this radar can help protect airports, harbours and other critical infrastructure, while also testing integration with ZSE’s radio frequency–based detection system. The radar will remain at DronePort until the end of September. A second Toshiba team will then return to participate in the Belgian TIE 2025 exercise, coordinated by Agoria and the Counter-UAS Working Group. This week-long event will bring together around 15 companies for integrated demonstrations, red-versus-blue drone scenarios and structured discussions on interoperability. Toshiba’s radar and ZSE’s RF system will create an integrated air picture, demonstrating how multiple sensor layers can combine into a single, resilient detection capability. DronePort said the September test is a chance for ZSE to validate how radar complements the company’s radio frequency detection, extending coverage to drones that do not rely on radio signals. “Toshiba benefits by gathering valuable data from a European environment, testing scenarios that cannot be replicated in Japan, and demonstrating its radar technology to the European counter-drone community,” DronePort added.  The ZSE and Toshiba test follows the establishment of Belgium’s first permanent Drone Detection & Counter-Uncrewed Aerial Systems Testing and Expertise Centre – a partnership between DronePort and SkeyDrone. (Source: www.unmannedairspace.info)

 

08 Sep 25. Alpine Eagle tests air-to-air C-UAS drone with Ukrainian Armed Forces. Alpine Eagle has completed trials of one of the world’s first air-to-air counter-unmanned aircraft system (C-UAS) technology with the Armed Forces of Ukraine (AFU) over the summer, marking a significant milestone in the development of autonomous defence capabilities and their real-world deployment.

“As part of a successful field test, Alpine Eagle’s C-UAS technology underwent rigorous trials in-country alongside Ukrainian forces, demonstrating its effectiveness in the most important operational theatre for autonomous technology and European security that exists today,” said the company in a press release. “Following this trial, Alpine Eagle has been invited back for further collaboration with the AFU, with plans for deeper engagement in Ukraine over the longer term.

Alpine Eagle has created an air-to-air counter-drone system, including software that uses technologies such as machine learning, advanced sensors, and computer vision to detect, classify, and neutralise hostile drones, including small drones and loitering munitions. This is driven by Sentinel, Alpine Eagle’s air-to-air sensor and interceptor network, which has such high levels of automation and data fusion that a defensive swarm of airborne sensors and interceptors can be controlled by a single operator.

Jan-Hendrik Boelens, co-founder and CEO at Alpine Eagle, said: “Ukraine has a clear and pressing need for effective, scalable, and mobile C-UAS capabilities that can effectively integrate into their force structure. The war in Ukraine has driven so much of the development of drone technology, and any European UAS or C-UAS company needs to be able to demonstrate its product in Ukraine, because ultimately, Ukraine’s security is Europe’s security. Ukrainians deserve to live in a country that’s peaceful and secure, so being able to help them reach that goal is the single most important thing we could be doing right now.”

While specific details of future trials remain confidential for operational security reasons, additional testing phases are being planned, which will enable the company to gather essential operational data and contribute to European security.

The trial is the latest milestone in a momentous year for Alpine Eagle, in which the company secured USD10.25 million in seed funding, worked with the UK and US armed forces as part of Project Vanaheim, and marked the opening of its first international office in the UK.

For more information: https://alpineeagle.com/ (Source: www.unmannedairspace.info)

 

 

08 Sep 25. US Air Force to equip with F-15Es with C-UAS laser-guided rockets. The US Defense Visual Information Distribution Service (DVIDS) website has reported that throughout May this year the 96th Test Wing and 53rd Wing integrating and then demonstrated AGR-20F Advanced Precision Kill Weapon System II laser-guided rockets on an F-15E Strike Eagle.

“The integrated developmental and operational flight testing, including AGR-20F live fire at targets over land and water, was an expedited fielding push to get the capability to the warfighter immediately,” said the report. “Within a week of the demonstrations, Strike Eagles flew with the new weapon in a geographic combatant command’s area of responsibility. The goal of adding this capability to the Strike Eagle’s arsenal was to bring it into the counter-unmanned aerial system fight in a cost-effective way alongside the F-16 Fighting Falcon.”

“We made it a top priority to field this new capability as quickly and safely as possible. The Team Eglin testing complex put together a tremendous effort of discovery and out-of-the-box thinking to make this happen,” said Brig. Gen. Mark Massaro, 96th TW commander. “The success of the project was enabled by an integrated team, enabling crosstalk and collaboration to advance this project to completion and deliver it to the warfighter in record time.”

The project started for Eglin’s Air Force Seek Eagle Office with a nine-month completion window. AFSEO accomplished the same project for the F-16 in 2024 and would eventually leverage the lessons learned with the F-15E. Early 2025 plans stalled when the AFSEO team hit a materiel obstacle for the aircraft.

“An already-proven way to mount the rockets onto an F-15 did not exist,” said Col. Alec Spencer, AFSEO director. “A mount would need to be created, installed and then integrated into the entire testing process.”

As of mid-April, a way to mount the weapons was still theoretical.

“The AFSEO team along with the 53rd Test and Evaluation Group Det. 3 finally found what they needed not with future tech, but with legacy equipment, in the 1970s-era Triple Ejector Rack-9As and LAU-131 launchers,” said the report. “This equipment destined for the National Airpower Reservoir in Arizona was saved to serve a new warfighting purpose. Eglin engineers and maintainers began working to mount the racks and launchers to the aircraft. The 96th and 53rd team also created a connection and communication solution so the Strike Eagle’s systems and weapon could talk to one another. This communication system did not exist before and sprang from the team’s innovative change to the way the weapons connected to an F-16.

“Typically, any new equipment added to an Air Force aircraft goes through air worthiness tests to ensure it doesn’t damage or disrupt any other systems in flight. Due to the Air Force’s increasing operational need for this weapon, however, those tests occurred simultaneously with the weapon’s demonstration. While the weapons were being installed and connected, Massaro gave an order making the AGR-20F flight tests the base’s number one priority. This order cleared away any other test missions. The fully connected and mounted weapons were in the air three days after the order with morning and afternoon missions flown by 40th Flight Test Squadron, 85th and 422nd Test and Evaluation Squadron aircrew.

“Throughout this process, and more so once the expedited test schedule began, the F-15 Operational Flight Program Combined Test Force led the integrated DT and OT effort. The unit’s Airmen were the integrators between multiple wings, major commands, program offices and deployed unit communication chains to expedite clearances, approvals and ensure everyone stayed informed.

For more information: https://www.dvidshub.net/image/9290672/96th-tw-and-53rd-wing-test-laser-guided-rockets-f-15e-over-eglin-afb (Source: www.unmannedairspace.info)

 

05 Sep 25. NATO gearing up “to help CUAS industry fulfil huge and urgent production orders.” “From information we have from Ukraine we can say that maybe every two weeks new changes are identified on the battlefield,” according to Cristian Coman, Senior Scientist, NATO Communications and Information Agency. Industry does not have the capacity to meet massive production orders, he said. “So through the defence investment processes we have in NATO we are trying to make sure the industry is ready if the need is there to provide the counter UAS capability to defend our countries.” He was speaking at a joint counter-drone exercise which has taken place in Latvia, aimed at strengthening NATO’s defence readiness along the country’s borders. Exercise Baltic Trust 25 was organised by the Latvian National Guard in partnership with the NATO Communications and Information Agency. Nearly 500 people attended from NATO member and partner countries alongside 100 representatives from industry. Along with new counter-drone technology, the participants tried out new drones and Intelligence, Surveillance  and Reconnaissance (ISR) systems.For more information: https://www.natomultimedia.tv/app/asset/720892?utm_medium=email&utm_campaign=Eyes%20on%20the%20sky%20for%20Baltic%20counter-drone%20exercise&utm_content=Eyes%20on%20the%20sky%20for%20Baltic%20counter-drone%20exercise+CID_408d9a0b512634eb9208179f3d9b5b75&utm_source=Email%20marketing%20natochannel (Source: www.unmannedairspace.info)

 

08 Sep 25. Plextek, a leading UK-based electronics design consultancy, has launched a new, free initiative aimed at supporting AI/ML and System Integration companies who want to experiment with radar but lack access to quality datasets. This new free radar dataset service is designed to help businesses explore and expand their offerings by incorporating radar as a data type into their solutions. Small scale startups – to medium-sized companies eager to explore radar-enabled capabilities often find that they are held back by the initial hardware purchase cost, steep learning curve and the limited availability of realistic, accessible radar data. Plextek’s initiative directly addresses this gap by providing:

  • Curated, real-world radar data for non-commercial experimentation
  • Expert guidance to help teams interpret and work with radar data
  • A potential path to future collaboration on radar-enabled projects

“Whether you’re training algorithms, validating models, or responding to proposals, Plextek are at the forefront of the industry providing the radar data and domain expertise needed to accelerate business development.

“We’re offering more than just data, we’re giving AI/ ML innovators and system integrators real-world context and expert support they need to confidently explore radar technology. It’s about lowering the barriers to entry and helping these companies turn new capabilities into real opportunity” said Bede O’Neill, Technology Solutions Lead at Plextek.

 

08 Sep 25. Robin Radar Systems today unveils a breakthrough software upgrade to its flagship IRIS counter-UAS radar, extending detection range from 5km (3.1 miles) to 12km (7.45 miles). The innovation makes IRIS one of the first off-the-shelf radars proven to detect and classify Shahed loitering munitions at long distances, providing operators with crucial early warning against one of the most lethal weapons in modern conflict.

The new Long-Range Mode (LRM) was first developed and stress-tested through Robin’s significant number of IRIS deployments in Ukraine, where Shahed drones have become a near-daily threat to critical infrastructure. Direct feedback from Ukrainian operators has been fed back into Robin’s development cycle, enabling the company to deliver the upgrade in record time.

Unlike costly missile-tracking radars, IRIS is a compact and lightweight mobile system that can be deployed in minutes and integrated seamlessly into multi-sensor CUAS architectures. The software-only upgrade requires no hardware replacement, ensuring all IRIS units can be field-upgraded.

For Ukrainian forces, the 12km range will offer a potentially life-saving window of warning to prepare for incoming Shaheds travelling at over 180 km/h (111Mph). For U.S. and European customers, the battlefield-tested technology is set to be rolled out to critical government agencies, including key European Ministries of Defense and Interior, as well as the US Department of Homeland Security Science & Technology, to ensure domestic innovations reflect the best available technology currently being used in live conflict zones.

Siete Hamminga, CEO of Robin Radar Systems, added: “This upgrade marks a step-change in what counter-drone radar can achieve. By listening to our users on the frontline, we’ve redefined the capabilities of an off-the-shelf system—delivering a battlefield-proven solution that is now being made available worldwide. As software continues to transform defence, Robin Radar will hold its position at the forefront of innovation.”

Kristian Brost, General Manager of Robin Radar USA, said: “This upgrade isn’t just about range—it’s about time. Every extra kilometer of detection gives defenders more precious seconds to react, more chances to protect critical infrastructure, and ultimately, more lives saved. By delivering this leap forward entirely through software, we’re showing how the decisive edge in counter-drone defense is no longer just built—it’s coded.”

 

07 Sep 25. OcuSight Unveils Mongoose Positioner: Redefining Precision in Motion Control.

Next-Generation Pan and Tilt Platform for Defence and Autonomous Systems

OcuSight proudly introduces the Mongoose Positioner—an advanced pan and tilt solution purpose-built for the rigorous demands of Unmanned Surface Vehicles (USVs), Unmanned Ground Vehicles (UGVs), and integrated air defence platforms.

Engineered for precision, the Mongoose Positioner leverages cutting-edge motion control technology to ensure dependable pointing and tracking, even in the harshest environments. Its rugged, lightweight design makes it the perfect choice for both new deployments and straightforward retrofits to existing systems.

Key Features of the Mongoose Positioner

  • Ultra-precise pan and tilt mechanisms for superior targeting accuracy
  • Durable, lightweight construction ideal for mobile and fixed applications
  • Remote operation supported by advanced control protocols, enabling seamless integration
  • Resistant to vibration, shock, and extreme weather conditions
  • Low-latency performance for real-time surveillance and targeting
  • Flexible mounting options to accommodate various sensors and payloads

As autonomous and semi-autonomous vehicles continue to play a growing role in defence and security, the Mongoose Positioner’s fully digital architecture is engineered to meet these evolving needs.

“Delivering the next level of precision and reliability at lower cost, the Mongoose Positioner is a testament to our commitment to advancing motion control technology for mission-critical applications,” said Ben Moffatt, Chief Engineer at OcuSight.

The Mongoose Positioner is now available for order. For technical specifications, integration support, or to arrange a demonstration, please contact OcuSight’s sales team.

Experience the future of advanced motion control with the Mongoose Positioner—where accuracy meets agility.

About OcuSight

OcuSight is a pioneering Defence Micro SME based in North Wales, dedicated to transforming the landscape of passive surveillance and high-end motion control. With a mission to revolutionise how critical environments are monitored and secured, OcuSight develops cutting-edge technologies that deliver precision, reliability, and operational advantage.
Leveraging deep expertise in defence-grade optics, motion systems, and AI-enhanced situational awareness, OcuSight serves a growing portfolio of clients across defence, security, and critical infrastructure sectors. The company’s agile, innovation-led approach enables rapid development and deployment of bespoke solutions tailored to the most demanding operational requirements.
OcuSight is proud to be part of the UK’s sovereign defence ecosystem, contributing to national resilience and technological leadership from its base in North Wales.

 

09 Sep 25. Anduril is exhibiting a range of products at DSEI 2025 including a demonstration of a range of capabilities currently in service with the Ministry of Defence (MOD). This includes Menace-T, the integrated Command, Control, Communications and Computers (C4) solution that was successfully deployed as part of the MOD’s Project Asgard, accelerating and advancing the British Army’s kill-chain and Altius-M, the Uncrewed Aerial Systems (UAS) that are being provided to Ukraine by the UK Government.

Dive-XL, the founding product behind Ghost Shark, Anduril’s flagship co-development project with the Australian Navy, will also be on display at DSEI. This private-public sector co-operation set the precedent for how working together can slash both the costs and times involved with major programmes, delivering for the end-users in the timeframes required in this evolving geopolitical period.

At DSEI, Anduril UK will be showcasing a suite of its latest defence technologies at stand S15-100, all interconnected by Lattice, the AI platform redefining how data is shared and acted upon across the modern battlespace. As part of Project Asgard, the Lattice Mesh has enabled the British Army to transmit data from the frontline to their headquarters in seconds, speeding up the kill-chain so decision makers can react in real-time to emerging threats via a resilient, survivable kill-web.

Rich Drake, Managing Director for Anduril UK and Europe, said “DSEI is about showing what is possible today, not just talking about the future. Lattice is already transforming the way militaries share, understand, and act on data – and now we’re delivering capabilities faster than ever before. Our ability to deliver and scale mass for Allied Armed Forces is a central tenet of Anduril’s offering here in the UK and we look forward to displaying some of those capabilities at DSEI.”

Altius-M

  • An advanced attack drone, already in use with MOD, that can be launched from ground, air or sea to conduct multiple mission types, including intelligence, surveillance and reconnaissance, kinetic engagement, and cyber warfare.

Dive XL

  • A larger variant of the Dive platform, an autonomous undersea vehicle designed for long-range, extended-duration missions, capable of carrying a variety of payloads for reconnaissance, surveillance, and other maritime operations.

Menace-T

  • A highly portable, ruggedised command-and-control solution that delivers real-time situational awareness and connectivity from the tactical edge to headquarters.

Pulsar-L

  • A compact, rapidly deployable electronic warfare system designed to detect, disrupt, and deny adversary communications and signals across contested environments.

Roadrunner-M

  • A reusable, high-explosive interceptor capable of engaging and neutralising fast-moving aerial threats, with modular payloads capable of supporting a variety of mission requirements.

Sentry Tower

  • A scalable, multi-sensor surveillance platform forming the backbone of a rapidly deployable security network – already operational in the UK – providing persistent 360° awareness in challenging environments.

About Anduril UK

Anduril is a high-technology defence and security company known for delivering AI-driven capabilities at speed and at cost. Operating in the UK since 2019, Anduril UK have rapidly expanded their footprint, delivering multiple programmes into the UK Government, and intend to continue this trajectory. Anduril UK is committed to strengthening sovereign UK defence capabilities by investing in R&D, autonomous systems, and AI-enabled command and control platforms – all essential to delivering the UK’s vision of a resilient and innovative defence sector.

 

08 Sep 25. Electro Optic Systems (EOS), which in August secured the world’s first export contract for its 100 kW-class High Energy Laser Weapon (HELW) with a European NATO member state – a historic milestone for both the company and the global HELW sector – today announced the official identity of its HELW: Apollo.

Scalable to 150 kW, Apollo is being unveiled ahead of DSEI UK (9–12 September 2025), where EOS will showcase its high energy laser capabilities as part of Team Defence Australia.

Drones have become a defining feature of modern conflict, used for surveillance, reconnaissance, and strike missions. Their increasing numbers, fast and erratic movements and autonomy make them increasingly difficult to defeat with conventional systems.

Apollo has been developed to counter these threats at the speed of light. It is designed to defeat Group 1–3 drones and to disrupt their sensors at range. With scalable power up to 150 kW, Apollo provides 360° coverage including vertical engagements, unlimited shots with external power, and more than 200 stored engagements when isolated. It is packaged for mobility, whether containerised or vehicle mounted.

Apollo can be fielded as a stand-alone weapon or integrated into a layered counter-drone defence alongside kinetic effectors such as EOS’ Slinger remote weapon system and missile-based defences. It is designed to connect with NATO fielded command-and-control and integrated air defence systems. Building on its longstanding heritage in laser and optical technologies, EOS has leveraged this expertise to develop Apollo – a next-generation system designed for counter-drone operations.

Dr Andreas Schwer, EOS Group CEO, said: “EOS has developed its high energy laser weapon to meet the urgent market need and emerging strategic requirement to defend against drone swarm attacks at an economical cost. There is strong international interest in high energy laser weapons, and it is increasingly clear they will play a central role in counter-drone defence. The demand is urgent and accelerating, which is why EOS has invested for years to bring this capability to a level of maturity. Being ITAR-free and fully controlled by EOS, Apollo is ready for partners to adopt, localise and sustain as their own.”
EOS is exhibiting at DSEI UK as part of Team Defence Australia on Stand S2-110. Members of the media are invited to arrange interviews with EOS’ CEO to discuss Apollo and the company’s wider high energy laser strategy.

 

08 Sep 25. US Navy matures new SPY-6 radar variant. US Navy officials, along with counterparts at US defence company Raytheon, are pressing ahead with technology maturity efforts on the latest variant of the sea service’s family of AN/SPY-6(V) maritime radar systems.

Programme officials in late August completed a series of open-water tests, designed to evaluate the advanced tracking capabilities for the AN/SPY-6(V)4 version of the radar.

While the tests, held at the navy’s Pacific Missile Range Facility Barking Sands in Hawaii, were geared towards achieving the initial live-fire test of the new SPY-6 radar, it also provided the first live data set for the new radar configuration, company officials said at the time. Raytheon is the prime contractor on the AN/SPY-6 maritime radar programme.

This critical data will help “refine the system for future testing and eventual shipboard deployment … allowing sailors to more effectively monitor and respond to potential threats in real time”, company officials noted in a statement issued at the time of the tests.

In the near term, the live-fire tests “demonstrated the radar’s advanced tracking capabilities across different mission scenarios and validated years of modelling and simulation work”, company officials added in the statement. “The programme will continue with testing and system enhancements, leveraging common hardware and software across other variants to ensure seamless integration and scalability,” they added.

The August live-fire tests come months after navy leaders issued millions in production and modernisation contracts, designed to support shipborne command-and-control (C2) capabilities, such as the AN/SPY-6 platform.

(Source: Janes)

05 Sep 25. Cuashub.com said today that Robitican adds warhead to hybrid land and air drone. Israeli robotics company Robotican has unveiled a new configuration of its ROOSTER hybrid drone system that incorporates a precision-guided warhead, turning the platform into a loitering munition designed for use in confined spaces. The ROOSTER, which can both roll on the ground and fly, has been adapted to carry payloads of up to 300 grams. The company says this allows the system to integrate a small warhead alongside other mission-specific equipment, enabling engagement inside buildings, tunnels and other restricted environments. The updated system is supported by artificial intelligence-based object detection, tracking and locking functions, with multi-layered safety mechanisms designed to prevent accidental activation. Robotican stated that the design is intended to provide precise targeting while limiting collateral damage. Previously fielded in reconnaissance, rescue and inspection roles, the ROOSTER’s new configuration expands its potential use to include neutralizing threats during urban warfare, subterranean operations and hostage rescue missions. The system remains lightweight and designed for single-operator deployment, according to the company. Robotican emphasized the modular nature of the platform, which allows forces to tailor the drone for intelligence gathering or strike missions depending on operational requirements. https://cuashub.com/en/content/robitican-adds-warhead-to-hybrid-land-and-air-drone/ (Source: https://cuashub.com/)

 

05 Sep 25. Cuashub.com said today that Skana Robotics launches two new autonomous naval drones. Defense technology firm Skana Robotics has introduced two new autonomous maritime platforms: the Bull Shark, an autonomous surface vessel (ASV), and the Stingray, an autonomous underwater vessel (AUV). The announcement marks the company’s entry into the market for scalable unmanned naval systems, with initial orders already reported. The Bull Shark is described as a tactical ASV suited for intelligence, surveillance, reconnaissance and interdiction missions. It has a payload capacity of up to 150 kilograms and is designed to function as a communications hub for coordinating multiple manned and unmanned assets. The Stingray is a loitering AUV intended for operations such as ISR, anti-submarine warfare and infrastructure protection. It supports autonomous navigation, seabed anchoring and a standby-and-reactivation mode for extended operations. The platform has a standard battery life of 24 hours, which can be extended through modular battery packs, and can be deployed from submarines, patrol boats or docking stations. Both systems are designed for interoperability with NATO standards and integration into existing fleets. Skana emphasizes that its production model focuses on scalability, with the aim of reducing reliance on traditional shipyard infrastructure for unmanned vessel deployment. The company’s wider ecosystem is built around its SeaSphere mission planning engine and Vera, a software layer that translates operational directives into localized autonomous actions. This framework supports real-time collaboration between unmanned vessels as well as coordination with manned platforms. https://cuashub.com/en/content/skana-robotics-launches-two-new-autonomous-naval-drones/ (Source: https://cuashub.com/)

 

05 Sep 25. Cuashub.com said today that Kibo and Sentrycs partner on mobile, bulletproof, counter-drone station. Kibo and Sentrycs have announced a collaboration to deliver a mobile security system that combines bulletproof modular structures with counter-drone technology. The integrated platform is aimed at providing protection against both ground-based and aerial threats. Kibo manufactures modular bulletproof infrastructure used by military, police and critical infrastructure operators, while Sentrycs develops counter-drone systems currently deployed in more than 20 countries. The companies say the combined system can be configured as a command post, checkpoint or mobile surveillance unit and is equipped to detect, track and mitigate unauthorized drones without causing collateral damage.

“Today’s security environments demand agility, precision, and the ability to defend against various threats across multiple vectors simultaneously,” said George Glentos, Founder and CEO of Kibo. “To address this need, we combined two field-proven technologies and developed an integrated platform that simplifies deployment, enhances protection and delivers operational advantage.”

The platform is designed for mobility and can be relocated as threat environments change. Potential applications include use at border crossings, around base perimeters or in temporary deployments where both physical and aerial threats are present.

“Integrating Sentrycs’ Cyber over RF C-UAS system into Kibo’s mobile, bulletproof structures delivers a unique combination of advanced drone defense and physical protection” said Meir Avidan, VP Business Development and Strategic Partnerships at Sentrycs. “It serves as a force multiplier for missions requiring speed, reliability and multidomain readiness, providing security forces with both tactical flexibility and enhanced protection.”

The partnership was facilitated by Israeli consulting firm NextNow, which specializes in connecting security technologies with defense and homeland security requirements. https://cuashub.com/en/content/kibo-and-sentrycs-partner-on-mobile-bulletproof-counter-drone-station/ (Source: https://cuashub.com/)

 

05 Sep 25. Cuashub.com said today that MyDefence unveils custom drone library for UAS identification. Danish counter-drone company MyDefence has announced the release of its Custom Drone Library, a capability designed to help armed forces identify and respond to evolving drone threats more quickly. The system combines a preconfigured database of known drone signatures with tools that allow operators to capture and build new detectors in the field. Once a new drone type is identified, the detector can be shared across other deployed systems, enabling forces to update recognition capabilities without relying solely on preloaded threat libraries. The company says the approach is intended to address the challenge of rapidly changing drone technology, where unmanned aircraft can be modified with new frequencies, flight patterns or payloads on short notice. According to MyDefence, the Custom Drone Library has been tested in collaboration with a NATO allied armed force under field conditions. The company stated that the trials demonstrated operational effectiveness and helped shape the system ahead of wider deployment. The Custom Drone Library is now being made available for procurement. https://cuashub.com/en/content/mydefence-unveils-custom-drone-library-for-uas-identification/ (Source: https://cuashub.com/)

 

05 Sep 25. ParaZero Achieves Flawless Success with 1st Ever Counter-Drone Net Solution in Israel to Shield Critical Sites Against Aerial Assaults in Trial Demo. ParaZero Technologies Ltd. (Nasdaq: PRZO) (the “company” or “ParaZero”), an aerospace defense company pioneering smart, autonomous solutions for the global manned and unmanned aerial systems (UAS) industry, announced today the successful completion of a field trial of its DefendAir Stationary Turret system with Israel’s homeland security authority. The trial demonstrated the system’s effectiveness in safeguarding critical infrastructure and sensitive facilities by sites using the company’s patent a net interception method mounted on a turret. The trial was conducted in real-life conditions in Israel and tested the DefendAir turret configuration ability to hostile drones using an advanced optical detection and tracking subsystem. The system achieved 100% interception success in the demonstration, proving its effectiveness in protecting critical infrastructures and sensitive sites.

“This successful field trial with this homeland security authority validates DefendAir’s role as a critical last-layer defense solution, particularly where traditional RF jamming or kinetic responses are unsuitable, such as around airports, energy plants, or other high-risk facilities,” said Ariel Alon, CEO of ParaZero. “It underscores our commitment to delivering scalable, high-performance systems to protect national infrastructure against evolving aerial threats.”

The turret configuration complements ParaZero’s existing portable, hand-held net gun configuration, expanding the company’s multi-layered defense portfolio with both mobile and stationary solutions ideal for defense and homeland security applications. ParaZero’s DefendAir Stationary Turret system is a next-generation counter-drone solution designed to safeguard critical infrastructure and sensitive facilities. The system combines advanced optical detection and tracking with an automated net-launching turret, enabling it to autonomously detect, track, and neutralize hostile drones across a full 360-degree perimeter. The DefendAir Stationary Turret expands the company’s multi-layered defense portfolio, offering governments, defense agencies, and operators of critical assets a reliable last-line of protection. (Source: ASD Network)

 

05 Sep 25. Flight tests begin on US Air Force’s new ‘doomsday plane.’  The Air Force and aerospace firm Sierra Nevada Corp. have started flight tests on the service’s next-generation “doomsday plane.” Flight tests for the E-4C Survivable Airborne Operations Control, or SAOC, are being held at the Aviation Innovation and Technology Center in Dayton, Ohio, the company said in a Wednesday release. Sierra Nevada, also known as SNC, carried out the SAOC’s first flight on Aug. 7 as part of the program’s engineering and manufacturing development process. Flight and ground testing will continue into 2026, primarily in Dayton, Ohio, and Wichita, Kansas, the company said. SAOC is meant to serve as an airborne command-and-control center that would be used in the most catastrophic circumstances. In the event of a nuclear war or other widespread calamity that destroys or disrupts most military command centers, the SAOC would allow the president to direct U.S. forces and relay orders from the air. The Air Force in 2024 awarded SNC a $13bn contract to build five SAOC aircraft to replace the Air Force’s aging fleet of four E-4B Nightwatch planes. Sierra Nevada is expected to finish the work by July 2036. Sierra Nevada said these flight tests are meant to help reduce risks early in SAOC’s development process by identifying problems before they become worse down the line and cause delays. The planes are being built from heavily modified Boeing 747-8 aircraft. Sierra Nevada is hardening the planes to protect against radiation and electromagnetic pulses, as well as adding communication antennas, computers and mission systems. The first 747-8 earmarked for SAOC arrived at Sierra Nevada’s innovation and technology center at Dayton International Airport in June 2024, about a month and a half after the contract was awarded. Three more 747-8s have followed, with the fourth having arrived in April 2025. Sierra Nevada plans to use a modular open system approach, with modern secure communication systems, to build SAOC The SAOC deal is Sierra Nevada’s largest single contract in its six-decade history, and the company hopes it will lead to more big-ticket opportunities. Sierra Nevada is expanding for this work as well. In October 2024, the company opened a second hangar to convert a 747 into SAOC at the Dayton airport and broke ground on two more hangars there. The first of those new hangars is expected to be finished and open for operations in October 2025, the company said. The current fleet of E-4Bs, officially called the National Airborne Operations Center, is more than half a century old and the planes are near the end of their service lives. (Source: Defense News)

 

05 Sep 25. Northrop Grumman, WZL2 to boost Polish defence with E-2D. The E-2D Advanced Hawkeye is used for border surveillance, humanitarian aid, disaster response, and supporting civil authority operations. Northrop Grumman has signed a Memorandum of Understanding (MoU) with Poland’s Wojskowe Zakłady Lotnicze No. 2 (WZL2) to assess potential enhancements to Polish defence capabilities using the E-2D Advanced Hawkeye aircraft. This agreement is aimed to improve NATO interoperability and foster collaboration between the two entities. The MoU was signed at the MSPO defence industry exhibition in Poland. Developed by Northrop Grumman, the E-2D Advanced Hawkeye is an airborne command and control aircraft. The aircraft has been utilised for air and surface border surveillance, as well as providing support during humanitarian aid efforts, disaster response, and civil authority operations. Japan, France, Egypt, and Taiwan currently operate E-2 platforms, with a total of 70 E-2D aircraft engaged in operations worldwide. Northrop Grumman global surveillance vice president and general manager Jane Bishop said: “Given today’s complex threats to sovereign and allied integrity, the E-2D would provide Poland with additional technologies to advance missile and air defence superiority through increased detection range and quicker decision making as well as expanding the integration of allied defence resources.” The MoU also outlines potential future collaboration that could bolster Poland’s sovereign defence capabilities through workforce development, knowledge transfer, and other opportunities aimed at improving long-term defence readiness. Northrop Grumman has a history of providing defence technologies to Poland, including the Integrated Battle Command System, Bushmaster Chain Guns, advanced ammunition for combat vehicles, and radars for the F-16 fleet.

Wojskowe Zakłady Lotnicze No. 2 CEO Jakub Gazda said: “Cooperation with Northrop Grumman opens new opportunities for technological development and knowledge sharing. This partnership enables us to better support the modernisation of the Polish Armed Forces and enhance interoperability with our allies. We look forward to implementing joint initiatives.”

WZL2 is a key aviation facility in Poland with 79 years of experience in operating, servicing, and modernising military aircraft. (Source: airforce-technology.com)

 

05 Sep 25. New sMRT V200 Submarine Escape Beacon launched at DSEI. Stand N5-150. The sMRT V200 submarine escape beacon will be on show for the first time on the Wescom Defence stand N5-150 at DSEI 2025, taking place at ExCeL London, 9–12 September.   The sMRT V200 is purpose-built for submarine escape environments. Lightweight, compact, and rated to 300 m depth, once activated, it sends a distress alert and transmits the casualty’s location and GPS coordinates via AIS and VHF DSC, enabling rescue units to locate survivors within ±10 metres accuracy. It also emits a 121.5 MHz direction-finding tone and features a high-intensity strobe, improving coordination, reducing search time, and increasing survivability. Designed not to interfere with existing escape procedures or equipment, the V200 integrates seamlessly with submarine escape suits and has compatibility with SEIE (Submarine Escape Immersion Equipment).

“In a submarine escape scenario, preparation is paramount,” said David Griffiths VP Defence Sales, Wescom Defence. “The sMRT V200 removes uncertainty from the rescue and recovery phase, with instant alerting and precise positioning through multiple channels, without adding complexity to the escape process.”

Recognising that submarine escape scenarios are often complex, the V200 features an extended transmission time, with its battery providing a minimum of 48 hours emergency operation.  The V200’s serviceable design and minimum of five-year operational life ensures long-term reliability and cost-effective upkeep. The sMRT V200 highlights Wescom Group‘s advanced capabilities in survivor location and rapid alerting. Visitors to DSEI 2025 are invited to see the V200 first-hand and discuss its deployment potential. Media and defence stakeholders wishing to arrange briefings can contact Frances Hunt, Head of Defence Marketing, Wescom Group by email

 

29 Jul 25. Blighter (www.blighter.com), a pioneering designer and manufacturer of Smart electronic-scanning radars, has deployed its dual-mode Blighter C400 series coastline surveillance technology to protect offshore oil platforms and an onshore refinery in Equatorial Guinea, a Petro-piracy hotspot off the West African coast. Blighter’s C400 series radars have been proven to be highly effective in targeting the growing problem of piracy. It is estimated that the illegal black market for stolen oil is worth over US$1 bn. The radars in Equatorial Guinea are now fully operational following system configuration and training. According to Blighter, its customer needed a compact coastline radar system that was easy to install, ultra-reliable and could detect, track and classify the small shallow-draught vessels favoured by oil pirates and militants, which typically sit low in the water and move at speed. It was vital that the radar sensor selected provided detection day and night in all weather conditions, including heavy rain, fog and during thunderstorms

James Long, Blighter’s CEO, says: “We know that oil pirates are highly organised and often choose to exploit harsh weather conditions to evade detection with many only becoming active during heavy rains or high sea states. Our C400 radar systems were chosen to plug the gap in our customer’s defences as our sensors are specifically designed to detect even the smallest uncooperative targets in complex, cluttered and extreme environments.”

Blighter’s C400 radars have several features that make them suitable for coastline surveillance, and particularly for detecting uncooperative targets.

First, the compact design and low-power electronically scanning and frequency-modulated continuous-wave (FMCW) technologies contains no moving parts. This ensures ease of installation and ultra-reliable operation with minimal maintenance even in the harshest marine conditions. The C400 series is IP66-rated and MIL-STD-810F compliant.

Second, the Blighter C400 series radar uses advanced Doppler signal processing to provide the ability to precisely examine the motion of waterborne objects with respect to waves or ripples on the water surface. Unlike traditional Doppler radars, the C400 series characterises non-moving targets using the static target detector so that moored boats, buoys and other structures remain visible on the radar screen.

Third, the radar’s built-in sea clutter filter automatically adapts to changing sea states and wave conditions to remove the unwanted radar signal produced by waves using both velocity (speed) and amplitude (height) characteristics.

Blighter radar’s e-scan antenna technology and FMCW design also allows it to be mounted high on offshore platforms and onshore towers and still detect targets close to the platform or shore as well as those further away. In Equatorial Guinea, the detection range of the C400 radars is around 20km. Importantly, all of the radars deployed are networked together to provide onshore controllers with a common operating picture (COP) of the offshore and onshore facilities.

“We are delighted to see that our radar technology is continuing to be used to combat the costly problem of Petro-piracy in the oil and gas industry,” says James Long, Blighter’s CEO. “Our C400 radars have proved to be highly effective against piracy and their dual mode operation allows detection of small and/or slow-moving boats at sea as well as ground targets such as intruders on the coastline shore.”

The Blighter C400 series radar can be integrated into a larger coastal security system incorporating day/night and fog penetrating electro-optical camera systems, AIS (automatic identification system), other boat transponder/tracking systems and CCTV. These elements can all be controlled through Blighter’s command and control (C2) software platform.  Blighter C400 series radars are also suitable for other coastal security applications including seaport security surveillance and water-side security of land based coastal assets, such as desalination plants, nuclear power stations, palaces and other high value assets. For more information about the Blighter C400 coastline surveillance radar, please visit www.blighter.com, telephone +44 1223 491122 or email . Or come and meet the team on Stand N6-166 at the DSEI Defence and Security.

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 5, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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04 Sep 25. Echodyne, the radar platform company, has been selected as the radar provider within the Australian Defence Force’s Project Land 156, the Australian government’s effort to equip the ADF with continuous counter-drone capabilities. The Project intends to modernize the ADF in the face of new technology and an evolving threat landscape. Echodyne is proud to contribute radar expertise to the project and its newly announced systems integration team leader, Leidos Australia, and alongside EOS Australia, which already incorporates Echodyne radar into its Slinger RWS, Acacia Systems, L3Harris Technologies and Department 13.

“We are pleased to be selected as part of the Leidos Australia team for the Australian Defence Force counter-UAS project, Land 156,” said Eben Frankenberg, CEO of Echodyne. “As C-UAS solutions become ever more critical to mission success and dismounted soldier safety, Echodyne’s COTS architecture allows us to quickly respond to increasing global demand for our advanced MESA radar systems.”

Echodyne’s 4D metamaterials electronically scanned array (MESA) radars are perfectly suited to support C-UAS initiatives, locking optical sensors for “eyes on object” and reliable precision tracking for mitigation platforms and effectors. Rooted in the belief that data fidelity makes all the difference to C-UAS mission success, Echodyne radars generate the most accurate data for detecting, tracking, targeting, and mitigating UAS intruders.

 

04 Sep 25. Roke to mature British Army’s ISTAR capability under Project Zodiac. The company will make iterative improvements to the software and incorporate user feedback from battlefield exercises.  In 2023, Roke signed a £40m contract for Project Zodiac next phase. Credit: Roke. UK-based defence and national security company Roke has been awarded a British Army contract valued at £20m ($26m) to optimise Project Zodiac for the frontline.  Project Zodiac is the British Army’s initiative aimed at updating its intelligence, surveillance, target acquisition, and reconnaissance (ISTAR) systems. The project’s goal is to unify sensors, decision-makers, and effectors within a cohesive network to streamline command and control operations.

Roke managing director Paul MacGregor said: “Zodiac connects systems and processes that have never been able to talk to each other before, through a sovereign data fabric. Zodiac digitises processes and procedures that have historically taken place on whiteboards, voice comms, maps, spreadsheets, and transforms the way the Army interacts on the battlefield.”

Since 2021, Roke has been the principal contractor and system integrator for Project Zodiac. In 2023, the company secured a £40m award to advance Project Zodiac for the British Army for two years. The company has already partnered with a consortium of partners and developed a minimum viable product. Roke will continue to collaborate with the British Army to enhance the solution and incorporate feedback from users during battlefield exercises to make iterative improvements to the software in the next 12 months. Project Zodiac is contributing to the objectives outlined in the 2025 Strategic Defence Review, aiming to bolster the Army’s capabilities in contested spaces, enhance interoperability with Nato allies, address state-level threats, and support other digital initiatives like the Digital Targeting Web and ASGARD. The company stated that a Zodiac prototype system was delivered within the allocated budget and timeline to the 3rd (UK) Division in June 2024.

It saw successful deployment during Exercise CERBERUS 24 in Germany.

The system also participated in the Warfighter 25-4 exercise at Fort Cavazos in Texas in May 2025, where it played a crucial role in enabling 3rd (UK) Division alongside multinational forces to locate and neutralise enemy targets.

“Zodiac will be a vital enabler to the Army’s Recce-Strike vision, and will massively enhance the lethality of the Army.”

“Over the next 12 months we will be working hard in our role as Mission Partner to help the Army turn strategic intent into operational reality,” Paul MacGregor added. (Source: army-technology.com)

 

02 Sep 25. TCI, part of SPX Communications Technologies, today introduces two new Radio Frequency (RF) Receivers, designed for continuous, real-time signal collection to support Communications Intelligence (COMINT) operations. The 955 Rackmount RF COMINT and Geolocation System and the 957 Rackmount RF COMINT and Independent Geolocation System will be shown for the first time at DSEI 2025, 9–12 September, ExCeL London, Stand N6-130. The systems deliver rapid detection, filtering, and geolocation of RF communication signals across congested spectrum environments, enabling faster decision-making and reaction times, improved threat awareness, and greater operational agility. Their 80 MHz Instantaneous Bandwidth – double that of its predecessor – allows wide-area signal collection for broad situational awareness, or narrower focus for heightened sensitivity in challenging RF conditions. Combining two geolocation techniques – Hybrid Angle of Arrival (AOA) and Time Difference of Arrival (TDOA) – enables precise signal location with fewer deployed assets, even over low-bandwidth or intermittent networks. The rugged, rack-mounted design supports deployment in vehicles, fixed installations, or forward field positions. Both models are built for mission flexibility, with the ability to switch roles without reconfiguration, from counter-terrorism and border security to front-line combat. The 955 is optimised for single-unit, vehicle-mounted, or stand-alone operations, while the 957 offers enhanced processing capacity for simultaneous, independent tasking and networked multi-sensor geolocation across dispersed teams. The RF systems also feature a 72-hour look-back recording capability, enabling operators to identify a new threat and immediately analyse historical spectrum activity to extract further intelligence. The feature also supports automated and remote monitoring options, reduces manpower requirements for persistent 24/7 operations, and lowers operational costs. A database allows further intelligence analysis for days, weeks and months. Both systems operate using TCI’s Blackbird software, currently in operational use on almost 1,000 frontline systems worldwide. Blackbird provides an intuitive interface that reduces training time and enables less experienced operators to perform effective COMINT tasks, immediately expanding the possible pool of operators. It allows highly skilled personnel to remain in safer, decentralised positions while remotely managing deployed systems, multiplying force effectiveness. Built on the combat-proven heritage of their predecessor, the 953 receiver, the new 955 and 957 are backwards compatible with existing SPX Communication Technologies and partner systems, including the ECS BLACKTALON counter-uncrewed aerial system (C-UAS) solution, for scalable integration into wider electronic warfare architectures.

“Today, electronic warfare is at the heart of all defence operations, and mastering the spectrum is now as critical as controlling the air,” says David Beckett, Battlespace Business Development Director at TCI. “Our new systems give defence teams the decisive intelligence they need to succeed.”

The 955 and 957 are now available. See them for the first time at DSEI 2025, 9–12 September, ExCeL London, Stand N6-130, or contact for more information.

About TCI, part of SPX Communication Technologies

TCI , forming the SPX Technologies’ Communication Technologies Platform alongside Enterprise Control Systems (ECS), innovates specialised technologies within the Radio Frequency (RF) spectrum to ensure a smarter, more secure future for all.

SPX Communication Technologies is responsible for technical innovation within the Battlespace RF spectrum to enable defence and security teams to detect, defeat and exploit RF signals to enhance their Communications Intelligence (COMINT) and Counter Unmanned Aerial Systems (C-UAS) capabilities.

Combining decades of technological innovation and expertise with agile and collaborative engineering and product development teams, SPX Communication Technologies delivers sustainable and exceptional results to military and security customers across the globe – including Europe, Asia-Pacific, the Middle East, and Africa.

For more information on TCI solutions, visit www.tcibr.com

 

04 Sep 25. Delivery of 51 next-generation SCANTER 5202 radars strengthens Swedish maritime surveillance and deepens long-standing defense partnership. Terma has successfully delivered 51 SCANTER 5202 radars to the Swedish Defence Materiel Administration (FMV), enhancing Sweden’s ability to monitor and protect its extensive coastline amid evolving security demands. The delivery – one of the largest in Terma’s recent history – marks a significant modernization of Sweden’s coastal surveillance network, replacing legacy Terma systems in operation for over two decades. The upgraded SCANTER 5202 radars provide high-resolution detection of small surface vessels and low-flying aerial threats, enabling faster, more accurate decision-making in complex maritime environments.

“These radars represent a vital step forward in strengthening Sweden’s maritime domain awareness,” said Thomas Blom, Senior Vice President of Terma Surveillance & Mission Systems. “In today’s unpredictable security landscape, high-performance surveillance systems like the SCANTER 5202 are critical to national resilience.”

Incorporating advanced features such as built-in cybersecurity, jamming detection, and real-time tracking through Terma’s Edge Tracker, the SCANTER 5202 meets the operational requirements of modern defense forces. FMV’s decision follows years of rigorous testing and in-field performance, with the SCANTER series consistently demonstrating reliability, cost efficiency, and long-term supportability. This milestone underscores Terma’s role as a trusted defense partner to Sweden and its capacity to deliver complex projects at scale without disrupting other customer commitments

 

03 Sep 25. AeroVironment, Inc. (“AV”) (NASDAQ: AVAV) today announced the successful delivery of the first two mobile counter-unmanned aircraft system (C-UAS) prototype Laser Weapon System (LWS) to the U.S. Army Rapid Capabilities and Critical Technologies Office (RCCTO) as part of the first increment of the Army Multi-Purpose High Energy Laser (AMP-HEL) prototyping effort. The AMP-HEL prototype systems feature AV’s 20kW-class LOCUST™ LWS integrated on the General Motors Defense Infantry Squad Vehicle (ISV) platform–a significant advancement in mobile, frontline C-UAS capabilities.

“This milestone marks a major step forward in the Army’s pursuit of fieldable directed energy capabilities,” said Mary Clum, Senior Vice President for AV’s Space & Directed Energy Group. “Through the AMP-HEL program, AV is delivering our extensively validated LOCUST laser system–a technically sophisticated solution that has demonstrated reliability and operational readiness for the C-UAS fight. We are honored to support the U.S. Army RCCTO and, together, accelerate warfighter access to these critical capabilities.”

Following integration at AV’s Directed Energy (DE) manufacturing facility in Albuquerque, New Mexico, the AMP-HEL prototypes underwent rigorous government acceptance testing at Yuma Proving Ground in Arizona to validate performance, mobility, safety, and lethality. Subsequently, Army units performed new equipment training at Fort Sill, Oklahoma to prepare for potential employment of DE capabilities. Soldier feedback from the event is shaping ongoing enhancements to ensure warfighter readiness and operational relevance in dynamic threat environments. The AMP-HEL prototyping effort is part of the Army’s broader modernization initiative to rapidly develop and field DE solutions to defeat a range of threats, including drones and other airborne systems. The integration of laser systems on the lightweight, highly mobile ISV platform reflects a commitment to scalable, adaptable, and expeditionary force protection solutions. Next month, AV is set to deliver the second increment of AMP-HEL–two Joint Light Tactical Vehicles with a 20kW class LOCUST LWS, radar, and command-and-control systems.

“The need for these systems from real world events is clear: the time is now for directed energy to get into the hands of warfighters everywhere and we are confident that LOCUST meets that need,” said John Garrity, Vice President of Directed Energy Systems for AV. “AV is committed to supporting the Army’s modernization and modularity priorities. We stand ready to meet the mission need through full-scale manufacturing of our LOCUST laser systems, including AMP-HEL and other mobile and fixed-site platforms, to increase lethality and continue to build on our extensively validated reliability and precision tracking and targeting technology to address the evolving threats.” (Source: BUSINESS WIRE)

China’s C-UAS Systems Appear in V-Day Parade

China showcased its anti-unmanned aerial vehicles (UAV) systems in Wednesday’s V-Day parade. The formation included anti-UAV missile-gun integrated system, high-energy laser weapons, and high-power microwave weapons. The three types of weapons form the powerful “trio” in the PLA’s anti-UAV system. The anti-unmanned aerial vehicles formation attends a military parade in Beijing, capital of China, Sept. 3, 2025. China on Wednesday held a grand gathering to commemorate the 80th anniversary of the victory in the Chinese People’s War of Resistance against Japanese Aggression and the World Anti-Fascist War. (Source: UAS VISION/Xinhua)

 

03 Sep 25. Kibo, a leading manufacturer of modular bulletproof structures, and Sentrycs, a global innovator in counter-drone (C-UAS) solutions, announce a collaboration that delivers a fully integrated, mission-ready security platform designed to counter both ground and aerial threats. As threats continue to evolve, ranging from physical attacks to drone-based surveillance and smuggling, security and defense forces worldwide are seeking fast-to-deploy, versatile solutions that ensure comprehensive protection. The Kibo–Sentrycs integrated platform answers this need with a plug-and-play mobile system that combines field-proven infrastructure with advanced aerial threat defense in a single, unified solution. It streamlines deployment, reduces personnel and logistical demands, and delivers full-spectrum protection against both ground and airborne threats. The integrated solution combines Kibo’s bulletproof modular structures, already used by military, police, and critical infrastructure operators, with Sentrycs’ autonomous counter-drone system, which is operational in over 20 countries across six continents. The result is a preconfigured platform that can be used as a tactical command post, checkpoint, border control unit, or mobile surveillance station, equipped to detect, identify, track, and mitigate unauthorized drones easily and effectively with no collateral damage. Designed for strategic mobility, the system can be quickly relocated to match changing threat environments, making it ideal for border crossings, base perimeters, and temporary deployments.

“Today’s security environments demand agility, precision, and the ability to defend against various threats across multiple vectors simultaneously,” said George Glentos, Founder and CEO of Kibo. “To address this need, we combined two field-proven technologies and developed an integrated platform that simplifies deployment, enhances protection, and delivers operational advantage.”

“Integrating Sentrycs’ Cyber over RFC-UAS system into Kibo’s mobile, bulletproof structures delivers a unique combination of advanced drone defense and physical protection” said Meir Avidan, VP Business Development and Strategic Partnerships at Sentrycs. “It serves as a force multiplier for missions requiring speed, reliability, and multidomain readiness, providing security forces with both tactical flexibility and enhanced protection.”

The collaboration was initiated and facilitated by NextNow, a strategic consulting firm that connects innovative security technologies with operational needs across the defense and homeland security ecosystem, led by Major General (ret.) Alon Levavi.

About Kibo

Kibo (KIBO-G. Glentos S.A.) is a trusted provider of permanent and mobile bulletproof sentry boxes and protective structures used by military, police, and security forces worldwide. Manufactured in Thessaloniki, Greece, Kibo’s prefabricated units are designed for rapid deployment in rough terrain and challenging conditions. With certified ballistic protection, ergonomic interior layouts, and modular adaptability, Kibo’s solutions are ideal for tactical operations, infrastructure protection, and perimeter security. In Israel, Kibo is exclusively represented by NextNow, in partnership with Bossa-Technologies.

About Sentrycs

Sentrycs is a technology leader in counter-drone solutions, supported by innovative Protocol Manipulation, often referred to as Cyber over RF technology. Sentrycs’ simple, effective, and field-proven solutions are designed to passively detect, track, identify, and, where necessary, mitigate unauthorized drones. It is custom-built for various environments, including airports, borders, prisons, critical infrastructure, and mass events. Founded in 2017, Sentrycs has offices in Israel and the US, serving customers worldwide. By combining its innovative technology and its expertise in global drone environments, Sentrycs is leading the way toward a safer and more secure drone-driven future.

 

03 Sep 25. BLADE Cuts Down Drones During Project Flytrap 4.0. Soldiers assigned to the Army’s 2nd Cavalry Regiment detected, tracked, engaged and defeated multiple drones at ranges between 500 and 800 meters using the Ballistic Low Altitude Drone Engagement system from a Stryker vehicle at the Bemowo Piskie Training Area in northeast Poland during a live-fire event for Project Flytrap 4.0 on Aug. 1.

“Some of those threats were being flown simultaneously, so the system defeated one target then quickly targeted and defeated a second target in a matter of seconds,” said David Goldstein, counter-unmanned aerial systems lead for the Army Combat Capabilities Development Command Armaments Center at Picatinny Arsenal, New Jersey.

The Armaments Center ran the BLADE science and technology project from 2016 to 2019 to develop a capability to counter drone threats. BLADE leverages — and enhances — a system operated throughout existing Army formations, the Common Remotely Operated Weapons Station.  As a remote system mounted on different types of Army vehicles, CROWS allows an operator to fire a weapon while remaining protected inside. Using an array of optics, a viewing screen and motorized gimbals and controls, the operator can effectively select and engage targets.  With BLADE, a precision radar and C-UAS fire control software is integrated with CROWS hardware and software to assist operators in identifying, tracking and pointing the weapon to a continually calculated intercept point to enable the difficult challenge of destroying enemy drones.  Capable of functioning with numerous weapons, the BLADE/CROWS combination at Project Flytrap included an M2 .50-caliber machine gun firing multiround bursts.  BLADE also participated in several project non-firing training scenarios using the radar for detection, tracking and other simulated defensive actions, according to Goldstein.  Starting in late July, Project Flytrap 4.0 was the final iteration of the C-UAS training events where soldiers from the 2nd Cavalry Regiment and 1st Royal Yorkshire Regiment, United Kingdom, tested new C-UAS capabilities in combined exercises meant to develop and inform the future of anti-drone tactics and technologies.

“Project Flytrap is part of a series of training events designed to test and refine new counter-unmanned aerial systems technologies and tactics to respond to the evolving threat of drone warfare,” said Army Col. Matt Davis, transformation chief and exercise director of V Corps, Project Flytrap, during a press engagement.

Previous Flytrap events were focused on command-and-control systems and countering small UAS sensors, Goldstein said. “We were invited to come out to the latest Flytrap with our BLADE and CNALT systems because they wanted to see more kinetic capabilities,” he added.  The CNALT software plug-in, also being developed by the Armaments Center, is an application that provides tactical fire control and visualization tools to reduce time in the kill chain — the cycle of finding and identifying targets, prioritizing and coordinating attacks. Time is critical in military operations, with targets in constant motion and considering that potential targets threaten harm to friendly forces.  Soldiers took 15 minutes on new equipment training for CNALT operations, said Marc Sanzari, chief of the Armaments Center Networked Lethality and Collaborative Autonomy Branch. During various training scenarios, CNALT successfully ingested real-time sensor data from the BLADE Precision Fires Radar, classified unmanned aerial vehicle tracks and generated actionable engagement recommendations for BLADE and the Stryker commander.  For BLADE, getting the components to Project Flytrap 4.0 and operational tested the abilities of engineers and technicians to meet the Army and Defense Department challenge to get new drone capabilities into the hands of soldiers quickly and with the fewest constraints.

“Within two weeks of request, the system was installed and operational and ready for soldier touch-point training,” said Jonathan Gann, Armaments Center mechanical engineering technician specializing in autonomous weapons.

Gann was part of an Armaments Center team that shipped the BLADE components from Picatinny Arsenal to Poland and conducted a field expedient installation of an existing CROWS on a Stryker vehicle to make it operational as a BLADE system.

After the installation, Gann met with soldiers to discuss the tactics, techniques and procedures for BLADE operations within unit formation while stationary and on the move. He noted that soldier feedback from the live-fire event provided insights on future improvements for BLADE, but also, “it highlighted the possibilities of UAS engagement in a dynamic environment,” Gann said.

“I was able to understand the fundamental workflow for the system and gunner actions within one hour of seeing the BLADE for the first time,” said Army Maj. Jared Whitaker, deputy chief G31 from V Corps, who as a leader, observed the entirety of the drone engagements in a seat between the gunner and radar operator.

Whitaker, who is proficient in operating CROWS, said that compared to ground engagements, there were added steps in counter-drone operations. Schooling on the radar was necessary, as was additional training to become fluid during rapid reactions while performing counter-drone scenarios.

“I found that the ability to engage UAS using a CROWS has gone from impossible to possible with the addition of BLADE,” Whitaker said.

After achieving technology readiness level six in 2019, BLADE has participated in various C-UAS exercise and engagements, such as Project Convergence, the Maneuver Fires Integrated Exercise and Red Sands – Operation Hard Kill.

Project Flytrap has become the latest BLADE knowledge builder.

“The Armaments Center continues gathering insights from participating in C-UAS events and is transitioning the technology to current programs of record for near-term fielding opportunities,” Goldstein said. (Source: U.S. DoD)

 

03 Sep 25. Advanced Protection Systems and Frankenburg Technologies Enter Partnership in Kinetic Counter-Drone Systems. Advanced Protection Systems S.A. (APS) and Frankenburg Technologies OÜ have announced the signing of a Memorandum of Understanding (MoU) aimed at the joint development and integration of cutting-edge counter-unmanned aerial systems (C-UAS) in response to the growing drone threat in Europe and globally. APS is a leading Polish manufacturer of the SKYctrl anti-drone systems and FIELDctrl 3D MIMO radars, which are being deployed both in Poland and across many international markets, including Lithuania, where they will protect critical energy infrastructure, Ukraine, where significant numbers of Gdynia-made systems are used on the battlefield, and countries in the Middle East. Importantly, Advanced Protection Systems’ products are already fully integrated today with combat-proven kinetic effectors from reputable partners. Frankenburg Technologies, an Estonian manufacturer of next-generation C-UAS effectors, is a pioneer in affordable, mass-producible interceptor missiles designed to neutralize drones. Their solutions offer an effective and scalable response to the rapidly increasing threat posed by unmanned aerial systems, particularly in the context of the Russia-Ukraine war.

The collaboration between the two companies will include:

Integration of Frankenburg’s missile systems with APS’s radar and counter-drone platforms,

Planning, preparation, and execution of joint C-UAS system tests.

Exchange of technical knowledge.

Joint implementation of projects funded by national and international sources.

Joint participation in public demonstrations, conferences, and industry events.

Joint offering of integrated C-UAS solutions across NATO and allied markets.

“Modern threats from new-generation unmanned aerial systems, as well as their mass deployment in military conflicts, require C-UAS manufacturers to develop an increasing number of kinetic effectors whose cost does not significantly exceed that of the attacking systems. For this reason, we intend to integrate into our systems a cost-effective kinetic

effector that Frankenburg is now introducing to the market.

“Partnering with APS, whose radars and SKYctrl systems are already proven in combat, enables us to further demonstrate Frankenburg’s interceptor missiles as part of complete, layered counter-drone solutions for NATO allies. Our missiles are designed from the ground

up to defeat drones — fast, lightweight, solid rocket-fuelled, and engineered for mass production to keep intercept costs low. Together, we are taking a step toward building a European shield against drone threats, rooted in close cooperation between innovative NATO defence companies” said Kusti Salm, CEO of Frankenburg Technologies.This agreement marks another step toward building a European integrated air defense system against drone threats — founded on close cooperation between the defense industry and innovative technologies from NATO member states.

 

03 Sep 25. Remote, Rugged, Ready: CURRENT’s Camera System Deployed on Canada’s Shores. Current Scientific Corporation (CURRENT) is pleased to announce the successful installation of its advanced NN 8087-360 surveillance system at a remote coastal site in British Columbia. This installation marks a significant milestone in the development and deployment of Canadian-made technologies that enhance coastal surveillance and support national security objectives. The installation was conducted in collaboration with multiple Canadian government agencies as part of the Government of Canada’s Innovative Solutions Canada (ISC) Testing Stream, which evaluates pre-commercial technologies in real-world environments.

Supporting Law Enforcement in Challenging Terrain

The NN 8087-360 is designed to provide persistent situational awareness for coastal regions and was approved under ISC’s “Advanced Sensors and Materials for Terrestrial and Space Applications” challenge. With its powerful combination of panoramic thermal imaging and long-range day and mid-wave infrared imaging, the system enables operators to rapidly detect and identify vessels in the surrounding waters — day or night, in all weather conditions. To ensure optimal coverage and performance, the system was mounted on an existing 15-metre communications tower, with a custom 2-metre extension engineered specifically for this installation. This strategic modification elevated the camera system above existing communication equipment, delivering a full 360-degree field of view of the coastline.

Installation by Air: Remote Site Deployment

Given the remoteness of the site and the rugged terrain, the installation required precise coordination and technical expertise. The NN 8087-360 system, pre-mounted on its steel frame, was airlifted and lowered into place via helicopter, where it was secured by a team of technicians operating at height. The complexity of this deployment underscores the system’s versatility and the critical role it plays in enabling real-time coastal monitoring in difficult-to-access regions.

Simplifying Surveillance with Panoramic and PTZ Integration

The NN 8087-360 integrates a panoramic thermal imaging array with a long-range PTZ (pan-tilt-zoom) unit that includes HD mid-wave infrared, HD day optics, and a laser range finder. Operators can click on any object detected in the panoramic image, instantly slewing the PTZ to the object to obtain detailed close-up views. This functionality simplifies decision-making and improves threat verification, making the system ideal for law enforcement, border patrol, and maritime domain awareness missions.

A Canadian Technology for Canadian Missions

“This installation showcases how Canadian technology can rise to meet the unique challenges of securing our coastlines,” said Greg Menzies, President of CURRENT. “From design to deployment, the NN 8087-360 reflects our commitment to innovation, resilience, and operational effectiveness in real-world conditions.”

CURRENT’s EO/IR systems are trusted globally across defence, law enforcement, research, and commercial marine sectors, with proven performance on both vessel-based and land-based platforms. (Source: ASD Network)

 

02 Sep 25. US Army’s AH-64E Apache showcases ability to counter UAS. Apache aircrew engaged targets with various weapons including the Joint Air-to-Ground Missile and Hellfire variants. The US Army has showcased the capabilities of AH-64E Apache helicopters as a counter-uncrewed aircraft systems (c-UAS) platform. The aircraft successfully demonstrated its ability to identify, pursue, and neutralise UASs during an exercise. The demonstration was a collaborative effort involving Program Manager Apache, Program Manager Tactical Aviation and Ground Munitions, and the JPEO Armaments and Ammunition team, which is responsible for developing 30mm proximity-fused ammunition, with support from the South Carolina Army National Guard. During the exercise, Apache crews engaged targets using the Joint Air-to-Ground Missile (JAGM), various HELLFIRE missiles, Hydra-70 Guided Rockets equipped with Advanced Precision Kill Weapon System (APKWS) guidance sections, 30mm ammunition. The missile systems achieved direct hits on their intended targets, with Hydra-70 rockets equipped with APKWS successfully striking three out of four targets, the US Army said. The 30mm ammunition also neutralised the aerial threats. (Source: army-technology.com)

 

02 Sep 25. Cuashub.com said today that Lantern UAS secures U.S. Army contract for counter-drone technologies. On August 28, Lantern UAS, a U.S.-based developer of unmanned aerial systems and counter-UAS technologies, announced that it has been awarded a contract by the U.S. Army to deliver advanced solutions aimed at neutralizing hostile drones. The award marks a significant milestone for the company and reflects the Army’s continued investment in layered airspace defense. The contract, awarded through a competitive procurement process, will support the Army’s efforts to expand its counter-UAS capabilities across multiple operational environments as threats continue to proliferate. Lantern UAS will provide a suite of technologies designed to detect, track, and mitigate unauthorized drones, with a focus on modularity, rapid deployment, and interoperability with existing defense systems.

“This award validates our team’s commitment to delivering reliable, scalable counter-UAS solutions that meet the evolving needs of the U.S. military,” said a Lantern UAS spokesperson. “We’re proud to support the Army’s mission to secure the skies and protect personnel and infrastructure from emerging aerial threats.”

Lantern UAS has built a reputation for developing lightweight, adaptable systems that can be deployed in both tactical and strategic settings. Its platforms are designed to integrate with existing command-and-control infrastructure and support real-time threat response. The company’s technologies are particularly suited for expeditionary forces, base protection, and mobile operations. The Army contract comes amid a broader push by the Department of Defense to accelerate counter-UAS development. The day of the contract award, the Pentagon announced the formation of Joint Interagency Task Force 401, tasked with consolidating federal efforts to counter drone threats. Congress has also authorized bns in funding to support the deployment of counter-UAS systems across defense and homeland security sectors. Lantern UAS joins a growing list of domestic firms contributing to the U.S. military’s counter-drone strategy. As drone threats continue to evolve, the company’s selection underscores the importance of agile, American-made solutions in securing national airspace. (Source: https://cuashub.com/)

 

08 Sep 25. Nedinsco, a leading European manufacturer of high-precision optical and optomechatronic systems, announced today the launch of NedEye, a new-generation gimbal system engineered specifically for tactical ISR drones in the NATO domain. Combining exceptional optical performance with a lightweight, rugged construction, NedEye addresses the growing demand for reliable, European-made and advanced airborne observation systems. Designed for both fixed-wing and rotary drones in the medium-weight class (2–150 kg), NedEye delivers unmatched zoom capability, outstanding image stabilisation and full day-and-night operational readiness. It is purpose-built for Intelligence, Surveillance and Reconnaissance (ISR) missions, border security and target identification, all while maintaining integration flexibility and operational agility.

Key capabilities

Made in Europe. Developed, manufactured and assembled entirely within Europe, ensuring supply chain security, strategic autonomy and compliance with NATO/EU standards.

Advanced optical and digital zoom. Three daylight cameras provide full-range, high-resolution imaging at extended distances, with seamless transitions between optical and digital magnification.

Exceptional image stabilisation. Pan-tilt mechanical stabilisation, reinforced by advanced software algorithms, delivers steady, precise visuals in all conditions.

Lightweight construction. Significantly extends drone flight time and enables integration on smaller platforms without sacrificing performance.

Night vision and AI integration. Enables 24/7 operational capability with automated detection, recognition and tracking functions to enhance decision-making. Open software architecture. Secure, adaptable integration for OEMs and system integrators, with full protection against unauthorised access.

The introduction of NedEye comes at a time when airborne ISR capabilities are increasingly critical in both defence and security contexts. With armed forces shifting towards autonomous and unmanned platforms, reducing personnel exposure while increasing situational awareness has become a strategic imperative. NedEye is engineered to support this transition, delivering high-end optical performance without compromising endurance, weight or interoperability.

By maintaining complete design and production control within Europe, Nedinsco ensures uninterrupted operational readiness and independence from non-European component suppliers. This approach guarantees compliance with stringent NATO and EU defence requirements and mitigates geopolitical supply chain risks.

Built on proven expertise

NedEye is the result of close collaboration with drone manufacturers, system integrators and operational end users, combined with Nedinsco’s century-long experience in military-grade optical systems. This collaborative approach ensures that the product meets real-world operational needs while enabling continuous innovation through rapid feedback and incremental development cycles.

Availability

NedEye is now available for demonstrations and integration discussions. Defence and security organisations interested in evaluating the system under operational conditions are invited to contact Nedinsco directly.

About Nedinsco

Founded in 1921, Nedinsco is a Dutch manufacturer of high-precision optical and optomechatronic systems for defence, security and high-tech industries. With expertise spanning design, prototyping, production and cleanroom assembly, Nedinsco delivers innovative, mission-critical solutions to clients worldwide. The company operates under the highest quality and security standards, including AS 9100D/ISO 9001:2015, ISO 14001 and AQAP 2110 certifications.

www.nedinsco.com

 

01 Sep 25. US Department of Homeland Security issues USD 100m procurement notice for C-UAS. The United States Department of Homeland Security plans to award a USD 100m+ counter-uncrewed aerial systems (C-UAS) technology contract. In a notice posted on the agency’s Acquisition Planning Forecast System yesterday (August 27), DHS said the purpose of the procurement is to acquire C-UAS capabilities to address evolving threats posed by unauthorised or malicious drones. “These capabilities will support the detection, tracking, identification and mitigation of UAS threats across diverse operational environments, ensuring the protection of critical infrastructure, public safety, and national security.” DHS expects to award the contract in the first quarter of fiscal year 2026, and it is anticipated to be completed by September 30, 2030. (Source: www.unmannedairspace.info)

 

01 Sep 25. SkeyDrone and DronePort Sint-Truiden launch national C-UAS test and expertise centre. SkeyDrone and DronePort Sint-Truiden have announced a strategic partnership to establish Belgium’s first permanent Drone Detection & Counter-Uncrewed Aerial Systems (C-UAS) Testing and Expertise Centre. The aim of the national hub is to enable manufacturers of detection and C-UAS systems to test, validate and demonstrate their solutions, and integrate them into a comprehensive, multi-layered C-UAS system designed for both defence and civil authority use.

“In Belgium and across Europe, government agencies, critical infrastructure operators, and defence forces are seeking integrated detection and mitigation capabilities that are tested, validated, and proven in operational settings,” SkeyDrone said on August 26. “Meeting this demand calls for state-of-the-art infrastructure combined with advanced system integration expertise, precisely what this new centre will deliver.”

DronePort Sint-Truiden will provide the physical infrastructure and secure, real-world operational environment necessary for continuous testing, demonstrations and stakeholder collaboration. It will open its facilities to a wide range of parties developing both C-UAS systems and advanced drone technologies, and create an environment where opposing technologies can challenge each other to benefit airspace security. SkeyDrone, as operator of Belgium’s drone detection network and U-space service provider, will enable the technical integration of the various subsystems, manage the interfaces with civil aviation stakeholders, safeguard compliance with regulatory frameworks and connect participating solutions to its existing detection network. ​  Looking ahead, SkeyDrone expects to operate its national base detection network and services from DronePort Sint-Truiden. (Source: www.unmannedairspace.info)

 

27 Aug 25. Dimetor and SkAI develop new airspace monitoring service to detect GNSS disruptions. Dimetor and SkAI Data Services, developer of ADS-B GPS spoofing and jamming tracker (GPSwise), have announced in a Linkedin post a strategic partnership to deliver a solution for monitoring GNSS disruptions, covering both lower and upper airspace, for crewed and uncrewed flight operations and other users worldwide.

“In today’s hyperconnected world, GNSS signals (like GPS) are the backbone of aviation, drone operations, critical infrastructure, and the global supply chain, amongst others,” said the post. “Yet, they remain vulnerable to ever-increasing risks: spoofing, jamming, and unintentional interference; disruptions that have real-world consequences, from delayed flights and lost cargo to compromised navigation safety and security. As incidents of GPS jamming and spoofing surge globally, the need for reliable, real-time situational awareness has never been more urgent.

“SkAI Data Services created GPSwise in partnership with the Zurich University of Applied Sciences – Centre for Aviation. The platform is already trusted by airlines, airports, air navigation service providers, and authorities worldwide to provide ADS-B-based awareness of GPS threats. Dimetor’s NAVSentry platform is an AI-powered solution for detecting GNSS disruptions in real time, combining different technology layers, and securing Position, Navigation, and Timing (PNT) data across autonomous and crewed systems, from multiple data sources. …This multi-layered approach delivers actionable, real-time intelligence to aerospace, critical comms, UTM/ATM, UAV operators, logistics, critical infrastructure sectors, law enforcement, spectrum authorities, defense and intelligence, amongst others.

This integration creates, for the first time, a unified view of GNSS health across the full airspace, both crewed and uncrewed, at all altitudes, in real-time.

For more information: https://www.linkedin.com/pulse/dimetor-skai-data-services-announce-first-of-its-kind-gdcpc/?trackingId=QxGA3KL%2BZOtWJrpldCgUFA%3D%3D (Source: www.unmannedairspace.info)

 

28 Aug 25. US port association urges bipartisan action on C-UAS authorities. The American Association of Port Authorities (AAPA) has written to the US House Transportation and Infrastructure (T&I) Committee leaders, urging bipartisan action to expand federal counter-uncrewed aircraft systems (C-UAS) authorities and to ensure seaports are explicitly eligible for any pilot programme. In the letter, AAPA President and CEO Cary S. Davis wrote, “Understanding that implementation will rely on partnership with [State, Local, Tribal and Territorial] law enforcement, we respectfully request that seaports be explicitly recognised as potential sites for pilot deployment, especially given their [Department of Homeland Security]-designated status as critical infrastructure.” Ports face increasing threats from unauthorised drones flying over hazardous storage areas, sensitive perimeters and critical operations. AAPA says several ports have reported incidents that disrupted activity and posed safety risks, yet lack the legal authority and technical resources to respond in real-time. AAPA supports the reintroduction of the Counter-UAS Authority Security, Safety, and Reauthorization Act.

“AAPA is actively engaged with Congress, in coordination with its Security Committee and Board of Directors, to ensure ports are recognised as critical partners in national airspace security,” the association said on August 27, adding that it will continue to advocate that ports be included in any expanded pilot programme and provide technical assistance to policymakers shaping legislation in this area. (Source: www.unmannedairspace.info)

 

01 Sep 25. L3Harris launches multi-domain C-UxS initiative. L3Harris has established a new counter-uncrewed systems (C-UxS) initiative, designed to overcome uncrewed threats across the air, land and sea domains. Tom Kirkland, Vice President and General Manager of the Targeting and Sensor Systems (TSS) sector under L3Harris’ Integrated Missions Systems unit has been appointed to spearhead the company’s consolidated C-UxS effort. The US Army veteran will oversee several cross-functional teams to combat the increasing threat from uncrewed systems. In order to do so, Kirkland says more than one solution will be required.  L3Harris already produces the VAMPIRE™, CORVUS-RAVEN, Nimble Finch and Drone Guardian counter uncrewed systems technologies. The new effort provides expanded and customised C-UxS offerings by combining existing systems with other key battlefield technologies, such as passive sensing technology, mission management software, AI/ML swarm management tools, proximity fuze technology, broad electronic, intelligence and cyber capabilities, and communication networks. The company said the next version of VAMPIRE is underway. “It will feature enhanced sensors, new electronic warfare effectors and AI/ML capabilities to more quickly identify and target unmanned threats at a greater distance.” Customised VAMPIRE variants are also planned for land, air and maritime domains as well. (Source: www.unmannedairspace.info)

 

01 Sep 25. US Army to test Thor Dynamics’ portable laser system. Thor Dynamics has been invited to the United States Army’s Defense in Depth Experiment (DiDEX) 25. Organised by the Army’s Combat Capabilities Development Command (DEVCOM) C5ISR Center, DiDEX will take place later this year in Texas.  The event is a field experiment where the Army will validate technologies designed to counter growing threats, such as those from drones. Thor Dymanics’ portable Laser Armor™ high-performance laser system is engineered to fire all day and has the capability to neutralise swarms of any size.  The company notes the downing of two police Black Hawk helicopters in Colombia by simple drones, which it says is “a stark confirmation that cheap, accessible technology can now defeat multi-m-dollar assets”.

“Russia is now on track to build 6,000 Shahed-style attack drones annually,” the company continues. “China’s industrial base has the capacity to produce over 200,000 small drones per month. Their strategy is to create disposable air forces that attack in swarms, exhausting any defence that relies on a finite supply of missiles and ammunition. This creates a dangerous cost and logistical asymmetry designed to make our defences mathematically obsolete.”

Thor Dynamics says the DiDEX invitation confirms that the Army is actively seeking a solution to this specific challenge. (Source: www.unmannedairspace.info)

 

29 Aug 25. Cuashub.com said today that ZoneAware unveils AI drone detection system using CCTV networks. UK-based ZoneAware has launched a new counter-UAS solution that uses optical detection to identify and track drones, including those without radio frequency (RF) control links. The system can operate through existing CCTV networks or be deployed with low-cost tactical cameras. When paired with RF sensors to locate drone operators, it is designed as a scalable and cost-effective solution for civil markets. ZoneAware’s platform integrates optical and RF sensors into a cloud-enabled command-and-control system with TAK interoperability. It provides security teams with automated alerts, threat classification and movement-based assessments such as surveillance, payload delivery or kinetic intent. Users can access data through a web or mobile interface, while SMS alerts are available for operators not monitoring live feeds. Unlike systems that rely heavily on military-grade radar or radio frequency detection, ZoneAware’s approach centers on optical sensing through standard CCTV networks.

Chris Rogers, CEO of ZoneAware, explained: “Military-spec C-UAS solutions are too costly and complex for most organisations now facing malicious drone threats to adopt at scale. Our software transforms the infrastructure you have into C-UAS by leveraging CCTV cameras to watch how things move, then uses AI to classify and track threats.”

By applying AI to movement analysis, the platform can classify and track drones regardless of their control method, including RF-silent and fiber optic-guided models that often evade traditional detectors. This emphasis on visual tracking makes the system adaptable for organizations that already operate camera infrastructure, lowering barriers to entry compared to bespoke military systems. According to the company, camera and RF sensors can be set up in under a minute by non-specialists, using LTE or low-power ethernet networks. A vest-mounted RF unit is also available to support mobile operations. https://cuashub.com/en/content/zoneaware-unveils-ai-drone-detection-system-using-cctv-networks/ (Source: https://cuashub.com/)

 

29 Aug 25. Cuashub.com said today that Indian Navy plans expanded counter-drone capabilities. The Indian Navy is preparing to strengthen its counter-drone capabilities and extend its strike reach in the wake of lessons learned from Operation Sindoor, according to Deputy Chief of Naval Staff Vice Admiral Tarun Sobti. Speaking on the sidelines of a tri-services conference, Sobti said the service is evaluating counter-drone systems and long-range attack vectors after analyzing the four-day conflict with Pakistan that unfolded from May 7 – 10. The deputy chief emphasized the growing challenge posed by low-cost UAS in naval warfare. Warships equipped with expensive surface-to-air missiles, which cost ms of dollars per round, cannot afford to expend such resources against small, inexpensive drones, he explained.

“We have to develop systems, especially counter-UAVs, which will help us take down the low-cost drones,” Sobti said.

He noted that while the Navy’s frontline units were well-prepared during Operation Sindoor, the conflict highlighted the urgent need for more scalable solutions to deal with emerging aerial threats.

“We were ready. So our troops were absolutely raring to go,” Sobti noted, adding that an operational review is guiding the next phase of modernization.

Operation Sindoor was launched on May 7 in retaliation for the Pahalgam attack, with Indian forces striking infrastructure in Pakistan-controlled territory. The operation led to four days of heightened clashes that concluded on May 10. According to Sobti, the Navy is now examining how to integrate longer-range strike options to influence targets at sea and on land while also prioritizing layered defenses against drones.

“Most of the lessons learnt following Operation Sindoor and changes being incorporated into the Navy post the operation are being analyzed,” he said.

The Indian Navy’s focus on counter-drone solutions mirrors a wider global shift as militaries seek more cost-effective defenses against an expanding spectrum of unmanned threats.

https://cuashub.com/en/content/indian-navy-plans-expanded-counter-drone-capabilities/ (Source: https://cuashub.com/)

 

29 Aug 25. Cuashub.com said today that 5 ways NATO is preparing to meet the drone threat. As drone threats grow more sophisticated and widespread, NATO has rapidly scaled up its counter-UAS efforts across strategy, technology, and operations. From multinational exercises to doctrine development and joint procurement, the Alliance is forging a unified approach to detect, defeat and deter unmanned aerial systems. Below are five key developments that illustrate NATO’s evolving counter-drone posture in 2025.

  1. Multinational counter-drone exercises

NATO regularly organizes large-scale drills to test and improve Alliance-wide counter-UAS integration. In September 2024 NATO ran the “Counter-UAS Technical Interoperability Exercise” (TIE24) in the Netherlands, where over 450 participants from 19 Allied Nations and three Partner Nations, including Ukraine for the first time, came together.

Some 60 different counter-drone systems and technologies, including detection radars, optical sensors, effectors and jammers, were tested live against realistic threat drones.

The goal was to verify that these cutting-edge solutions can connect and operate seamlessly under unified control. The exercise’s results will be applied to help identify optimal counter-UAS architectures, common requirements and technical interoperability standards for future deployments.

In short, these joint exercises build practical familiarity and interoperability, ensuring all Allies can field and coordinate counter-drone defenses together.

  1. Developing a NATO-wide C-UAS doctrine and policy

NATO is nearing formal adoption of its first-ever counter-UAS doctrine, designed to unify how member states detect, identify and neutralize hostile drones. This marks a major milestone in the Alliance’s response to the growing threat posed by small (Class I) UAS, especially in light of lessons learned from Ukraine’s battlefield experience.

The groundwork began in 2019, when NATO endorsed a framework for countering small drones. In July 2021, the Alliance approved a working program to develop a full doctrine. By October 2023, Defence Ministers were actively discussing force assignments and command-and-control adaptations to address drone threats.

As of August 2025, the doctrine is in its final stages of ratification, with NATO’s Communications and Information Agency (NCIA) confirming that it will provide a robust framework for interoperability, technical standards and operational guidance. The doctrine is expected to:

  • Standardize detection and defeat protocols across all member states
  • Streamline national laws and rules of engagement
  • Enable plug-and-play integration of sensors and effectors using protocols like SAPIENT
  • Support layered defense strategies and common operator training

The final document is expected to be ratified by the end of 2025, setting the stage for a unified and agile counter-drone posture across the Alliance

  1. Establishing joint procurement frameworks for C-UAS systems

To help Allies acquire counter-drone gear efficiently, NATO’s procurement arm has set up alliance-wide contracting. In April 2024 NATO’s Support and Procurement Agency (NSPA) awarded the first-ever framework contract for small counter-UAS equipment.

By August 2024 this three-year framework with Danish company MyDefence was formally activated. Through this contract, managed via Belgium’s Cobbs Belux, NATO nations can now buy integrated counter-UAS packages. For example, combining MyDefence’s radar detector with DroneShield’s DroneGun Mk4 jammer under a common agreement.

NATO hailed the milestone as  key to enhancing NATO’s operational readiness, since it ensures member states can quickly obtain proven counter-drone kits without lengthy national tenders.

  1. Promoting innovation through research and challenge competitions

NATO actively cultivates new counter-drone technologies via its science and innovation programs. For example, NATO’s Science for Peace & Security (SPS) programme has hosted UAS/C-UAS competitions.

In July 2025 four university teams from the Netherlands, UK, US and Austria faced off at the Huntsville UAV test range in Alabama, tackling unmanned aircraft and counter-UAS challenges. Separately, NATO’s Allied Command Transformation runs annual “Innovation Challenges” on pressing threats.

The 16th NATO Innovation Challenge, which took place in June 2025, focused on novel fiber-optic-tethered FPV drones, the latest major drone threat observed in Ukraine.

That contest drew 162 proposals including 42 from Ukrainian teams and highlighted a range of innovative solutions, from software-defined small-radar detection to compact kinetic interceptors and AI-guided turrets. Winning prototypes get NATO support for field testing.

Through these R&D efforts and experiments, NATO accelerates cutting-edge counter-UAS systems from labs into actual use.

  1. High-level awareness and strategic planning

NATO continues to elevate counter-drone strategy as a top-tier priority, with senior leaders emphasizing the urgency of addressing drone proliferation across all domains. The threat posed by UAS, especially from non-state actors and asymmetric warfare, has outpaced traditional defenses and now features prominently in NATO’s strategic planning.  At the February 2025 Defence Ministerial in Brussels, NATO Defence Ministers formally endorsed updates to the Integrated Air and Missile Defence Policy, which now explicitly includes counter-UAS measures as part of a 360-degree approach to air and missile threats. This policy revision reflects the Alliance’s recognition that drones, from small, unsophisticated models to advanced autonomous systems, are increasingly used to challenge NATO’s airspace and operational integrity. In parallel the NCIA has continued to stress the strategic importance of counter-drone capabilities. These high-level decisions and public commitments reinforce NATO’s collective posture that countering hostile drones is a strategic imperative. Resources, doctrine, and command structures are being actively adapted to ensure the Alliance can detect, track and defeat UAS threats across land, sea and air. https://cuashub.com/en/content/5-ways-nato-is-preparing-to-meet-the-drone-threat/Content (Source: https://cuashub.com/)

 

03 Sep 25. Cuashub.com said today that Florida man charged with using drone to smuggle fentanyl into federal prisons. A Florida man has been charged with conspiracy to distribute fentanyl after allegedly using drones to smuggle the drug and contraband cellphones into multiple federal prisons. James Key III reportedly coordinated with inmates between December 2024 and August 2025 to introduce the substances into correctional facilities in California, Florida and South Carolina. Court documents state that fentanyl was packed into paper bundles, wrapped in synthetic grass and loaded onto drones before being flown over prison grounds. If convicted, Key faces up to 20 years in prison and a $1 m fine. The case highlights the increasing use of drones in drug and contraband smuggling operations, particularly into secure facilities where traditional methods of smuggling are heavily monitored. Authorities have documented incidents across the United States where drones have been deployed to deliver narcotics, weapons and phones to inmates. Federal authorities have increasingly flagged drone-based contraband delivery as a growing threat to correctional security. In one recent case, two Georgia residents and a federal inmate were sentenced after a drone equipped with a “skyhook” crashed in the yard of a prison in South Carolina, delivering approximately 38 grams of methamphetamine. One conspirator alone received more than nine additional years added to his sentence. Additionally, in California, a sentenced inmate used contraband cellphones to coordinate multiple drone deliveries of methamphetamine, heroin, marijuana and other items into Pleasant Valley State Prison between mid-2021 and late 2021. The Department of Homeland Security and other federal agencies continue to warn that fentanyl remains one of the most dangerous narcotics entering U.S. prisons, with smugglers increasingly relying on drones to avoid detection. https://cuashub.com/en/content/florida-man-charged-with-using-drone-to-smuggle-fentanyl-into-federal-prisons/ (Source: https://cuashub.com/)

 

03 Sep 25. Cuashub.com said today that Drone sighting delays flights at Edinburgh Airport. Flights at Edinburgh Airport were temporarily disrupted on the morning of August 28 after a drone was spotted inside the airport’s exclusion zone. The incident led to a short hold on arrival flights while checks were carried out. Airport officials confirmed the drone did not enter the airfield itself and was not above the runway, but the sighting was considered serious enough to trigger established safety procedures. Police were alerted to the breach of the restriction zone and launched an investigation. An Edinburgh Airport spokesperson said: “Flights were held due to the presence of a drone within the exclusion zone, which police investigated. It is imperative that drone operators are aware of their responsibilities and are aware of the flight restriction zones and potential penalties. The safety of passengers and staff is always paramount.” The Civil Aviation Authority (CAA) designates flight restriction zones around airports, airfields and spaceports to protect aircraft during take-off and landing. These zones extend up to 5km and prohibit drone flights unless prior permission has been granted. Breaching them is a criminal offence and can carry penalties of up to five years in prison or an unlimited fine. The rapid investigation and temporary suspension of arrivals at Edinburgh highlight the cautious approach that is taken regarding drone incursions around airports. Even when drones remain outside the runway and airfield itself, they can still pose a risk to aircraft approaching or departing the airport. Police Scotland have been contacted regarding the incident, but no further details have yet been released. https://cuashub.com/en/content/drone-sighting-delays-flights-at-edinburgh-airport/ (Source: https://cuashub.com/)

 

03 Sep 25. Cuashub.com said today that Epirus Leonidas system downs 49 drones in swarm test. Epirus’ high-power electromagnetic (HPeM) weapon, Leonidas, has destroyed 49 drones at once during a recent test, Axios has reported. The demonstration, held at Camp Atterbury in Indiana, was observed by officials from the U.S. military as well as representatives from other nations. The event marks the largest drone swarm challenge faced by Leonidas to date. It is not clear whether the UAVs approached as one formation or in separate groups from multiple directions. Leonidas is being developed for several applications, including fixed-site, trailer-mounted, mobile and UAV-mounted versions. The system uses directed energy in the form of high-power microwaves to disable or damage onboard electronics, an approach that differs from more established jamming and laser-based counter-UAS methods. HPeM weapons such as Leonidas are attracting attention because of their potential to neutralize multiple drones simultaneously. Unlike jamming, they can affect drones operating autonomously or connected via fiber-optic links. They also avoid the high firing costs associated with kinetic systems. The technology is not without limitations, with range cited as a current drawback compared to laser weapons. However, proponents point to manageable power requirements, resilience against common countermeasures and effectiveness against swarms as reasons for investment in the capability. https://cuashub.com/en/content/epirus-leonidas-system-downs-49-drones-in-swarm-test/ (Source: https://cuashub.com/)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation. For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

September 4, 2025 by

Sponsored by Echodyne

www.echodyne.com
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04 Sep 25. Echodyne, the radar platform company,  has been selected as the radar provider within the Australian Defence Force’s Project Land 156, the Australian government’s effort to equip the ADF with continuous counter-drone capabilities. The Project intends to modernize the ADF in the face of new technology and an evolving threat landscape. Echodyne is proud to contribute radar expertise to the project and its newly announced systems integration team leader, Leidos Australia, and alongside EOS Australia, which already incorporates Echodyne radar into its Slinger RWS, Acacia Systems, L3Harris Technologies and Department 13.

“We are pleased to be selected as part of the Leidos Australia team for the Australian Defence Force counter-UAS project, Land 156,” said Eben Frankenberg, CEO of Echodyne. “As C-UAS solutions become ever more critical to mission success and dismounted soldier safety, Echodyne’s COTS architecture allows us to quickly respond to increasing global demand for our advanced MESA radar systems.”

Echodyne’s 4D metamaterials electronically scanned array (MESA) radars are perfectly suited to support C-UAS initiatives, locking optical sensors for “eyes on object” and reliable precision tracking for mitigation platforms and effectors. Rooted in the belief that data fidelity makes all the difference to C-UAS mission success, Echodyne radars generate the most accurate data for detecting, tracking, targeting, and mitigating UAS intruders.

 

02 Sep 25. TCI, part of SPX Communications Technologies, today introduces two new Radio Frequency (RF) Receivers, designed for continuous, real-time signal collection to support Communications Intelligence (COMINT) operations. The 955 Rackmount RF COMINT and Geolocation System and the 957 Rackmount RF COMINT and Independent Geolocation System will be shown for the first time at DSEI 2025, 9–12 September, ExCeL London, Stand N6-130.

The systems deliver rapid detection, filtering, and geolocation of RF communication signals across congested spectrum environments, enabling faster decision-making and reaction times, improved threat awareness, and greater operational agility. Their 80 MHz Instantaneous Bandwidth – double that of its predecessor – allows wide-area signal collection for broad situational awareness, or narrower focus for heightened sensitivity in challenging RF conditions.

Combining two geolocation techniques – Hybrid Angle of Arrival (AOA) and Time Difference of Arrival (TDOA) – enables precise signal location with fewer deployed assets, even over low-bandwidth or intermittent networks.

The rugged, rack-mounted design supports deployment in vehicles, fixed installations, or forward field positions. Both models are built for mission flexibility, with the ability to switch roles without reconfiguration, from counter-terrorism and border security to front-line combat. The 955 is optimised for single-unit, vehicle-mounted, or stand-alone operations, while the 957 offers enhanced processing capacity for simultaneous, independent tasking and networked multi-sensor geolocation across dispersed teams.

The RF systems also feature a 72-hour look-back recording capability, enabling operators to identify a new threat and immediately analyse historical spectrum activity to extract further intelligence. The feature also supports automated and remote monitoring options, reduces manpower requirements for persistent 24/7 operations, and lowers operational costs. A database allows further intelligence analysis for days, weeks and months.

Both systems operate using TCI’s Blackbird software, currently in operational use on almost 1,000 frontline systems worldwide. Blackbird provides an intuitive interface that reduces training time and enables less experienced operators to perform effective COMINT tasks, immediately expanding the possible pool of operators. It allows highly skilled personnel to remain in safer, decentralised positions while remotely managing deployed systems, multiplying force effectiveness.

Built on the combat-proven heritage of their predecessor, the 953 receiver, the new 955 and 957 are backwards compatible with existing SPX Communication Technologies and partner systems, including the ECS BLACKTALON counter-uncrewed aerial system (C-UAS) solution, for scalable integration into wider electronic warfare architectures.

“Today, electronic warfare is at the heart of all defence operations, and mastering the spectrum is now as critical as controlling the air,” says David Beckett, Battlespace Business Development Director at TCI. “Our new systems give defence teams the decisive intelligence they need to succeed.”

The 955 and 957 are now available. See them for the first time at DSEI 2025, 9–12 September, ExCeL London, Stand N6-130, or contact for more information.

About TCI, part of SPX Communication Technologies

TCI , forming the SPX Technologies’ Communication Technologies Platform alongside Enterprise Control Systems (ECS), innovates specialised technologies within the Radio Frequency (RF) spectrum to ensure a smarter, more secure future for all.

SPX Communication Technologies is responsible for technical innovation within the Battlespace RF spectrum to enable defence and security teams to detect, defeat and exploit RF signals to enhance their Communications Intelligence (COMINT) and Counter Unmanned Aerial Systems (C-UAS) capabilities.

Combining decades of technological innovation and expertise with agile and collaborative engineering and product development teams, SPX Communication Technologies delivers sustainable and exceptional results to military and security customers across the globe – including Europe, Asia-Pacific, the Middle East, and Africa.

For more information on TCI solutions, visit www.tcibr.com

 

03 Sep 25. IEE Exhibiting Lineup of Rugged Displays at DSEI UK 2025.  Next-Gen Displays Combine Full-HD Performance with Flexible, Modular Architecture. Industrial Electronic Engineers, IEE, a manufacturer of military display systems, is exhibiting at the Defence and Security Equipment International (DSEI) trade exhibition September 9th-12th, in London. With full high-definition (HD) screens and video processing, IEE delivers state-of-the-art display performance by supporting modularity along with open communication and video standards. The modular architecture approach enables the seamless integration of new functions, such as additional sensors and systems being added to the aircraft or vehicle system, while also extending lifecycle support from supply and sustainment through future upgrades and technology refreshes.

“Continually advancing the technologies we use in our products, such as support for high-speed digital backbone, enables real-time data feeds from vehicle management systems, mission computers or navigation systems,” said Steve Motter, VP of Business Development at IEE. “This approach facilitates rapid updates in video and sensor data flow, as well as system control and configuration, to support changes in today’s rapidly evolving threats on the battlefield.”

13.3-Inch Full HD MFD Video Display

Designed for both airborne and military ground vehicle applications, this 13.3-inch monitor delivers full-HD resolution in a wide-aspect format. As a line-replaceable unit (LRU), it offers a common solution for all operators, enabling them to view and interact with computer graphics and video through the optional touchscreen. Its slim bezel is engineered for side-by-side installation, creating a seamless panoramic display.

13.3-inch Product Features:
• Enhanced, High-Bright 13.3” LCD Display
• Contrast Ratio: 800:1 (typical)
• Display Luminance (max): > 1,000 cd/m2
• Full-HD (1920×1080) LCD bonded with high-strength cover glass including EMI shield, heater and anti-reflective/glare treatments
• LED backlight with high-bright day (sunlight readable) and night (NVIS compatible) modes
• 8 backlit soft key bezel layout
• 2x Composite NTSC/PAL; 1x 3G-SDI
• Inputs/Outputs: UART Serial
Also featured at DSEI will be IEE’s 10.1 WUXGA Mission Display.
What sets this 10.1-inch MFD apart is its high-performance, rugged, color WUXGA (1920×1200) AMLCD with exceptional brightness. Engineered for both fixed- and rotary-wing aircraft, it offers an ultra-wide viewing angle and a selectable dual-mode LED backlight—delivering sunlight readability by day and NVIS compatibility for night operations.

10.1-inch Product Features
• 10.1-inch WUXGA (1920×1200) color TFT LCD Display
• Brightness: 1,100 cd/m2 typical
• Contrast Ratio: 800:1
• Viewing Angle: ± 85º H / ± 85º V
• 13 programmable bezel pushbuttons, with tactile feedback and NVIS filtered backlight
• 3-way rotary switch for OFF/NIGHT/DAY, one brightness encoder, two programmable dual-concentric encoders and one 8-way joystick
• On-screen display (OSD) functions controlled using bezel keys
• Video Interface: 2 x HD-SDI (with loop-through), 2 x DVI-D
• Serial Communication Interface: RS-422
IEE is exhibiting in Stand N7-134 (Solid State plc) at DSEI, September 9th-12th. Stop by or make an appointment with Steve Motter by calling 1-800-422-0867, ext. 327, or email: .

04 Sep 25. Introducing Reventec’s Military Vehicle Sensors. For defence vehicles, the ability to monitor and optimise vehicle performance is critical. At Reventec, our mil-spec sensors are engineered to provide the essential vehicle intelligence and data that enables manufacturers and system integrators to enhance the performance and durability of their platforms.
Maximising Platform Potential: By thoroughly understanding your vehicle’s current state and predicting its future performance, its full operational potential can be leveraged. As a result, customers see extended service life, reduced downtime, and enhanced combat effectiveness.

Explore just a few of the benefits of implementing Reventec sensors:
Non-Contact Position Sensors:
Knowing the precise position and movement of suspension arms, actuator extensions, turret rotation, or steering angles gives unprecedented insight into:
• Vehicle articulation and stability on varied terrain.
• Component wear and tear.
• System performance validation during testing or operation.
• Damage assessment after impact.
• Operational effectiveness.
Capacitive Liquid Level Sensors:
Reventec’s capacitive liquid level sensors provide continuous and precise measurement of fuel, oil, coolant, and other mission-critical fluids. This real-time data offers invaluable insight into:
• Fuel prognostics for early detection of fuel system leaks, filter blockages, or injector issues by monitoring anomalies in fuel consumption rates.
• Optimal flight and driving range.
• Enhanced predictive maintenance.
• Reduce manual checks.
• Operational readiness: Ensuring that vehicle fluid levels are always within optimal parameters for vehicle readiness.
Obsolescence Protection
For existing vehicles undergoing mid-life upgrades, our highly customisable technologies are an ideal drop-in solution to replace obsolete sensor components.
All our defence vehicle performance sensors are designed to meet rigorous EMC approvals with certification to MIL-STD-416G and DEF STAN 59-411 Class A available.
Meet Us at DSEI
Discover the new generation of vehicle performance sensors in person. We invite you to schedule a meeting with our team at DSEI next week to discuss your specific project requirements.

04 Sep 25. BIRD Aerosystems Launches μDIRCM™ – World’s Most Compact & Advanced Protection System Against MANPADS and the only available solution for Small Helicopters and UAVs.
New system delivers powerful, lightweight, small size, cost-effective protection against modern threats, enabling the most advanced DIRCM capabilities for platforms previously left unprotected.
DSEI UK, Spetember 9-12 2025, Booth #N10-310.

BIRD Aerosystems, a global provider of innovative airborne defense solutions, announces the official launch of its latest development – the µDIRCM™ : the most compact, lightweight, and cost-effective DIRCM solution available today, developed based on BIRD’s fully operationally proven SPREOS DIRCM technologies.

Tailored to meet the growing demand for lightweight defence systems, the µDIRCM™ enables unique and comprehensive airborne missile defense even for small platforms, UAV’ss and light helicopters such as the Airbus H145.
Due to its size, weight, and cost, the dual µDIRCM™ unit’s turret configuration is peffectly optimized for wingtip integration on combat helicopters such as the AH64 Apache, ensuring full hemispheric protection.
The µDIRCM™ is a fully autonomous single-LRU solution weighing less than 7kg, offering unmatched protection against Man-Portable Air Defense Systems (MANPADS) and other modern threats. Its advanced infrared tracker, combined with high-power all solid-state laser emitters, delivers high-precision jamming, while its dual-band IR confirmation mechanism ensures near zero system false alarms – a key characteristic of BIRD’s DIRCM family. Designed for seamless integration with any missile warning system (MWS), the µDIRCM™ provides maximal coverage, all while meeting the highest military and civil aviation standards.

Matan Perry, CMO & VP Sales at BIRD Aerosystems, stated: “The µDIRCM’s compact size, low weight and cost-effectiveness set a new standard of protection for small helicopters and UAS, which until now could not acommodate traditional DIRCM solutions. We are witnessing increasing demand for self protection system in these segments. Together with BIRD’s mature SPREOS DIRCM, the µDIRCM™ completes BIRDs portfolio, enabling comprehensive protection solutions ranging from small size platform up to large VVIP aircrafts.”
Ronen Factor, Co-CEO and Founder of BIRD Aerosystems, stated: “The launch of the µDIRCM™ is a major milestone for BIRD. We’ve harnessed our combat proven DIRCM technology and experience to develop the world’s smallest and most effective self-protection system, representing the most advanced DIRCM technology available today. We are proud to share that the µDIRCM™ has already been selected by global customers and will become operational during 2026.”

About BIRD Aerosystems
BIRD Aerosystems, a global provider of innovative defense technology and solutions, protects the fleets and ground assets of governments and related agencies. The company specializes in two main business segments: Airborne Missile Protection Systems (AMPS), which protect helicopters, transport aircraft, narrow and wide-body commercial aircraft and VVIP heads-of-state aircraft against ground-to-air & MANPADS. The second segment, ASIO, is an end-to-end Airborne Surveillance, Intelligence, and Observation solution designed for maritime and ground surveillance, search and rescue, patrol, and monitoring. By combining world-class engineering and patented technologies, BIRD Aerosystems delivers end-to-end solutions for airborne and land-based protection. The company provides turnkey programs that include design, certification, and installation. Customers include the U.S. government, UN Air Operations, NATO forces, and leading defense organizations worldwide.

 

03 Sep 25. Allen-Vanguard launches SECURIS, a mobile counter drone trailer, as part of a new counter drone collaboration with Metis, Blighter, Openworks and EdeyFX. Allen-Vanguard, a global leader in providing customised solutions for defeating Radio Frequency (RF) based terrorist and extremist threats, is launching a new mobile counter drone trailer at DSEi 25 in collaboration with Metis, Blighter, Openworks and EdeyFX. This collaboration has been established to leverage the respective expertise (detect and defeat) and proven product capabilities (RF detection, radar detection, optical recognition and RF jamming) from each company to address the increasing threat to people, infrastructure and key locations from the nefarious use of drones. Details on SECURIS, the new mobile counter uncrewed air systems (C-UAS) trailer system will be available at the Allen-Vanguard stand S5-540 at DSEi 25, Excel, London (9-12 September 2025).
The SECURIS C-UAS trailer is a rapidly deployable, mobile counter drone capability that has a best in class, multi-faceted detection suite combining the advanced RF detection capabilities of SKYPERION from Metis which is used globally by NATO allies in various integrated systems, the unique radar target acquisition capabilities of Blighter’s A400 series, which is also operationally proven globally and the advanced optical recognition system Vision Flex from Openworks; again sector leading for its long-range imagers, dynamic slew-to-cue capability, and twin-AI modules for detection, tracking and identification.

These aspects, along with Allen-Vanguard’s own operationally proven range of C-UAS RF Effectors (ANCILE), have been cleverly integrated onto a bespoke trailer chassis produced by EdeyFX accommodating operational input on design and layout coupled with the highest level of mobility. SECURIS delivers a scalable, fully integrated, comprehensive, easy to use, reliable and future proofed counter drone capability on an extremely mobile and robust platform. Its open architecture and modular nature also makes it highly suitable for the provision of Protection-as-a-Service (PaaS) where customers are provided the latest updates and technology innovations as part of a package rather than just purchasing a one-shot capability.
Bobby Strawbridge, President of Allen-Vanguard said: “I am delighted to formally launch our new fully integrated and scalable mobile counter drone trailer system SECURIS at DSEi 25. We have worked closely with our partners at Metis, Blighter, Openworks and EdeyFX all of whom are agile SMEs like ourselves, and who are acknowledged Domain Knowledge Experts (DKEs) in their respective fields. As specialists, with operationally proven products within our own areas of expertise, we have come together to produce exactly what the customer base has been demanding, a best of breed collaboration of capable systems packaged into a scalable and highly mobile package. SECURIS will help counter the rapidly evolving threat posed by drones and it’s modularity ensures future adaptability and therefore enables provision of Protection-as-a-Service rather than just product manufacture.”

 

04 Sep 25. Metis launches THEIA their new drone detection Operating System and User Interface at DSEI 25. Metis, specialists in providing Radio Frequency (RF) and drone detection innovative technologies across diverse sectors, is launching THEIA their new operating system and graphical user interface. THEIA will be deployed to all their product range to maximise the benefits of machine learning (ML) and artificial intelligence (AI) in the rapid consolidation of multiple RF data sources into a single easy to use and understand Graphical User Interface (GUI). Metis will be showcasing Skyperion (their mobile drone detection product) and THEIA at DSEi 25, Excel, London (9-12 September 2025) in partnership with Allen-Vanguard on stand S5-540.
Metis has a long history in developing, producing and deploying sophisticated signals intelligence gathering technology to protect people, places and privacy. For the last 10 years, this expertise has been increasingly focussed on countering the rising asymmetric drone threat, and Metis has been at the forefront of C-UAS RF detection capability development. This has culminated in the design and production of Hyperion (broader RF detection) and Skyperion (more specific drone detection) which both capture a wide range of RF emissions of varying strengths across the electromagnetic spectrum, filter out background noise and known entities, before rapidly analysing complex waveforms to identify and locate potential threats. Over 80 of these systems are in operation with NATO partners, or deployed supporting national security interests, by helping safeguard airspace, key installations and critical infrastructure against the threats posed by rogue drones or nefarious RF activity.

THEIA (goddess of insight and vision) will be installed on all existing Metis products and has been designed to consolidate the vast array of complex RF detection analytical data captured by Metis systems (or other sources) into a single easy to use and understand GUI. THEIA will deliver rapid situational awareness through clearer data presentation which, combined with reduced complexity and streamlined workflows, will ensure more accurate and faster decision making. The system has been developed to minimise the training burden and the interface can be customised to meet the needs of the user from basic to expert levels depending on the threat profile and training levels. The GUI is designed for real world operators to minimise the cognitive burden, reduce distractions from mission focus and ensure resilience under high tempo scenarios. THEIA is fully future proofed having been specifically designed for ML and AI integration upgrades and uses an open architecture to facilitate both easy integration with existing command and control systems or wider C-UAS suites and allow rapid upgrades and data sharing.
Tony Burnell, CEO of Metis said: “Having spent a lifetime learning how to analyse complex RF waveforms, and for many deciphering the mass of data traditional RF detect systems produce must seem like trying to read the matrix, I am extremely proud of THEIA and its ability to harness all the benefits of modern technology, such as ML and AI, while at the same time consolidate that mass of information and data into something meaningful that an operator and commanders can quickly and easily use to enhance their decision making and help protect people, places and privacy.”

 

03 Sep 25. Teledyne FLIR OEM Launches Boson+ IQ Thermal Imaging Development Kit at DSEI UK 2025.

New Hardware and Software Development Kit Accelerates Thermal Imaging and AI Integration at the Edge.

Teledyne FLIR OEM, part of Teledyne Technologies Incorporated (NYSE: TDY) and the global leader in thermal imaging innovation, today announced the launch of the Boson®+ IQDevelopment Kit. The comprehensive solution combines reference hardware with Prism™ software, empowering integrators to rapidly develop edge AI capabilities using advanced thermal sensing across defense, security, and industrial platforms.

At the heart of the kit is the Teledyne FLIR OEM AVP, powered by the Qualcomm® Dragonwing™ QCS8550 system-on-chip (SoC), which delivers an industry-leading 50 trillion operations per second (TOPS) with a
typical power draw of just 2.5 watts. Its multicore architecture supports Prism AI object detection models and Prism ISP features, including denoising and super resolution to provide exceptional image clarity in
challenging environments.

“The Boson+ IQ Dev Kit represents a major leap forward for integrators building smarter, more efficient thermal systems at the edge with AI particularly for autonomy applications such as aerial drones, loitering
munitions, and ground-based robotics,” said Jared Faraudo, vice president of product management and programs, Teledyne FLIR OEM. “By combining our high-performance Boson+ thermal camera with Prism AI and ISP software on a cutting-edge Qualcomm compute platform, we’re enabling faster development cycles, industry-best image quality, and longer mission endurance with minimal power consumption.”

Designed for flexibility and scalability, the kit includes interface and carrier boards with three MIPI interfaces, allowing developers to integrate visible or other sensor types into their systems. It also comes with the Boson+ and Prism SDKs, hardware interface control documentation (ICD), and expert engineering support, providing a seamless development experience from prototype to deployment.
The Boson+ IQ Development Kit is future-ready, with compatibility for upcoming additions, including Prism SKR and Prism Supervisor. Prism SKR facilitates autonomous target detection and terminal guidance, while Prism Supervisor offers autonomous operation to designated way points via GPS or visual-based navigation(VBN) location technology. These software-enabled features can add powerful capabilities to mission-critical
applications in defense, security, and industrial automation.

Experience the Boson+ IQ Development Kit in action at the Teledyne FLIR stand (#S3-110) during DSEI UK at ExCeL London, Sept. 9–12, one of the world’s premier defense and security exhibitions. For more
information, visit https://oem.flir.com/products/boson-plus-iq-development-kit/.

 

03 Sep 25. OpenWorks Engineering launches kinetic threat targeting capability at DSEI 2025 for on-the-move deployment.
• OpenWorks has launched Vision Pace, the latest in its range of ‘Vision Autonomous Optics’.
• Vision Pace is designed for on-the-move precision targeting of multiple dynamic threats.
• Direct-drive design and stabilisation technology underpins ultra-high accuracy.
• Land and naval applications include expeditionary force protection, GBAD, SHORAD, M-SHORAD
• Vision Pace is powered by OpenWorks’ advanced AI classifiers and trackers to detect, track and identify multiple targets.
• OpenWorks has collaborated with Thales to integrate their compact optical sensor suite, combined with an advanced 4D EchoShield MESA® radar from Echodyne.

OpenWorks Engineering has announced the launch of its latest autonomous optics product, Vision Pace.

Designed to enhance dynamic multi-threat engagement, Vision Pace offers microradian precision targeting to kinetic defeat chains, marking a step-change for layered air defence. The development is intended to provide capability to expeditionary force protection, GBAD, SHORAD, and M-SHORAD across land and naval domains.

Vision Pace achieves ultra-high performance through its low friction direct-drive positioner and AI-powered stabilisation technology, leveraging OpenWorks’ proven and advanced AI classifiers and trackers.

Building upon the widely deployed and highly modular approach to OpenWorks’ Vision Flex product family, Vision Pace is also configurable to meet customer requirements with the support of OpenWorks’ global technical support team. The approach to system architecture allows the integration of wide ranging third-party primary detectors, sensors, classifiers and effectors along with OpenWorks’ proven EO and IR imagers.
One such configuration on display at DSEI includes the integration of Thales’ TrueHunter Gimbal Sight sensor head which excels in long range multi-spectral observation, acquisition and target engagement through the most challenging environments, day and night. TrueHunter Gimbal Sight’s state-of-the-art sensors include high-resolution daylight colour cameras, a cooled thermal imager (both with continuous zoom), SWIR sensor, laser rangefinder, laser pointer and a laser target designator.
The companies signed a Memorandum of Understanding (MoU) earlier in the year to support a partnership that will see OpenWorks fuse inputs from Thales’ suite of sensors with an advanced MESA radar from Echodyne to provide a comprehensive multi-target detect, recognise, track and target capability at speed and at distance. This is one of many possible variants Vision Pace.

Graham Beall, Chief Business Development Officer at OpenWorks said “Combining Vision Pace and the TrueHunter Gimbal Sight sensor head will extend the application of both products, creating an optimal capability for ground- and mobile-based air defence (GBAD and M-SHORAD), expeditionary force protection and naval applications. We’ve come together with Thales to offer a unique capability that integrates their world-leading sensor technology with the next-generation of ultra-high-performance tracking and targeting capability.”
Stephen McCann, Managing Director of Thales in the UK’s optronics business, said: “We are proud to partner with OpenWorks to bring our advanced TrueHunter sensor technology to the Vision Pace system. This collaboration reflects our commitment to delivering innovative solutions that empower customers with superior situational awareness and enhanced mission effectiveness in the most challenging operational environments.”
Adding to the highly modular and mission specific nature of configurations available for Vision Pace, OpenWorks is also displaying a variant with its own sensor suite fitted to a ‘Rapid Deployment Kit’.

About OpenWorks:
OpenWorks provides a range of modular autonomous vision systems that deliver ultra-high performance real-time detection, identification and tracking of highly dynamic threats at long range. Our specialist capability lies in our dynamic positioners, EO/IR imagers, approach to sensor fusion and common interface that enables the integration of third-party detectors, classifiers, interceptors and effectors.
SkyWall and Vision Flex are OpenWorks’ most established products, with global end-users.
On display at DSEI (N6-160):
– Vision Pace with a Rapid Deployment Kit.
– Vision Pace with OpenWorks’ EO/IR imagers.
– Vision Pace with Thales TrueHunter Sensor Head and Echodyne 4D EchoShield MESA Radar.
– Vision Flex – A highly modular vision system for static, mobile and un-crewed systems.
– Vision Guard – A rapidly deployable forward observation and C-UAS surveillance capability.

03 Sep 25. Advanced Protection Systems and Frankenburg Technologies Enter Partnership in Kinetic Counter-Drone Systems. Advanced Protection Systems S.A. (APS) and Frankenburg Technologies OÜ have announced the signing of a Memorandum of Understanding (MoU) aimed at the joint development and integration of cutting-edge counter-unmanned aerial systems (C-UAS) in response to the growing drone threat in Europe and globally. APS is a leading Polish manufacturer of the SKYctrl anti-drone systems and FIELDctrl 3D MIMO radars, which are being deployed both in Poland and across many international markets, including Lithuania, where they will protect critical energy infrastructure, Ukraine, where significant numbers of Gdynia-made systems are used on the battlefield, and countries in the Middle East. Importantly, Advanced Protection Systems’ products are already fully integrated today with combat-proven kinetic effectors from reputable partners.
Frankenburg Technologies, an Estonian manufacturer of next-generation C-UAS effectors, is a pioneer in affordable, mass-producible interceptor missiles designed to neutralize drones. Their solutions offer an effective and scalable response to the rapidly increasing threat posed
by unmanned aerial systems, particularly in the context of the Russia-Ukraine war.
The collaboration between the two companies will include:
Integration of Frankenburg’s missile systems with APS’s radar and counter-drone platforms,
Planning, preparation, and execution of joint C-UAS system tests.
Exchange of technical knowledge.
Joint implementation of projects funded by national and international sources.
Joint participation in public demonstrations, conferences, and industry events.
Joint offering of integrated C-UAS solutions across NATO and allied markets.

“Modern threats from new-generation unmanned aerial systems, as well as their mass deployment in military conflicts, require C-UAS manufacturers to develop an increasing number of kinetic effectors whose cost does not significantly exceed that of the attacking systems. For this reason, we intend to integrate into our systems a cost-effective kinetic effector that Frankenburg is now introducing to the market. Partnering with APS, whose radars and SKYctrl systems are already proven in combat, enables us to further demonstrate Frankenburg’s interceptor missiles as part of complete, layered counter-drone solutions for NATO allies. Our missiles are designed from the ground
up to defeat drones — fast, lightweight, solid rocket-fuelled, and engineered for mass production to keep intercept costs low. Together, we are taking a step toward building a European shield against drone threats, rooted in close cooperation between innovative NATO defence companies” said Kusti Salm, CEO of Frankenburg Technologies.This agreement marks another step toward building a European integrated air defense system against drone threats — founded on close cooperation between the defense industry and innovative technologies from NATO member states.

 

02 Sep 25.  HENSOLDT will present its latest technological advancements at DSEI 2025. One of HENSOLDT’s core competencies is the active and passive detection of threats and the protection of platforms and their users. In this context, software-defined defence plays a crucial role. The TRML-4D air defence radar will be on exhibit at DSEI. It is based on the latest AESA (Active Electronically Scanned Array) radar technology and ensures the rapid detection and tracking of around 1,500 targets within a radius of up to 250 kilometres. It is capable of quickly and reliably detecting and tracking all types of air targets – cruise missiles, rockets, drones and aircraft – and classifying them for engagement. The SPEXER radar family will also be on show. It offers high-performance surveillance radars for various ranges for automatic detection and classification of ground, sea and low-flying air targets.

In the land domain, HENSOLDT will showcase its advanced solutions for armoured vehicles with the “Multi Utility Vehicle” (MUV), including innovative optronic systems such as MUSS (Multifunctional Self-Defence System) and SETAS (See Through Armour System). The solution Ceretron by HENSOLDT combines sensors, fuses their data streams, evaluates and processes them in seconds and provides an AI-supported operational picture to the crew, thus enabling them to make smarter decisions even faster.
The key to successful military operations lies in accurate reconnaissance, effective targeting, and precise engagement. For this, HENSOLDT presents TAROSS; its Target Acquisition & Reconnaissance Optronical Sighting System. With its modern hardware and software architecture, TAROSS is giving a glimpse into the future of connectivity and software-defined defence by supporting our troops in the sensor-to-shooter cycle. TAROSS is a modular, scalable solution, that is designed for use on remote-controlled weapons stations, medium calibre turrets, light reconnaissance vehicles, and UGVs. In addition to its high-performance optical sensors and its AI-supported software for detection and tracking, it offers a direct interface to Ceretron and can be easily integrated into existing and upcoming vehicle and weapon systems.
In addition, the Persistent German Airborne Surveillance System (PEGASUS) will be on display. HENSOLDT was awarded the contract to supply an airborne system for electronic signals intelligence on board of three Bombardier jets based on its “Kalætron Integral” system, which collects and analyses signals from radar and radio systems. Led by HENSOLDT for the German armed forces, the SIGINT system will be integrated on the Bombardier Global 6000 aircraft, the optimal platform to complete these critical missions. Visit HENSOLDT at DSEI 2025: Stand S8-230

 

02 Sep 25. Distance Technologies™ – the leading developer of glasses-free Mixed Reality enhanced with contextual AI and designed for integration into the eyeline of state-of-the-art defence vehicles – today announced the latest in a slew of recent design wins in 2025 with acclaimed British manufacturer Supacat Ltd (Dunkeswell, Devon, England), a part of the SC Group.  Specifically, Distance is integrating its unique JetFighter HUD™ XR visualization technology directly into the drivers line-of-sight of the renowned Supacat High Mobility Transporter (HMT) ground platform. This finally enables an aerospace-grade HUD (Heads Up Display) running on four wheels. The strategic collaboration between Distance and Supacat brings next-generation situational awareness of the vehicle and the battlefield to the HMT for the first time, integrating directly with the driver’s field of view. This achieves a specific goal of driver/crew safety under adverse battlefield and training conditions.  The enhanced driver vision functionality is seen directly through the windshield, with no goggles or eyepieces required. Hyper-spectral sensor fusion enables the windshield to display not only the visible light spectrum, but also the infrared and thermal wavelengths. This enables easy detection of thermal signatures in front of the vehicle to achieve superior crew safety and survivability, extending protection and situational awareness to dismounted soldiers. The system works both day and night, compatible with night vision goggles and without creating dangerous light emissions.

The combination of Distance, Supacat (also integrating the Ultra PCS Generic Vehicle Architecture (GVA) system UltraEAK) grants land drivers the same tactical superiority that jet pilots have enjoyed for decades.
By eliminating distractions in combat and removing the need to look at secondary displays, eyes stay on-road and on-mission. This next-generation HUD visualization solution brings a new way to enable rapid, heads-up access to critical data without compromising driver/operator situational awareness. A demonstration of the world-first integration of Distance with Supacat’s HMT will be showcased at DSEI UK 2025 in London from 9-12 September. A high-brightness heads-up display will present inclinometer, vehicle, thermal sensor and C2 data in the most natural place for the driver – right in front of their own eyes. The data feed will be sourced in real-time from Ultra PCS’ GVA systems – all of this will be available for live demonstrations at DSEI.
“As soon as Supacat was introduced to the advanced Heads-Up Displays (HUDs) created by Distance Technologies there was clear utility for our end users,” said Phil Applegarth, Director, Head of Supacat. “This innovative technical breakthrough enables HMT customers to take advantage of an entirely new class of advanced Heads-Up Displays (HUDs). The see-through windshield HUD system provides immersive perception enhancement for mobility, navigation and targeting of enemy assets in low-light as well as complex situational environments, such as smoke-filled battlefields and tactical night reconnaissance. This enables us to offer our platform operators the ability to remain focused without the fatigue experienced when using Night Vision Devices. For DSEi, the platform demonstrates the versatility of the HUD with a visual inclinometer to ensure the operator is not outmatched by the capability of the HMT combining high fidelity, depth perception and sensor fusion.”
“Continuing our accelerated development efforts in the defence market means that we have – In record time – progressed from initial concept to actually delivering the world’s first adaptation of an aerospace-grade “JetFighter HUD” in a high-mobility ground platform,” said Urho Konttori, co-founder and CEO of Distance Technologies. “We are enabling operators to access critical inclinometer and mission data directly in their line of sight — enhancing safety, speed of decision-making, and overall mission survivability & lethality. This achievement reflects Supacat’s visionary approach – their ability to move at the ‘speed of need’, and their commitment to embracing deep, next-generation technologies.”
About Distance Technologies:
Distance Technologies Ltd (Helsinki) is Europe’s counterpart to the new wave of defence and dual-use technology platforms focused on delivering superhuman perception. We build the world’s most advanced computational optics, AI-driven lightfield systems and visual AI for defence, automotive, and aerospace use cases.
Our technology turns periscopes, windshields, helmet mounts, or even handheld devices into a transparent mixed-reality sensor that fuses hyperspectral/multispectral data, thermal imagery, and 3D lightfields into a single infinite-depth HUD – merging mission-critical data seamlessly with the real world. The result: enhanced safety, faster situational awareness, decisive action, greater survivability and superior maneuverability in any environment. Designed to meet the highest standards of European sovereignty and operational safety, Distance delivers the perception layer that goes the distance —on the battlefield and in everyday usage alike. Learn more at https://distance.tech.

02 Sep 25. SMARTSHOOTER, a world-class designer, developer, and manufacturer of innovative fire control systems, is introducing a new configuration of its combat-proven SMASH 3000: adaptation onto a Heavy Machine Gun (HMG). The new solution will be presented for the first time at the DSEI 2025 exhibition in London.
This milestone follows SMARTSHOOTER’s successful participation in Project VANAHEIM/FLYTRAP, a UK-US collaborative effort to expedite the adoption of advanced Counter-small Unmanned Aircraft System (C-sUAS) technologies into generalist combat units, offering practical, field-based, realistic operational scenarios to assess kinetic interception.
During the latest VANAHEIM trial, SMASH fire control systems were employed in handheld, vehicle-mounted, and remotely operated configurations. Notably, the SMASH 3000 was mounted for the first time on a Heavy Machine Gun, along with the SMASH HOPPER Light Remotely Controlled Weapon Station mounted on a reconnaissance vehicle. SMARTSHOOTER successfully engaged UAS targets at ranges up to 400 meters.
SMASH systems were further evaluated for their network built-in connectivity. Fully compatible with Android Tactical Assault Kit (ATAK), SMASH demonstrated seamless integration of SMASH 3000 through an ATAK plugin with a battlefield management system (BMS), enabling the transfer of target data from the BMS to SMASH 3000 while empowering the shooter with simple yet powerful Situational Awareness (SA) capabilities for coordinated target engagement.
Michal Mor, CEO of SMARTSHOOTER, stated: “Project VANAHEIM provided a valuable opportunity to evaluate our systems in a modern complex battlefield environment for generalist combat units. The extension of the SMASH Fire Control Systems into new configurations, including HMG and vehicle-mounted configurations, reflects our continued focus on delivering adaptable, effective solutions for evolving threats. At DSEI, we are proud to present these advancements, which build on the operational experience gained with SMASH systems already in service with the UK, US, and numerous other NATO forces.”
Deployed by leading militaries worldwide, SMARTSHOOTER’s SMASH fire control systems have proven their value in diverse operational environments. Continuously developed to meet new challenges, the SMASH family furnishes dismounted and mounted combatants with enhanced precision, situational awareness, and combat effectiveness.
Visit SMARTSHOOTER at DSEI 2025, Booth #N11 – 120

 

02 Sep 25. Cambridge Aerospace to unveil Skyhammer and Starhammer at DSEI 2025. Cambridge Aerospace is set to unveil their cutting-edge flagship products, delivering powerful, cost-effective, and scalable intercept solutions that will revolutionise the way the Armed Forces dominate the skies.  Cambridge Aerospace is a fully sovereign British high-technology company which aims to eliminate the risk of missile strikes on NATO and its allies. Their products, Skyhammer, a low-cost, rapidly scalable, interceptor for cruise missiles and large drones, and Starhammer, an interceptor for higher speed and value targets, will be on display for the first time at stand S1-220.
Steven Barrett, CEO of Cambridge Aerospace, said: “I am delighted that Cambridge Aerospace will be attending its first ever DSEI this year. We have evolved rapidly since our founding in late 2024, going from conception to testing in under two months.
Both Skyhammer and Starhammer have been designed and developed in the UK to bolster our national defence capabilities and equip the Armed Forces with rapid, reliable, and cost-effective intercept solutions. At our stand we will also be able to discuss our most recent product: Nightstar, our Solid Rocket Motor with fully sovereign production and supply chains.”
Skyhammer
• This counter-uncrewed aerial system has been in testing since early 2025 and utilises Cambridge Aerospace’s proprietary information and own supply chains to bring down costs and increase long-term supply chain resilience.
• Skyhammer has a range of up to 30km and a speed of up to 700 KM/H.
• The platform is tube stored and launched allowing it to be both easily manoeuvred, while simultaneously can be positioned long term in strategically vital locations and deployed within seconds to counter any incoming threats.
Starhammer
• The next product from Cambridge Aerospace Starhammer is a high-speed interceptor to counter aerial threats from higher value targets.
• Starhammer is capable of detecting and destroying higher value and speed targets, still at a fraction of traditional price points and tube launched for ease of deployment.
Nightstar
• Fully sovereign-built solid rocket motor, strengthening the UK’s industrial capability and resilience across the UK and European defence industry.
• Providing a cost-effective solution to protracted supply chains with sovereign scale manufacturing.
About Cambridge Aerospace
Founded in late 2024, Cambridge Aerospace is a high-technology company which aims to eliminate the risk of missile strikes on NATO and its Allies. The company is creating a range of interceptors to counter the threat of cruise missiles, ballistic missiles, and hypersonic weapons. The first platform, Skyhammer, launched in early 2025 to provide a low-cost, rapidly scalable, interceptor for cruise missiles and large drones.

 

28 Aug 25. VITEC, a leader in Intelligence, Surveillance and Reconnaissance (ISR) video streaming solutions, will present its latest innovations at DSEI UK 2025, ExCel London, 9-12 September 2025. Visitors to stand S8-122 will experience the latest tactical video technologies, including the new VITEC Fx4 Series and VSN-Series video wall solutions. Also on show will be VITEC’s PRISM Transcoder, the TOUGH encoder family and the MGW Diamond-H, all designed to meet the demands of the most challenging military and defense applications.

“At DSEI, we are showcasing scalable and reliable technologies that deliver operational flexibility and reliability in ISR video streaming, from video ingest to command and control centre solutions,” says Mark Rushton, Global Defense and Security Lead at VITEC. “Our solutions ensure secure, low-latency delivery of mission-critical video in any environment, and are able to grow as needs evolve.
On show for the first time at DSEI UK is VITEC’s new Fx4 Series Video Wall Controllers, delivering mission-critical visualisation for command and control environments. Designed for maximum flexibiliy, the stand-alone 4K controllers support HDMI, DisplayPort, and SDI inputs/outputs, and can be interconnected to drive video walls of any scale. With powerful processing, ultra-high quality video performance, and intuitive configuration, the Fx4 Series enables operators to achieve clear, dynamic situational awareness in even the most demanding defence and security applications.

A further addition to VITEC’s offering DSEI UK is the VSN-Series, VITEC’s advanced, high-performance video wall control solution. Designed to accommodate a wide spectrum of video wall requirements, the VSN Series offers a contemporary, compact solution for managing multi-output video walls, featuring robust, high-density, rack-mounted controllers engineered to meet the demands of complex video wall configurations.
VITEC’s PRISM Transcoder will be present on the booth, as VITEC’s high-performance, real-time IP video transcoding system. The transcoder is capable of converting both live streams and media files into multiple broadcast-quality H.264 or HEVC outputs using pre-processing tools. It supports a wide array of streaming protocols, offers in-built redundancy and high availability, and preserves critial ISR metadata.
VITEC’s DSEI UK line-up is rounded out with the MGW Pico+ TOUGH, the smallest and most power-efficient HEVC/H.264 HD/SD encoder under 400g, delivering high-quality video at low bitrates, and the MGW Diamond TOUGH, a quad-channel HEVC/H.264 encoder with HDR support for low-latency, multi-channel streaming ideal for ISR missions. Also showcased is the compact MGW Diamond-H, a versatile 4K and dual-channel HDMI encoder for real-time ISR video streaming over RF or satellite links, offering screen sharing, advanced stream protection (Zixi, SRT, RIST, Pro-MPEG), and PoE for rapid deployment in dynamic environments. The added optionnal recording feature allows to never loose content or record mission for later analysis.
Visit VITEC at Stand S8-122 at DSEI UK 2025 to learn more. For more information on VITEC’s full product range, visit www.vitec.com

 

28 Aug 25. MilDef to Showcase Rugged Displays & Vehicle Electronics at DSEI 2025. MilDef will present its latest rugged displays and vehicle electronics at DSEI 2025 in London, Booth N7-130, highlighting NATO interoperability and scalable architectures for future battlefield digitalization. MilDef will present the next generation of systems for a digitalized, data-driven defense at DSEI 2025 in London, September 9–12, with a focus on increased efficiency and connectivity, NATO interoperability, and future-proof technology.
Among a wide range of rugged computers, servers, network products, tablets, displays, and specialized electronics for battlefield digitalization, MilDef will showcase the next generation of rugged displays and vehicle electronics based on GVA standards and video-over-Ethernet technology.
MilDef’s solutions provide real-time data sharing, enhanced crew safety, and future-proof, modular upgrades for superior operational efficiency in the harshest environments. From NVIS-compatible displays to integrated sensor systems, MilDef will highlight how connected, scalable architectures are shaping the future of military vehicles.
DSEI 2025 is expected to be the largest edition in the event’s 25-year history, bringing together approximately 1,600 exhibitors and 50,000 visitors. The exhibition will emphasize the importance of integrating the operational domains of air, land, sea, space, cyber, and electromagnetic defense capabilities.
Fredrik Persson, CTO and Vice President of MilDef Group, commented, “At DSEI, MilDef is at the forefront of helping armed forces stay connected, protected, and mission-ready. We are showcasing the latest in technology development for greater interoperability, modernization, and mission-critical support – when and where the stakes are the highest. Never before have we presented such a complete spectrum of end-to-end solutions for the data-driven defense, enabling our customers to digitalize critical information flows in challenging environments.”
Visit MilDef at Booth N7-130 during DSEI 2025, September 9–12, ExCeL Convention Center, London. (Source: https://www.defenseadvancement.com/)

 

28 Aug 25. Saab reveals new Counter-UAS missile Nimbrix. Saab has revealed Nimbrix, its first ever dedicated Counter-Unmanned Aerial System (C-UAS) missile. The missile is developed to counter the increasing threat from small drones on the battlefield.
The fire-and-forget missile is being rapidly developed at Saab with the aim to deliver a system featuring a target seeker, a hard-kill warhead, and a small footprint – all at a low cost. The range will be up to 5 km with an active seeker to track its target. Its warhead can effectively engage and defeat UAS swarms using an air-burst mode.

“Nimbrix is our answer to the unmanned aerial threats which have escalated in the last few years. It is cost-effective which is critical given the proliferation of UASs on the battlefield. Nimbrix benefits from our long experience of air defence, together with an agile way of responding to new needs,” says Stefan Öberg, head of Saab’s business unit Missile Systems.
The missile operates as a ground-based system and can be operated independently or as part of a larger air defence system. With flexible mounting options to fit different customer requirements, Nimbrix can be mounted on various vehicles or in fixed configurations. The cost-effective nature of the missile contributes to maximising deployed numbers to generate sufficient air defence coverage.
Customer discussions are ongoing and Saab aims for first deliveries in 2026. Nimbrix will be showcased during DSEI in London, UK from 9-12 September 2025, at the Saab stand, N9-105.

 

27 Aug 25. Aimpoint®, the originator of the red dot sight, proudly announces the launch of the AIMPOINT DUTY RDS MR, the company’s first sight featuring a selectable Multi-Reticle (MR) system.
Designed for users who demand adaptability without compromise, the DUTY RDS MR offers three reticle options – a 2 MOA dot, a 65 MOA circle, or both combined – in a compact and rugged platform trusted by professionals worldwide.
“With the DUTY RDS MR, we are expanding the AIMPOINT legacy by combining our proven design principles with new flexibility,” says Albert Rödfalk, senior product manager at Aimpoint AB. “It’s a robust solution built to meet the real-world needs of professionals.”
Built for law enforcement, professional users and competitive shooters, the DUTY RDS MR features instant-on motion activation, a side-loading battery compartment, and a pressure forged aluminum housing that is submersible to 25 meters (80 ft.) and engineered to endure shock, vibration, and extreme temperatures.

Key features include:
• Multi-Reticle System: Toggle between dot, circle, or both for rapid acquisition and precision aiming
• Motion Activation: Enters sleep mode after two hours of inactivity – instantly powers on with movement
• Mission-Ready Durability: Waterproof to 25 m, shock- and vibration resistant
• Daylight & Night Vision Compatible: 12 brightness settings, including 4 for NVD
• 3-Year Battery Life with setting 7. Powered by a single CR2032 battery
With this launch, AIMPOINT reinforces its position as the trusted choice for
professionals who operate where reliability and performance are nonnegotiable.

 

27 Aug 25. Blighter (www.blighter.com), a pioneering designer and manufacturer of ground-based smart electronic-scanning micro-Doppler radars, is showcasing new developments to its border surveillance and coastal security radars, and its AI-assisted BlighterNexus software at this year’s DSEI Defence and Security show. DSEI takes place at the ExCel Centre in London, September 9-12, 2025. Blighter will be on stand number N6-166.
Following a record £25m order book in the last financial year, Blighter is continuing to consolidate its leadership in border surveillance and coastal security by focusing on product innovation to support its defence customers and systems integrator partners.
James Long, CEO at Blighter, says, “It’s been a terrific year for the company having achieved a record order book and recently celebrating ten years since the spin out from our parent company, Plextek. We will continue to put our defence customers and integrators first by making it ever more straightforward and cost-effective for them to buy, deploy and integrate our radars.”

In 2025, Blighter has further strengthened the business case for its low power advanced e-scan radars with a trio of enhancements – new levels of adaptiveness to the environment in its coastal security radars, extending the range of its border surveillance radars, and using artificial intelligence (AI) to transform radar to command and control (C2) system integration.

First, the launch of the BlighterNexus AI-assisted connectivity and processing hub has drastically reduced the training and operational burden on systems integrators seeking to incorporate Blighter’s smart/cognitive ITAR-free 2D, 3D and 4D radars into their C2 systems. Estimated cost savings of up to 20 percent can be achieved by customers and integrators using the AI-assisted software to automate setup, configuration, and adjustment of multiple radars to deliver optimum performance even in changing weather conditions.
Second, Blighter’s new B422 long-range border surveillance radar has been enhanced to now detect a person at 15km with just 4 Watts of power. This extended range from 8km to 15km, without the need for additional power, means earlier interception of intruders and significant cost savings for border control operators with fewer radars needed due to the three-fold increase of the radar’s coverage.
Third, Blighter’s engineers have also been working on a government/industry coastal surveillance project. This has resulted in significant improvements to the adaptiveness of the Blighter C400 coastal security radar. Through fine tuning of the electronic scanning beam and the micro-Doppler tracking function, the radar can now automatically and dynamically adapt to the prevailing environmental conditions. This will not only make the coastal radar more effective, but it will also reduce the training and operational burden on customers.
The Blighter C400 radar will be featured on development partner Kirintec’s stand. Kirintec is owned by BAE Systems and specialises in Cyber and Electromagnetic Activities (CEMA), Counter-IED and Counter-UAS technology.

“We are looking forward to DSEI and welcoming a host of overseas delegations to our stand, showcasing new technology, discussing collaborative partnerships, and demonstrating how we are responding to the future needs of our defence partners,” says James Long.

Blighter’s ITAR-free smart radars with AI-assisted software deliver up to 360-degrees of pure electronic scanning coverage and are field proven to work 24 hours a day, 365 days a year, in all weather conditions, detecting, tracking, and identifying any human, vehicle/vessel and near ground aerial threats.

Blighter radars are trusted by the UK Ministry of Defence for forward operating base (FOB) protection, the South Korean Army for border surveillance along the Demilitarised Zone (DMZ), by the United States Air Force for drone detection, and by several Five Eyes/NATO customers for deployment on their mobile surveillance and armoured vehicles.

Blighter introduced the world’s first, non-rotating, solid-state, electronic-scanning, micro-Doppler ground radar in 2003. Today, the product portfolio covers the three domains of land, sea, and air with the B400, C400, A400 and A800 family of ground-based radars. The radars’ modular design enables the technology to be deployed on towers and vehicles, and as dismounted portable systems on tripods.
The Blighter radar’s patented, compact design and low-power electronic scanning and frequency-modulated continuous-wave (FMCW) technologies contains no moving parts. This ensures ease of installation and ultra-reliable operation with minimal maintenance even in the harshest conditions. The Blighter team will be on stand number N6-166 at this year’s DSEI Defence and Security show. For more information about Blighter’s range of electronic scanning radars, please visit www.blighter.com, telephone +44 1223 491122 or email .

 

27 Aug 25. Sentinel Photonics, a leading innovator in laser detection and protection technologies, today announces ECHO and LASERD® MAX, two new laser detection capabilities designed to expose covert threats and give operators a critical edge in laser-contested environments. Both will be shown for the first time at DSEI, Excel London, 9 – 12 September 2025, Stand N5-260.
“Laser threats are evolving fast, creating serious multi-domain risks that traditional defences can’t keep up with,” says Jackson White, Head of Commercial at Sentinel Photonics. “Our new products are built to detect those threats early and help save lives. ECHO reveals surveillance optics that others are trying to hide, quickly and safely. LASERD MAX goes beyond detection. It gives operators real-time laser intelligence they can act on to enhance their survivability .”

ECHO: Handheld retro-reflective detection for covert optics
ECHO is a rugged handheld laser detection system that exposes concealed, hostile optics, specifically magnified optics of any kind. Designed for military, law enforcement and high-security operations, ECHO can detect optics at distances of up to 3km, even under harsh environmental conditions with speed and precision.
ECHO uses advanced retro-reflection to uncover surveillance threats that conventional imaging systems miss. It operates across the wide spectrum, allowing operators to identify concealed optics without compromising their own position, giving them the edge in surveillance, counter-surveillance, VIP protection, sniper scope detection, and border operations, whilst remaining eyes safe.

ECHO at a glance:
• Handheld retro-reflective detection of optics: Gives the ability to identify advisee’s covert and low-profile optics
• Operates across a wide band: Operates in the VIS, NIR and SWIR bands
• Long-range capability: 50m to 3km detection range
• Covert and Secure: Low visibility to NV and low-light cameras
• Eye safe operation: Can be used with no or very little training whilst being completely Eye safe
• Visual intel on demand: Onboard screen, video capture, and sharing

LASERD® MAX: A new era of laser intelligence and threat detection
Sentinel also officially releases LASERD® MAX, its advanced Laser Intelligence (LasINT) system that gives operators real-time situational awareness of unknown laser threats.
Designed for high-tempo, high-threat operations, LASERD® MAX delivers persistent, autonomous laser detection up to 10km across the visible and non-visible laser spectrum. It enables users to passively map, log, and analyse laser activity in real time, even in complex or contested EW environments.
Threat types include LDEWs, rangefinders, beamriders, LIDAR, covert illuminators, and more. With a compact footprint and multiple camouflage options, LASERD® MAX is field-ready for land, sea, and air platforms.

LASERD MAX at a glance:
• Autonomous passive scanning: Real-time spectral analysis of the battlespace with auto-updating threat parameters
• Simultaneous multi-threat tracking: Parallel detection of military-grade and commercial laser sources across wide-area coverage, with a 10km-range
• High-fidelity capture engine: Captures transient, low-signature laser events using class-leading photodetectors with high pulse sensitivity (10pJcm²)
• LasINT data architecture: Builds a bespoke laser threat library to inform strategic and tactical responses and integrates seamlessly with C4ISR ecosystems
• Remote and standalone deployment: Fully networkable via secure protocols or operable independently in the field.
ECHO is available now.
LASERD MAX available now.
ECHO and LASERD MAX will be demonstrated for the first time at DSEI, Excel London, 9 – 12 September 2025, Stand N5-260. For more information visit www.sentinelphotonics.co.uk.

 

21 Aug 25. G&H Brings AI Vision & Laser Threat Detection to DSEI 2025.
G&H Brings AI Vision & Laser Threat Detection to DSEI 2025
September 2025 – London, UK.
G&H (LON:GHH), Gooch & Housego, a global leader in optics and photonics technology, will present its broadened defence solutions portfolio at DSEI 2025.
Since the last DSEI, G&H has strengthened its position in the defence and aerospace sectors through the strategic acquisitions of UK-based Phoenix Optical Technologies and US-based Global Photonics. This expansion increases G&H’s high-precision optics manufacturing capacity and coating capabilities, enabling the delivery of more complex, integrated solutions for mission-critical applications worldwide.

Featured Technologies at DSEI 2025

Embedded Image Periscope (EIP) with Overview Ltd PodView™ 2500
The latest G&H EIP integrates an FHD electronic display with custom relaxed-view biocular optics, enabling operators to seamlessly switch between direct optical and indirect display views – all in an optimised size, weight, and power (SWaP) package with ergonomic controls.
Paired with the PodView 2500 – a rugged, AI-enabled, 360° continuous pan/tilt vision system featuring a 30× zoom low-light HD camera, high-sensitivity LWIR thermal imager, and NVIDIA Jetson Xavier AGX real-time analytics – the suite delivers unmatched day/night situational awareness for armoured fighting vehicles (AFVs).

G&H Periscope with Sentinel Embedded Laser Detection
In collaboration with Sentinel Photonics, G&H has integrated Sentinel’s proprietary laser detection technology into vehicle periscopes. The Sentinel-equipped periscope incorporates light-sensing elements and advanced signal processing to provide rapid alerts to laser radiation used in military environments – helping crews detect threats such as laser rangefinders, designators, and dazzlers.
The compact, efficient design requires only a standard vehicle voltage power feed and operates at an exceptionally low power level of just 2 watts. Suitable for both new and legacy vehicles, it installs with minimal modifications to the vehicle interface. For enhanced protection, the system can be integrated with other onboard systems to trigger countermeasures or weapon systems. Almost all existing and new periscopes from G&H | Kent can be supplied with integrated Sentinel laser detection, preserving the original periscope space envelope and requiring no changes beyond the power feed connection.

FROST Laser Protection Filters for Riflescopes
In partnership with Sentinel Photonics, G&H | Artemis have developed these innovative optical filters to protect operators from increasingly prevalent battlefield laser threats – from spotters and rangefinders to illuminators and countermeasure systems – without compromising visual clarity or tactical advantage. Mounted on riflescope objective lenses, they prevent laser dazzling or blinding, ensuring optical performance even in laser-intensive environments. Built to military-grade standards, they are rugged, durable, and compatible with a wide range of riflescope models.

Precision Microlithographic Reticles (NEW G&H capability)
The acquisition of Global Photonics brings G&H a new, high-precision reticle manufacturing capability. These microlithographic reticles are fabricated to tolerances as tight as ±0.002 mm in cleanroom environments to eliminate dust artifacts and preserve image clarity. Designed to sit at the eyepiece’s focal plane without altering focal length or introducing distortion, they can be produced in etched, metallic line, or custom patterns. Advanced coating options – including anti-reflective, waterproof, oleophobic, and anti-glare – further enhance performance and can be tailored to meet exact mission requirements.

Comprehensive Defence Optics Portfolio

In addition to the components and systems named above, G&H will display a wide range of mission-ready optics, including:
• AFV periscopes and sighting systems
• Optical coatings and filters for laser protection
• Precision optics for avionics and Laser Directed Energy Weapons (LDEW)
• Lens assemblies for Intelligence, Surveillance, and Reconnaissance (ISR) systems

Commitment to the Defence Community

“DSEI is the ideal platform to demonstrate how G&H’s expanded capabilities and strategic partnerships enable us to deliver complete optical solutions that meet the evolving demands of modern defence,” said Jamie Pindard, Executive Vice President of Optical Systems at G&H. “From advanced vehicle vision systems to innovative laser protection and precision targeting technologies, our solutions are designed to protect personnel, enhance situational awareness, and ensure mission success.”
To learn more, visit G&H at DSEI 2025, Hall N4, Booth #240, or request to schedule a meeting with one of our optical experts. (Source: Google/https://optics.org/)

 

12 Aug 25. Dedrone by Axon Takes Flight in Project VANAHEIM. Battlefield innovation is taking place at unprecedented speed. Military and government leaders recognise they must act quickly to counter new, unprecedented threats. For these reasons, it has become impossible to test solutions in a lab or to spend months on costly RFPs or product iterations. The pace of modern military innovation requires counter-drone technologies to be demonstrated in the field — under pressure, in real conditions, with no room for error.
It is this awareness that gave Project VANAHEIM its start. A joint initiative between the British and US Army, VANAHEIM is a rapid procurement program designed to put promising Counter Uncrewed Aircraft Systems (C-UAS) technologies through their paces in real-world operational environments. The project’s Request for Information drew significant interest from the counter-drone community, and Dedrone by Axon was amongst a few invited to prove our tech in the field.

The purpose of Project VANAHEIM

VANAHEIM’s mission is clear: to evaluate how well different systems can detect, track, identify, and defeat Class 1 UAS threats, including FPV drones, in the kind of challenging conditions soldiers actually face. This isn’t “best case scenario”environment testing. This requires proving capabilities under extreme heat, heavy storms, rough terrain or any other challenge commonly encountered on the battlefield.
In June 2025, Dedrone by Axon joined VANAHEIM 3.0 in Germany with our Dedrone OnTheMove (OTM) system, a passive, vehicle-mounted RF solution.
When the dust settled, DedroneOTM was the only vehicle-mounted RF system to detect all known drone threats in the event. That result didn’t just speak to our detection accuracy, it showed how our platform-agnostic, open-architecture approach integrates seamlessly with both TAK and SAPIENT systems, giving operators on both sides of the Atlantic real-time situational awareness and enabling faster, more coordinated responses across joint operations.
By aligning with standards like SAPIENT, Dedrone is helping lay the foundation for multinational C-UAS collaboration at scale. As SAPIENT continues its ratification process within NATO, it opens the door for other NATO member nations to access and act on Dedrone’s DTI (detect, track, identify) data in real time. Built to scale across coalition partners, DedroneOTM offers a common operational picture and faster threat response across the alliance.

Poland: Raising the Stakes

Our showing in Germany resulted in an invite to VANAHEIM 4.0 in Poland, where we had the opportunity to prove our technology in tougher environments, with higher temperatures, sudden storms, and even more demanding terrain.
Through it all, DedroneOTM hardware and software never faltered. No performance loss. No downtime. Just continuous detection and tracking, giving soldiers an operational edge they could count on.
Project VANAHEIM offers a glimpse into the future of collaborative defence innovation. By bringing together the UK, US, and other partners in a shared testing environment, it accelerates how quickly effective solutions get into the hands of those who need them most and it allows us to demonstrate that our technology isn’t just cutting-edge, it’s combat-ready.

Learn more at DSEI 2025

Come see DedroneOTM in action September 9-12 at DSEI 2025 in London, mounted on vehicles like the Thales Bushmaster, Supacat HMT, and Polaris MRZR. Dedrone also offers a range of additional C-UAS solutions, including FixedSite, Portable, and Tactical systems, as well as the DedroneDefender, a new handheld smart RF jammer. We work closely with our defence partners to support the procurement and deployment of scalable C-UAS solutions.
To schedule a meeting during DSEI, or learn more about our C-UAS solutions, contact our team today.

 

28 Aug 25. Visit N-Vision Optics at DSEI to get hands-on with our newest products, including the latest additions to our night vision and thermal imaging lineup. Our products are designed to meet the evolving needs of today’s special operations forces—engineered, built, and tested in the USA. Visit us at the US Pavilion, Booth S5-175 to see the latest innovations in person and speak directly with our team.
NEW PRODUCTS
THERMAL CLIP-ON WEAPON SIGHT
The true novelty of the N-Vision Optics THERMAL CLIP-ON Family of Weapon Sights comes from a combination of the extremely high display resolution (2K), sub 4µm display pixel pitch, integration of ballistic calculator, and disturbed reticle. This combination allows the use of the N-Vision Optics thermal clip-on and its advanced ballistic calculator features with long-range high-magnification day sights. The ballistics-related information is clearly visible to the user, even at the highest day-optics magnification settings. The ballistic calculator can exchange information with external LRF and a variety of weather meters using Applied Ballistics (Kestrel) and Ballistic Edition Garmin devices.
BNVD-40 NIGHT VISION BINOCULAR
The N-Vision Optics BNVD-40 is a rugged, lightweight, high-performance night vision system designed for military, law enforcement, and civilian applications. Engineered for versatility and durability, the BNVD-40 delivers advanced imaging capabilities in a compact, ergonomic design. It features adjustable diopters and manual gain control, allowing users to tailor image clarity and brightness to mission-specific needs in varying environments. The binoculars incorporate individually articulating monoculars, providing flexibility for low-profile helmet stowage or single-eye monocular use, enhancing adaptability in dynamic situations. An integrated infrared illuminator ensures effective vision in complete darkness without the need for external light sources. Additionally, interpupillary distance (IPD) adjustable stops allow users to lock the monoculars in place consistently for ease of use and quick deployment.
STAND S5-175

 

06 Aug 25. EOS secures order for High Energy Laser Weapon System for counter-drone warfare. Electro Optic Systems Holdings Limited (“EOS”) (ASX: EOS) has secured an order for a drone defence capability using a new 100kW high energy laser technology. EOS is already a global leader in counter-drone capability using traditional kinetic weapons to bring down drones. The new high energy laser builds on these core competencies and substantially extends them.
The order is valued at €71.4 m (approximately A$125 m) and was placed by a European NATO Member State. It requires production and delivery of capability, as well as spare parts, training andocumentation. The world-first export order will be fulfilled during 2025-2028 by EOS in Singapore. The laser system has undergone testing in close collaboration with customers. The system is mobile, for deployment on a truck. To ensure high performance, the system is supplied with algorithms, threat detection, target acquisition and beam locking systems. The system will be integrated into a multi-layered air defence system as part of the project.
EOS has created this new high energy laser capability to address the critical market need to defend against drone swarm attacks at an economical cost.
Dr Andreas Schwer, Chief Executive Officer at EOS, said: “In a world of geopolitical uncertainty and ongoing regional tensions, the ability to swiftly and accurately detect, track and defeat drones is paramount. This is the world’s first export order for a 100-kilowatt class laser defence system. The order follows extensive and ongoing marketing, sales and customer demonstration activity by the EOS team. Our new world-leading laser weapon system has the ability to engage targets instantly. The laser hits the target at the speed of light, unlike a bullet which can take a second or two to get there. The system is very accurate and has a very low cost-per-shot – less than 10 cents per shot. The high power level of this system means it can shoot down more drones faster. The system has been designed to shoot down 20 drones per minute.”
The EOS team will be at the DSEI 2025 Defence Exhibition & Trade Show at ExCeL London, from 9-12 September. Our experts will be available to discuss our new high energy laser capability and how layered counter-drone solutions, with multiple types of weapon, are essential to counter rapidly evolving battlefield threats.

 

08 Aug 25. Wallwork Group Showcases Advanced Thermal Processing Capabilities for Defence at DSEI 2025 – Stand S2-165. Wallwork Group, one of Europe’s largest and most advanced thermal processing companies, will be exhibiting at DSEI 2025 (Defence and Security Equipment International) on Stand S2-165, bringing their full spectrum of extensive services to the global defence and security audience.  With over 66 years of experience in heat treatment innovation, Wallwork is the one-stop-shop for aerospace and defence manufacturers seeking high-performance thermal processes. Across four strategically located UK sites, the company offers heat treatment, hot isostatic pressing (HIP), vacuum brazing, and precision-applied ultra-hard coatings. These are critical in enhancing the strength, performance and longevity of mission-critical components. Hot Isostatic Pressing will be the highlight of the stand. Due to demand from customers across Europe and beyond, the company brought forward a £10m investment in a second Quintus Technologies hot isostatic press. Making £20m invested since 2023 in HIP alone. The company has also expanded other core services across the group. The additional HIP will be operational soon and provides greater capacity and flexibility in component loading.
Fully ITAR compliant and holding Nadcap, EN9100, and multiple aerospace prime approvals, Wallwork is a trusted partner to global defence OEMs and tier suppliers. Their rigorous quality systems and technical excellence ensure compliance with the most demanding defence standards. Wallwork treats components used in programmes across all military spheres – air force, land army and naval applications – supporting everything from engines to structural parts and specialist discrete components.
“We understand the precision and reliability our defence clients demand,” explains, group sales manager, Howard Maher. “DSEI gives us a unique platform to engage directly with defence programme managers, engineers and procurement teams looking for a 100 percent UK-based capability with international reach, longevity and vast cross-industry experience.”
Visitors to Stand S2-165 will have the chance to speak with Wallwork’s technical expert team, explore case studies, and learn how their thermal processing technologies are helping shape the next generation of defence systems. With continual investment in new facilities, equipment and technical expertise, Wallwork remains at the forefront of materials engineering for defence and aerospace innovation.
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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.
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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

August 29, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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28 Aug 25. Hegseth Calls for Anti-Drone Task Force. Defense Secretary Pete Hegseth announced today that he has directed Army Secretary Daniel P. Driscoll to formally establish a joint, interagency task force to counter hostile unmanned aerial systems, commonly referred to as drones.

“Our job here at the Pentagon — when you think about it — is to prepare for the threats of the future and build a force to match them, and defeat them, and outpace them,” Hegseth said via a video message released to the public.

“And there’s no doubt that the threats we face today from hostile drones grow by the day,” he added.

Noting that hostile UASs are being operated overseas and at our borders while seeking to harm U.S. warfighters, bases and even the sovereignty of the national airspace, Hegseth said the new task force — Joint Interagency Task Force 401 — will be a unified team that will seek to bring together the best talent from multiple government agencies to counter UAS threats and restore control of the skies.

“It’s called counter-UAS — counter-unmanned aerial systems — and America will be the best at it,” Hegseth said.

Although the secretary did not comment on the estimated length of time before the task force will be operational, he did say the Pentagon is currently moving quickly to cut through bureaucracy and consolidate resources, so as to empower it with “the utmost authority to outpace our adversaries.”

He added that DOD is working to deliver real solutions and ensure American airspace remains secure at home, abroad and anywhere troops are stationed.

“They deserve to be defended by the best,” Hegseth said.

He added that the new task force will put the right tools in the hands of warfighters so they can defend the sovereignty of American airspace and “send a clear message” that the United States will “never be outmatched.”

“Because, make no mistake, under this administration — and President Trump’s leadership — we’re going to out-innovate, we’re going to lead and we will win,” Hegseth concluded.  (Source: U.S. DoD)

 

26 Aug 25. Teledyne FLIR OEM Announces Japanese Drone Manufacturer ACSL as New Thermal by FLIR.

Collaborator

Collaboration Launches with ACSL’s Dual Thermal Payload, SAMO, Designed for NDAA-Compliant SOTEN

Drone. Teledyne FLIR OEM, part of Teledyne Technologies Incorporated (NYSE: TDY) and the global leader in enabling thermal imaging innovation, today announced ACSL, Japan’s leading drone manufacturer, as the newest collaborator in the Thermal by FLIR® program. This initiative supports the integration of Teledyne FLIR OEM thermal camera modules and provides go-to-market support for the resulting cutting-edge products.

ACSL’s SAMO thermal payload features the NDAA-compliant and International Traffic in Arms (ITAR)-free Hadron™ 640R dual thermal-visible camera module, which combines a 64MP visible camera with the 640×512 Boson® radiometric thermal camera module. As part of the collaboration, SAMO will also incorporate FLIR’s patented MSX® Multi-Spectral Dynamic Imaging technology, which embosses visual data to deliver enhanced, detail-rich thermal imagery in real time.

“Collaborating with Teledyne FLIR OEM is a natural and significant step for ACSL,” said Cynthia Huang, CEO of ACSL Inc. “As the U.S. drone landscape evolves, our commitment remains focused on delivering field-ready UAS solutions. The SAMO payload brings advanced, proven imaging capabilities to drone operators nationwide. Paired with our new TAITEN smart controller and upgraded SOTEN platform, operators will be empowered to work smarter, faster, and with greater confidence.”

ACSL’s flagship SOTEN drone is purpose-built for public safety, disaster response, inspection, and surveying applications. Designed and manufactured in Japan, SOTEN is a foldable, NDAA-compliant drone that meets stringent security and performance standards, including ISO15408 certification. Engineered for demanding missions, it features an IP43 weather-resistant design, a 25-minute flight time, and a one-touch swappable payload system for rapid imaging transitions. Lightweight and intuitive to operate, the SOTEN delivers secure and efficient aerial capabilities even in the most challenging environments.

“With growing concerns around drone security, ACSL offers a robust NDAA-compliant solution with versatile payload options tailored to mission needs,” said Mike Walters, vice president, product development,

Teledyne FLIR OEM. “ACSL’s rapid innovation is impressive, and we’re excited to continue working together to deliver secure, high-performance drone solutions to the U.S. public safety and industrial markets.”

The Thermal by FLIR program is a collaborative product development and marketing initiative designed to support original equipment manufacturers (OEMs). For more information, visit www.oem.flir.com/learn/thermal-by-flir-program.

To learn more about ACSL’s SOTEN drone and SAMO payload, visit the ACSL www.acsl-usa.com/product. See the SOTEN drone and SAMO payload in person at ACSL’s booth #917 during the Commercial UAV

Expo, September 2–4, 2025, in Las Vegas, Nevada

About Teledyne FLIR

Teledyne FLIR, a Teledyne Technologies company, is a world leader in intelligent sensing solutions for defense and industrial applications, with approximately 4,000 employees worldwide. Founded in 1978, the company creates advanced technologies to help professionals make better, faster decisions that save lives and livelihoods. For more information, please visit www.teledyneflir.com or follow @flir.

 

28 Aug 25.  D-Fend Solutions Introduces AI-Enhanced Multilayered C-UAS System. D-Fend Solutions has released an AI-enhanced, multilayered counter-drone defense system, EnforceAir PLUS, integrating RF-cyber technology, automated radar detection, and optional RF jamming to enhance the safety and accuracy of defense missions. D-Fend Solutions has launched EnforceAir PLUS, an AI-enhanced, cyber-driven counter-drone defense system that combines RF-cyber detection, radar detection, and optional jamming mitigation. EnforceAir PLUS leverages these technologies to provide advanced detection and mitigation, offering superior protection and safety. The system integrates counter-unmanned aerial system (C-UAS) technologies into a compact platform, delivering scalable air defense against current and emerging drone threats. The system’s “SmartAir” technology fusion engine combines cyber and radar data to deliver unified situational awareness, offering a clear and simplified view of each target drone. This enables more informed, tailored mitigation actions based on real-time insights and artificial intelligence.

EnforceAir PLUS has a compact multi-panel solid-state radar, such as those from providers like Echodyne. Its optimized radar detection extends threat coverage beyond cyber measures and minimizes false positives, enhancing airspace accuracy. The Smart RF-Effector jamming capability in EnforceAir PLUS provides a software-defined RF defensive layer, offering an escalating mitigation option beyond cyber. This is adaptable to frequencies encountered in the field. D-Fend Solutions’ system is developed for rapid deployment, with EnforceAir PLUS providing out-of-the-box integration and automated calibration for simplified set-up and use. The straightforward user interface offers a unified view of targets across multiple sensor types, improving airspace management and supporting mission-critical decision-making.

EnforceAir PLUS enables users to quickly respond to drone incidents with a more comprehensive range of options, again because cyber, radar, and jamming functions are fully integrated and calibrated.

Yaniv Benbenisti, President and Chief Product Officer of D-Fend Solutions, stated, “EnforceAir PLUS is the industry’s first cyber-driven, multi-layered C-UAS system, combining RF cyber-takeover, radar detection, and optional RF jamming for a versatile and escalating layered defense.

“RF cyber technology is the gold standard for precise drone mitigation, offering zero false alarms and highly accurate detection, tracking, and identification. EnforceAir PLUS takes this to the next level by integrating radar and optional jamming for a flexible, multi-layered, escalating defense. Avoiding the complexity often characteristic of multi-layer C-UAS systems, EnforceAir PLUS maintains the intuitive set-up and streamlined workflow that our users value, ensuring operational confidence with minimal training. By uniting these advanced technologies in a single, unified, easy-to-use system, we empower our customers to safeguard sensitive airspace with maximum effectiveness and efficiency.”

D-Fend Solutions’ C-UAS system also provides comprehensive airspace awareness, with an automated mitigation suggestion engine activated for each detected drone. Based on the company’s EnforceAir 2 C-UAS system, existing users have a seamless upgrade path and can add all new capabilities featured in EnforceAir PLUS. (Source: https://www.defenseadvancement.com/)

 

28 Aug 25. ULTRIS X20 Plus Hyperspectral Camera for UAV Imaging in Mission-Critical Applications. Cubert outlines the ULTRIS X20 Plus hyperspectral camera for high-resolution UAV-based imaging using dual sensor technology, global shutter, and UXG Gimbal enabling both real-time precise and efficient aerial data capture and analysisHyperspectral Cameras     Cubert discusses the ULTRIS X20 Plus high-resolution hyperspectral camera, aiding situational awareness and decision-making in mission-critical military and government applications. The ULTRIS X20 Plus incorporates innovative imaging features to provide real-time intelligence. This includes Light Field Dual-Sensor technology and a Global Shutter for distortion-free captures. The system also provides a 12-bit data depth for high information density and maintains consistent 10 nm FWHM across all spectral bands. The hyperspectral camera’s integrated dual sensor technology consists of 164 spectral bands (350-1000 nm) for detailed material analysis, panchromatic imaging at 1886 × 1886 pixels for high-definition clarity, pansharpening technology to merge spatial and spectral data. These architectures deliver hyperspectral data with previously unattainable high spatial resolution and precision, achieving 1.5 cm per pixel from only 40 meters above a field. Cubert’s ULTRIS X20 Plus has a lightweight design, weighing only 630 grams. This makes it highly compatible with professional UAV platforms such as the DJI Matrice M300/350 RTK. The UXG Gimbal, equipped with an integrated Windows mini-PC and direct DJI Skyport interface, is a key component of this camera. These integrations mean each image capture is automatically tagged with RTK GPS data, ensuring real-time precision and efficiency. The advanced camera solution by Cubert is designed for streamlined data handling and insight generation. It integrates directly with leading GIS and mapping software, and supports ENVI and TIFF exports with complete metadata. Each capture contains 24.5 m spectral data points, and file sizes remain under 55 MB, enabling efficient processing and fast turnaround from flight to analysis. (Source: https://www.defenseadvancement.com/)

 

28 Aug 25. Maintaining Resolution in Next Generation MWIR & LWIR Systems. MKS Ophir explores how shrinking pixel pitch in MWIR and LWIR detectors drives new demands on infrared optics to maintain imaging performance. Electro-Optical Infrared (EOIR) Systems MKS Ophir is addressing the challenges of next-generation MWIR and LWIR imaging systems as detector pixel sizes continue to shrink.  With pixel pitch reduced from 17 µm to as small as 5 µm, imaging platforms can now be made more compact, lightweight, and cost-efficient. However, this shift requires more advanced optics, designed specifically to match the characteristics of smaller detectors, in order to preserve image quality and resolution. While smaller focal plane arrays (FPAs) offer benefits such as reduced cooling power, shorter optical paths, and better integration into SWaP-C-constrained systems, they also bring new challenges. Reduced pixel area lowers photon collection and signal-to-noise ratio, while tighter optical tolerances demand lenses with higher modulation transfer function (MTF) at increased spatial frequencies. Simply reusing optics designed for larger detectors results in performance losses, making specialized optical design and manufacturing essential. Through its Ophir Infrared Optics product line, MKS provides tailored solutions that maintain performance when working with small pixel pitch detectors. The company’s vertically integrated design, fabrication, and assembly capabilities enable optics that meet exacting tolerances for alignment, wavefront precision, and environmental durability. Recent developments include the SupIR 10–135mm f/1.8 continuous zoom MWIR lens, optimized for cooled SXGA detectors with 5 µm pixel pitch, delivering near-diffraction-limited performance for long-range detection. The move to smaller pixels promises higher performance and better SWaP-C optimization, but only when matched with optics designed for the task. To explore the technical considerations in detail and learn how MKS Ophir is enabling system developers to fully realize the potential of new infrared detectors, read the full article on MKS Ophir’s website. https://www.ophiropt.com/en/s/shrinking_pixels?utm_source=Defense%20Advancement&utm_medium=referral&utm_campaign=Subscription (Source: https://www.defenseadvancement.com/)

 

27 Aug 25. US Army bids adieu to ISR Task Force, stands up Strategy and Transformation Directorate.

“This institutionalizes this role of transformation that we’ve been doing in the ISR Task Force, makes it more permanent, and also combines it with the important role of strategy and strategy formulation for the Army Intel Corps,” said Director for the Strategy & Transformation Office Andrew Evans.

The Army is standing up the Directorate for Strategy and Transformation inside its intelligence shop as part of a larger shake up that involves dissolving the ISR Task Force, according to a senior official helping lead the charge.

“This institutionalizes this role of transformation that we’ve been doing in the ISR Task Force, makes it more permanent, and also combines it with the important role of strategy and strategy formulation for the Army Intel Corps,” said Andrew Evans, who headed up the former task force before being tapped as the new director for the Strategy & Transformation Office inside the Deputy Chief of Staff for Intelligence shop (G-2).

Stood up during the first Trump administration, the ISR Task Force was charged with modernizing the service’s airborne ISR fleet at a time when the larger department focus was pivoting from terrorism towards large-scale contingency planning in the Indo-Pacific. The task force’s work included shepherding in several high-profile, Greek mythology-themed development and acquisition programs like the Athena-Sensor, centered around two converted Global 6500s, another pair of converted Global 6500s dubbed the Athena-Radar initiative, and the High Accuracy Detection and Exploitation System (HADES).

“We [also] expanded beyond sensing, and looked at what it meant to modernize training in new ways and make it more accessible for soldiers,” Evans told Breaking Defense on Friday. “We did a lot with pilots … and a lot of coordination with units.

“What we discovered along the way is that transformation is not a one and done thing,” he added. “You don’t transform to achieve some end state and say, ‘I’m done transforming’ in the world where threats continuously change, you also must continuously transform.”

Evans has worked to sunset that office, but its work will now be carried out by a transformation division inside the G-2. And above that new division is now the Directorate for Strategy and Transformation, with Evans at the helm.

“I have executive oversight of that as one division, but also strategy engagements and the performance acceleration and business transformation,” he explained.

“We haven’t fully settled on what this [S&T directorate] will look like,” Evans added.  “It’ll be a combination of military, civilians and contracted workforce. And the exact numbers are still being discussed … but it will be a lean team.”

The goal, for that directorate, is to reach initial operating capability by mid-October before hitting full operational capability within a year. Ultimately, Evans explained, his directorate will focus on developing an assessment capability for programs, ensuring that investments are returning the right value for the Army’s intel community, and getting prototypes into soldiers’ hands at a fast clip. (Source: Defense News Early Bird/Breaking Defense.com)

 

28 Aug 25. Saab reveals new Counter-UAS missile Nimbrix. Saab has revealed Nimbrix, its first ever dedicated Counter-Unmanned Aerial System (C-UAS) missile. The missile is developed to counter the increasing threat from small drones on the battlefield. The fire-and-forget missile is being rapidly developed at Saab with the aim to deliver a system featuring a target seeker, a hard-kill warhead, and a small footprint – all at a low cost. The range will be up to 5 km with an active seeker to track its target. Its warhead can effectively engage and defeat UAS swarms using an air-burst mode.

“Nimbrix is our answer to the unmanned aerial threats which have escalated in the last few years. It is cost-effective which is critical given the proliferation of UASs on the battlefield. Nimbrix benefits from our long experience of air defence, together with an agile way of responding to new needs,” says Stefan Öberg, head of Saab’s business unit Missile Systems.

The missile operates as a ground-based system and can be operated independently or as part of a larger air defence system. With flexible mounting options to fit different customer requirements, Nimbrix can be mounted on various vehicles or in fixed configurations. The cost-effective nature of the missile contributes to maximising deployed numbers to generate sufficient air defence coverage. Customer discussions are ongoing and Saab aims for first deliveries in 2026. Nimbrix will be showcased during DSEI in London, UK from 9-12 September 2025, at the Saab stand, N9-105.

 

27 Aug 25. Paratroopers Make History With Army’s First Drone-on-Drone Strike. For Army 1st Lt. Francesco La Torre, the Army’s first drone-on-drone strike wasn’t exactly a Hollywood moment.

“In [the Star Wars movie], ‘A New Hope,’ Luke Skywalker flies an X-Wing through the Death Star trench and blows it up,” La Torre said. “This wasn’t like that. It was way harder. Honestly, it felt more like Darth Vader shooting down rebel pilots. He might be the villain, but he’s also one of the best pilots in the galaxy.”

That was the image in La Torre’s mind as his team with the 173rd Airborne Brigade achieved a milestone once unimaginable for conventional Army units: destroying an aircraft in flight using a first-person-view drone carrying an explosive charge.  The strike took place earlier this month during the Army’s Unmanned Aerial Systems and Launched Effects Summit, held Aug. 11-15 at Fort Rucker, Alabama. The live-fire event was led by the brigade’s bayonet innovation team in partnership with the Pennsylvania Army National Guard and engineers from Army Combat Capabilities Development Command.

“When I heard [Army] Chief [Warrant Officer 2] Nate Shea say, ‘Arming,’ when he was lined up behind the fixed wing threat UAS, I knew he’d take it down,” La Torre said. “A few seconds later he detonated the claymore [mine], and I looked up from my end-user device to see the fixed-wing [aircraft] drop out of the sky.”

The success came after weeks of training. Paratroopers flew for hours each day, building muscle memory while rehearsing how to engage a fast-moving aircraft. Army Chief Warrant Officer 2 Andrew Topits familiarized himself with the fixed-wing platform a month in advance, while Shea practiced with inactive claymores. Once on the ground at Fort Rucker, the operators flew daily in changing weather, preparing for a target that could appear anywhere across the range.

Technical skill proved as important as piloting.

“The ability to train and solve problems immediately afterwards was critical to mission success,” La Torre said. “The team was soldering, disassembling, reassembling and performing [quality assurance] around the clock while rehearsals were underway. While tactical units and technicians may not share the same language, they do share an intellectual curiosity and desire to succeed.”

La Torre emphasized what it means for the average paratrooper.

“With the right kit, paratroopers will be able to utilize a low-cost system with preexisting munitions to execute a wide variety of mission tasks — and have the power to protect their unit from an endemic threat,” he said.

The drone demonstration showed that innovation doesn’t have to come from the top.

“It feels extremely satisfying to have this level of impact, but solving these kinds of problems should not be alien to junior officers, or any leader,” La Torre said. “Every year the Army produces leaders at all levels who are better educated now than ever before. At the end of the day, rank is immaterial when it comes to problem-solving.”

For La Torre, the milestone reflects how far the 173rd Airborne Brigade has come.

“At this time last year, this kind of training was a pipe dream for conventional units,” he said. “For the engagement itself, Chief Shea did an incredible job and so did Chief Topits. It’s such a difficult mission profile for both aircraft.”

Lessons from the bayonet innovation team fed directly into Fort Rucker’s new lethal UAS course, directed by Army Capt. Rachel Martin and Army Maj. Wolf Amacker. The course consolidates milestones within the Army’s UAS community and serves as a hub for education and experimentation.

“The more testing and experimentation we do, the less we must teach theoretically and the more we can back claims with real data,” La Torre said. “Safe and effective experimentation allows commanders to understand the true nature of the risks they assume with these systems and helps make this training more commonplace.”

For La Torre, the boundaries are clear: safety and scalability.

“We must safely conduct training, testing and experimentation,” he said. “We also must make sure everything we do is exportable to other units so they can do the same. I’m confident what we’ve done is scalable, and the lethal UAS course at Fort Rucker will centralize the growth of lethal UAS engagements while also serving as a hub for subject matter experts to gather and exchange lessons learned.”  (Source: U.S. DoD)

 

27 Aug 25. Cuashub.com said today that Ukraine and Canada sign drone-focused defense production deal. Ukraine and Canada have signed an agreement to expand joint defense production, with a focus on manufacturing drones and counter-drone systems. The deal was formalized on August 24 by Ukrainian Prime Minister Denys Shmyhal and Canadian Defense Minister David McGuinty in the presence of President Volodymyr Zelenskyy and Prime Minister Mark Carney. Shmyhal said the initiative aims to deepen defense-industrial cooperation, create new production facilities in both countries and strengthen supply chain resilience. He added that the agreement will enable the establishment of Ukrainian companies in Canada, support technology exchange and secure long-term supplies of modern weapons for Ukraine’s armed forces. Zelenskyy highlighted drone production as a priority area, pointing to shortages of unmanned systems at the front. and noting that Ukraine requires expanded production to meet frontline demand. The Canadian government has allocated initial funding to support the program. Discussions between Shmyhal and McGuinty also addressed investment in drone projects and the expansion of broader defense-industrial cooperation. The agreement comes alongside a wider Canadian military aid package announced the same day. Carney pledged $1.5 bn in support, including funding for drones, armored vehicles, electronic warfare systems and joint defense projects. The package forms part of Canada’s $2 bn commitment made at the G7 summit earlier this year. https://cuashub.com/en/content/ukraine-and-canada-sign-drone-focused-defense-production-deal/ (Source: https://cuashub.com/)

 

27 Aug 25. Cuashub.com said today that US Army tests AR and C-UAS technologies on Mexico border. The U.S. Army is using its deployment along the U.S.-Mexico border to trial new augmented reality equipment and counter-drone systems under operational conditions. The mission, conducted in support of Customs and Border Protection, allows troops to evaluate technologies in an environment that replicates challenges not easily reproduced in training ranges. The initiative is part of efforts launched under the Trump administration to enhance monitoring and reporting of migrant crossings. Among the tools being tested are the Integrated Visual Augmentation System (IVAS) 1.2 goggles, based on Microsoft’s HoloLens, which combine augmented reality, thermal imaging and navigation functions. The latest version, developed in partnership with Anduril and Meta, includes improved weight balance and controls after earlier iterations were criticized by soldiers for causing headaches and reduced effectiveness. Troops are also trialling the DZYNE Dronebuster, a handheld jammer designed to disrupt and redirect small unmanned aerial systems at ranges up to two kilometers. The device weighs under three kilograms and operates without external power. Other technologies in use include tactical microdrones such as the Black Hornet 4, Palantir’s vehicle-mounted Tactical Intelligence Targeting Access Node for radio frequency sensing and updated remotely operated weapon stations. Soldiers are additionally equipped with beyond line-of-sight radios to relay information quickly to border patrol units.

Col. Hugh Jones, commander of the Fort Carson-based 2nd Stryker Brigade Combat Team, said his unit is responsible for monitoring more than 1,000 miles of the border, often in terrain inaccessible to vehicles.

While providing surveillance support, the Army has emphasized that soldiers are not directly involved in interdiction or deportation operations. Maj. Geoffrey Carmichael, a spokesperson for Joint Task Force – Southern Border, said the deployment “not only help[s] preserve the integrity of the United States southern border, but also create[s] a laboratory of experimentation.” https://cuashub.com/en/content/us-army-tests-ar-and-c-uas-technologies-on-mexico-border/ (Source: https://cuashub.com/)

 

27 Aug 25. Aimpoint®, the originator of the red dot sight,  announces the launch of the AIMPOINT DUTY RDS MR, the company’s first sight featuring a selectable Multi-Reticle (MR) system. Designed for users who demand adaptability without compromise, the DUTY RDS MR offers three reticle options – a 2 MOA dot, a 65 MOA circle, or both combined – in a compact and rugged platform trusted by professionals worldwide.

“With the DUTY RDS MR, we are expanding the AIMPOINT legacy by combining our proven design principles with new flexibility,” says Albert Rödfalk, senior product manager at Aimpoint AB. “It’s a robust solution built to meet the real-world needs of professionals.”

Built for law enforcement, professional users and competitive shooters, the DUTY RDS MR features instant-on motion activation, a side-loading battery compartment, and a pressure forged aluminum housing that is submersible to 25 meters (80 ft.) and engineered to endure shock, vibration, and extreme temperatures.

Key features include:

  • Multi-Reticle System: Toggle between dot, circle, or both for rapid acquisition and precision aiming
  • Motion Activation: Enters sleep mode after two hours of inactivity – instantly powers on with movement
  • Mission-Ready Durability: Waterproof to 25 m, shock- and vibration resistant
  • Daylight & Night Vision Compatible: 12 brightness settings, including 4 for NVD
  • 3-Year Battery Life with setting 7. Powered by a single CR2032 battery

With this launch, AIMPOINT reinforces its position as the trusted choice for professionals who operate where reliability and performance are nonnegotiable.

 

26 Aug 25. In partnership with the U.S. Navy, Raytheon, an RTX (NYSE: RTX) business, has successfully completed its first live test of the AN/SPY-6(V)4 radar in a maritime environment. The milestone was achieved during recent testing at the Advanced Radar Detection Laboratory located at the Pacific Missile Range Facility in Hawaii. During multiple tests over open water, the radar successfully tracked air and surface targets under various conditions. These tests demonstrated the radar’s advanced tracking capabilities across different mission scenarios and validated years of modeling and simulation work. Additionally, the tests yielded the first live data set for the (V)4 configuration, which will help refine the system for future testing and eventual shipboard deployment.

“The successful live demonstration of the SPY-6(V)4 radar is a major step forward in advancing the capabilities of today’s fleet and supporting allied operations worldwide,” said Barbara Borgonovi, president of Naval Power at Raytheon. “The radar will allow existing U.S. Navy Flight IIA Destroyers to significantly upgrade their detection and tracking capabilities, allowing sailors to more effectively monitor and respond to potential threats in real-time.”

This is the next variant in the U.S. Navy’s SPY-6 Family of Radars to undergo live maritime testing. The program will continue with testing and system enhancements, leveraging common hardware and software across other variants to ensure seamless integration and scalability. Over the next decade, SPY-6 is expected to be deployed on more than 60 U.S. Navy ships, enhancing defense against air, surface, and ballistic threats. (Source: PR Newswire)

 

26 Aug 25. Cuashub.com said today that Ondas secures $2.7m defense order for Iron Drone counter-UAS systems. On August 21, Ondas Holdings announced a $2.7m purchase order from a leading defense customer for multiple units of its Iron Drone Raider System, an autonomous counter-UAS platform developed by its subsidiary, Airobotics. The order marks a significant milestone in the company’s efforts to expand its presence in global defense and homeland security markets.

“This order highlights the continued trust placed in our Iron Drone platform by a key defense partner,” said Eric Brock, Chairman and CEO of Ondas Holdings. “Iron Drone is demonstrating its effectiveness in real-world operations, where autonomous protection from aerial threats is essential to safeguard strategic facilities, mission-critical assets and populations.”

The Iron Drone is designed to autonomously intercept and neutralize hostile drones, offering a mitigation layer within layered defense architectures. The system is part of Ondas’ broader portfolio of autonomous aerial defense technologies, which includes the Optimus drone-in-a-box ISR platform and the Wasp FPV+ multirole patrol and strike drone.

“We believe the Iron Drone is redefining how militaries and governments protect their skies,” said Oshri Lugassy, Co-CEO of Ondas Autonomous Systems. “By providing a rapid, automated, and effective response to drone threats, the system enables persistent protection without adding operational burdens.”

The new order reflects recurring demand and growing recognition of Iron Drone’s operational maturity. As drone threats become more sophisticated and widespread, defense customers are increasingly prioritizing autonomous solutions that can respond in real time without human intervention. Ondas’ technologies are deployed globally to protect sensitive locations and critical infrastructure. The company operates through two business units: Ondas Autonomous Systems, which includes Airobotics and American Robotics, and Ondas Networks, which provides software-defined wireless broadband for mission-critical IoT applications. With this latest order, Ondas is reinforcing its position in the counter-UAS domain and signalling its intent to pursue additional strategic partnerships and large-scale deployments in the months ahead. https://cuashub.com/en/content/ondas-secures-2-7m-defense-order-for-iron-drone-counter-uas-systems/ (Source: https://cuashub.com/)

 

26 Aug 25. Cuashub.com said today that North Dakota hosts inaugural Versus Symposium, showcases UAS and Counter-UAS leadership. On August 21, North Dakota’s growing reputation as a national hub for unmanned aerial systems (UAS) and counter-UAS innovation was on full display at the inaugural Versus UAS/Counter-UAS Symposium, held at Camp Grafton. The event, hosted by Anno.Ai and Dunlevy Consulting, brought together defense officials, industry leaders, and policymakers to highlight the state’s expanding role in airspace security and technology development. U.S. Senator Kevin Cramer (R-ND), Chair of the Senate Armed Services Airland Subcommittee, opened the symposium with remarks underscoring the urgency of countering drone threats and the strategic value of North Dakota’s defense ecosystem.

“The UAS threat is not new, but we are waking up to how significant the threat is and the absolute need to get ahead of it,” said Cramer. “North Dakota provides the best iteration and testing space in the country with lower levels of bureaucracy, wide open spaces, and a state government unafraid of putting money towards national defense technologies.”

The symposium featured live demonstrations of UAS and counter-UAS systems in operational scenarios, showcasing capabilities designed to address emerging threats. Brigadier General Mitch Johnson, Adjutant General of the North Dakota National Guard, presented on the state’s infrastructure for testing, training, and transitioning new technologies, a growing priority for both federal and state agencies. The event also served as a reminder of the real-world stakes. Cramer referenced the 2023 drone attack on Erbil Air Base in Iraq, which injured three service members, including North Dakota native Garrett Illerbrunn.

“Thanks to everyone who truly wants to advance counter-UAS so no American or ally is left defenseless like Garrett Illerbrunn,” Cramer added.

North Dakota’s UAS ecosystem includes federal assets like Grand Forks Air Force Base, home to ISR operations and the Space Development Agency, as well as academic programs such as the University of North Dakota’s Space Studies. Together, these institutions support a growing pipeline of talent and innovation.  The symposium follows recent federal action to accelerate counter-UAS development. In June, President Trump signed the “Restoring American Airspace Sovereignty” executive order, directing key agencies to build out national C-UAS capabilities. In July, the Department of Defense announced the formation of a Joint Interagency Task Force (JIATF) under the Army to fast-track deployment. Congress has authorized over $2 bn in funding across multiple bills to support these efforts.

North Dakota hosts inaugural Versus Symposium, showcases UAS and Counter-UAS leadership

(Source: https://cuashub.com/)

 

26 Aug 25. Cuashub.com said today that MyDefence launches UK counter-drone hub to strengthen NATO defence capabilities. MyDefence, a leading Danish defence technology company, launched its UK branch last week. This move strengthens the UK’s counter-drone capabilities and supports NATO operations. It also marks a key step in enhancing defence collaboration between the UK and the EU. The expansion aligns with the UK Government’s Strategic Defence Review and the upcoming Defence Investment Plan. By offering NATO-compatible systems and working with Nordic defence programmes, MyDefence’s new hub is helping reinforce the UK’s role in European security. The company’s counter-drone systems detect, track and neutralise hostile drones. These modular solutions work in complex environments and can be deployed on foot or mounted on vehicles. Forces in Ukraine, the United States and Australia already use them in active operations. To lead the UK programme, MyDefence appointed Liam Hutcheson, a former British Army officer. He brings hands-on experience in urgent capability acquisition and defence supply chain strategy. Recently, he supported operations in Ukraine and advised on the Defence Supply Chain Capability Programme.

“Drones have transformed modern conflict, and the requirement for the UK to strengthen its C-UAS capability is clear” Hutcheson said. “It is a really exciting time for UK MOD; the momentum from the Strategic Defence Review and the anticipation of the Defence Investment Plan means the timing is perfect for MyDefence to enter the UK market. MyDefence has demonstrated that it can field proven systems at speed on NATO operations – a capability I am enormously proud to bring to the UK.”

Dan D. S. Hermansen, CEO of MyDefence, also commented, highlighting the importance of the UK as a NATO partner and the urgency of addressing drone threats. “Our technology has been tested in real combat conditions to protect frontline troops, critical infrastructure, and coalition forces” Hermansen said. “The UK remains a key NATO partner, and our presence here ensures we can deliver battle proven, field-ready capabilities rapidly to meet evolving drone threats.”

This investment also shows MyDefence’s commitment to the UK defence industry. By setting up locally, the company ensures British Armed Forces have direct access to advanced counter-drone tools.

Sir Chris Tickell, Lieutenant General (Retired) and board member at MyDefence Group A/S, highlighted the broader impact. “The proliferation of uncrewed systems poses a strategic challenge to all NATO forces. MyDefence brings a battle-proven, interoperable solution set that strengthens our collective defence posture. By establishing a UK presence, we are not only reinforcing our commitment to British industry and defence.” https://cuashub.com/en/content/mydefence-launches-uk-counter-drone-hub-to-strengthen-nato-defence-capabilities/ (Source: https://cuashub.com/)

 

26 Aug 25. L3Harris Begins Sensor System Manufacturing in Poland. L3Harris Technologies (NYSE: LHX) has begun manufacturing electro-optical/infrared (EO/IR) sensor systems at a 2,000-square-meter facility in Katowice. The facility provides European operators with intelligence, surveillance, reconnaissance and targeting sensors for crewed and autonomous platforms.  The facility is equipped with tooling equipment to produce an EMX-Series line of EO/IR sensor systems for military operations across domains including counter-unmanned system missions. The site can quickly expand production to meet the requirements of Europe’s Readiness 2030 and Security Action for Europe initiatives addressing security threats.

“The new realities of today’s contested environments demand rapid delivery of proven solutions,” said Tom Kirkland, Vice President and General Manager, Targeting & Sensor Systems, L3Harris. “Our ability to manufacture and deliver EMX-Series EO/IR systems in Europe enables our customers to remain at peak operational readiness as we continue to build strong and strategic local partnerships.”

L3Harris plans to accelerate multi-sensor capacity and reduce lead times for delivery across Europe with a team of technicians providing production, repair services and product support. The company’s presence includes offices in Warsaw and significant manufacturing across Europe. In 2025, the company announced the delivery of its 8,000th WESCAM MX-Series system globally. In Europe, L3Harris has delivered over 1,400 systems in over 32 countries for integration on more than 119 different platforms. (Source: ASD Network)

 

27 Aug 25. Blighter (www.blighter.com), a pioneering designer and manufacturer of ground-based smart electronic-scanning micro-Doppler radars, is showcasing new developments to its border surveillance and coastal security radars, and its AI-assisted BlighterNexus software at this year’s DSEI Defence and Security show. DSEI takes place at the ExCel Centre in London, September 9-12, 2025. Blighter will be on stand number N6-166. Following a record £25m order book in the last financial year, Blighter is continuing to consolidate its leadership in border surveillance and coastal security by focusing on product innovation to support its defence customers and systems integrator partners.

James Long, CEO at Blighter, says, “It’s been a terrific year for the company having achieved a record order book and recently celebrating ten years since the spin out from our parent company, Plextek. We will continue to put our defence customers and integrators first by making it ever more straightforward and cost-effective for them to buy, deploy and integrate our radars.”

In 2025, Blighter has further strengthened the business case for its low power advanced e-scan radars with a trio of enhancements – new levels of adaptiveness to the environment in its coastal security radars, extending the range of its border surveillance radars, and using artificial intelligence (AI) to transform radar to command and control (C2) system integration.

First, the launch of the BlighterNexus AI-assisted connectivity and processing hub has drastically reduced the training and operational burden on systems integrators seeking to incorporate Blighter’s smart/cognitive ITAR-free 2D, 3D and 4D radars into their C2 systems. Estimated cost savings of up to 20 percent can be achieved by customers and integrators using the AI-assisted software to automate setup, configuration, and adjustment of multiple radars to deliver optimum performance even in changing weather conditions.

Second, Blighter’s new B422 long-range border surveillance radar has been enhanced to now detect a person at 15km with just 4 Watts of power. This extended range from 8km to 15km, without the need for additional power, means earlier interception of intruders and significant cost savings for border control operators with fewer radars needed due to the three-fold increase of the radar’s coverage.

Third, Blighter’s engineers have also been working on a government/industry coastal surveillance project. This has resulted in significant improvements to the adaptiveness of the Blighter C400 coastal security radar. Through fine tuning of the electronic scanning beam and the micro-Doppler tracking function, the radar can now automatically and dynamically adapt to the prevailing environmental conditions. This will not only make the coastal radar more effective, but it will also reduce the training and operational burden on customers.

The Blighter C400 radar will be featured on development partner Kirintec’s stand. Kirintec is owned by BAE Systems and specialises in Cyber and Electromagnetic Activities (CEMA), Counter-IED and Counter-UAS technology.

“We are looking forward to DSEI and welcoming a host of overseas delegations to our stand, showcasing new technology, discussing collaborative partnerships, and demonstrating how we are responding to the future needs of our defence partners,” says James Long.

Blighter’s ITAR-free smart radars with AI-assisted software deliver up to 360-degrees of pure electronic scanning coverage and are field proven to work 24 hours a day, 365 days a year, in all weather conditions, detecting, tracking, and identifying any human, vehicle/vessel and near ground aerial threats. Blighter radars are trusted by the UK Ministry of Defence for forward operating base (FOB) protection, the South Korean Army for border surveillance along the Demilitarised Zone (DMZ), by the United States Air Force for drone detection, and by several Five Eyes/NATO customers for deployment on their mobile surveillance and armoured vehicles. Blighter introduced the world’s first, non-rotating, solid-state, electronic-scanning, micro-Doppler ground radar in 2003. Today, the product portfolio covers the three domains of land, sea, and air with the B400, C400, A400 and A800 family of ground-based radars. The radars’ modular design enables the technology to be deployed on towers and vehicles, and as dismounted portable systems on tripods. The Blighter radar’s patented, compact design and low-power electronic scanning and frequency-modulated continuous-wave (FMCW) technologies contains no moving parts. This ensures ease of installation and ultra-reliable operation with minimal maintenance even in the harshest conditions.

 

26 Aug 25. ParaZero Concluded Another Field Test Demonstrating 100% Success Rate in Countering Hostile Drone Threats on Critical and Sensitive Infrastructure. ParaZero Technologies Ltd. (Nasdaq: PRZO) (the “company” or “ParaZero”), an aerospace defense company pioneering smart, autonomous solutions for the global manned and unmanned aerial systems (UAS) industry, today announced the successful completion of a field trial of its Defend Air Hand-Held Net Gun System ordered by the main branch of Israel’s defense sector. ParaZero demonstrated the system’s operational effectiveness in protecting critical infrastructure and other sensitive facilities against hostile drone threats. During the demonstration, DefendAir achieved, again, a 100% interception success, neutralizing every real-time operational scenarios. The system proved its accuracy and effectiveness in layered defense, offering a unique last-line solution for critical infrastructure and other sensitive facilities. This demonstration follows a prior demonstration that ParaZero completed in July 2025 with a select group of Israeli security and defense professionals where the DefendAir also achieved 100% interception success, effectively neutralizing every fast-incoming multirotor drone threat in real-time scenarios The session included an in-depth discussion on the evolving threat of drone incursions, the limitations of existing solutions, and the growing need for multi-layered defense strategies, particularly against passive, non-transmitting drones that cannot be intercepted via traditional radio frequency-based methods, such as fiber-optic-guided drones.  The live field trial of the DefendAir Hand-Held Net Launcher showcased its ability to rapidly neutralize fast-approaching multirotor drones, simulating a real-time threat scenario as detailed by the branch that ordered the demo. The demonstration generated strong interest and highly positive feedback from attendees. According to a recent market research, the global anti-drone (counter-UAS) market size was valued at $2.4B in 2024. The market is projected to grow from $3.1B in 2025 to $12.24B by 2032, exhibiting a CAGR of 21.62% during the forecast period. (Source: https://www.fortunebusinessinsights.com/anti-drone-market-102593)

“We are proud to have successfully completed yet another field trial as demanded by one of the major Israeli defense entities,” said Ariel Alon, CEO of ParaZero. “The results reinforce our belief that DefendAir is a reliable, scalable and truthful solution for both military and civilian applications. As the global drone threat landscape continues to evolve, we believe that DefendAir provides defense forces and governments with a comprehensive layer of protection for sensitive areas.” (Source: ASD Network)

 

25 Aug 25. US Army Accelerates Long Range Reconnaissance UAS Capability. The Army recently awarded contracts to AeroVironment and Edge Autonomy to rapidly deliver initial Long-Range Reconnaissance (LRR) systems. The AeroVironment P550 and Edge Autonomy Stalker Block 35X are Group 2 UAS designed to provide Reconnaissance, Surveillance, and Target Acquisition (RSTA) organic to maneuver battalions. Capabilities include an open systems architecture, allowing quick integration of additional capabilities to meet ground commanders’ mission requirements, primarily at the Battalion level. By working with multiple vendors, the Army continues to foster healthy, continued competition to ensure the Warfighter receives the best solutions quickly. The Army will use these initial LRR systems to establish operator training that remains Military Occupational Skill (MOS) agnostic, enabling any Soldier to operate the platforms and will begin fielding to operational units later this year as part of the Transformation in Contact 2.0 initiative. The LRR program directly supports the Secretary of Defense’s July memorandum on “Unleashing U.S. Military Drone Dominance,” demonstrating the Army’s commitment to advancing drone technology and operational effectiveness. A force-multiplier, LRR UAS will provide maneuver battalion commanders with increased RSTA capability organic to their formation. The Army anticipates additional LRR system selections in the future. The Program Executive Office Aviation, through the Uncrewed Aircraft Systems (UAS) Project Office, equips Soldiers with cutting-edge tools to meet evolving mission demands and ensures the Army maintains tactical superiority on the battlefield. (Source: ASD Network)

 

19 Aug 25. UAV DACH invites expert comment on detecting illegally operated drones. The Association for Unmanned Aviation (UAV DACH) is seeking comment for a survey on safe uncrewed aerial systems (UAS) operations. “Illegally operated drones pose a potential risk to air traffic as well as sensitive public facilities, critical infrastructure and major events,” UAV DACH said. “In a joint working group, the German Aerospace Industries Association and UAV DACH are therefore committed to creating a suitable technological and regulatory framework to detect illegally operated UAS in a timely manner and to counter them in an emergency.” Over the past few months, the experts of the associations’ Drone Detection and Countermeasures working group have developed concrete, practical recommendations for action to be presented to the German government, which could be incorporated into a national strategy for drone detection and countermeasures. “These recommendations outline the current state of the art and identify the resulting need for action,” UAV DACH said. An important basis for this was an expert survey conducted a year ago. This survey has now been updated to incorporate the measures developed from it and, where necessary, refine them.  Companies, institutions and manufacturers of relevant technologies are invited to contribute to the updated survey to help provide policymakers with the most precise and fact-based recommendations possible. Responses are invited online until September 12, 2025. (Source: www.unmannedairspace.info)

 

19 Aug 25. Nigerian Air Force “to train personnel on C-UAS radar system.” The Nigerian Air Force has launched a dedicated training programme for its personnel on the 612A Anti-UAV Radar System, Military Africa reports. The course targets selected air force members, providing them with the skills needed to detect, follow and disable uncrewed aerial vehicles in environments marked by asymmetric warfare.  Military Africa says the 612A appears to be a system recently acquired by Nigeria and renamed in line with the military’s practice of customising labels for new equipment. Nigerian armed forces have faced drone attacks from Boko Haram and other insurgency groups, which also use drones for surveillance. (Source: www.unmannedairspace.info)

 

18 Aug 25. US Air Force issues contract opportunity for subscription-based C-UAS system. The United States Air Force is seeking a commercially available, contractor-owned and operated, subscription-based Counter-Unmanned Aircraft System (C-UAS) detection and alerting system. In a notice posted on the US procurement portal SAM.gov, the Air Force said the system is required to support Joint Base Andrews and Joint Base Anacostia-Bolling. “The system shall provide persistent air domain awareness through remote sensing, telemetry decoding, and pilot geolocation, with real-time data accessible to government users via a secure web and mobile dashboard,” the notice states. The Air Force is looking to deploy a turnkey system that does not require government-owned infrastructure, personnel maintenance or hardware installation. Offers are due by 15:00 EDT on August 26. (Source: www.unmannedairspace.info)

 

20 Aug 25. US Coast Guard establishes new autonomous programme office to include C-UAS. The US Coast Guard has established the Initial Operating Capability of the Robotics and Autonomous Systems (RAS) Program Executive Office (PEO). which will include counter-uncrewed aerial systems (C-UAS) capabilities. This PEO is a component of the Service’s Force Design 2028 plan, aimed at integrating capabilities. The RAS PEO is dedicated to the rapid operationalisation of the Coast Guard’s Unmanned Systems Strategic Plan.

“The establishment of a separate PEO is the most efficient mechanism to translate the evolving technology landscape into fielded capabilities – including Counter-Unmanned Aircraft Systems (C-UAS) – and allows for dedicated advocacy for resources,” the Coast Guard said in an August 20 statement.

Advancing the Coast Guard’s C-UAS strategy is a central part of the effort. “The RAS PEO will facilitate the Coast Guard’s efforts to forge the C-UAS doctrine, partnerships and capabilities necessary to defend the U.S. Marine Transportation System and safeguard National Special Security Events,” the Coast Guard said.

The PEO’s responsibilities span the full capability lifecycle, including requirements definition and prioritisation, managing acquisition and contracting, overseeing system development and integration, managing fielding and deployment, developing sustainment plans and collaborating with stakeholders. A temporary implementation team comprised of subject matter experts and supporting personnel has been created. In July, the Coast Guard published a request for information seeking insight into the current capabilities of C-UAS, the availability of C-UAS as a service (contractor-owned, contractor-operated), and the availability of C-UAS equipment operated by the government but owned and maintained by the vendor (contractor-owned, government-operated). This request has now closed. (Source: www.unmannedairspace.info)

 

23 Aug 25. Epirus opens innovation centre in Lawton Fort Sill’s C-sUAS hub. Epirus has opened a 5,300 square foot facility within Lawton Fort Sill’s Fires Innovation Science and Technology Accelerator (FISTA) Innovation Park, a centre for technological advancement and home to the Joint C-sUAS University. The Epirus Immersive Innovation Center (EIIC) is an interactive space designed to serve as an experience centre to support the use of emerging counter-uncrewed aerial system (C-UAS) technologies like the company’s Leonidas high-power microwave (HPM) technology platform and weaponised electromagnetic interference (WEMI) capability.  The EIIC provides a platform for user-centric UI/UX development and experimentation. “With multiple simulation terminals, interactive control interfaces and mission planning bays, the centre enables users to refine operational concepts and increase the effectiveness of the Leonidas one-to-many aerial defeat capability,” Epirus said at the new facility’s launch. The centre is in close proximity to Fort Sill, home to the U.S. Army’s air defence artillery force, where soldiers train to detect, track and neutralise airborne threats like autonomous, robotic, asymmetric drone attacks. (Source: www.unmannedairspace.info)

 

20 Aug 25. EDGE, one of the world’s leading advanced technology and defence groups, completed key development milestones for the MIRSAD-X electro-optic system during a field test, proving the system’s critical functionalities and advanced capabilities. Held at EDGE’s multi-domain training, testing, and evaluation island, XRANGE, the field test successfully verified the MIRSAD-X’s detection, recognition, and identification ranges for various targets under different conditions, as well as proved its sensor command-and-control function, tracking capability, target localisation capability, and human-machine interface functionalities. The test also validated the MIRSAD-X’s reliability in the UAE’s hot and humid summer weather.

Felix Matis, Director of the Electro-Optics Centre of Excellence within EDGE’s Technology & Innovation Cluster, said, “The MIRSAD-X performed well and consistently provided a clear, stabilised image under harsh weather conditions in the field, which included high temperatures, wind gusts, dust, and air turbulence. One of our main objectives was to test and prove the manual and automatic tracking capability of the MIRSAD-X in multiple scenarios. The system demonstrated high performance overall in that regard and we will now look to continue and improve the performance of the system and maximise its capabilities for various use cases.”

Slim Sayadi, Senior Technical Manager at the Electro-Optics Centre of Excellence, said, “Going forward, the next steps for the MIRSAD-X are to test the performance of its laser designator as an additional capability and conduct an ‘on-the-move’ test once integrated onto a land platform.”

The MIRSAD-X is a gyro-stabilised multi-spectral electro-optics imager under development by EDGE’s Technology & Innovation (T&I) Cluster. Equipped with cutting-edge image processing, the system enables real-time detection, tracking, localisation, and targeting of objects of interest. Ideal for supporting laser-guided munitions and general maritime and border surveillance, the MIRSAD-X system seamlessly integrates onto multiple ground and naval platform types. EDGE’s T&I Cluster is simultaneously developing a naval variant of the MIRSAD-X, which is planned to be integrated for testing on EDGE’s naval vessels. (Source: joint-forces.com)

 

27 Aug 25. Sentinel Photonics, a leading innovator in laser detection and protection technologies, today announces ECHO and LASERD® MAX, two new laser detection capabilities designed to expose covert threats and give operators a critical edge in laser-contested environments. Both will be shown for the first time at DSEI, Excel London, 9 – 12 September 2025, Stand N5-260.

“Laser threats are evolving fast, creating serious multi-domain risks that traditional defences can’t keep up with,” says Jackson White, Head of Commercial at Sentinel Photonics. “Our new products are built to detect those threats early and help save lives. ECHO reveals surveillance optics that others are trying to hide, quickly and safely. LASERD MAX goes beyond detection. It gives operators real-time laser intelligence they can act on to enhance their survivability .”

ECHO: Handheld retro-reflective detection for covert optics

ECHO is a rugged handheld laser detection system that exposes concealed, hostile optics, specifically magnified optics of any kind. Designed for military, law enforcement and high-security operations, ECHO can detect optics at distances of up to 3km, even under harsh environmental conditions with speed and precision.

ECHO uses advanced retro-reflection to uncover surveillance threats that conventional imaging systems miss. It operates across the wide spectrum, allowing operators to identify concealed optics without compromising their own position, giving them the edge in surveillance, counter-surveillance, VIP protection, sniper scope detection, and border operations, whilst remaining eyes safe.

ECHO at a glance:

  • Handheld retro-reflective detection of optics: Gives the ability to identify advisee’s covert and low-profile optics
  • Operates across a wide band: Operates in the VIS, NIR and SWIR bands
  • Long-range capability: 50m to 3km detection range
  • Covert and Secure: Low visibility to NV and low-light cameras
  • Eye safe operation: Can be used with no or very little training whilst being completely Eye safe
  • Visual intel on demand: Onboard screen, video capture, and sharing

LASERD® MAX: A new era of laser intelligence and threat detection

Sentinel also officially releases LASERD® MAX, its advanced Laser Intelligence (LasINT) system that gives operators real-time situational awareness of unknown laser threats.

Designed for high-tempo, high-threat operations, LASERD® MAX delivers persistent, autonomous laser detection up to 10km across the visible and non-visible laser spectrum. It enables users to passively map, log, and analyse laser activity in real time, even in complex or contested EW environments.

Threat types include LDEWs, rangefinders, beamriders, LIDAR, covert illuminators, and more. With a compact footprint and multiple camouflage options, LASERD® MAX is field-ready for land, sea, and air platforms.

LASERD MAX at a glance:

  • Autonomous passive scanning: Real-time spectral analysis of the battlespace with auto-updating threat parameters
  • Simultaneous multi-threat tracking: Parallel detection of military-grade and commercial laser sources across wide-area coverage, with a 10km-range
  • High-fidelity capture engine: Captures transient, low-signature laser events using class-leading photodetectors with high pulse sensitivity (10pJcm²)
  • LasINT data architecture: Builds a bespoke laser threat library to inform strategic and tactical responses and integrates seamlessly with C4ISR ecosystems
  • Remote and standalone deployment: Fully networkable via secure protocols or operable independently in the field.

ECHO is available now.

LASERD MAX available now.

ECHO and LASERD MAX will be demonstrated for the first time at DSEI, Excel London, 9 – 12 September 2025, Stand N5-260. For more information visit www.sentinelphotonics.co.uk.

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

August 22, 2025 by

Sponsored by Echodyne

www.echodyne.com
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20 Aug 25. Teledyne Leads U-SHIELD Project for Critical Underwater Infrastructure Protection. Teledyne RESON is leading the U-SHIELD project, aiming to develop a drone that can capture and immobilize underwater vehicle threats to infrastructure such as pipelines, communication cables, and offshore energy systems. Teledyne RESON, a Teledyne Marine company, is leading U-SHIELD, a research and innovation project developing a drone capable of capturing and immobilizing unwanted underwater vehicles.
The project aims to protect critical underwater infrastructure such as pipelines, communication cables, and offshore wind farms, which are facing increasing security threats in Denmark and Europe due to the green transition and expansion of offshore energy facilities.
This project brings together experts from Teledyne RESON, Aalborg University, the Technical University of Denmark, the University of Southern Denmark, and Copenhagen Subsea.
Tim Lysholt Jensen, VP Products & Technology at Teledyne RESON A/S, who is leading the project, stated, “By combining advanced technology and collaboration between leading experts, we can create a solution that not only protects our resources but also promotes the safety and stability of our society.”
The Innovation Fund is also investing 26 m kroner into the project through its Grand Solutions program.
Cecilie Brøkner, Director of the Innovation Fund, added, “The green transition makes us more dependent on complex energy systems beneath the sea’s surface, and therefore we must also be proactive in protecting them.
“The U-SHIELD project contributes to developing technology that can make our society more resilient to threats against the systems we all deeply depend on – from energy supply to communication. It holds exciting potential for both Denmark and Europe, and we look forward to following the project.” (Source: https://www.defenseadvancement.com/)

 

21 Aug 25. DroneShield (ASX:DRO) announced the expansion of its support for Ukrainian customers via a newly established, undisclosed local partnership. Since the onset of hostilities, DroneShield has been a trusted CUAS provider in Ukraine, with its battle-tested systems defending military, infrastructure, and civilian assets against evolving aerial threats.
Drawing on eleven years as a technology pure play in the CUAS sector, DroneShield has leveraged operational feedback from Ukraine to drive rapid advances in artificial intelligence (AI) and machine learning (ML) within its detection and mitigation systems. This real-world experience, under the most challenging conditions, has materially sharpened DroneShield’s AI—increasing detection speed, accuracy, and adaptability in the face of novel drone tactics.
“The conflict in Ukraine has crystallized what forward-looking militaries already recognized: the need for advanced, adaptive counter-drone solutions is now a matter of national resilience, not optional investment,” said Oleg Vornik, Chief Executive Officer of DroneShield. “Our work in Ukraine, while only one element of our global operations, has proven pivotal in advancing the sophistication of our AI, with profound benefits for all our users worldwide.”
This new partnership will ensure DroneShield’s Ukrainian customers receive robust local support, rapid technology updates, and ongoing intelligence sharing with headquarters—while maintaining operational security through strict confidentiality.
DroneShield reiterated that Ukraine, while symbolically significant and technologically vital, represents a relatively small share of a broad global market. Active across more than 40 countries including major deployments in Europe, the Americas, and Asia, DroneShield continues to meet surging demand for its AI-powered counter-UAS solutions driven by a rising global recognition: no allied nation can afford to wait for conflict before adopting resilient, next-generation drone defense.
All inquiries regarding Ukrainian operations should be directed exclusively to for secure routing.

 

21 Aug 25. Zelim, a leader in AI-driven maritime safety and security systems, has signed a Cooperative Research and Development Agreement (CRADA) with the U.S. Navy’s Naval Undersea Warfare Center (NUWC), Division Newport to trial ZOE for the detection of uncrewed surface vessels (USVs). The agreement enables Zelim’s participation in BlueTIDE 2025, a high-profile demonstration event led by 401 Tech Bridge, NavalX, and the Northeast Tech Bridge. The event will culminate in a full-scale in-water trial on August 28 in Narragansett Bay, Rhode Island.
Zelim is one of just a handful of international companies selected as finalists in the 2025 BlueTIDE Prize Challenge, following a competitive evaluation process.
This year’s mission scenario focuses on protecting critical subsea infrastructure from hostile activity involving small crewed and uncrewed autonomous systems. Zelim’s role in the scenario involves detecting small remotely operated surface vessels operating covertly in sensitive areas, which may pose a precursor threat to subsurface sabotage.
The award-winning ZOE MOB system is already deployed in the cruise industry and offshore sector, detecting, alerting, and tracking persons in the water following man overboard incidents. The same AI engine, trained to identify specific shapes, behaviours and anomalies in complex marine environments, also powers ZOE Shield – a new capability under development that delivers maritime situational awareness by detecting and classifying small surface craft that will be operating without AIS.
ZOE Shield adds automated threat classification and alerting logic, supporting operators with early warning and response capabilities. Critically, the system is immune to GPS denial and radar jamming scenarios, which can disrupt traditional situational awareness technology. The ZOE Shield system will be evaluated during BlueTIDE as part of the Navy’s interest in layered, intelligent safety, security and surveillance.
“This agreement gives us a unique opportunity to trial ZOE Shield in an operational defence scenario at a US Navy facility, where multiple assets, including USVs will be deployed on the mission,” said Sam Mayall, CEO and co-founder of Zelim.
CRADAs allow non-federal entities to collaborate directly with US Navy personnel and facilities without being subject to federal acquisition rules, while also protecting intellectual property and proprietary data throughout the research period.
The BlueTIDE trial will take place off the coast of Newport, Rhode Island, where ZOE will be used to detect and to keep eyes on surface threats as they come within proximity of the critical infrastructure. The goal is to demonstrate how ZOE can improve reaction time and situational awareness in areas where traditional radar or human watchkeeping might miss or misclassify an approaching threat. Data from the demonstration will be shared with the Navy to support capability assessment and further development.
“This is about closing the gap between detection and decision, especially in domains where the threat is small, fast-moving and unpredictable,” Mayall added. “Our mission is to help operators identify anomalous behaviour earlier, whether the goal is rescue or protection. This demo is a vital step toward deploying ZOE for real-world defence scenarios.”

20 Aug 25. Cuashub.com said today that D-Fend solutions introduces new multi-layer EnforceAir variant. D-Fend Solutions has announced the launch of EnforceAir PLUS, a new offering in its suite of counter-UAS systems that integrates multiple detection and mitigation technologies into a single platform. The system builds on the company’s existing radio frequency (RF) cyber takeover technology and incorporates additional radar detection and an optional jamming capability. According to D-Fend, the integration allows operators to detect, track and mitigate drones through a layered approach that can be adapted depending on the threat.
A central feature of EnforceAir PLUS is what the company calls its “SmartAir” technology fusion engine, which combines radar and RF data into a single operational picture of detected drones. The company states this is intended to simplify decision-making and reduce false positives in threat identification.
The radar component uses compact solid-state radar panels, which, according to D-Fend, extend the detection range beyond what is possible with RF measures alone. The optional jamming module, described as a “Smart RF-Effector,” adds a third defensive layer when cyber takeover or radar-based tracking is insufficient.
EnforceAir PLUS is positioned as a compact and rapidly deployable system. D-Fend highlights that the new platform provides automated calibration, software integration of the three defensive layers and a user interface designed to display a unified view of airspace activity. The system also features an automated suggestion engine that proposes mitigation options for detected drones.
The company noted that current users of its EnforceAir 2 system will have an upgrade path to the new capabilities offered in EnforceAir PLUS.
https://cuashub.com/en/content/d-fend-solutions-introduces-new-multi-layer-enforceair-variant/ (Source: https://cuashub.com/)

 

20 Aug 25. Cuashub.com said today that US Marines seek contractor support for C-UAS training. The Marine Corps is seeking contracted support to provide specialized counter-UAS training for Force Reconnaissance units, according to a SAM.gov solicitation released Monday. These elite Marines, often deployed beyond the forward line of troops, are frequently tasked with engaging active enemy UAS platforms. The solicitation outlines a two-part training program scheduled for September. From Sept. 12–15, up to 12 Marines will undergo a five-day instruction period focused on tactics, techniques and procedures for detecting, mitigating and countering UAS threats. This five-day training will be followed by a Sept. 15–19 field exercise involving 18 Marines and sailors. The exercise will include realistic role players, a mobile command center and simulated combat conditions at a secure, contractor-owned training site. To support the effort, the Marine Corps requires access to at least 2,000 acres of varied terrain and 1,000 feet of controlled airspace. Contractors must provide all training resources, including qualified instructors with recent counter-UAS experience and role players capable of simulating operational scenarios. Each participant who completes the course will receive a certificate.
According to the notice, the program is designed to replicate the operational environments Force Recon Marines are most likely to face in combat. Responses to the solicitation are due Aug. 21.
The training program reflects an ongoing attempt to prepare U.S. Marines with the capacity to defeat unmanned aerial threats. The latest solicitation follows efforts to equip amphibious vehicles with counter-UAS capabilities highlighted by Colonel Tim Hough, Marine Corps’ Program Manager Advanced Amphibious Assault, back in May. https://cuashub.com/en/content/us-marines-seek-contractor-support-for-c uas-training/ (Source: https://cuashub.com/)

 

18 Aug 25. Robin Radar Systems, a global leader in 3D radar technology for drone and bird detection, today marks the first anniversary of its U.S. office opening, following a year of rapid expansion, operational milestones, and strengthened partnerships across an evolving American defense and security landscape. Since establishing its dedicated U.S. entity in Ashburn, Virginia, in August 2024, Robin Radar has doubled its U.S. headcount propped up its sales pipeline, significantly accelerated user tests and live demonstrations, and secured high-profile deployments protecting critical infrastructure from the growing threat of uncrewed aerial systems (UAS).
The past twelve months have seen Robin Radar’s flagship IRIS counter-UAS radar system support research and development (R&D) for the U.S. Department of Homeland Security Science and Technology Directorate (DHS-S&T), which included a myriad of operational tests and demonstrations, including border protection, upholding ‘no-drone zones’ at large public events, disaster relief, and even mysterious drone sightings on the East Coast, cooperating with the National Urban Security Technology Laboratory.
Additionally, Robin Radar is supporting another DHS customer with an integrated solution that includes multi-sensor systems to safeguard some of the U.S.’s most critical infrastructure. These efforts build on long-standing transatlantic relationships with aerospace and defense partners, including Boeing, Dedrone by Axon, and Amentum.
The company’s U.S. expansion comes amid heightened concern over drone threats. In 2024 alone, 350 drone incursions were reported across 100 U.S. military bases, while global conflicts have highlighted how low-cost drones can destroy high-value assets. Against this backdrop, Robin Radar has positioned IRIS as a first line of defense—a mobile, lightweight, and AI-enhanced radar system delivering 360° situational awareness and unrivalled classification accuracy.
Looking ahead, Robin Radar will continue expanding its U.S. footprint, deepening integration with domestic defense innovators, and unveiling significant IRIS capability upgrades—including a Long-Range Mode designed to detect larger targets.
Kristian Brost, Robin Radar’s U.S. General Manager, said: “Year one in the U.S. proved the demand for reliable and easy-to-use drone detection radars. We’ve scaled to a capable, integrated operation, working with U.S. partners to help secure high-consequence sites, from disaster recovery to major public events. As drones move from fringe risk to frontline threat, our focus is simple: keep U.S. skies safe with proven technology that plugs into existing command and control ecosystems and sensors.”

 

18 Aug 25. Raytheon, an RTX (NYSE: RTX) business, successfully completed another 360-degree flight test for the Lower Tier Air and Missile Defense Sensor, or LTAMDS, using one of the radar’s secondary arrays to track and intercept a complex, threat representative target. This follows the radar’s recent Milestone C designation, initiating the transition from prototype to production and deployment.
In this test, LTAMDS, supported an Integrated Battle Command System and a PAC-3 MSE missile intercept of a threat representative target. The test objective was to demonstrate LTAMDS’ successful integration with the recently delivered Large Tactical Power Source (LTPS). The increased power provided by LTPS enables LTAMDS to reach its full battlespace potential.
The high capacity, full coverage provided by LTAMDS three radar arrays enable the defeat of massive, coordinated attacks that include a mix of threats such as drones, advanced aircraft, as well as ballistic, cruise and hypersonic missiles. LTAMDS has now completed nine successful flight tests of increasing complexity to prove its capabilities against real-world threats.
“LTAMDS’ 360-degree full-sector sensing capabilities specifically address massive, coordinated attacks from adversaries,” said Tom Laliberty, president of Land & Air Defense Systems at Raytheon. “As international demand grows, Raytheon continues to invest in our production capacity to quickly deliver this critical capability to customers.”
In April 2025, the U.S. Army designated LTAMDS as an official program of record. In 2024 Poland became the first international customer to add LTAMDS to their air and missile defense architecture. Several more countries are actively planning to acquire LTAMDS to modernize their air defenses. The company is making significant capital investments to meet global demand. (Source: PR Newswire)

 

15 Aug 25. Cuashub.com said today that ParaZero secures latest order for C-UAS system. ParaZero Technologies has received a purchase order for its counter-UAS tools from an undisclosed defense organization. The announcement signals further advancement into the growing global market for drone mitigation systems, estimated at $2.4bn in 2024 and projected to reach over $12 bn by 2032.
Earlier this month, ParaZero announced a successful field trial of an enhanced version of its DefendAir system. The updated configuration features a stationary net turret launcher capable of providing 360-degree perimeter defense with autonomous threat detection and interception. The new design offers broader coverage and improved performance against faster and larger drone threats.
ParaZero’s product suite includes:
• DefendAir — A net-launcher C-UAS platform available in multiple formats. These include portable net guns for close-range defense, turret-mounted launchers for static protection and drone-mounted variants for dynamic interception. Notably, earlier demonstrations demonstrated a 100 percent interception rate against fast-approaching multirotor drones.
• SafeAir — An autonomous parachute recovery system for drones, designed to activate automatically in case of drone failures, improving flight safety and regulatory compliance.
• DropAir — A precision aerial delivery system tailored for high-altitude, low-opening (HALO) payloads. It has demonstrated consistent performance across weather conditions and is aimed at supplying critical goods in high-risk or hard-to-reach environments.
https://cuashub.com/en/content/parazero-secures-latest-order-for-c-uas-system/ (Source: https://cuashub.com/)

 

19 Aug 25. Cuashub.com said today that Sentrycs reports record growth & previews handheld Counter-UAS device. On August 14, Sentrycs, a developer of Cyber over RF (CoRF) counter-UAS technology, reported its strongest six-month sales performance to date, positioning the company to double its annual revenue in 2025. The announcement follows a year of rapid expansion, during which Sentrycs tripled its revenue and broadened its global footprint.
Executive Chairman Howard Berkowitz attributed the growth to increasing demand across multiple sectors and geographies.
“Since our first customer shipment less than three years ago, the company has reached predictable global sales across multiple applications and customer segments,” Berkowitz said. “At the core of our success is our technology’s dominance in both price and performance.”
Sentrycs systems are now deployed across six continents, with recent installations at oil and gas facilities, airbases, trading ports, and major sporting events in the U.S. and abroad.
The company’s CoRF technology is designed to passively detect, track, and mitigate unauthorized drones, offering a software-based alternative to kinetic or jamming-based systems.
In response to growing interest from law enforcement and other cost-sensitive users, Sentrycs announced the pre-release of a handheld CoRF device. The system, which offers full functionality in a compact form factor, is intended to provide greater mobility and affordability for field operations.
“Delivering our solution in a miniaturized version is further evidence of Sentrycs’ disruptive price and performance leadership,” said Tal Cohen, Chief Technology Officer. “We expect that it will open new markets previously precluded by both cost and functionality.”
The company also plans to introduce a laptop-based capability that builds on its existing single-case deployment model. Pricing for the new systems is expected to fall between $25,000 and $50,000 annually.
Founded in 2017, Sentrycs operates offices in Israel and the U.S., and serves customers across defence, critical infrastructure, and public safety sectors. As drone activity continues to rise globally, the company’s focus on scalable, software-driven solutions reflects a broader industry shift toward more flexible and cost-effective counter-UAS technologies.

Sentrycs reports record growth & previews handheld Counter-UAS device


(Source: https://cuashub.com/)

 

15 Aug 25. Cuashub.com said today that Wrap Technologies expands anti-drone capabilities with new handheld system. Wrap Technologies has revealed a new development in its counter-UAS strategy, introducing a handheld device designed to disable hostile drones at close range. Known as Project PAN-DA (Personal Anti-Drone Armament), the system adapts the company’s BolaWrap® 150 technology to physically entangle small unmanned aerial systems (sUAS) mid-flight. The PAN-DA system is compact, reloadable, and intended for field deployment, offering a belt-carried solution for defence personnel and international operators. It’s designed to engage sUAS at close range, providing a cost-effective alternative to traditional missile interceptors and electronic jamming systems. The system uses BolaWrap® cassette technology, enabling multiple engagements per unit and supporting recurring revenue through consumable sales.
Michael Brown, Vice President of Products at Wrap Technologies, commented “PAN-DA builds on the proven BolaWrap® platform, which we believe will give operators a lightweight, reliable, and non-lethal means of defending themselves and their environment from drone threats”. He continued, “Our development path is now focused on practical, scalable solutions that address today’s urgent threats while anticipating tomorrow’s challenges.”
The announcement comes as the global counter-drone market continues to grow, projected to reach over $6.8 bn by 2030. PAN-DA is positioned as a last-line kinetic defence option, complementing existing detection and electronic countermeasure systems. Its portability and precision make it suitable for scenarios where other solutions may be unavailable or ineffective.
Jared Novick, President and COO of Wrap Technologies, emphasised the company’s commitment to innovation in public safety, stating that “We’re proud to focus our efforts on applying our trusted BolaWrap® 150 device in a new way, while staying true to the same mission”. “With Project PAN-DA, we are aiming to develop another life-saving product that expands our ability to protect lives and respond to emerging threats.”
With the first phase of development complete, Wrap’s engineering teams are now reviewing performance data and video footage to refine the system’s range, area-of-effect, and cassette cost. These enhancements aim to ensure PAN-DA remains effective against rapidly evolving drone technologies in real-world military environments.
Wrap Technologies is known for its non-lethal public safety tools, including the BolaWrap® 150, which is used by over 1,000 law enforcement agencies across the US and in 60 countries. The company also offers Wrap Reality™, a VR-based training.
https://cuashub.com/en/content/wrap-technologies-expands-anti-drone-capabilities-with-new-handheld-system/ (Source: https://cuashub.com/)

 

18 Aug 25. PureTech Systems®, a leader in AI-boosted geospatial video analytics and command-and-control solutions, announced its role in a joint effort with Clear Align to deliver a rapidly deployable perimeter security solution for the U.S. Air Force’s Tactical Security System (TSS). Awarded under a seven-year, $199m contract, this modular, scalable system is designed to enhance base and perimeter protection for forward-deployed installations, airfields, and emergency missions worldwide. It integrates electro-optical and infrared cameras, radar, and advanced AI into a unified, autonomous command-and-control platform. Designed for challenging and remote environments, the solution enables operators to detect, classify, and track threats in real time — with or without direct operator intervention.
Autonomy + Command and Control
PureTech’s technology brings autonomous detection, classification, and tracking of potential threats — including people, vehicles, unmanned aerial systems (UAS), and watercraft — with the ability to seamlessly cue operators or trigger automated responses. The system’s open architecture command-and-control platform provides complete situational awareness across all deployed sensors, reducing cognitive load and increasing mission effectiveness.
ATAK Integration for Real-Time Field Operations
Incorporating Android Tactical Assault Kit (ATAK) compatibility ensures that situational awareness extends beyond the operations center. With ATAK integration, field personnel receive live intelligence and sensor alerts directly on mobile devices, enabling distributed teams to coordinate in real time and act with precision.
Rapid Deployment for Any Mission
The TSS is designed to be modular, lightweight, and rapidly deployable. Its autonomous operation and portable command centers make it ideal for protecting temporary or remote sites, securing perimeters in hostile environments, and supporting disaster response or high-value asset protection.
“This program demonstrates the Air Force’s commitment to leveraging the latest in AI, autonomy, and integrated command-and-control to protect personnel and assets in any environment,” said Larry Bowe, President & CEO, PureTech Systems. “We’re proud that our technology will play a central role in delivering unmatched situational awareness and operational agility to the mission.”
Learn more about the PureTech Systems at our website, www.puretechsystems.com.

 

11 Aug 25. SkyDefense introduces AI-enabled eVTOL drone interceptor. SkyDefense LLC has introduced an AI-powered eVTOL fighter drone and interceptor. CobraJet™ is a battery-powered autonomous aircraft that has been engineered to detect, track, identify and neutralise enemy drones at high speeds exceeding 200 mph (320 km/h). Designed primarily for security applications, CobraJet is suitable for providing a layer of defence to critical infrastructure, borders, military bases and public venues. It can deploy from mobile platforms such as trucks, ships or aircraft.
Scalable and available in three trijet versions, V4 and V6 (Group 2), and V8 (Group 3), CobraJet features a 3D printed carbon fiber composite airframe inspired by the 5th-generation Lockheed F-35B and F-22 jets, and the future 6th generation F-47. Equipped with vertical takeoff and landing (VTOL) capability and thrust vectoring nozzles, the jet has the ability to neutralise multiple fast-moving, evasive drones with its on-board air-to-air weapons stored in its weapons bay or mounted underbelly. CobraJet is also capable of performing strike missions.
The interceptor’s propulsion relies on electric duct fan motors and Amprius solid-state batteries, while its Auterion AI-enabled autopilot and additional NVIDIA compute power, along with Teledyne FLIR NDAA-compliant cameras, provide autonomous operations both day and night.
SkyDefense’s Command System, known as VRAM (Visual Realtime Area Monitoring), combines AI-powered data analysis with a control interface that keeps humans in the loop. CobraJet is designed to be able to operate in contested electromagnetic environments, via an AI-assisted visual navigation SmartVision system and other anti-jam technology. VRAM can also integrate with other Command-and-Control (C2) systems.
For law enforcement, homeland security, and US military applications, SkyDefense offers a mobile configuration where its command system is housed in tactical or armoured BEVs.
Counter-UAS tests with CobraJet and VRAM are planned at the Pendleton UAS Test Site later this year. (Source: www.unmannedairspace.info)

 

12 Aug 25. US Army invests in countering counter-drone systems. The United States Army Command, Control, Communications, Computers, Cyber, Intelligence, Surveillance and Reconnaissance (C5ISR) Center said yesterday that it has made “substantial investments” in sensor protection technologies, driven by the growing global proliferation and sophistication of counter weapons systems.
“A growing number of countries are actively developing C-UAS capabilities, with leading efforts underway in the United States, China, Israel, Germany, the United Kingdom and Russia,” C5ISR said in an August 11 press release. “These advancements carry significant strategic implications for a much broader global security landscape.”
The unit is developing technologies to counter adversaries’ counter-uncrewed aerial systems (C-UAS). One critical area will be in GPS denied arenas, where reliance on visual cues, sensors, and sophisticated sensor fusion algorithms.
“If the sensors are rendered inoperable (Hard-Kill), or jammed (temporary sensor disruption), the UAS will no longer be operable,” C5ISR said. “A second major area will be when Aided Target Detection and Recognition (AiTR) algorithms are utilised in UAS to enhance situational awareness.”
The team has already successfully transitioned numerous sensor protection technologies to Army programmes. These capabilities remain largely within the scope of government-exclusive research and development due to the absence of a commercial market.
C5ISR calls for continued investment in sensor protection and said this must remain synchronised with advancements in C-UAS technologies because any technological gap in this area could take years to close and pose significant operational risk. (Source: www.unmannedairspace.info)

 

14 Aug 25. Wild Hornets’ Sting interceptor reaches 315 km/h, shoots down over 200 Shaheds and Gerberas. Ukrainian drone manufacturer Wild Hornets has released a video on its social media showing the company’s Sting interceptor drone accelerating to 315 km/h. This makes the Sting one of the fastest first-person combat drones, Defender Media reports.
The interceptor has been operating at the frontline for two months and Wild Hornets reports that during this time the drone has hit 205 targets – 78 Shaheds and 127 Gerbers.
The drone is equipped with an AI intelligence target guidance system. According to Business Insider, one Sting costs about USD 2,500.
Recently, Defender Media reported on the project of another Shahed interceptor – the reusable Mangust drone with a jet engine and an automatic homing system from the Odessa engineering bureau Tekhnary. According to the developers, it will fly up to the Shaheds, fire a fragmentation charge into the engine or propeller of the enemy drone, and then continue its mission or return to refuel and recharge. (Source: www.unmannedairspace.info)

 

15 Aug 25. Sentrycs announces pre-release of cyber over RF handheld device. Sentrycs has announced the pre-release of a handheld Cyber over RF (CoRF) counter-drone device in response to increasing demand from law enforcement agencies in the US and Europe.
The company says the device will “offer full functionality within a miniaturised form factor”. After completing initial testing, Sentrycs will offer a laptop-based capability based on its counter-drone system in use today. The company expects initial pricing to be in the USD 25,000 – 50,000 range for annual software licences.
Sentrycs expects to double its revenues in 2025, following its highest sales results for a six-month period in the company’s history. (Source: www.unmannedairspace.info)

 

18 Aug 25. DroneShield (ASX:DRO), a global leader in counter-UAS technology solutions, today announced the release of the 8th edition of its CUAS Factbook. This publication offers a high-level, accessible overview of emerging counter-drone technologies, industry trends, and evolving threats from unmanned aerial systems (UAS). The latest edition is part of DroneShield’s ongoing commitment to advance public and professional understanding of drone threats and countermeasures. By distilling complex technologies into an accessible format, DroneShield aims to empower stakeholders to make informed decisions about protecting people, infrastructure, and operations from unauthorized drone activity.
The CUAS Factbook is designed as an authoritative educational resource, covering topics such as:
• UAS Types including UxS and Capabilities
• Overview of drone threats including notable UAS incidents
• Detection and Defeat Technologies
• Applications and Operational Contexts, including military, critical infrastructure, public safety, border security, maritime domains, event and close protection
• Challenges in CUAS Implementation
• Emerging Technologies
“The 8th edition of our CUAS Factbook reflects our mission to not only develop effective counter-drone solutions, but also to share knowledge that strengthens the security ecosystem as a whole,” said Oleg Vornik, CEO of DroneShield.
To access the new CUAS Factbook click the button below. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://3324849.fs1.hubspotusercontent-na1.net/hubfs/3324849/CUAS%20Factbook_8th%20Edition.pdf

 

15 Aug 25. Deep-space radar hits key testing milestone. Northrop Grumman is developing the Space Force’s Deep-Space Advanced Radar Capability, which will track activity in geosynchronous orbit.
The Space Force’s deep-space radar hit a testing milestone in recent weeks, using seven of its antennas to track multiple satellites in orbit from a site in Australia.
The Deep Space Advanced Radar Capability, or DARC, is being built by Northrop Grumman to detect and track activity in geosynchronous orbit — from space debris to hostile movement that could harm U.S. or allied satellites.
The ground-based system is slated to be fully operational by 2027 and is the first of three radars the service is building as part of a partnership with Australia and the United Kingdom to improve their visibility into what’s happening on orbit.
The recent demonstration was part of DARC’s integration and testing phase, which started in the last few weeks. The radar will ultimately use 27 parabolic antennas for its deep-space tracks. Kevin Giammo, Northrop’s director for space surveillance and environmental intelligence, told Defense News the ability to use a subset of those shows that the company’s design is solid and ready to scale.
“Each of those parabolic dishes have a certain amount of capability on their own, but as you are able to make these dishes work together as a set of arrays, what you’re really doing is you are creating the equivalent of a very large radar with immense capabilities,” Giammo said.
As the program moves through its test campaign, it will continue to increase the number of antennas it’s using, making its observations more accurate and persistent.
In parallel to its development of the first DARC radar, Northrop is also beginning work on the second system, which will be based in the United Kingdom. The company received a $200 m contract for DARC 2 last year.
The Space Force is currently working with the U.K. government on the environmental assessments and other processes that have to occur before they can begin building on the site. Giammo said the completion of that work will dictate Northrop’s schedule for producing and delivering the radar.
“We certainly will be working to optimize when different aspects of the activity are executed based on how things are progressing with that government-to-government coordination,” he said. “There’s a lot of work that we’re already doing, but there’s certainly more that’s to come.”
Northrop will be able to take advantage of much of the work it’s done on the first radar as it starts to build the second — and eventually the third — system. Giammo noted there may be some design differences between the systems, and the company is working with the Space Force to define what changes are needed for the U.K. radar
“They’re fielding similar sites in different locations, so there’s always some uniqueness that will happen,” he said.
The Space Force’s fiscal 2026 base budget request does not include funding for DARC, though the service has said it plans to use $281 m from Congress’ $150bn reconciliation bill for the effort. (Source: Defense News)

 

15 Aug 25. Cuashub.com said today that Taiwanese drone manufacturer to set up in Texas. ASC Global Inc., a subsidiary of Token Communities, has reached an agreement with Taiwanese drone manufacturer UAVER to set up an assembly facility at the Asia Pacific Opportunity Zone (APOZ) in Texas. According to ASC Global President and CEO David Champ, the APOZ project has been actively promoted across the Asia-Pacific region in recent months, drawing interest from multiple countries, including Taiwan. The initiative aims to attract technology and manufacturing partnerships to Texas from the wider Asia-Pacific market. UAVER, formally Carbon-Based Technology Inc., founded in 2007 in Taichung, Taiwan, is regarded as one of the country’s leading aerospace composite manufacturers. The company specializes in using carbon-fiber composite materials to produce fixed-wing UAS for commercial and industrial applications. Its five primary models, Swallow, Accipiter, Besra, Avian RTK and Catapult, are designed for missions including aerial mapping, agricultural surveying, forest monitoring and disaster response, with capabilities for infrared and radiation detection. UAVER holds ISO 9001 and ISO 9100 aerospace quality certifications, as well as NDAA compliance. The company is also expanding into precision image analysis software and complete UAS solutions, which it says will improve post-disaster surveying and environmental monitoring. APOZ project co-founder and ASC Global COO Dr. Eric Fang described UAVER as a pioneer in Taiwan’s UAV industry with “a strong reputation for innovation and precision engineering.” He added that the new Texas plant will assemble UAVER aircraft for customers in North America and other markets. The companies did not disclose the size of the investment, the expected production capacity, or when the Texas facility will become operational.
https://cuashub.com/en/content/taiwanese-drone-manufacturer-to-set-up-in-texas/ (Source: https://cuashub.com/)

 

15 Aug 25. Cuashub.com said today that IPG ships ‘Crossbow’ C-UAS laser weapons to Lockheed Martin. IPG Photonics has delivered multiple units of its new Crossbow laser weapon system to Lockheed Martin. Crossbow is designed to disable small unmanned aerial systems in the “group one” and “group two” categories, the smallest classes of UAS, using IPG’s commercial single-mode fiber lasers. The system is described as scalable and cost-effective, and is aimed at protecting both military and civilian assets from aerial threats.
The Massachusetts-based laser manufacturer has been field-testing Crossbow for the past six months and plans to showcase it at the DSEI UK 2025 defense trade show in London next month. According to IPG, the system integrates into a broader laser weapons strategy but focuses specifically on the challenges posed by smaller drones.
“These small drones that you can buy for hundreds of dollars can inflict major damage,” said IPG CEO Mark Gitin. “It’s a big issue on the battlefield today. And it’s also an issue in civilian infrastructure, for example at borders, and we’re starting to see more of that.”
While Crossbow does not offer the high-power capability needed to defeat larger UAS, artillery or missiles, Gitin said it addresses a critical and growing threat. He added that IPG’s manufacturing capacity allows the system to be offered at a “very disruptive” price point, which the company expects will generate interest from both defense and commercial operators.
“We anticipate strong interest from both defense and commercial customers for protection of critical military and civilian assets,” Gitin said.
IPG describes the new system as part of its expansion into “advanced applications” beyond industrial lasers, an area where it achieved its first counter-UAS milestone six months ahead of schedule.
https://cuashub.com/en/content/ipg-ships-crossbow-c-uas-laser-weapons-to-lockheed-martin/ (Source: https://cuashub.com/)
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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.
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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

August 15, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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14 Aug 25. US Army Conducts First Air-to-Air Drone Kill with Armed FPV. A SkyRaider quadcopter armed with a Claymore mine recently downed another unmanned aerial system (UAS) in a U.S. Army test, marking the service’s first successful air-to-air kill using a weaponized first-person-view (FPV) drone. According to a news release, the test was conducted at Fort Rucker, Alabama, ahead of the U.S. Army Unmanned Aircraft Systems Summit. The demonstration involved the 173rd Airborne Brigade, the Pennsylvania Army National Guard, and the Army’s Combat Capabilities Development Command Armaments Center. The Army said Chief Warrant Officer 2 Nate Shea piloted the Skyraider while Chief Warrant Officer 2 Andrew Topits operated the opposing UAS in a “dogfight” over Tabernacle Field.  Footage uploaded by the 173rd Airborne Brigade does not clearly show how the Claymore was mounted on the quadcopter or what type of firing mechanism was used. The operator appears to have manually detonated the mine after steering the drone close to the target. (Source: https://www.sofx.com/)

 

14 Aug 25. CobraJet Fighter Drone and Interceptor Offers Low-Cost C-UAS Solution. SkyDefense LLC, headquartered in Brighton, CO, unveiled its advanced AI-powered eVTOL fighter drone and interceptor, the “CobraJet.” This tactical, battery-powered autonomous aircraft is engineered to detect, track, identify, and neutralize enemy drones at high speeds exceeding 200 mph (320 km/h). Designed primarily for security applications, CobraJet defends against drone threats to critical infrastructure, borders, military bases, and public venues. Scalable and available in three trijet versions, V4 and V6 (Group 2), and V8 (Group 3), CobraJet features a 3D printed carbon fiber composite airframe inspired by the 5th-generation Lockheed F-35B and F-22 jets, and the future 6th generation F-47. Equipped with vertical takeoff and landing (VTOL) capability and thrust vectoring nozzles, the jet delivers exceptional agility and the ability to neutralize multiple fast-moving, evasive UAS with its on-board air-to-air weapons stored in its weapons bay or mounted underbelly. CobraJet is also capable of performing strike missions against ground or naval targets utilizing its present munitions or other air-to-surface weapons such as smart glide bombs. The interceptor’s propulsion relies on electric duct fan (EDF) motors and Amprius solid-state batteries, while its Auterion AI-enabled autopilot and additional NVIDIA compute power, along with Teledyne FLIR NDAA-compliant cameras, ensure autonomous operations day and night. CobraJet can deploy from mobile platforms such as trucks, ships, or aircraft, adding flexibility to its operations. SkyDefense’s Command System, known as VRAM (Visual Realtime Area Monitoring), combines AI-powered data analysis with a control interface that keeps human operators in the decision-making loop. This system enables CobraJet™ to operate seamlessly in contested electromagnetic environments, thanks to AI-assisted visual navigation SmartVision™ and other anti-jam technology. VRAM can also integrate with other Command-and-Control (C2) systems.

“Our USA-made CobraJets can communicate and coordinate as a flight team enabling them to operate as an AI-powered unmanned Air Force,” said Nick Verini, President of SkyDefense LLC. “This team approach increases the effectiveness of the squadron while also significantly reducing the costs of destroying a swarm of enemy drones.”

For Law Enforcement, Homeland Security, and US Military applications, SkyDefense offers a mobile configuration where its command system is housed in tactical or armored BEVs. This platform is designed for extreme environments, boasting low acoustic and thermal signatures to evade enemy detection. Counter-UAS tests with CobraJet and VRAM are planned at the Pendleton UAS Test Site later this year. (Source: UAS VISION/SkyDefense)

 

14 Aug 25. Coyote Loitering Drone Interceptors Have Arrived on US Navy Destroyers. A recently released picture of the Arleigh Burke class destroyer USS Bainbridge offers a good look at new launchers for Coyote counter-drone interceptors installed on the ship. Earlier this year, the U.S. Navy announced that destroyers assigned to escort the supercarrier USS Gerald R. Ford would be armed with Raytheon Coyote and/or Anduril Roadrunner-M counter-drone systems. In addition to being lower-cost than traditional surface-to-air missiles, Coyote and Roadrunner-M have loitering capabilities that allow them to be more dynamically employed against incoming uncrewed threats. The Navy released the picture of Bainbridge sailing in the Ionian Sea between Italy and Greece over the weekend, but it was taken on July 27, 2025. It is one of three Arleigh Burke class destroyers currently assigned to the Gerald R. Ford Carrier Strike Group, the others being USS Winston S. Churchill and USS Mitscher. The Winston S. Churchill is serving as the strike group’s air defense commander, a role that certain Arleigh Burkes have increasingly been taking over from a dwindling fleet of aging Ticonderoga class cruisers. The new counter-drone interceptor launchers are installed on the port side of Bainbridge‘s aft superstructure near the ship’s rear Mk 41 Vertical Launch System (VLS) array. A further review of other pictures the Navy has previously released of the Gerald R. Ford Carrier Strike Group since its current deployment began in June shows the same launcher installation onboard the Winston S. Churchill. Whether or not it is present on the Mitscher is unclear from the imagery available now. Mitscher is notably an older Flight I Arleigh Burke, while Bainbridge and Winston S. Churchill are both newer Flight IIA sub variants, but whether this has any bearing on the fielding of the new counter-drone capabilities is unknown. All Arleigh Burke class destroyers feature Mk 41 VLS arrays, but with differing numbers of cells depending on the subvariant. These can be loaded with a variety of surface-to-air and surface-to-surface missiles, including Standard Missile (SM) series, Evolved Sea Sparrow Missiles (ESSM), and Tomahawk types. Some versions have additional launchers for Harpoon or Naval Strike Missile (NSM) anti-ship cruise missiles. Depending on the particular version, Arleigh Burkes have RIM-116 Rolling Airframe Missile (RAM) launchers or 20mm Vulcan cannon-armed Mk 15 Phalanx Close-in Weapon Systems (CIWS), or both in some cases, for close-in defense against aerial threats, including drones. The Navy is now moving to replace the Phalanxes on all of its destroyers with RAM launchers. The 5-inch main gun in a turret on the bow of each of the destroyers can also be employed against aerial, as well as surface targets. (Source: UAS VISION/The War Zone)

 

12 Aug 25. Leonardo DRS, Inc. (NASDAQ: DRS) announced today that is has successfully completed its first series of open-water demonstrations of its advanced maritime Mission Equipment Package (MEP) for counter‑UAS (C‑UAS) naval fleet protection. The DRS maritime MEP is a scalable C-UAS system based on DRS’s proven land-based mobile short-range air defense and C-UAS systems.  This system is designed to be mounted on a range of small uncrewed surface vessels providing remote ship protection at varying distances, providing a real solution as the Navy looks to autonomous surface vessels to protect ships from air and surface threats. The initial demonstrations were conducted under realistic sea conditions and demonstrated the MEP’s core integrated systems performance – the detection, identification and tracking of a UAS threat and counter-surface ship tracking. The mission equipment package used in the demonstration included a suite of DRS sensors and command-and-control technologies including the BlackLab passive radio frequency (RF) detection system, STAG electro-optic/infrared (EO/IR) gimbal with advanced thermal cameras, and a tactical data management system using DRS’s sensor fusion operating system and AI to support fusion and target recognition using RF and Optical modalities.

“The U.S. Navy faces the same evolving drone threats as our land forces, and we recognize the urgency of delivering a reliable solution to protect the lives of sailors,” said Cari Ossenfort, senior vice president and general manager of the Leonardo DRS Naval Electronics business unit. “By leveraging our proven expertise in mobile ground-based counter-UAS and short-range air defense systems, we have rapidly developed and demonstrated a maritime force protection capability that provides sailors with full-spectrum situational awareness and the tools to detect, track, and defeat threats at the tactical edge.”

The DRS Maritime MEP is designed for mission-flexibility through modularity and platform agnosticism. It is able to integrate advanced active and passive RF, EO/IR sensors, 4G/5G electronic‑warfare systems, and scalable kinetic or non‑kinetic effectors using its MOSA open system architecture embedded in the Leonardo DRS operating system. The development and integration of the maritime Mission Equipment Package is an example of DRS’s deep experience as a leading innovator and integrator supporting a wide range of missions for the U.S. military and allies around the world. The company’s integration capability extends across all domains to support force protection, computer networking and C5I, as well as naval power and propulsion systems.

 

13 Aug 25. Cuashub.com said today that US Army advances AI-enabled drone target recognition. U.S. Army researchers are developing an aided target recognition (AiTR) capability for small UAS, aiming to speed up squad-level target detection and boost lethality on the battlefield. Currently, soldiers must manually monitor live drone feeds, scanning large, complex areas for threats, a task that can be time-consuming and fatiguing in dynamic environments. The new approach, led by the Army’s Command, Control, Communications, Computers, Cyber, Intelligence, Surveillance and Reconnaissance (C5ISR) Center in partnership with the Defense Advanced Research Projects Agency, integrates autonomy and threat detection directly into small UAS. The system uses “Smart Search” behaviors to autonomously scan terrain, detect and track high-priority targets, and feed information back to Soldiers in real time.

“Soldiers will have greater lethality, survivability and maneuverability,” said Mathew Wilson, program lead at the C5ISR Center.

While AiTR has previously been focused on ground platforms, applying it to small organic Army drones represents a new direction in Department of Defense research. The aim is to reduce cognitive load, improve situational awareness, and enable faster, more accurate decisions without requiring constant manual drone control. During Project Convergence Capstone 5 at Fort Irwin, California, forward observers used the system to search beyond line-of-sight for threats. Sgt. Brian Ward of 1st Brigade Combat Team, 1st Armored Division, called it “a game changer,” adding that autonomous tracking could make it easier to prioritize and engage targets. AiTR data is integrated into the Army’s existing Android Tactical Assault Kit and Nett Warrior devices, allowing autonomous UAS control without new hardware. In testing, the system autonomously launched, flew to target areas, and returned detections without further human input. Although not yet fielded, officials say the technology could keep more Soldiers in the fight by turning vast amounts of drone sensor data into actionable intelligence. https://cuashub.com/en/content/us-army-advances-ai-enabled-drone-target-recognition/ (Source: https://cuashub.com/)

 

12 Aug 25. DroneShield, a global leader in counter-uncrewed systems (CUxS) technology, proudly announces the launch of SentryCiv, its latest solution designed specifically for critical infrastructure protection.  With an advanced, yet cost-effective approach, SentryCiv empowers non-military sectors to safeguard critical assets against rising drone threats. The solution delivers an innovative, non-emitting new layer of security to airports, utilities, data centers, venues and stadiums, government buildings, correctional facilities, and other high-risk sites.  As drone threats continue to proliferate worldwide, critical infrastructure is increasingly vulnerable to malicious and unauthorized drone activity. SentryCiv offers a comprehensive, scalable solution that provides real-time detection, and situational awareness. This next-gen technology is engineered to seamlessly integrate into existing security frameworks, enabling a rapid response to potential threats without disrupting operations.

Key Features of the SentryCiv Counter-Drone Solution:

  • Integrated Command & Control

Seamless connection to Sentry-C2 Civ platform provides operators with real-time alerts, threat prioritization, customizable zones, data logging, and integration with third-party systems.

  • Drone Signal Detection and Identification
  • Proprietary DroneLocator technology enables “dot-on-a-map” tracking of threats and operators, beyond RemoteID.
  • Detection Without Disruption

Encrypted RF Threat Detection-RFAI™ engine identifies over 150 common drone models without disrupting existing communication systems.

Future-Proof Technology

Quarterly software updates expand the drone detection library, improve performance, and introduce new features to stay ahead of UxS developments. Critical infrastructure providers face unique challenges in securing vast areas against aerial threats. Traditional defense systems are often too complex or costly for non-military environments. SentryCiv is different. By leveraging DroneShield’s proven CUAS technology, SentryCiv provides intuitive, on-the-ground detection capabilities, including drone detection and identification all within the SentryC2-Civ, a user-friendly platform tailored for civilian use.

“Airspace security for critical infrastructure and public safety has never been more urgent,” said Tom Adams, Director of Public Safety at DroneShield. “SentryCiv represents our commitment to making advanced counter-drone solutions accessible and affordable for non-military sectors. This solution is a game-changer for industries like law enforcement, corrections, aviation, and utilities, providing cost-effective, reliable means of protecting critical assets from evolving drone threats.”

As part of its broader strategy, DroneShield is committed to continuously enhancing its product offers, ensuring that critical sectors are equipped with the most advanced, yet accessible tools to stay ahead of emerging security threats. SentryCiv is poised to set a new standard in the industry, providing an affordable, reliable solution for sectors that must ensure both public safety and operational continuity.

 

11 Aug 25. SkyDefense LLC, headquartered in Brighton, CO, unveiled its advanced AI-powered eVTOL fighter drone and interceptor, the “CobraJet™.” This tactical, battery-powered autonomous aircraft is engineered to detect, track, identify, and neutralize enemy drones at high speeds exceeding 200 mph (320 km/h). Designed primarily for security applications, CobraJet™ defends against drone threats to critical infrastructure, borders, military bases, and public venues. CobraJet eVTOL AI-Powered Fighter Drone and Interceptor Armed with VIPER Air-To-Air C-UAS Rockets Scalable and available in three trijet versions, V4 and V6 (Group 2), and V8 (Group 3), CobraJet™ features a 3D printed carbon fiber composite airframe inspired by the 5th-generation Lockheed F-35B and F-22 jets, and the future 6th generation F-47. Equipped with vertical takeoff and landing (VTOL) capability and thrust vectoring nozzles, the jet delivers exceptional agility and the ability to neutralize multiple fast-moving, evasive UAS with its on-board air-to-air weapons stored in its weapons bay or mounted underbelly. CobraJet™ is also capable of performing strike missions against ground or naval targets utilizing its present munitions or other air-to-surface weapons such as smart glide bombs. The interceptor’s propulsion relies on electric duct fan (EDF) motors and Amprius solid-state batteries, while its Auterion AI-enabled autopilot and additional NVIDIA compute power, along with Teledyne FLIR NDAA-compliant cameras, ensure autonomous operations day and night. CobraJet™ can deploy from mobile platforms such as trucks, ships, or aircraft, adding flexibility to its operations. SkyDefense’s Command System, known as VRAM (Visual Realtime Area Monitoring), combines AI-powered data analysis with a control interface that keeps human operators in the decision-making loop. This system enables CobraJet™ to operate seamlessly in contested electromagnetic environments, thanks to AI-assisted visual navigation SmartVision™ and other anti-jam technology. VRAM can also integrate with other Command-and-Control (C2) systems.

“Our USA-made CobraJets can communicate and coordinate as a flight team enabling them to operate as an AI-powered unmanned Air Force,” said Nick Verini, President of SkyDefense LLC. “This team approach increases the effectiveness of the squadron while also significantly reducing the costs of destroying a swarm of enemy drones.”

For Law Enforcement, Homeland Security, and US Military applications, SkyDefense offers a mobile configuration where its command system is housed in tactical or armored BEVs. This platform is designed for extreme environments, boasting low acoustic and thermal signatures to evade enemy detection. Counter-UAS tests with CobraJet™ and VRAM are planned at the Pendleton UAS Test Site later this year.  For further details visit www.skydefensellc.com or call Nick Verini at 720-339-4972. (Source: PR Newswire)

 

12 Aug 25. Dedrone by Axon Takes Flight in Project VANAHEIM. Battlefield innovation is taking place at unprecedented speed. Military and government leaders recognise they must act quickly to counter new, unprecedented threats. For these reasons, it has become impossible to test solutions in a lab or to spend months on costly RFPs or product iterations. The pace of modern military innovation requires counter-drone technologies to be demonstrated in the field — under pressure, in real conditions, with no room for error.  It is this awareness that gave Project VANAHEIM its start. A joint initiative between the British and US Army, VANAHEIM is a rapid procurement program designed to put promising Counter Uncrewed Aircraft Systems (C-UAS) technologies through their paces in real-world operational environments. The project’s Request for Information drew significant interest from the counter-drone community, and Dedrone by Axon was amongst a few invited to prove our tech in the field.

The purpose of Project VANAHEIM

VANAHEIM’s mission is clear: to evaluate how well different systems can detect, track, identify, and defeat Class 1 UAS threats, including FPV drones, in the kind of challenging conditions soldiers actually face. This isn’t “best case scenario”environment testing. This requires proving capabilities under extreme heat, heavy storms, rough terrain or any other challenge commonly encountered on the battlefield. In June 2025, Dedrone by Axon joined VANAHEIM 3.0 in Germany with our Dedrone OnTheMove (OTM) system, a passive, vehicle-mounted RF solution. When the dust settled, DedroneOTM was the only vehicle-mounted RF system to detect all known drone threats in the event. That result didn’t just speak to our detection accuracy, it showed how our platform-agnostic, open-architecture approach integrates seamlessly with both TAK and SAPIENT systems, giving operators on both sides of the Atlantic real-time situational awareness and enabling faster, more coordinated responses across joint operations. By aligning with standards like SAPIENT, Dedrone is helping lay the foundation for multinational C-UAS collaboration at scale. As SAPIENT continues its ratification process within NATO, it opens the door for other NATO member nations to access and act on Dedrone’s DTI (detect, track, identify) data in real time. Built to scale across coalition partners, DedroneOTM offers a common operational picture and faster threat response across the alliance.

Poland: Raising the Stakes

Our showing in Germany resulted in an invite to VANAHEIM 4.0 in Poland, where we had the opportunity to prove our technology in tougher environments, with higher temperatures, sudden storms, and even more demanding terrain.

Through it all, DedroneOTM hardware and software never faltered. No performance loss. No downtime. Just continuous detection and tracking, giving soldiers an operational edge they could count on.

Project VANAHEIM offers a glimpse into the future of collaborative defence innovation. By bringing together the UK, US, and other partners in a shared testing environment, it accelerates how quickly effective solutions get into the hands of those who need them most and it allows us to demonstrate that our technology isn’t just cutting-edge, it’s combat-ready.

Learn more at DSEI 2025

Come see DedroneOTM in action September 9-12 at DSEI 2025 in London, mounted on vehicles like the Thales Bushmaster, Supacat HMT, and Polaris MRZR. Dedrone also offers a range of additional C-UAS solutions, including FixedSite, Portable, and Tactical systems, as well as the DedroneDefender, a new handheld smart RF jammer. We work closely with our defence partners to support the procurement and deployment of scalable C-UAS solutions.

To schedule a meeting during DSEI, or learn more about our C-UAS solutions, contact our team today.

 

12 Aug 25. Cuashub.com said today that Skylark Labs showcases ground-breaking detection of RF-Silent “dark drones” at Camp Atterbury. Skylark Labs announced this week a significant advancement in autonomous aerial threat detection, following a successful live demonstration of its Aerial Reconnaissance and Elimination System (ARIES) at Camp Atterbury, Indiana.

The demonstration, part of a multi-agency exercise, highlighted ARIES’ ability to identify, monitor, and categorise a new class of small, non-emitting unmanned aerial systems, commonly referred to as “dark drones.” These drones, which operate without emitting radio frequency (RF) signals or electronic signatures, have posed a considerable challenge to conventional detection technologies and are increasingly prevalent in modern conflict zones such as Ukraine.

During the evaluation, ARIES was tested alongside a range of commercial and military-grade sUAS detection systems. It consistently outperformed expectations by using high-resolution optical sensors, radar, and proprietary artificial intelligence algorithms to autonomously detect and track multiple “dark” drone types in real time. ARIES is capable of recognising known drone models as well as entirely new shapes and configurations without relying on pre-existing profiles or signatures.

Designed for versatility, ARIES can operate as a standalone counter-sUAS solution or be integrated into existing defence platforms, helping to close critical gaps in aerial threat detection. The system is deployed via Skylark Labs’ Scout MK1 Towers, which are equipped with onboard sensors for continuous threat monitoring. All data collected is transmitted to a central command hub, enabling immediate situational awareness and swift response.

“This is a pivotal advancement in the global counter-UAS mission,” said Dr. Amarjot Singh, CEO of Skylark Labs. He continued, “ARIES is designed to detect the undetectable—those drones that fly under the radar, both literally and electronically. This demonstration validates our vision: to build adaptive, AI-powered systems that thrive in the complexity of real-world combat and security scenarios.”

The successful deployment at Camp Atterbury demonstrates that non-emitting aerial threats can be reliably identified using a sensor-agnostic AI fusion approach, without dependence on RF, thermal, or GPS data.

Skylark Labs showcases ground-breaking detection of RF-Silent “dark drones” at Camp Atterbury

(Source: https://cuashub.com/)

 

12 Aug 25. Cuashub.com said today that AeroVironment and SNC announce strategic partnership to deliver Golden Dome C-UAS architecture. AeroVironment (AV) and Sierra Nevada Corporation (SNC) have announced a strategic partnership to develop the Golden Dome for America (GDA), a next-generation limited-area defence architecture designed to counter evolving aerial threats. The collaboration aims to align multi-domain capabilities and deliver an integrated, open-architecture air and missile defence system focused on protecting high-value U.S. infrastructure. The GDA programme is intended to provide a last line of defence against current and emerging threats, including unmanned aerial systems (UAS), advanced cruise missiles, and other next-generation aerial platforms. AV and SNC are building a layered defence solution capable of shielding specific sites such as bases, ships, airfields, and critical infrastructure. The system is designed to expand its coverage as new sensors and interceptors, particularly space-based assets, are brought online.

“The Trump Administration understands what has been a long-held belief within the defence industry – there is an immediate and critical need for a layered system that provides a last line of defence,” said Wahid Nawabi, AV Chairman, President and CEO. “Together, AV and SNC can rapidly provide novel and affordable defensive solutions, ensuring unmatched limited-area ‘under-dome’ protection.”

The architecture will integrate passive and active sensing, radio frequency detection, directed energy, kinetic interceptors, electronic warfare, and cyber capabilities. These components will be aligned to address the full kill chain required to neutralise Group 1–4 UAS and other aerial threats. The system is being built on open standards to ensure interoperability and rapid scalability.

“This is an ambitious, next-generation shield designed to protect the American homeland from increasingly complex threats,” said Fatih Ozmen, SNC CEO. “Meeting that challenge demands industry ingenuity and collaboration on par with the Manhattan Project. We’re proud to bring together complementary capabilities and cutting-edge technologies with AV to make Americans safer.”

SNC’s sister company, Sierra Space, is also exploring collaborating with AV to support the space-based layer of the GDA system.

AeroVironment and SNC announce strategic partnership to deliver Golden Dome C-UAS architecture

(Source: https://cuashub.com/)

 

05 Aug 25. Ondas completes Iron Drone Raider pilots in Europe and Asia. Ondas has announced the successful completion of pilot programmes conducted with governmental homeland security agencies in Europe and Asia. These programmes have tested the Iron Drone Raider system in a range of operational scenarios, including GPS-denied environments, interception of various maneuvering aerial targets, and the use of net-and-parachute capture technology to minimise collateral damage. One of the programmes also included integration with third-party command-and-control (C2) and drone detection systems. “Both pilot programmes concluded with the Iron Drone Raider receiving excellent performance evaluations, validating its capabilities in real-world operations and setting the stage for scaled, long-term deployments.” the company said. During the programmes, the Iron Drone Raider system was demonstrated and achieved mission success in several distinct operational scenarios, including engagements with fast and unpredictable targets, autonomous interception in signal-contested conditions, and full-cycle recovery and redeployment from its base station. Iron Drone Raider’s core interception approach uses a physical net-and-parachute capture method, guided by onboard AI decision-making and real-time manoeuvring capabilities. This combination is designed to enable the Raider to neutralise a range of hostile drones-including autonomous and evasive targets-while ensuring zero collateral damage to people or infrastructure. The system is fully autonomous, AI-powered, and designed for continuous operation. Ondas is now working to convert these pilots in Europe and Asia into long-term infrastructure deployment programmes. (Source: www.unmannedairspace.info)

 

12 Aug 25. Cuashub.com said today that the US Army targets 2026 for scalable high-energy laser program. The U.S. Army is aiming to secure funding in fiscal year 2026 to launch a competition for a high-energy laser weapon system, with an initial focus on countering drones, senior officials confirmed at the Space and Missile Defense Symposium. The planned “Enduring High Energy Laser” program marks a shift from years of rapid prototyping toward a scalable, field-ready capability. Over the past five years, the Army’s Rapid Capabilities and Critical Technologies Office (RCCTO) has built 17 directed-energy prototypes, ranging from 10-kilowatt palletized systems for fixed sites to 50-kilowatt lasers on Stryker-based Maneuver Short-Range Air Defense (M-SHORAD) vehicles. Eleven of those prototypes, including four M-SHORAD systems, have been deployed to U.S. Central Command. Operational testing has shown promise for directed-energy weapons, which offer low cost per shot and deep magazine capacity, but the Army says reliability, maintainability and production scalability remain obstacles.

“We can’t get by with the thought of having clean rooms out in combat,” said Lt. Gen. Robert Rasch, RCCTO director.

To address these issues, the Army plans to issue initial capability documents to industry within 60 days and update its broad agency announcement later this year. The service is seeking modular designs with line-replaceable units that soldiers can swap in the field, particularly for high-failure components like optics. Col. Adam Miller, who leads RCCTO’s directed-energy programs, said the new approach will separate vehicle integration from laser development, allowing systems to be adapted for platforms from Strykers to robotic vehicles. Industry representatives echoed the need to prepare for rapid production, warning that current supplier capacity is not ready for the anticipated demand. If funded, the 2026 competition could mark the Army’s first major push to deliver high-energy lasers in quantity, moving the technology from “onesies and twosies” toward a scalable counter-drone capability.

Army targets 2026 for scalable high-energy laser program

(Source: https://cuashub.com/)

 

05 Aug 25. Ukraine’s Technari “developing re-usable C-UAS interceptor to shoot down Shaheed drones.” Defender Media, a Ukrainian media company reporting on new defence technology, reports that Ukranian company Technari has developed “the Mongoose” a jet-propelled reusable drone with an automatic homing system aimed at combatting jet-propelled Shaheed drones. “According to the developers, it will fly up to the “Shaheeds”, fire a fragmentation charge at the engine or propeller of the enemy drone, and then continue the mission or return for refueling and reloading,” said the report. According to Technari CEO Gennady Suldin, quoted in the story, almost all interceptor drones currently used to shoot down the Shaheds or being developed for this task will soon lose their relevance. “The vast majority of them have a maximum speed of no more than 250 km per hour,” he said. “If the Russians start putting more powerful internal combustion engines on the Shaheds, not to mention jet engines, then the current interceptor drones will not be able to catch up with them. Another problem with such interceptors is that you need to simultaneously keep as many pilots and crews on standby as the enemy will launch the Shaheds at a specific time, because a kamikaze can only hit one enemy drone per mission. The third issue that worries Suldin is production capacity. Ukraine’s need for “anti-Shahed” drones is about 200,000 units per year, and no company on the market can produce such a quantity of the necessary equipment in a short time.  In his opinion, these three problems can be solved if the Shahed interceptors are reusable and can shoot down several enemy aircraft in one mission.

The Mongoose jet engine allows it to reach speeds of 300-310 km per hour – according to Suldin, this will be enough to easily catch up with even future iterations of the Shahed. The maximum flight altitude is 5,000 m, and the combat radius is about 12 km.

For more information

Одеський рецепт проти “Шахедів”. “Технарі” розробили багаторазовий перехоплювач із реактивним двигуном і дробовиком

https://www.technary.com.ua/en/#projects (Source: www.unmannedairspace.info)

 

06 Aug 25. Canada, Mexico and US form trilateral effort to protect FIFA World Cup from drone threats. The governments of Canada, Mexico and the United States of America have convened a three-day Subject Matter Expert Exchange to foster collaboration among government officials*, industry leaders and security professionals to discuss joint efforts in countering uncrewed aerial system (UAS) threats to the 2026 FIFA World Cup. “Through these last three days, experts from the partner nations shared relevant best practices, fostering a productive exchange that advanced our collective efforts to ensure a secure World Cup,” a joint statement reads. As part of the trilateral effort, the countries will strengthen public-private coordination and address policy and technology gaps that may impact their ability to respond effectively to joint challenges.  The exchange included an industry roundtable that provided a platform for dialogue and innovation, enabling the three governments to identify lessons learned, explore solutions and enhance preparedness to confront evolving threats. The collaboration over these three days is the first of a series of events that reflect the shared commitment to regional security and developing strategies to use and mitigate threats posed by emerging technologies.

*Present at the meeting were the Secretary of Foreign Affairs of Mexico, Dr. Juan Ramón de la Fuente; the Government of Mexico’s Representative for the FIFA World Cup, Ms. Gabriela Cuevas; the Executive Director of the White House Taskforce for the FIFA World Cup, Mr. Andrew Giuliani; Mr. Paul Watzlavick, Senior Official of the Bureau of Arms Control and Nonproliferation at the U.S. Department of State; Mr. Michael Jensen, Senior Director for Western Hemisphere Affairs at the U.S. National Security Council; His Excellency Cameron MacKay, Ambassador of Canada to Mexico; Mr. Roberto Velasco, Head of the Mexican Foreign Ministry’s North America Unit; and Mr. Alfonso Zegbe, Head of the Mexican Foreign Ministry’s Interagency Coordination and Public Diplomacy Unit. (Source: www.unmannedairspace.info)

 

07 Aug 25. Lithuania asks NATO for help in strengthening C-UAS capabilities. The Lithuanian government has asked NATO to help strengthen its air defences after a drone carrying 2 kilograms of explosives entered the country’s airspace from Belarus and crashed in a military training area. According to multiple media reports, defence minister Dovilė Šakalienė and foreign minister Kęstutis Budrys have sent a letter to NATO Secretary-General Mark Rutte to request the deployment of additional, “even experimental,” counter-UAS and wider air defence capabilities. The drone crossed the border on July 28. On July 10, a Russian military drone crashed about a kilometer inside Lithuania’s territory after entering from Belarus, say media reports. Lithuania is a key partner in the East Shield and Baltic Defence Line, two interconnected initiatives aimed at strengthening NATO’s eastern flank and deterring potential adversaries. The Baltic Defence Line is a joint project involving Estonia, Latvia, and Lithuania, while East Shield is a programme with Poland’ to bolster its eastern border.  Lithuania plans dedicating EUR 1.1 bn over the next 10 years to strengthen its “counter-mobility arsenal”, say government reports. An investigation into the rogue drone incursion is underway.

For more information:

https://www.politico.eu/article/lithuania-nato-air-defense-drone-belarus-russia/

https://www.reuters.com/business/aerospace-defense/lithuania-asks-nato-more-air-defences-after-drones-land-its-territory-2025-08-05/

https://kam.lt/en/lithuania-and-poland-invest-in-countermobility-military-mobility-and-fuel-reserves-together/ (Source: www.unmannedairspace.info)

 

08 Aug 25. Cuashub.com said today that Belgium implements permanent drone detection in city of Hasselt. Since early July, police in the Limburg Regio Hoofdstad zone have begun using a permanent drone detection system to monitor and respond to unauthorized drone activity in the city of Hasselt. The technology, provided by SkeyDrone, marks the first time a Belgian city has deployed such a system on a permanent basis. The system is designed to improve public safety by enabling law enforcement to detect, track and respond more effectively to drone-related violations. With a coverage radius of more than five kilometers, the detection network monitors activity across Hasselt’s urban airspace, which includes restricted and no-fly zones such as those around public events and Kiewit Airport. According to the police, they receive around 100 drone-related reports from residents each year, mostly tied to privacy concerns or suspicious activity. There have also been incidents involving drones dropping objects and other forms of criminal use. Enforcement has been difficult without the ability to locate drone operators in real time. The new detection capability addresses this gap. During a trial phase in 2024, the system demonstrated its ability to identify the position of drone pilots, enabling police patrols to intervene while a flight is still underway. This operational success led to the decision to fully deploy the system. In addition to detecting unauthorized activity, the system also supports police and emergency drone operations by showing the positions of all nearby drones, helping reduce the risk of mid-air collisions. Since going live, the system has detected 244 drone flights. Of those, 168 were from authorized sources such as the police and fire brigade. However, the system also recorded a number of infractions, with twelve drones exceeding the legal altitude limit of 120 meters, including one that reached 406 meters and entered the approach path of Kiewit Airport while it was active. SkeyDrone, a joint venture between skeyes (Belgium’s air navigation service provider) and Brussels Airport Company, develops airspace monitoring and drone management solutions. The company is involved in supporting U-space implementation in Belgium, which aims to establish a regulated framework for drone operations across European airspace. Authorities in Hasselt say the deployment could serve as a model for other cities facing similar challenges from increasing drone activity. https://cuashub.com/en/content/belgium-implements-permanent-drone-detection-in-city-of-hasselt/ (Source: https://cuashub.com/)

 

08 Aug 25. Cuashub.com said today that Anduril strengthens ties with Indo-Pacific with latest UAS agreements. Anduril Industries is accelerating its push into the Asian defense market through two major partnerships in South Korea and Taiwan. The company recently formalized a partnership with Korean Air to co-develop next-generation UAS for the Asia-Pacific region. In parallel, Anduril announced a significant expansion in Taiwan, including the delivery of loitering munitions, the launch of a new regional office and a deeper collaboration with Taiwan’s leading defense research institute. On August 7, Anduril and Korean Air signed a Technical Agreement in Seoul, building on a Memorandum of Understanding signed in April. The collaboration aims to develop a “Korean-style UAV” based on autonomous mission systems and AI surveillance technologies. The companies are exploring licensed production of Anduril systems in South Korea and establishing a potential local production facility, tentatively titled “Arsenal South Korea.” Korean Air stated the partnership represents a strategic step in enhancing Korea’s future defense posture.

“This collaboration goes beyond co-development – it has the potential to reshape the global UAV market and enhance the operational efficiency of our military’s unmanned forces,” a company spokesperson said.

For Anduril, which has quickly emerged as a key U.S. defense supplier with contracts across the Department of Defense and the Australian Ministry of Defence, the Korea initiative is a continuation of its focus on software-first, scalable defense systems built for real-world use.

Taiwan expansion and loitering munition deliveries

Meanwhile, Anduril is also deepening its presence in Taiwan with the delivery of Altius loitering munitions, the first tranche of such systems to arrive on the island. The delivery was completed within six months of contract signature, significantly faster than most traditional foreign military sales timelines. According to the company, the munitions were built “at financial risk” to meet urgent operational needs.

“This is an enormously consequential moment for Anduril and for the free world,” said company founder Palmer Luckey during a visit to Taipei. “We produced Altius at risk because Taiwan needs defense capabilities now, not years from now.”

Altius is an autonomous, long-endurance platform designed for both surveillance and precision strike. It is modular and attritable, making it well-suited for contested environments where high-value assets would be at risk. In support of these deliveries, Anduril launched a new Taiwan branch office to facilitate local engineering, supply chain coordination, and program execution. The company is also expanding its cooperation with Taiwan’s National Chung-Shan Institute of Science and Technology (NCSIST), including ongoing integration of its Lattice AI platform with Taiwanese unmanned systems. These technologies are expected to appear in an upcoming live-fire exercise and at the Taiwan Aerospace and Defense Technology Exhibition in September. Speaking to a group of Taiwanese engineers at National Taiwan University, Luckey emphasized the long-term vision:

“Taiwan is on the verge of a techno-industrial renaissance for its national defense. It has the highly skilled people and the workforce. It has the world-class technology and the hardware available. It has government officials and private capital ready to support these efforts,” Luckey said during his remarks.

“But this moment demands that we all step up in support of this goal. You have the opportunity to put your extraordinary talents to work in defense of your nation.”

Together, these developments suggest that Anduril is positioning itself as a key defense technology partner for allies across the region, not just as a supplier of American systems, but as a co-developer and long-term participant in local ecosystems.

https://cuashub.com/en/content/anduril-strengthens-ties-with-indo-pacific-with-latest-uas-agreements/ (Source: https://cuashub.com/)

 

07 Aug 25. US Army readies to launch 2026 competition for counter-drone laser weapon. The U.S. Army is counting on funding in fiscal 2026 to hold a competition to pursue a high-energy laser weapon system focused first on countering drones, according to service officials. Over the course of the last five-plus years, the Army’s Rapid Capabilities and Critical Technologies Office, or RCCTO, has built a wide variety of directed energy prototypes, from 10-kilowatt palletized systems for fixed sites to 20- to 30-kilowatt lasers mounted on small tactical vehicles, to 50-kilowatt systems on the Army’s Maneuver-Short-Range Air Defense Stryker-based vehicles. The office also continues to develop a 300-kilowatt laser, as well as high-power microwave capabilities, to counter a variety of threats like drones, artillery and cruise missiles. Out of the 17 prototypes developed through the office, the Army has deployed 11 of them, including four Directed Energy M-SHORAD systems to the U.S. Central Command area of operations. Through operational experimentation, the Army has concluded there is great potential for directed-energy weapons, particularly because of their extraordinarily low cost per shot and naturally high magazine depth. But currently, the ability to sustain the systems in the rough and dirty environments of the battlefield needs work — and industry is not yet poised to manufacture them at scale. The Army decided to pursue what it is calling its Enduring High Energy Laser program to tackle those specific challenges and steer the capability from prototypes to systems that can be fielded.

“We have to continue to work harder, we have to continue to work with the soldiers. We have to continue to work with industry to develop our directed-energy platforms and focus on the areas of reliability,” Lt. Gen. Robert Rasch, the RCCTO director, said Wednesday at the Space and Missile Defense Symposium.

“We’ve got to work on maintainability because … we can’t get by with the thought of having clean rooms out in combat,” he said.

After years of prototyping, the Army’s Enduring High Energy Laser effort will also be designed to be delivered at scale “at more than onesies or twosies,” Rasch said.

The Army plans to release initial capability documents to industry within the next 60 days and is also planning to update its broad agency announcement, which was first released in the summer of 2024. The service is looking at a modular approach for components and is asking industry to design the system with line-replaceable units, meaning components that can be swapped in and out by soldiers in the field in a non-sterile environment. The experimentation in operational scenarios has led to a deep understanding of what components and parts of the laser systems have high failure rates, Col. Adam Miller, who is in charge of directed-energy programs within RCCTO, said at the symposium.

“The optics on these systems are one of the high failure rate items and one of the challenges that we have,” he said. “So as we look to design the beam director … we wanted to insert a touch point opportunity, an integration and a learning event for those soldiers to actually repair that optic and to demonstrate that.”

The system should also be interoperable in the sense that laser providers will not be asked to be vehicle integrators, like many were tasked to do in prototyping.

“We have decoupled the vehicle from our lasers,” Miller said.

“So, if the Army wants to put it on a robot or a Stryker or a [Joint Light Tactical Vehicle],” it can be done with some modifications and size, weight and power adjustments, he said.

The service is also looking to ensure the user interface is common and open, Miller added. The program will also challenge industry to design the systems to be ready to be manufactured at scale.

“Both industry, and on the government side, fully expect directed energy to go up like a hockey stick from the demand perspective, as well as the need to build these systems rapidly,” John Garrity, vice president at BlueHalo, now an AeroVironment company, said at the symposium.

“Not a single component of material suppliers is probably situated to meet that demand today, so our focus has been on building that coalition and team … to make sure that we are ready to actually produce those systems at scale and at volume.” (Source: Defense News)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation. For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

August 8, 2025 by

Sponsored by Echodyne

 

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07 Aug 25. Nine C-UAS platforms named in British Army’s Project Vanaheim trials. The British Army tested at least nine counter-unmanned aircraft systems (C-UASs) during a trialling event as part of Project Vanaheim, a UK Ministry of Defence (MoD) source confirmed to Janes on 1 August. The C-UASs were deployed on Jackals, but they can also be used in a dismounted configuration, the MoD source said. The Supacat High Mobility Transporter (HMT) 400 is dubbed the Jackal by the British Army. Many of the C-UASs used during the trialling were integrated into the British Army network through the Android Tactical Assault Kit (ATAK). The British Army used a mixture of systems that can detect and effect, including utilising both hard and soft kills, as part of the C-UAS trials. The systems included electro-optical cameras, radars, smart sights, and acoustic sensors, according to the representative. “The RF [radio frequency] equipment had a mixture of effects, from disrupting the link between the drone and the ground control station to using CEMA [cyber and electromagnetic activities] effects to hijack the drone’s protocol to take control of it and give commands,” the defence ministry source said. According to the MoD source, the systems with electro-optical cameras could detect “anything that was in their field-of-view including fibre-optic drones”.(Source: Janes)

 

07 Aug 25. AV introduces solution for 2026 E-HEL competition. Defence company AV displayed a model of a new configuration of its Locust directed energy weapon at the 2025 Space and Missile Defense Symposium in Huntsville, Alabama. (Janes/Meredith Roaten) The next-generation system of Locust laser weapon system is being prepared for a future competition for the US Army’s Enduring High Energy Laser (E-HEL), Trip Ferguson, president of space, cyber, and directed energy at AV, announced on 6 August. The competition will kick off after a production decision, Lieutenant General Rob Rasch, director of the Rapid Capabilities and Critical Technologies Office (RCCTO), announced on 6 August. The new version of Locust will be based on cartridges that make the power scalable and more maintainable for soldiers, John Garrity, a vice-president at AV, a new company formed by a merger of AeroVironment and Blue Halo, told Janes in an interview on 6 August. The army will start procuring lasers “at scale, because we believe, based on what we’ve learnt, where that’s the sweet spot so far, that industry has shown us [and] that the technology has shown us where we can get the combination of reliability, affordability, and lethality for our soldiers”, Lt Gen Rasch said during a panel at the Space and Missile Defense Symposium in Huntsville, Alabama. AV has already been on contract to deliver systems to the army under the Palletized High Energy Laser (P-HEL) and the Army Multi-Purpose HEL (AMP-HEL), which is a laser on an Infantry Squad Vehicle. The company has delivered seven systems to the army. Feedback from testing with soldiers informed changes to Locust that will make their debut in the next-generation system, which has not yet been officially named, said Garrity. (Source: Janes)

 

06 Aug 25.  Electro Optic Systems Holdings Limited (“EOS”) (ASX: EOS)  has secured an order for a drone defence capability using a new 100kW high energy laser technology. EOS is already a global leader in counter-drone capability using traditional kinetic weapons to bring down drones. The new high energy laser builds on these core competencies and substantially extends them. The order is valued at €71.4m (approximately A$125m) and was placed by a European NATO Member State. It requires production and delivery of capability, as well as spare parts, training and documentation. The world-first export order will be fulfilled during 2025-2028 by EOS in Singapore.  The laser system has undergone testing in close collaboration with customers. The system is mobile, for deployment on a truck. To ensure high performance, the system is supplied with algorithms, threat detection, target acquisition and beam locking systems. The system will be integrated into a multi-layered air defence system as part of the project.

EOS has created this new high energy laser capability to address the critical market need to defend against drone swarm attacks at an economical cost.

Dr Andreas Schwer, Chief Executive Officer at EOS, said: “In a world of geopolitical uncertainty and ongoing regional tensions, the ability to swiftly and accurately detect, track and defeat drones is paramount. This is the world’s first export order for a 100-kilowatt class laser defence system. The order follows extensive and ongoing marketing, sales and customer demonstration activity by the EOS team. Our new world-leading laser weapon system has the ability to engage targets instantly. The laser hits the target at the speed of light, unlike a bullet which can take a second or two to get there. The system is very accurate and has a very low cost-per-shot – less than 10 cents per shot. The high power level of this system means it can shoot down more drones faster. The system has been designed to shoot down 20 drones per minute.” The EOS team will be at the DSEI 2025 Defence Exhibition & Trade Show at ExCeL London, from 9-12 September. Our experts will be available to discuss our new high energy laser capability and how layered counter-drone solutions, with multiple types of weapon, are essential to counter rapidly evolving battlefield threats.

 

05 Aug 25. Cuashub.com said today that Taiwan plans historic purchase of 100,000 drones. Taiwan is dramatically expanding its UAS ambitions in what analysts are calling the most significant drone procurement initiative in the island’s history. Government agencies plan to acquire up to 100,000 drones in the near term, nearly doubling earlier projections and signaling a sweeping effort to fortify national defense and protect critical infrastructure.

The Ministry of National Defense’s Armaments Bureau recently unveiled a revised procurement target of 48,000 military drones over the next two years. In parallel, Taiwan’s Executive Yuan confirmed that it is actively considering an additional civilian-sector acquisition of approximately 50,000 drones, largely aimed at securing energy facilities, communications hubs and other high-value infrastructure sites.

Combined, the two programs would bring Taiwan’s near-term drone demand to an unprecedented 100,000 units, a scale unmatched in its previous defense procurement history and one that could catalyze lasting changes across the country’s aerospace manufacturing ecosystem.

Industry gears up for massive demand surge

The Armaments Bureau held an industry briefing last week, inviting both domestic and international firms to review specifications and timelines. The event attracted representatives from Taiwanese manufacturers as well as U.S. and French defense firms, reflecting the international interest surrounding the program. Suppliers from adjacent sectors, composite materials, communications systems and electronics, also participated, likely in anticipation of potential subcontracting opportunities. While the 48,000-unit military tender was the centerpiece of the discussions, the presence of officials from the Executive Yuan’s aerospace task force highlighted the government’s whole-of-society approach.

Their civil procurement effort, still under internal review, aims to deploy drones for public safety, infrastructure surveillance and emergency response.

Taiwanese firms to take the lead

Industry insiders believe local manufacturers are being positioned as preferred suppliers, with the government eager to bolster domestic capabilities and reduce reliance on foreign providers. The initiative is expected to provide stable demand for local drone makers for at least the next five years.

Coretronic, which secured contracts during earlier rounds, has already signaled its intent to rebid. Other contenders, such as Thunder Tiger, GEOSAT Aerospace & Technology and Taiwan UAV, are preparing new proposals. Evergreen Aviation Technologies Corporation is also reportedly weighing whether to enter the competition.

The announcement marks a dramatic turnaround for Taiwan’s drone sector, which has long suffered from a lack of domestic orders. Many firms had turned to international markets to stay afloat. Now, the government’s show of commitment is being hailed as a critical inflection point. According to industry analysts, the scale of the planned procurement represents a 30-fold increase over previous public-sector UAS orders, which were typically limited to pilot programs involving just a few dozen units. One model is expected to enter full-rate production at 26,000 units per year, requiring a monthly output of over 2,000 drones, a manufacturing threshold never before attempted in Taiwan. Officials are reportedly considering dual-track procurement strategies, either dividing contracts across multiple vendors or encouraging industry consortia to jointly bid, in order to avoid bottlenecks and ensure timely delivery. This surge in demand is being viewed by defense planners as a stress test for Taiwan’s drone industry. Executed successfully, it could set the stage for a more robust, integrated UAS manufacturing base in the years ahead.

Training capacity faces strain

Even as Taiwan prepares to dramatically expand its drone fleet, questions are emerging over whether it has the trained personnel necessary to operate and maintain it. The Army’s UAS training center, inaugurated in July 2024, currently has the capacity to train about 300 drone operators per year. However, internal defense ministry forecasts suggest that more than 1,000 qualified personnel will be needed annually starting in 2025 to meet operational demands. Experts warn that unless the training pipeline is rapidly scaled, drone availability may far outpace human capacity. Some are calling for a major investment in automation and AI, especially swarm control technologies that would allow a single operator to manage multiple drones simultaneously, easing manpower requirements. https://cuashub.com/en/content/taiwan-plans-historic-purchase-of-100000-drones/ (Source: https://cuashub.com/)

 

06 Aug 25. Cuashub.com said today that RUSI paper cautions NATO against overreliance on drones. A new paper by Professor Justin Bronk, published by the Royal United Services Institute (RUSI), warns that NATO should not seek to replace traditional forms of military firepower with massed UAS, despite the high-profile role drones have played in Ukraine’s war against Russia. In the analysis, titled NATO Should Not Replace Traditional Firepower with ‘Drones’, Bronk argues that while Ukraine has used FPV drones and one-way attack (OWA) systems to considerable effect, these platforms are no substitute for the decisive power delivered by airpower, artillery and armored formations in high-intensity conflict.

“It would be a mistake for NATO forces to rely heavily on massed small UAS and long-range OWA drones to replace traditional weapons systems in pursuit of improved lethality,” Bronk writes.

He contends that Ukraine’s dependence on such drones is a product of battlefield necessity and not a scalable model for Western militaries. The paper highlights Russia’s rapid and effective development of counter-UAS capabilities. According to Bronk, only a small percentage of the vast number of drones launched by Ukrainian forces actually reach their targets, and an even smaller share cause meaningful damage. Russia’s layered electronic warfare, air defense and jamming architecture now limits the effectiveness of massed drone attacks, which will require NATO to be cautious in drawing lessons from Ukraine’s drone-heavy tactics. Bronk also points to structural and institutional barriers within NATO countries that would hinder any attempt to replicate Ukraine’s wartime drone innovation. Western defense procurement systems, export controls and peacetime regulatory constraints make it unlikely that NATO forces could match Ukraine’s speed or scale of drone development and adaptation. Rather than viewing drones as replacements for conventional systems, Bronk recommends NATO focus on integrating UAS to enhance the effectiveness of traditional platforms. Drones, he argues, are best employed as force multipliers, for example, by helping to suppress enemy air defenses, gather intelligence in real time or deliver electronic effects in support of manned aircraft and long-range fires.

“There are many ways that UAS can and already do contribute to NATO’s force structure and capabilities,” Bronk writes, “but generally they are most potent as a means to enable artillery and aircraft to strike targets responsively.”

While UAS are becoming indispensable tools across modern battlefields, Bronk cautions that their limitations, particularly in contested electromagnetic environments, must be fully understood before they are allowed to shape future force planning. As NATO continues to explore the role of emerging technologies, Bronk’s paper serves as a reminder that effective deterrence and combat power still depend on traditional arms, augmented, not replaced, by drones. https://cuashub.com/en/content/rusi-paper-cautions-nato-against-overreliance-on-drones/ (Source: https://cuashub.com/)

 

05 Aug 25. Experts following the Global Radar Systems market are optimistic about what AI can do to this market. According to a report from MarketsAndMarkets said that the integration of Artificial Intelligence (AI) into radar systems is revolutionizing the way we perceive and interact with the world. From enhancing signal processing capabilities to enabling autonomous decision making, AI is transforming radar technology across various sectors, including defense, aviation, automotive, and weather forecasting. The Radar Systems Industry is driven by factors such as increasing adoption of radar systems in Defense & commercial aircrafts, marine vessels, weather stations, airport surveillance, unmanned vehicles, satellites, etc.  The report said: “Traditional radar systems rely on predefined algorithms to process signals, which can be limited in dynamic environments. AI introduces adaptive signal processing techniques that enhance the radar’s ability to detect and interpret signals amidst noise and clutter. Machine learning models can learn from vast datasets to identify patterns and anomalies, improving target detection accuracy. For instance, AI algorithms can enhance the signal to noise ratio, enabling the detection of weak signals that might be overlooked by conventional methods.

Additionally, AI can facilitate real time clutter suppression, ensuring that irrelevant echoes do not hinder the radar’s performance. Adaptive thresholding using machine learning allows radar systems to adjust their sensitivity based on environmental conditions, further optimizing performance. Moreover, AI enhances Doppler signal interpretation, aiding in the accurate measurement of target velocity. By classifying radar echoes via neural networks, systems can differentiate between various objects, such as distinguishing a bird from a drone. Real time AI based pulse compression and interference mitigation ensure that radar systems maintain high resolution and accuracy even in challenging scenarios. Pattern recognition in complex environments and AI support in analog to digital conversion further underscore the transformative impact of AI on radar signal processing.”  Active Companies in the markets today include VisionWave Holdings Inc. (NASDAQ: VWAV), Archer Aviation Inc. (NYSE: ACHR), Rocket Lab Corporation (NASDAQ: RKLB), Joby Aviation, Inc. (NYSE: JOBY), Sidus Space (NASDAQ: SIDU).

MarketsAndMarkets continued: “In defense and security applications, the ability to autonomously detect and recognize threats is paramount. AI enhances radar systems by enabling automatic target recognition (ATR), allowing systems to identify objects without human intervention. Through machine learning, radar systems can differentiate between friend or foe, reducing the risk of friendly fire incidents. Neural networks facilitate multi target tracking, enabling the monitoring of multiple objects simultaneously. AI enhanced object classification in Synthetic Aperture Radar (SAR) imagery allows for detailed analysis of terrain and structures. Learning algorithms contribute to adaptive threat modeling, enabling systems to predict and respond to evolving threats. Contextual interpretation of radar scenes ensures that systems understand the environment, enhancing situational awareness. By reducing false positives in hostile environments, AI improves the reliability of threat detection. Combining Electro Optical/Infrared (EO/IR) and radar data using AI provides a comprehensive view of the battlefield. Predictive analytics for potential target behavior and real time tracking in dense threat scenarios further demonstrate AI’s role in enhancing radar-based threat detection and recognition.”

VisionWave (NASDAQ: VWAV) – Leading Live-Fire Radar Demonstration with Major Abu Dhabi Defense Partner Highlighting Next-Generation Technology and Showcasing Defense Capabilities – VisionWave Holdings Inc. ($VWAV), a next-generation defense technology company specializing in AI-powered sensing and autonomous threat response systems, today announced it plans to lead a high-profile live-fire demonstration of its super-resolution radar system in September 2025. The strategic trial will be conducted in collaboration with a leading government-owned defense contractor in Abu Dhabi, United Arab Emirates.

The radar system—part of VWAV’s advanced sensing suite for tactical Active Protection Systems (APS)—was chosen following rigorous competitive evaluations against several top-tier global radar solutions. The upcoming live-fire event is designed to replicate a spectrum of complex aerial threat scenarios, varying in size, speed, and radar cross-section, to rigorously assess the radar’s detection and tracking performance under realistic battlefield conditions.

“This live-fire trial represents far more than a technical validation—it is set to become a defining milestone for VisionWave,” said Noam Kenig, Chief Executive Officer of VisionWave. “Our AI-powered super-resolution radar is engineered to detect, classify, and track high-speed threats with real-time precision. Being selected by a top-tier global defense partner for this live-fire demonstration underscores what we believe is VWAV’s technological advantage. At the core of our mission is a singular focus: saving lives by delivering accurate, dependable threat detection in the most challenging battlefield conditions.”

Confirming VisionWave’s Role in Next-Generation Defense – The radar systems slated for the demonstration were purchased directly by the Abu Dhabi defense partner as part of a broader integration and evaluation phase. During the live-fire exercise VWAV’s technology will be tested in operationally realistic, high-intensity scenarios to determine its effectiveness within layered defense architectures—where early detection is critical to enabling timely countermeasures deployment.

Backed by Strong Capital for Global Expansion – VisionWave has recently secured a strategic funding facility of up to $50 m, including an initial $5 m tranche commitment, strengthening the Company’s ability to access growth capital. With this enhanced financial foundation and public market presence, VWAV’s leadership believes the Company is well-positioned to accelerate development milestones, support large-scale defense programs, and meet the growing demand for next-generation defense technologies across the U.S., UAE, and allied nations.

Positioned for Strategic Growth in a High-Demand Sector – This initiative is a key step in VWAV’s strategic roadmap to become a mission-critical technology provider for AI-enabled battlefield autonomy and advanced defense systems. The Company’s super-resolution radar platform driven by proprietary AI algorithms is engineered to deliver real-time, high-precision detection, classification, and tracking of fast-moving threats, addressing critical requirements in next-generation active defense architectures.  Continued…  Read this full release and additional news for VWAV by visiting:  https://finance.yahoo.com/quote/VWAV/news/

Other recent developments in the Defense & Military industries include:

Archer Aviation Inc. (NYSE: ACHR) recently announced the successful completion of an initial flight of its Midnight aircraft at Al Bateen Executive Airport in Abu Dhabi, marking a key milestone for its planned commercial deployment in the UAE and the expansion of its operations in the Middle East region.

With the support of the Smart and Autonomous Systems Council (SASC), the flight was witnessed by senior leadership from the UAE General Civil Aviation Authority (GCAA), the Abu Dhabi Investment Office (ADIO), the Integrated Transport Centre, Abu Dhabi Aviation and Abu Dhabi Airports, along with representatives from Archer’s regional partners. Focused on evaluating the aircraft’s VTOL performance in UAE-specific conditions including temperature, humidity and dust exposure, the test flight allows Archer to validate readiness for commercial deployment.

Rocket Lab Corporation (NASDAQ: RKLB) recently announced the launch window for its next mission for multi-launch customer, Institute for Q-shu Pioneers of Space, Inc. (iQPS), a Japan-based Earth imaging company – marking Electron’s 69th mission to date and 11th launch this year.

The mission, named ‘The Harvest Goddess Thrives’, is scheduled to launch from Rocket Lab Launch Complex 1 in New Zealand during a launch window that opens on August 5, 2025 UTC. The mission will deploy QPS-SAR-12, nicknamed KUSHINADA-I for the Japanese goddess of harvest and prosperity, to a 575km circular Earth orbit to join the rest of the QPS-SAR constellation in providing high resolution synthetic aperture radar images and Earth monitoring services globally.

Joby Aviation, Inc. (NYSE: JOBY) and L3Harris Technologies (LHX) recently announced they are exploring opportunities to develop a new aircraft class for defense applications. The gas turbine hybrid vertical take-off and landing (VTOL) aircraft is designed for low-altitude missions and offers the versatility of being optionally piloted, enabling both crewed and fully autonomous operations.

The collaboration leverages Joby’s existing commercial aircraft development program and leading manufacturing capabilities, combined with L3Harris’ proven expertise on platform missionization including sensors, effectors, communication and collaborative autonomy. Flight testing is expected to start this fall with the companies planning to perform operational demonstrations during government exercises in 2026.

“The next-generation of vertical lift technology enables long-range, crewed-uncrewed teaming for a range of missions,” said Jon Rambeau, President, Integrated Mission Systems, L3Harris. “We share a vision with Joby to deliver urgently-required innovation by missionizing VTOL aircraft for defense needs.”

Sidus Space (NASDAQ: SIDU) recently announced the successful deployment of its new autonomous guidance, navigation, and control (GNC) software, SpacePilot and commissioning of the Attitude Determination and Control System (ADCS) on LizzieSat®-3 (LS3).

“Activating SpacePilot and commissioning the ADCS marks a critical milestone for LS3’s mission,” said Carol Craig, Founder and CEO of Sidus Space. “This software enables a higher level of autonomy, ensuring greater efficiency and mission resilience while reducing reliance on ground resources.”

The successful commissioning of the ADCS marks a critical step toward LS3’s full mission readiness. With the deployment of autonomous SpacePilot, the satellite can achieve accurate sun-pointing for maximum power generation, stabilize payload orientation for improved data collection, and maintain antenna alignment for reliable communications. This milestone also paves the way for more rapid commissioning of the remaining onboard technologies, including Sidus’s proprietary sensor suite. (Source: PR Newswire)

 

06 Aug 25. Pierce Aerospace Showcases Remote ID in DHS C-UAS Demonstration. Pierce Aerospace participated in the U.S. Department of Homeland Security’s (DHS) Counter-Unmanned Aircraft Systems (C-UAS) technology demonstration, held July 24–25, 2025, at the Customs and Border Protection (CBP) Unmanned Technology Operations Center in Summit Point, West Virginia. The event brought together senior leadership, including DHS Secretary Kristi Noem, component heads, senior government executives, and select industry representatives, for a high-level executive roundtable. This demonstration underscored DHS’s continued commitment to addressing the growing national security risks posed by unauthorized drone activity and showcased cutting-edge technologies under evaluation for deployment.

“It was an honour to participate as the only dedicated Remote ID Provider to the DHS C-UAS Industry Day,” said Aaron Pierce, CEO of Pierce Aerospace. “Secretary Noem and DHS Leadership took the time to engage with us and learn about how we’ve utilized our Remote ID systems as a critical and fundamental layer to achieving success in the C-UAS mission. Our ability to provide target discrimination is vital, and we successfully demonstrated the value of our capabilities to senior executives alongside some of our C-UAS teammates. We’ve been developing these capabilities since 2017 and this event marked a dramatic escalation in the seriousness with which senior government leaders are taking C-UAS. We applaud DHS executives for dedicating an entire day in the field learning how these technologies work.”

Secretary Noem has been a strong proponent of expanding C-UAS capabilities across the Department of Homeland Security, recognizing the escalating threat posed by malicious drone activity across multiple domains. This demonstration closely follows the release of two drone-focused Executive Orders “Unleashing American Drone Dominance” and “Restoring American Airspace Sovereignty.” These Executive Orders underscore the critical role of Remote ID in supporting State, Local, Tribal, and Territorial (SLTT) law enforcement and mandate the development of federal grant programs to assist SLTTs in acquiring detection, tracking, and identification (DTI) technologies, including solutions like Pierce Aerospace’s Remote ID sensors and software.

“Law enforcement can utilize our Remote ID solutions today. Our sensors and software are core DTI technologies with widespread application in law enforcement, private security, public venues, airports, critical infrastructure, stadiums, and more,” said Pierce. “Our capabilities aid law enforcement with the interdiction of unauthorized drone operators. And we can do that at low risk without any cumbersome regulations. In the C-UAS stack, our ability to detect both drones and their operators is the primary and most common means of mitigating concerning drones and their operators. We can also help characterize airspace risks, enabling authorized end users to mitigate threat drones via complementary integrated C-UAS technologies. Our Remote ID capabilities are the foundation for C-UAS.”

A June 2024 Government Accountability Office report (GAO-24-106158) found, “DHS officials said that Remote ID is a key piece of counter-drone technologies as it enables law enforcement to gain additional threat discrimination around critical infrastructure.” This report, along with the DHS’s C-UAS Industry Day, reflects DHS’s view that Remote ID is integral to C-UAS strategies, providing law enforcement with actionable drone identification to distinguish between benign and suspicious UAS activity. In 2024, DHS awarded Pierce Aerospace a $10M sole source SBIR Phase III Indefinite Delivery Indefinite Quantity (IDIQ) contract for Remote ID technology and began deploying Pierce Aerospace’s solutions, including YR1 Remote ID Sensors, in support of U.S. National Security. (Source: UAS VISION)

 

06 Aug 25. Hanwha Systems has completed the rollout of the first mass-produced active electronically scanned array (AESA) radar for South Korea’s next-generation KF-21 fighter jet, marking a significant milestone in the nation’s drive to develop advanced fighter avionics domestically. The rollout ceremony, hosted by the Defense Acquisition Program Administration (DAPA) and organized by Hanwha Systems, was held on August 5 at the company’s Yongin R&D Center. The event brought together more than 50 attendees, including senior officials from the Republic of Korea Air Force, DAPA, the Agency for Defense Development (ADD), and other key government and defense institutions. Following an initial production contract signed last year, Hanwha Systems finalized the full agreement earlier this year. Under the program, the company will deliver 40 AESA radar units between 2025 and 2028 for integration into the KF-21. Often referred to as the “eyes” of a fighter jet, AESA radars provide simultaneous multi-mission capabilities, including tracking airborne, ground, and maritime targets. Compared to legacy mechanically scanned radars, AESA technology enables faster target acquisition, broader coverage, and enhanced survivability by simultaneously engaging multiple threats. Hanwha Systems began developing the radar in 2016 and unveiled its first prototype in 2020—just four years after development commenced—demonstrating its indigenous radar capabilities to the global defense market. With the start of mass production, the radar is now ready for integration into the KF-21. The rollout took place at a newly completed antenna testing facility at the Yongin R&D Center. Completed in late 2024 specifically for AESA radar development, the facility includes a Near-Field Chamber capable of testing up to four airborne radar systems simultaneously. It is equipped to evaluate core performance metrics and signal characteristics of AESA antenna arrays, each consisting of approximately 1000 transmit/receive (T/R) modules.

“Hanwha Systems is the one and only company in Korea to successfully develop, mass-produce, and export AESA radar systems,” said Hyuk Park, Head of Hanwha Systems’ Defense Electronics (DE) Division. “We are expanding our global reach with scalable radar solutions tailored to a wide range of platforms—from light fighters to unmanned aerial vehicles.”

In May 2024, Hanwha Systems signed its first export contract for AESA radar antennas with Leonardo, a leading European defense and aerospace company. The agreement covers radar systems for light attack aircraft, marking the start of Korea’s radar exports.

 

06 Aug 25. Anti-drone system propels Greek plans for home-grown defence industry.

  • Summary
  • Greece to spend hundreds of ms of euros on defence innovation
  • Three anti-drone systems to enter mass production in 2026
  • Drone technology will be used to protect troops, ships near Turkish border

It took just minutes for a new Greek-made anti-drone system to show what it is capable of. On its first test run with a European Union patrol in the Red Sea a year ago, the Centauros system detected and swiftly brought down two aerial drones launched by Yemen’s Houthis, who have been attacking merchant vessels in the busy shipping lane.  Make sense of the latest ESG trends affecting companies and governments with the Reuters Sustainable Switch newsletter. Sign up here. Another two drones swiftly retreated: Centauros had jammed their electronics, said Kyriakos Enotiadis, electronics director at state-run Hellenic Aerospace Industry (HAI), which produces the anti-drone system.(Source: Reuters)

 

02 Aug 25. US Army assesses C-UAS capable autonomous tactical vehicle. The US Army has assessed the Overland AI ULTRA Fully Autonomous Tactical Vehicle prototype during exercise Agile Spirit 25 at the Combat Training Center in Georgia.  Autonomous vehicles can be deployed in harm’s way instead of service members to save lives. The ULTRA is modular and the company is actively developing variants that support counter-uncrewed aerial systems (C-UAS) requirements as well as other features. Later this month, Overland AI personnel will demonstrate a C-UAS and intelligence, surveillance and reconnaissance (ISR)-enabled ULTRA for Under Secretary of Defense for Research and Engineering as well as the Army and United States Special Operations Command. Military teams have complete oversight of the ULTRA as long as it has connectivity and a re-transmitting signal via the internet and/or satellites. Teams can also pre-select commands for the ULTRA, including travelling in certain patterns or to precise locations. (Source: www.unmannedairspace.info)

 

31 Jul 25. US Army shares lessons learned on C-UAS as Project Flytrap concludes. The US Army has shared lessons learned from the Project Flytrap counter-uncrewed aerial systems (C-UAS) exercises during a media round table on July 30.

“[C-UAS] are essential to success on the modern battlefield,” said Lt. Gen. Charles Costanza, commanding general of V Corps. “US and allied forces must rapidly transform to the very real threat of unmanned drones by testing, adjusting and ultimately integrating the best C-UAS platforms in the world to protect our forces. Project Flytrap is a key component of V Corps’ transformation strategy.”

Project Flytrap 4.0 runs from July 27-31, 2025, at Bemowo Piskie Training Area, near Ełk, Poland. It is the final iteration of the C-UAS training events where soldiers from the US Army’s 2nd Cavalry Regiment and those from the 1st Royal Yorkshire Regiment, United Kingdom, test new C-UAS capabilities in combined exercises in order to develop and inform the future of anti-drone tactics and technologies. More than 40 organizations, 400 representatives across industries, and allies and partners from four different countries including U.K., Poland and Australia, participated. The first phase of Project Flytrap began in March and was launched to identify and test C-UAS solutions. This included considering lessons learned from the war in Ukraine. The second phase included installing these systems into various platforms within the US and UK formations. The third phase focused on conducting squad and platoon-level C-UAS exercises. Theories and best practices were further developed through real-world data. The fourth and last iteration concludes today, July 31 and has implemented battalion-level operations, with defensive and offensive operations around the clock. Infantry soldiers took eight-hour courses over three days next to industry experts, learning to build almost 300 UAS with about a dozen models, including fibre optic and ‘jam-resistant’ drones, and how to counter them in the field. Industry partners went out in the field and worked side-by-side with the soldiers, to fix issues such as battery drainage and equipment compatibility across allied platforms.

“There’s no one system or one solution to counter-UAS,” said Col. Donald Neal, Jr., regimental commander, 2nd Calvary Regiment, Grafenwoehr, Germany. “The counter-UAS capability we’ll have in the future is going to have to be an integrated, multi-system solution.”

The layered effect during Flytrap included a Stryker infantry formation, soldiers wearing technology with radio frequency detect and defeat capability to jam UAS, soldiers with M4s to shoot down enemy drones and soldiers who were manning the drones from the other side.

“At each echelon, you need the ability to handle that type of data on the systems we use to communicate with,” Neal said. “You have two options: you have the ability to do assault kills, which means you’re altering the flight path without a projectile in the air that shoots it out of the air. Or a hard kill, which means you’re altering the flight path with projectiles. So, it’s neutralised or destroyed.”

Col. Matt Davis, transformation chief and exercise director of V Corps, Project Flytrap, said using diversified drones helped with the layering effects. “If we flew the fiber optics, the RF detect systems we were using, they weren’t going to detect them,” he said. “We had to rely on acoustics or an optical, for example.” (Source: www.unmannedairspace.info)

 

29 Jul 25. ParaZero reports “successful completion of net turret C-UAS launcher system.” ParaZero Technologies has announced the successful completion of a field trial for an enhanced variant of its DefendAir system, “marking a significant expansion of the company’s multi-layered drone defense capabilities,” said the company in a press release.

“The trial, conducted in Israel, tested a new stationary net turret launcher system to provide 360 perimeter defense against hostile drones. The DefendAir system’s turret variant is integrated with an advanced optical detection and tracking system. This integration enables a fully autonomous operation—from threat detection and tracking to successful interception—representing a notable leap in the system’s overall autonomy and performance.

“The enhanced net launcher layout allows the deployment of a significantly larger net, providing broader area coverage and improved effectiveness against faster and larger drone threats. This capability is designed to secure high-value sites such as critical infrastructure, government buildings and other valuable assets against complex drone attacks.

For more information: https://parazero.com/2025/07/28/parazero-successfully-completes-field-trial-of-new-configuration-of-the-defendair-system-offering-a-comprehensive-counter-drone-solution/ (Source: www.unmannedairspace.info)

 

05 Aug 25. Cuashub.com said today that Northern Strike 25-2 to sharpen joint force readiness with C-UAS training across Michigan. One of the Department of Defense’s largest readiness exercises for reserve components, Northern Strike (NS) 25-2, will take place across Michigan from August 2 to 16, 2025. Sponsored by the National Guard Bureau, the exercise will bring together more than 7,500 participants from 36 US states and territories and 9 allied nations. Hosted at Michigan’s National All-Domain Warfighting Center (NADWC), the exercise will focus on enhancing capabilities in Combined Joint All-Domain Command and Control (CJADC2), Combined Arms Live-Fire Exercises (CALFEX), Cyberspace and Electromagnetic Activities (CEMA), Defensive Cyberspace Operations (DCO), contested logistics, and expeditionary skills. This year’s summer iteration will also include homeland security scenarios and defense against UAS, supported by over 30 fixed-wing aircraft conducting force protection, support, and refueling missions.

“This year’s schedule of NS training events reflects the unique capabilities of Michigan and the NADWC to support Department of Defense objectives,” said US Army Major General Paul D. Rogers, adjutant general and director of the Michigan Department of Military and Veterans Affairs. “We take pride in continuously improving exercise design by integrating innovative technologies, including the testing and evaluation of counter-UAS systems, into dynamic, multi-domain training that meets the evolving needs of commanders across the force.”

Since its inception in 2012, Northern Strike has grown into a scalable, cost-effective, and mission-focused exercise that allows units to complete essential training and readiness tasks. It is sponsored by the Army National Guard and accredited as a Joint National Training Capability (JNTC) exercise.

“NS is unique, not only because of its integration of defense innovators and academia, but because it fully reflects the realities service members are facing on today’s modern battlefield,” said Colonel Todd Fitzpatrick, land exercise director for NS.

“Recent global events have shown just how devastating cruise missiles and small UAS can be to both military and civilian infrastructure. Detection, identification, intercept and destruction of these threats are no-fail missions and NS provides the operational environment to rigorously train for them.”

Echodyne, Strongwatch, Picogrid, Persistent Systems, and Bren-Tronics International Solutions are all participating in the C-UAS aspect of the upcoming exercise.

Beyond its military value, Northern Strike also delivers a significant economic impact, contributing an estimated $38m annually to Michigan’s economy through military pay, travel, and local spending in northern lower Michigan.

Northern Strike 25-2 to sharpen joint force readiness with C-UAS training across Michigan

(Source: https://cuashub.com/)

 

05 Aug 25. Cuashub.com said today that Taiwan may be developing new variant of Tengyun UAS. Taiwan is reportedly moving toward the development of an electronic intelligence (ELINT) variant of its domestically produced Tengyun UAS, according to new details published in the Liberty Times and based on official procurement documents. Under the Ministry of National Defense’s list of controlled military items, published in accordance with Taiwan’s Defense Industry Development Act, the government plans to allocate NT$60 m (US$20.08 m) in 2027 and 2028 for the purchase of two “large composite airframes.” An additional NT$55m is designated for acquiring two “electronic signals intelligence receiver module systems,” suggesting a push to equip the indigenous drone platform with advanced surveillance capabilities. The original Tengyun UAS was introduced in 2015 by Taiwan’s National Chung-Shan Institute of Science and Technology (NCSIST), followed by the unveiling of the improved Tengyun II in 2019. The upgraded version is designed for medium- to long-range reconnaissance missions and is capable of operating in all weather conditions. Its primary mission focus has been intelligence gathering over and around the Taiwan Strait. To date, four Tengyun II prototypes have completed combat evaluations, though Taiwan’s Air Force has not yet placed a full production order. The new procurement plans indicate a continued investment in refining the platform’s capabilities, potentially with a specialized role in signals intelligence. If developed, an ELINT-configured Tengyun II would represent a significant expansion of Taiwan’s indigenous UAS capabilities. It would also complement Taiwan’s growing fleet of U.S.-made drones. Taipei is expected to receive four MQ-9B SeaGuardian UAS from the United States in 2026 and 2027, platforms known for their long-endurance maritime surveillance and ISR capabilities.  Analysts suggest the pairing of the SeaGuardian and an ELINT-equipped Tengyun II could give Taiwan a more comprehensive early warning network, improve situational awareness and enhance the coordination of joint force deployments in the event of a regional crisis. While the Ministry of National Defense has not publicly confirmed the ELINT variant, the budget allocations and procurement language indicate a clear trajectory toward expanding Taiwan’s unmanned surveillance and signals collection capabilities.

Taiwan may be developing new variant of Tengyun UAS

(Source: https://cuashub.com/)

 

01 Aug 25. Cuashub.com said today that Project Flytrap Concludes: U.S. Army V Corps Strengthens NATO Counter-UAS Readiness. On July 31, the U.S. Army V Corps concluded Project Flytrap 4.0, the final iteration of a multinational training initiative designed to enhance counter-unmanned aerial systems (C-UAS) capabilities and interoperability with NATO allies. The exercise, which began on July 27 at the Bemowo Piskie Training Area in Poland, brought together U.S. and UK forces to test and refine emerging C-UAS technologies in a live operational environment. The training emphasized the integration of C-UAS platforms into combined arms operations and improving battlefield survivability against aerial threats. It also served as a proving ground for NATO-aligned forces to evaluate how rapidly evolving drone threats can be countered through joint experimentation and tactical innovation.

“Counter-unmanned aerial systems are essential to success on the modern battlefield,” said Lt. Gen. Charles Costanza, commanding general of V Corps. “U.S. and allied forces must rapidly transform to the very real threat of unmanned drones by testing, adjusting, and ultimately integrating the best C-UAS platforms in the world to protect our forces. Project Flytrap is a key component of V Corps’ transformation strategy.”

The exercise is part of the Army’s broader Transformation Initiative, which seeks to modernize force posture and capabilities across the European theater.

Project Flytrap has evolved into a critical venue for validating C-UAS concepts in real-world scenarios, particularly in coordination with NATO partners.

“Developing, testing, and fielding C-UAS technologies together with our NATO Allies and partners enhances our deterrence capability,” said Col. Donald Neal, Jr., commander of the 2nd Cavalry Regiment. “Training and experimentation with our Allies and partners serve to build capacity and increase European leadership in European security, effectively strengthening the NATO Alliance.”

“We’re uniquely positioned in Europe, where we can work with Allies and partners to provide opportunities for innovation with the latest emerging technology and capabilities,” added Col. Matt Davis, V Corps transformation chief and exercise director. “Project Flytrap is one of those.”

In total, 400 representatives joined from over 40 organizations across industries. The US, Allies and partners from four different countries including UK, Poland, and Australia all took part in what over 4 iterations has been one of Europe’s flagship C-UAS training exercises this summer.https://cuashub.com/en/content/project-flytrap-concludes-u-s-army-v-corps-strengthens-nato-counter-uas-readiness/ (Source: https://cuashub.com/)

 

01 Aug 25. USAF Boeing E-7 Wedgetail saved? Senate blocks DoD plan to scrap radar jet for space-based alternatives. Why the Senate thinks its too early to move all AEW&C roles into space and is moving to compel the Air Force to purchase the E-7 Wedgetail. The Senate Appropriations Committee has released its fiscal year 2026 Defense Appropriations Bill, which includes $647 m to continue development of the E-7 Wedgetail early warning and control (AEW&C) aircraft. The move blocks a Pentagon plan to cancel the radar jet in favour of space-based surveillance.

Senate draft bill restores funding for E-7 Wedgetail

The Senate Committee has approved and released its FY 2026 Defense Appropriations Bill that includes $647 m in funding for the Air Force’s E-7 Wedgetail AEW&C aircraft. The text states it includes an “increase of $647m to continue the E-7 Wedgetail early warning and control and battle management mission aircraft.”

While the aircraft has been in service in Australia since 2012, the Department of Defense stated in June that the radar plane is suffering from “significant delays with cost increases from $588 m to $724 m per aircraft and survivability concerns in a contested environment.” The DoD revealed plans to cancel the E-7 Wedgetail, purchase naval E-2 Hawkeyes as an interim measure, and focus on space-based assets. In all, the draft bill includes $59.8 bn for Air Force procurement and $49.3 bn in R&D funding. Other notable increases in funding include $1.5 bn for eight C-130J Super Hercules, $800 m to “continue a high priority classified program,” $619 m for two EA-37B Compass Call aircraft, and $2.6bn for the Sentinel ICBM program.

An existing solution for the USAF

Despite Pentagon hesitation, many in Congress see the Wedgetail as a viable stopgap solution.

The Wedgetail is to partially replace the ageing E-3 Sentry radar plane, which is readily identified by its larger mounted rotating antenna. The E-7 was originally developed by Boeing for the Royal Australian Air Force and has since been selected by other US allies. The aircraft is also in service, or has been ordered by Turkey, South Korea, the United Kingdom, and NATO. The Air Force selected the E-7 as a ready-made replacement for its ageing AWACS aircraft. Boeing has been contracted to rapidly provide representative prototypes adapted to USAF requirements, with plans to bring the aircraft into initial service in 2027.

E-7 Wedgetail is partially replacing the E-3 Sentry

In 2015, the Air Force had 36 E-3 Sentries in service, and now it has around 22. The Air Force had plans to procure 26 Wedgetails to partially replace the Sentries, with some of the E-3 roles being taken over by space-based assets. The United Kingdom’s Royal Air Force has already retired its fleet of E-3 Sentries and is now preparing to receive the first of five planned E-7 Wedgetails. The Pentagon feels that AEW&C aircraft will be too vulnerable in future wars. Indeed, the Russian Air Force has seen two of its seven to eight upgraded Beriev A50U AEW&C shot down while they were thought to be operating at a safe distance from the Ukrainian frontline. The debate in Washington is not so much whether the Wedgetails are capable as whether they will be too vulnerable. The DoD wants to move the roles into space, but critics fear that those capabilities are not yet sufficiently mature to completely replace conventional radar planes. Whether the Wedgetail ultimately flies in US colours now hinges on whether lawmakers’ concerns about space-based vulnerability outweigh Pentagon ambitions for orbital dominance. (Source: Google/https://aerospaceglobalnews.com/)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

August 1, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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26 Jul 25. Counter-drone efforts rise as prison sightings revealed. Organised crime gangs are being targeted by the police and prison service as part of a nationwide crackdown on drone drops into prisons.

  • Prison Service working with police to tackle threat of drones as part of Plan for Change
  • Drone incidents up by 43 per cent in the last financial year, new data reveals
  • Two recent counter-drone operations result in nine arrests

The move is backed by a new investment of £900,000 and designed to disrupt the in-flow of drugs and weapons that are destabilising prisons and putting staff and offenders at risk.  It builds on the £40m already invested this year into prison security measures, including exterior netting and reinforced windows. Stopping the flow of drugs and weapons getting into prisons is a crucial step in gripping the prisons crisis the Government inherited to make streets safer, as part of the Plan for Change.  The news comes as data published today (31 July) reveals there were 1,712 drone incidents between April 2024 and March 2025 at prisons across England and Wales. This is an increase of 43 per cent compared to the previous 12 months. The clampdown has already seen counter-drone operations at HMPs Manchester and Wandsworth leading to the swift arrest of nine individuals. Similar operations are planned in the coming months.

Minister for Prisons, Probation and Reducing Reoffending, Lord Timpson, said: “The ease with which drones were operating over prisons was yet another sign of the chaotic prison system we inherited last July.

As part of the Plan for Change, we are tackling the organised crime gangs behind the drug supply routes so that our prisons can start cutting crime and stop creating better criminals. One of the sophisticated drones recovered in the HMP Wandsworth operation had a value of £6,000, an extended flight time of 40 minutes and the ability to hold four loads at one time.  Four further arrests were made by West Mercia Police earlier this month for flying drones over high-security prison HMP Long Lartin.”

Detective Superintendent of the North West Regional Organised Crime Unit, Claire McGuire said: “Tackling the use of drones to smuggle drugs, weapons, and other illicit items into prisons is one of our top priorities. These activities fuel organised crime and pose serious risks to both staff and inmates. We continue to work closely with national partners including His Majesty’s Prisons and Probation Service, the National Crime Agency, local police forces, and intelligence teams to disrupt this criminal behaviour and prevent contraband from entering prison estates. By sharing intelligence and coordinating operations, we are strengthening our collective response to this growing threat.”

The latest Safety in Custody statistics, also published today, highlight the alarming levels of violence across the prison estate, with 20,570 prisoner-on-prisoner assaults and 10,568 assaults on staff in the 12 months to March 2025. Reducing the availability of contraband in prisons plays a key role in reducing violence across the estate. Earlier this week, a trial into the use of tasers began across adult male prisons in England and Wales – the first time their use is being trialled in the prison estate. The Lord Chancellor, Shabana Mahmood, has also announced the rollout of protective body armour for those staff working in prison settings holding the most dangerous offenders.  (Source: https://www.gov.uk/)

 

01 Aug 25. Buyutech and Titra partner to integrate advanced detection systems into homegrown unmanned aerial vehicles. Turkish companies Titra and Buyutech signed a deal to integrate artificial intelligence-powered camera systems into a range of homegrown unmanned aerial vehicles, the firms announced at the IDEF 2025 defense fair in Istanbul. Under the agreement, Buyutech will design, produce, and install high-performance imaging systems for several Titra UAVs, including the Alpin and Alpin-2 unmanned helicopters, the Deli kamikaze drone, the Pars observer drone, and Merkut FPV platforms developed by Titra’s defense subsidiary SAVX. The technology aims to strengthen the drones’ surveillance and targeting capabilities by enabling advanced detection functions using AI. The companies said the collaboration reflects Türkiye’s push to develop modular, autonomous, and fully domestic defense systems amid rising global demand for next-generation UAVs. Buyutech, a key supplier to Türkiye’s automotive sector, has previously developed advanced driver assistance systems (ADAS) and cameras in partnership with carmakers including Togg, Ford Otosan, and Tofas. The company plans to scale its annual camera production from 1 m to 3.5 m units in the near term, citing growing demand from the defense industry. Buyutech co-founder and CEO Omer Orkun Duztas said the company is leveraging experience from the civilian sector to contribute to national security.

“Our ideal is to develop technologies that will make everyone feel more peaceful and secure — we’re proud to bring the experience we gained in civilian sectors to ensure the security of our nation,” he said.

The new generation of AI-powered systems is expected to serve multiple platforms beyond the initial models covered in the agreement, the companies said.

Buyutech and Titra partner to integrate advanced detection systems into homegrown unmanned aerial vehicles Turkish companies Titra and Buyutech signed a deal to integrate artificial intelligence-powered camera systems into a range of homegrown unmanned aerial vehicles, the firms announced at the IDEF 2025 defense fair in Istanbul. Under the agreement, Buyutech will design, produce, and install high-performance imaging systems for several Titra UAVs, including the Alpin and Alpin-2 unmanned helicopters, the Deli kamikaze drone, the Pars observer drone, and Merkut FPV platforms developed by Titra’s defense subsidiary SAVX. The technology aims to strengthen the drones’ surveillance and targeting capabilities by enabling advanced detection functions using AI. The companies said the collaboration reflects Türkiye’s push to develop modular, autonomous, and fully domestic defense systems amid rising global demand for next-generation UAVs.

Buyutech, a key supplier to Türkiye’s automotive sector, has previously developed advanced driver assistance systems (ADAS) and cameras in partnership with carmakers including Togg, Ford Otosan, and Tofas. The company plans to scale its annual camera production from 1 m to 3.5 m units in the near term, citing growing demand from the defense industry.

Buyutech co-founder and CEO Omer Orkun Duztas said the company is leveraging experience from the civilian sector to contribute to national security. “Our ideal is to develop technologies that will make everyone feel more peaceful and secure — we’re proud to bring the experience we gained in civilian sectors to ensure the security of our nation,” he said.

The new generation of AI-powered systems is expected to serve multiple platforms beyond the initial models covered in the agreement, the companies said. (Source: News Now/https://www.yenisafak.com/)

 

30 Jul 25. HawkEye 360 Launches Advanced GNSS Interference Detection Capabilities to Enhance Defense and Intelligence Operations. HawkEye 360 Inc., the global leader in signals intelligence data and analytics, today announced powerful enhancements to its GNSS Interference (GNSS-I) Detection product suite. These upgrades—designed with defense, intelligence, and national security operations in mind—offer unprecedented accuracy, coverage, and insight into global GPS jamming and spoofing threats. The update includes a new wider frequency algorithm that better distinguishes individual emitters, incorporates GPS spoofing detection, and is terrain adjusted for better geolocation accuracy, delivering greater situational awareness and more precise geolocation of interference sources worldwide.

“In contested environments, timely RF intelligence is the key to mission success,” said Todd Probert, President, U.S. Government Business Unit. “Traditional land, sea, and air systems struggle in Anti-Access/Area Denial environments, while our satellites provide global GNSS-I detection and geolocation coverage. These enhanced capabilities give defense and intelligence teams the ability to identify and neutralize threats before they disrupt operations, enabling faster decisions and sharper visibility into adversary behavior.”

Purpose-Built for Strategic Operations

Many high-stakes operations rely heavily on accurate and uninterrupted GPS signals. Disruptions to these signals, whether through intentional interference or incidental factors, can introduce uncertainty and compromise the effectiveness of critical activities. HawkEye 360’s enhanced GNSS Interference Detection product suite supports strategic decision-making by providing timely, precise insight into potential signal disruptions, enabling stakeholders to better assess risk, respond confidently, and maintain operational continuity in dynamic environments.

With this release, HawkEye 360’s GNSS-I Detection product suite now provides:

  • 15x Increase in geolocation density
  • Spoofing Detection and differentiation
  • Terrain Adjusted for increased accuracy
  • Consistent Monitoring across wide areas of interest

Enabling Action in Contested Environments

These enhancements further solidify HawkEye 360’s commitment to equipping national security and defense partners with tools to operate confidently in GPS-denied or disrupted environments.

“We deliver high-confidence RF intelligence that helps defense and intelligence professionals protect assets, outmaneuver threats, and gain the upper hand in the spectrum,” said Alex Fox, President, International Business Unit. “By adding terrain-aware modeling, we give our partners a decisive advantage in detecting and responding to GPS interference—whether they’re operating in rugged mountains or dense urban environments. They can act with confidence, knowing the data is both precise and actionable.”

Precision You Can Act On

HawkEye 360’s new spoofing detection capability identifies potentially malicious transmitters that imitate legitimate GPS Course/Acquisition (PRN) codes—a tactic increasingly used to deceive aircraft and mislead navigation systems. The capability supports threat mitigation and trend analysis by detecting and geolocating these spoofers down to a kilometer-level precision. (Source: ASD Network)

 

31 Jul 25.  US Army Tests Minigun-Equipped Abrams in New Anti-Drone Exercise. The U.S. Army’s 1st Armored Brigade Combat Team, 1st Armored Division has tested an M1 Abrams main battle tank equipped with an M134 Minigun, a 7.62x51mm six-barrel rotary weapon more commonly seen on helicopters.  Unlike the M240, which fires about 650 rounds per minute, the electrically powered M134 Minigun can fire up to 6,000 rounds per minute. The tank-tested version is also equipped with a Trijicon MGRS collimator sight. While the setup offers overwhelming firepower, it comes with a critical drawback. According to Defense Express, operating the weapon requires the crew member to stand in the open loader’s hatch, exposing them to enemy fire.

“Despite how promising this sounds, the setup has one critical downside: to operate the weapon, the crew member must expose themselves through the loader’s hatch, becoming an easy target for enemy fire,” the outlet noted.

“Even if we set aside the threat of kamikaze drones, battlefield shrapnel alone remains a deadly risk. This comes on top of recent criticism of a new U.S. anti-drone doctrine, which bizarrely instructs tank commanders to exit the vehicle and use hand signals to direct fire.”

As of now, there is no indication that this Minigun configuration will be adopted for regular service. (Source: https://www.sofx.com/)

 

30 Jul 25. Cuashub.com said today that ParaZero trials net-based autonomous drone mitigation.  ParaZero Technologies has completed a successful field trial in Israel of a new stationary variant of its DefendAir counter-drone system, expanding the company’s suite of layered aerial defense technologies. The trial featured a turret-based net launcher designed to intercept hostile drones using a 360-degree perimeter defense mechanism. According to the company, the system integrates optical detection and tracking tools, enabling fully autonomous identification, tracking and engagement of airborne threats. The latest configuration includes a significantly larger net than previous iterations, aimed at improving coverage and performance against larger or faster drones. This adaptation is intended for fixed-site defense, including critical infrastructure and government facilities, which are increasingly vulnerable to unmanned aerial threats. The turreted variant is a departure from ParaZero’s more compact, portable DefendAir net gun systems, which have been marketed for mobile or tactical use. While ParaZero did not disclose technical performance data or specific metrics from the trial, the company characterized the test as a milestone that improves the effectiveness and autonomy of its existing DefendAir platform. ParaZero has focused on combining traditional kinetic interception methods, such as nets, with detection and automation technologies to deliver systems that can operate independently and in complex environments. The company says it intends to continue refining the DefendAir platform for both mobile and fixed-site defense roles. The turret-based net system is expected to be part of future deployments in scenarios where autonomous, kinetic drone mitigation is a preferred option. https://cuashub.com/en/content/parazero-trials-net-based-autonomous-drone-mitigation/ (Source: https://cuashub.com/)

 

30 Jul 25. Cuashub.com said today that Ukrainian FPV downs rare Russian drone in first-of-its-kind strike. The Security Service of Ukraine (SBU) has released new video footage showing a Ukrainian FPV drone shooting down a rare Russian Orion reconnaissance and strike drone, in what appears to be the first confirmed instance of such a high-value aerial target being destroyed by an anti-aircraft FPV system. The footage, shared via the SBU’s official Telegram channel, showcases a two-week operational period in which the agency’s Special Operations Center “A” destroyed a range of Russian military assets. These included tanks, artillery, electronic warfare systems and multiple drones, among them the Orion, one of Russia’s most advanced combat drones. Defense analysts have long regarded the Orion UAV as one of Russia’s most capable, and expensive, platforms. According to Ukrainian electronic warfare expert Anatoly Khrapchinsky, many of the drone’s parts are imported via third countries, with even its engine sourced from Austria.

“It’s heavy, expensive, and during the full-scale invasion, seven have been destroyed so far,” Khrapchinsky told Ukrainian Radio in a 2024 interview.

Russia’s Orion fleet also suffered a significant setback in June, when a Ukrainian drone strike targeted the Atlant-Aero facility in Taganrog, a key production site for components used in the Orion system.

While Ukraine’s FPV drone tactics have already proven effective against ground targets, this latest footage suggests that Ukrainian forces are successfully adapting the approach for use against sophisticated aerial threats, further leveling the playing field in a conflict where air superiority remains contested.

Ukrainian FPV downs rare Russian drone in first-of-its-kind strike

(Source: https://cuashub.com/)

 

 

30 Jul 25.  US Army’s Project Flytrap Advances Defense Secretary’s Drone Dominance Agenda. The U.S and British armies worked side by side to evaluate the effectiveness of systems meant to counter the effects of unmanned aerial systems on the battlefield this week. Soldiers assigned to 2nd Cavalry Regiment, under V Corps, and troops assigned to 1st Royal Yorkshire Regiment, British army, conducted the fourth iteration of the Project Flytrap exercise at the Hohenfels Training Area in Germany and the Bemowo Piskie Training Area, near Elk, Poland. The exercise aims to better prepare participating partners to counter the threats posed by unmanned aerial systems on the battlefield.

“Project Flytrap is … a series of training events that we’ve designed to test and refine some new counter-unmanned aerial systems … and tactics to respond to the evolving threat of drone warfare,” said Col. Matthew B. Davis, V Corps transformation chief, who also served as exercise director. “The lessons learned from … recent conflicts highlighted this critical capability gap, and we’re looking for Project Flytrap to directly address those through the training, which we conducted … we’re working to enhance our collective ability to deter potential adversaries and maintain a decisive edge.”

The Flytrap exercise involved U.S. military personnel, partner nation military and industry representatives, Davis said. During this exercise, military personnel from participating militaries collaborated with industry experts in counter-UAS technology development to more quickly refine those technologies.

“What we’re doing here — think of the convergence of industry, of Army agencies with counter-UAS things that have been around and some that are emerging, taking it out of the labs, putting it in the field with combat soldiers,” said Col. Donald R. Neal, commander, 2nd Cavalry Regiment. “Think of a soldier operating a piece of equipment with the person from industry next to them. The soldier gives feedback on what would make it work smoother, they make that change, they test it out, and they iterate on it.”

That’s exactly the kind of drone-related work Defense Secretary Pete Hegseth pushed for earlier this month in his July 10 memorandum “Unleashing U.S. Military Drone Dominance.” Under that directive, the secretary intends to strengthen the U.S. drone manufacturing base, provide warfighters with the best tools and ensure they are trained to use them effectively.

“One thing that I know is trying to get after from the memo that’s been pushed down is he wants to see the use of drones incorporated in the training,” Neal said. “That’s exactly what Project Flytrap is doing. You’ve got troops that are fighting each other, force-on-force, that are incorporating small UAS and counter-UAS, all in the same battle drills that we’ve done for decades. So, I think we’re nested, we’re right within that intent on figuring this out and training with it now, so the first time we’re encountering it isn’t on the battlefield.”

Neal also said as a combat brigade, the role for 2nd Cavalry Regiment soldiers isn’t just to evaluate equipment, but to take the new counter-UAS technology and learn how to incorporate it into what they already know how to do — and report that back to the Army so it can be used elsewhere.

“What we’re tasked with doing is taking this technology that’s counter-UAS focused, and the answer that we’re trying to provide for the Army is, how do we take systems that have largely revolved around static defense, and put it in an offensive vehicle-centric organization that does combat tasks,” he said.

As part of this last iteration, eight different systems were evaluated by military participants from four different industry providers.

“What we’re trying to get after is we’re taking the latest cutting-edge versions of existing technologies like radar, RF detect and jam, optical sensors and audio sensors, and then merging those into a system that our soldiers on the ground can employ in a tactical setting in order to enable them to do their jobs, despite having a growing threat in the air,” said Command Sgt. Maj. Eric S. Bol, command sergeant major, 3rd Squadron, 2nd Cavalry Regiment.

One takeaway from the Flytrap exercise, Neal said, involves managing the type and amount of information required to operate counter-UAS effectively.

“Preliminarily, I think what we are finding … once you start talking O-5 level command and above, there probably is a need for folks that understand how to manage data and how to how to manipulate software,” he said. “It is going to require skill sets that maybe we don’t have throughout our force in a very formal way. We owe that to the Army. We don’t know what that looks like yet, but that’s part of what we’re finding out in this project, this exercise and feeding it back up.”

No matter what the Army does in the way of incorporating counter-UAS technology into ground combat units, one thing that won’t change is combat basics.

“The fundamentals of maneuver warfare still matter,” said Lt. Col. Jeremy S. Medaris, commander, 3rd Squadron, 2nd Cavalry Regiment. “Things like dispersion, protection, fortification, selecting the correct routes and planning to an objective — things like that. … Maybe some components are changing, but those fundamental pieces are still there, and that is just as applicable to the counter-UAS fight as well.” (Source: U.S. DoD)

 

29 Jul 25. DroneShield, a global leader in counter-uncrewed systems (CUxS) technology announced its participation in Project FlyTrap, a multinational defence initiative led by the U.S. Army V Corps. This critical exercise, running from June to August 2025 in Germany and Poland, brings together United States and United Kingdom forces to advance CUAS capabilities in response to rapidly evolving aerial threats on the modern battlefield.  DroneShield has been exclusively focused on CUAS technology for over 11 years and has deployed nearly 4,000 units across more than 40 countries. Notably, DroneShield’s counter-drone technologies have been deployed to Ukraine since the onset of the conflict, proving their reliability and effectiveness in real-world combat. This battle-tested experience further highlights the company’s commitment to providing proven, operational solutions for countering drone threats and has made it a key player in the defence sector.

“CUAS is no longer optional—it’s essential. We see exercises like Project FlyTrap as crucial to testing technology before it gets into the warfighter’s hands,” said Tom Branstetter, VP of Business Development and Sales at DroneShield. “We’re honoured that our technology is playing a role in shaping the future of CUAS operations and supporting the mission readiness of our allied forces.”

Project FlyTrap reflects the ongoing evolution of counter-drone efforts among NATO allies, particularly in response to the escalating drone threats observed in recent conflicts, such as the war in Ukraine. By participating in this exercise, DroneShield continues to reinforce its position as a trusted partner in the defence industry and a key enabler of future-ready security solutions.

 

30 Jul 25. DroneShield, a global leader in counter-uncrewed systems (CUxS) technology, participated in a demonstration hosted by the United States Department of Homeland Security (DHS) at the Customs and Border Protection (CBP) Unmanned Technology Operations Center in Summit Point, West Virginia, on July 24, 2025. The event convened DHS Secretary Kristi Noem, senior DHS officials, and CUAS solutions providers, highlighting the Department’s urgent focus on addressing the escalating drone threats to national security. This event followed closely behind a recent U.S. Senate Judiciary Committee hearing, where Steven Willoughby, Director of the DHS Counter-UAS Program Management Office, highlighted the growing danger drones pose. He testified: “Nearly every day, transnational criminal organizations (TCOs) use drones to convey illicit narcotics and contraband across U.S. borders and conduct hostile surveillance of law enforcement.”

Secretary Noem, a vocal advocate for expanding CUAS capabilities, emphasized earlier this year during a Senate Committee on Homeland Security and Governmental Affairs hearing that:

“United States Coast Guard (USCG) tasks require every cutter to be equipped with CUAS technology.”

Secretary Noem further reinforced this urgency in a recent social media post, stating:

“We’re in the middle of a weapons-technology revolution—and our enemies know it. Drones are now being used to smuggle deadly drugs, target our infrastructure, and spy on U.S. defenses. We must be ready.”

During the demonstration, Secretary Noem met with the DroneShield team and received a briefing on its field-proven counter-drone technologies. These systems have been actively supporting Ukraine’s CUAS efforts since the start of the conflict and continue to evolve to meet a broad spectrum of emerging threats. With more than 11 years of exclusive focus on CUAS technologies, DroneShield has long been an advocate for securing U.S. borders and critical infrastructure from the risks posed by uncrewed aerial systems.

“Never before have we seen such alignment and sense of purpose across all levels of the Department of Homeland Security,” said Matt McCrann, CEO of DroneShield LLC. “The whole-of-agency approach on display at Industry Day demonstrates DHS’ intent to address the surging drone threat with speed, unity, and effectiveness.”

With drone threats steadily rising and impacting U.S. borders, airports, stadiums, and emergency responders, DroneShield remains committed to supporting national security with advanced, mission-ready CUAS capabilities. DroneShield’s solutions are purpose-built and engineered to be simple to train, easy to use, and quick to deploy, giving teams a decisive edge when seconds matter.

“As drone threats continue to evolve rapidly, it is essential that the U.S. and its allies have ready access to trusted, combat-proven countermeasures,” added McCrann.

Tom Branstetter, Vice President of Business Development and Sales at DroneShield, commented, “This demonstration reaffirmed DHS’ focus on taking decisive steps forward – and we’re proud to contribute our expertise and solutions to support that mission.”

“DHS Secretary Kristi Noem Attends Drone Demo” by U.S. Department of Homeland Security (DHS), United States Government Work

 

30 Jul 25. Norway’s Kongsberg and Poland’s Advanced Protection Systems to develop C-UAS. Norway’s Kongsberg Defence & Aerospace has signed a teaming agreement with Poland-based Advanced Protection Systems (APS) to develop and produce counter-unmanned aircraft systems (C-UASs), according to a 29 July Kongsberg press release. APS plans to provide its FIELDctrl radars and SKYctrl C-UASs, according to the release. The co-founder and CEO of APS, Maciej Klemm, said Kongsberg’s “air-defence experience” combined with APS’ radars will result in systems that are “fully interoperable within NATO”. According to the deal, the two companies agreed to exchange sensitive technical information to enable interoperable C-UASs. The two companies also agreed to pursue C-UAS business opportunities and create platforms that combine radars, sensor fusion, command-and-control (C2), and kinetic as well as non-kinetic (soft-kill) systems. According to APS, the SKYctrl C-UAS is a modular radar sensor with 3D multiple-input multiple-output (MIMO) radar technology, radar tracking, a radio frequency (RF) sensor, a jammer, and a C2 system. It is capable of tracking multiple targets at once and differentiates between birds and UASs. It can detect UASs using the 3D MIMO radars and its CyView C2 software. CyView tracks the direction, course, and altitude of flying objects in real time. It effectively jams 20 bands, including industrial, scientific, and medical (ISM); very high frequency (VHF); global system for mobile communications (GSM); universal mobile telecommunications system (UMTS); long-term evolution (LTE); and global navigation satellite services (GNSS). The FIELDctrl 3D MIMO radars enable the detection, tracking, and classification of unmanned aerial vehicles (UAVs), featuring a frequency-modulated continuous-wave (FMCW) radar, as previously reported by Janes (Source: Janes)

 

25 Jul 25. Cuashub.com said today that AirMatrix and Robin Radar introduce integrated C-UAS stack for streamlined drone defense. AirMatrix and Robin Radar Systems have announced a joint solution designed to enhance C-UAS operations. The integrated platform aims to support security teams by connecting drone detection with responsive countermeasures in a unified workflow. AirMatrix develops AI-powered command platforms that combine data from multiple sensors to support decision-making in defense, homeland security, and critical infrastructure contexts.

“Our IRIS drone radar delivers long-range, 3D tracking via micro-Doppler and deep-learning algorithms,” the companies stated. “Libra, AirMatrix’s AI command layer, ingests that radar feed alongside RF, visual EO/IR, acoustic, and remote ID data, automatically classifying objects, predicting flight paths, and triggering tailored responses within seconds.”

The system is designed to reduce false positives and shorten decision-making cycles, enabling small teams to manage complex airspace environments efficiently.

Key features of the integration include:

  • Sensor fusion with AI validation to reduce noise and highlight credible threats.
  • Unified interface for tracking, verification, and countermeasure deployment.
  • Modular architecture compatible with existing VMS, PSIM, and defense networks.
  • Support for evolving threats, including nano-drones and drone swarms.

“Very few ecosystems let operators act on those detections in real time. By pairing IRIS’s precision with Libra’s autonomous decision engine, we’re giving security teams clarity, speed, and confidence straight out of the box,” said Ayaan Haider, Co-Founder & CTO of AirMatrix.

“IRIS already leads the market in detection accuracy for small, fast, low-RCS drones,” said Marcel Verdonk, Chief Commercial Officer at Robin Radar Systems. “Linking that precise radar feed to Libra’s common operating picture gives security teams instant, actionable awareness.”

The partnership reflects a shared goal of advancing CUAS operations through automation. By combining detection capabilities with autonomous command systems, AirMatrix and Robin Radar aim to offer a scalable and responsive approach to airspace security.

https://cuashub.com/en/content/airmatrix-and-robin-radar-introduce-integrated-c-uas-stack-for-streamlined-drone-defense/ (Source: https://cuashub.com/)

 

30 Jul 25. Putin’s Guards Seen with New Anti-Drone Weapon. During a recent visit to St. Petersburg, Russian President Vladimir Putin’s personal security team was spotted with what appears to be a newly developed FPV drone designed specifically for countering hostile unmanned aerial systems. The presence of the drone, visibly carried by a member of the presidential protection unit, has drawn attention due to its unusual size and specialized configuration. According to observers at the scene, one of the security officers accompanying Putin was seen carrying the drone close to the president. The officer reportedly attempted to obscure the system from public view, but the platform’s large frame and distinctive X-shaped layout made concealment difficult. The drone, believed to be an infantry-operated FPV interceptor, features a four-motor cross configuration and a dual-sensor targeting system. Its payload includes a thermal imaging and television-guided seeker head, which allows it to engage aerial targets under low-visibility conditions, including poor weather and nighttime operations.  The system is manually directed in its initial targeting phase, but once a target is acquired, it reportedly shifts to autonomous flight. As described, the operator initiates the drone, aligns it toward the target, and waits for lock-on. Once the seeker confirms the target, the drone launches and autonomously tracks and engages the object. Notably, the system is said to operate using a dedicated command and telemetry channel, rather than standard radio frequencies. This design reportedly prevents detection of the operator’s location by enemy electronic warfare or signals intelligence systems. While there has been no official acknowledgment from the Russian Federal Protective Service (FSO), the sighting suggests that Moscow may be fielding short-range, soldier-carried drone interceptors as part of its close-protection toolkit—particularly in response to the growing threat of small UAVs used for surveillance or attacks in urban settings. The emergence of this system near Putin also comes amid increasing concerns in the Russian security establishment about drone threats on domestic soil. Ukraine has repeatedly used FPV drones for tactical strikes deep inside Russian territory, including against infrastructure and military assets. The presence of a compact, portable counter-UAV platform directly in the hands of a presidential guard may reflect a shift toward more immediate and mobile defense solutions. This is the first known instance of such a system being publicly associated with Russia’s top leadership protection units. Analysts say the presence of this technology may indicate that the Kremlin views the threat from airborne drones as immediate and credible—even in urban environments previously considered secure. (Source: UAS VISION/Defence Blog)

 

28 Jul 25. Cuashub.com said today that a united front: FBI, DOJ, and DHS testify to Congress on the drone threat. On Tuesday July 22, senior figures from the Federal Bureau of Investigation (FBI), U.S. Department of Justice (DOJ) & Department of Homeland Security (DHS) testified before the Senate Committee on the Judiciary on the threat posed by drones across the United States.

Titled “Securing the Skies: Law Enforcement, Drones, and Public Safety”, the committee hearing saw testimony from:

  • Christopher Hardee, Chief, Office of Law and Policy, National Security Division, DOJ
  • Michael Torphy, Unit Chief/ Supervisory Special Agent, UAS and Counter-UAS, FBI
  • Steven Willoughby, Director, Counter-UAS Program Management, Office of Strategy, Policy and Plans, DHS

“Playing catch-up” as threats evolve

Christopher Hardee and Michael Torphy warned that the U.S. is “playing catch-up as UAS technology continues to develop.” Their testimony outlined how drones are being used for “smuggling contraband cellphones and drugs into correctional facilities,” “illegal surveillance of sensitive government facilities,” and even to “identify a government witness.”

They stressed that “illicit UAS operations present ever-growing risks to public gatherings and other assets,” and called for expanded legal tools to address these threats. “The scope of counter-UAS, or C-UAS, authority should keep up with the threat, as should our criminal laws,” Hardee said.

DHS: Authorities are “limited in scope and duration”

Steven Willoughby emphasized that DHS’s current counter-UAS authorities are set to expire and are “limited in scope and duration.” He urged Congress to act swiftly, stating:

“Without Congressional action, DHS’s ability to protect the public from malicious UAS activity will expire.”

Willoughby highlighted the need for a proactive approach:

“We are operating in a legal landscape that was not designed for the speed and scale of drone proliferation.”

Key Takeaways

  • Urgency: All three agencies stressed the need for immediate legislative action ahead of the 2026 FIFA World Cup.
  • Legal gaps: Current laws do not adequately address the criminal misuse of drones.
  • Integrated security: DOJ proposed “building security into the UAS framework” to enable safe integration without compromising public safety.

The officials also endorsed two recent executive orders, Unleashing American Drone Dominance and Restoring American Airspace Sovereignty, as steps toward a more unified national strategy.

Michael Torphy is expected to expand further on these issues at the Counter UAS Technology Conference where he is slated to speak on December 2.

A united front: FBI, DOJ, and DHS testify to Congress on the drone threat

(Source: https://cuashub.com/)

 

28 Jul 25. Cuashub.com said today that Lithuania investigates possible Russian drone incursions. Lithuanian authorities are continuing to search for an unidentified drone reportedly seen and heard by numerous residents near the Belarusian border and close to Vilnius in the early hours of the morning. The incident, which occurred around 05:00 local time, prompted an immediate response from the Ministry of Defence. By 08:30, officials confirmed that security agencies were investigating the possibility of a drone crash and attempting to locate any potential debris or crash sites. Police confirmed that the search was ongoing and reiterated their warning for civilians to avoid approaching the drone if it is found.

“If you come across any suspicious object, do not touch or go near it – report it immediately,” a police spokesperson said.

The sighting has sparked concern among senior officials, with Justinas Argustas, adviser to the Lithuanian prime minister, announcing that a high-level meeting involving the president and national security agencies is scheduled for the following day. The agenda will focus on evaluating and improving Lithuania’s response protocols to aerial incursions.

“Experience shows that the current measures are neither effective nor sufficient,” Argustas stated.

The drone is believed to have entered Lithuanian airspace from Belarus, based on multiple eyewitness reports along the border region. The last known sighting was near Vilnius. One bystander’s footage suggests the drone may have been a Russian-made Geran or Gerbera – variants of the Shahed-type drone used in attacks on Ukraine – although Lithuanian authorities have yet to confirm the drone’s origin or type. A similar incident occurred on July 10 when a drone later identified as a Gerbera crossed into Lithuanian territory. Notably, the reported sighting coincided with a Russian airstrike on Ukraine during which Poland scrambled fighter jets, a move that has become routine during large-scale aerial attacks near NATO airspace.

Lithuania investigates possible Russian drone incursions

(Source: https://cuashub.com/)

 

30 Jul 25. Quadome radar nears final trials while inspiring South Africa’s next-generation engineers. Ahead of final testing and sea trials, Hensoldt South Africa and the Council for Scientific and Industrial Research (CSIR) demonstrated the home-grown Quadome 3D radar to a group of university students in an effort to inspire future innovators. The Quadome radar is a collaboration between Hensoldt South Africa and the CSIR and represents the largest local radar development programme in recent history. The recent visit included ten radar and electronic warfare students from the University of Pretoria, led by Professor Warren du Plessis, along with four graduate employees from GEW, Hensoldt South Africa’s electronic warfare business unit. The students were given a live demonstration of the Quadome radar’s capabilities, including its rotation, transmission and reception functions, as well as its ability to search for and track airborne targets of opportunity. The system has since been shipped to the Institute for Maritime Technology in Simon’s Town for further evaluation and sea trials.

“This visit was a great opportunity to inspire future innovators and expose them to world-class radar technology being developed right here in South Africa,” said Jaco Botha, Head of Radar Product Strategy for Hensoldt South Africa.

Hensoldt said it maintains strong partnerships with South African tertiary institutions to foster technical qualifications and capabilities that can contribute to South Africa’s defence industry. “By involving students and young professionals in real-world innovation programmes, Hensoldt aims to foster long-term careers in defence technology,” the company said. The Quadome radar system, announced in 2021, is designed for 3D air- and surface-surveillance. It enables the detection and tracking of aircraft and vessels, supporting faster situational assessment and operational response, Hensoldt South Africa said. “Offering advanced features and a competitive price-performance ratio, its compact form factor makes it ideal for platforms such as offshore patrol vessels, corvettes, light frigates and naval support vessels.”

“With Quadome starting its final testing and sea trials, Hensoldt South Africa looks forward to delivering a strategic capability that supports national sovereignty and security while unlocking export opportunities through global deliveries,” the company concluded.

The Quadome already has an export customer, as it was last year selected to equip the UK Royal Fleet Auxiliary’s (RFA’s) three new Fleet Solid Support (FSS) vessels. The FSS ships are being manufactured to support the Royal Navy’s Queen Elizabeth Class aircraft carriers at a cost of £1.6bn. The Quadome radar being supplied to the UK includes an integrated IFF (Identification Friend or Foe) antenna and will integrate into the Hensoldt MSSR 2000 IFF interrogator, already deployed for the UK Royal Navy and RFA. A comprehensive air traffic management display solution is also included as part of the contract. The Quadome radar has a range from 100 metres to 200 km and can process more than 1 000 air and surface targets. It is being developed in land and naval versions, with the naval version launched in 2021 and the land version officially launched in 2022. Hensoldt South Africa’s radar business unit specialises in radar, identification friend or foe (IFF) and datalinks, as well as air traffic management (ATM) and radar services. The business was launched in January 2021 after Hensoldt South Africa acquired the Air Traffic Management (ATM) and Defence & Security business units of Tellumat at the end of 2020. (Source: https://www.defenceweb.co.za/)

 

28 Jul 025. Raytheon, an RTX (NYSE: RTX) business launched its newest Multispectral Targeting System variant, MTS-A HD, that offers significant visual enhancements for maritime helicopter operations. This next-generation variant delivers improved targeting precision, imaging clarity, and expanded operational flexibility for naval helicopter platforms. Raytheon is collaborating with industry and commercial partners on the new variant to accelerate production and reduce system costs.

“Navy helicopter pilots need the clearest possible view when flying in hostile areas,” said Bryan Rosselli, president of Advanced Products & Solutions at Raytheon. “Our new high-definition sensor system provides aircrews with superior visual capability, allowing them to make faster and more informed decisions when it matters most.”

MTS-A HD builds on Raytheon’s proven MTS family of sensors, which are already in use on over 400 U.S. Navy helicopters. The system’s modular architecture allows for seamless integration and a cost-effective upgrade path for existing MTS users while providing enhanced capabilities. MTS-A HD is also attracting significant international interest spanning Australia, Denmark, Saudi Arabia, India, Norway, Greece, Spain, South Korea and emerging markets in Europe and Asia. (Source: PR Newswire)

 

29 Jul 25. Blighter (www.blighter.com), a pioneering designer and manufacturer of Smart electronic-scanning radars, has deployed its dual-mode Blighter C400 series coastline surveillance technology to protect offshore oil platforms and an onshore refinery in Equatorial Guinea, a Petro-piracy hotspot off the West African coast. Blighter’s C400 series radars have been proven to be highly effective in targeting the growing problem of piracy. It is estimated that the illegal black market for stolen oil is worth over US$1 bn. The radars in Equatorial Guinea are now fully operational following system configuration and training. According to Blighter, its customer needed a compact coastline radar system that was easy to install, ultra-reliable and could detect, track and classify the small shallow-draught vessels favoured by oil pirates and militants, which typically sit low in the water and move at speed. It was vital that the radar sensor selected provided detection day and night in all weather conditions, including heavy rain, fog and during thunderstorms.

James Long, Blighter’s CEO, says: “We know that oil pirates are highly organised and often choose to exploit harsh weather conditions to evade detection with many only becoming active during heavy rains or high sea states. Our C400 radar systems were chosen to plug the gap in our customer’s defences as our sensors are specifically designed to detect even the smallest uncooperative targets in complex, cluttered and extreme environments.”

Blighter’s C400 radars have several features that make them suitable for coastline surveillance, and particularly for detecting uncooperative targets. First, the compact design and low-power electronically scanning and frequency-modulated continuous-wave (FMCW) technologies contains no moving parts. This ensures ease of installation and ultra-reliable operation with minimal maintenance even in the harshest marine conditions. The C400 series is IP66-rated and MIL-STD-810F compliant.

Second, the Blighter C400 series radar uses advanced Doppler signal processing to provide the ability to precisely examine the motion of waterborne objects with respect to waves or ripples on the water surface. Unlike traditional Doppler radars, the C400 series characterises non-moving targets using the static target detector so that moored boats, buoys and other structures remain visible on the radar screen.

Third, the radar’s built-in sea clutter filter automatically adapts to changing sea states and wave conditions to remove the unwanted radar signal produced by waves using both velocity (speed) and amplitude (height) characteristics.

Blighter radar’s e-scan antenna technology and FMCW design also allows it to be mounted high on offshore platforms and onshore towers and still detect targets close to the platform or shore as well as those further away. In Equatorial Guinea, the detection range of the C400 radars is around 20km. Importantly, all of the radars deployed are networked together to provide onshore controllers with a common operating picture (COP) of the offshore and onshore facilities.

“We are delighted to see that our radar technology is continuing to be used to combat the costly problem of Petro-piracy in the oil and gas industry,” says James Long, Blighter’s CEO. “Our C400 radars have proved to be highly effective against piracy and their dual mode operation allows detection of small and/or slow-moving boats at sea as well as ground targets such as intruders on the coastline shore.”

The Blighter C400 series radar can be integrated into a larger coastal security system incorporating day/night and fog penetrating electro-optical camera systems, AIS (automatic identification system), other boat transponder/tracking systems and CCTV. These elements can all be controlled through Blighter’s command and control (C2) software platform.

Blighter C400 series radars are also suitable for other coastal security applications including seaport security surveillance and water-side security of land based coastal assets, such as desalination plants, nuclear power stations, palaces and other high value assets.

For more information about the Blighter C400 coastline surveillance radar, please visit www.blighter.com, telephone +44 1223 491122 or email . Or come and meet the team on Stand N6-166 at the DSEI Defence and Security show taking place at the ExCel Centre in London, from 9-12 September 2025.

 

21 Jul 25. Red/Blue team exercise to test C-UAS for law enforcement. INTERPOL, the United States Border Patrol, Blue Light Digital and UAS Norway are hosting a multi-day drill designed to push counter-uncrewed aerial systems (C-UAS) capabilities to the limit. IDICE 2025 will be held in San Diego, California on 9-11 September. This is the second part of the programme, following an exercise in Seville, Spain in May, where the focus was on testing C-UAS against commercial off-the-shelf and custom-made UAS in complex urban environments. The San Diego exercise will feature real-time drone threat simulations where participants will experience both the offensive and defensive aspects of modern C-UAS operations. A team of skilled drone operators will simulate various threats, from surveillance and smuggling to more complex challenges like swarm attacks and electronic warfare tactics. The defensive team will deploy the latest drone detection, identification and neutralisation technologies to protect critical infrastructure, public safety and law enforcement operations. Scenarios will include urban drone threats, border security challenges, VIP and convoy protection, passive and active system deployments, and countering 4G drones. Expert analysis and feedback will be provided on systems used and best practices. Interested parties must register their interest by July 24. (Source: www.unmannedairspace.info)

 

22 Jul 25. EASA finalises means of compliance for SAIL III. The European Union Aviation Safety Agency (EASA), supported by the Airworthiness Task Force of the UAS Technical Body (TeB), has released comprehensive airworthiness guidance for unmanned aircraft systems (UAS) that are not required to be certified in accordance with Regulation (EU) 748/2012 (Part 21). New means of compliance (proposed MoC to OSO #2 and MoC to OSO #8), currently under consultation, complete the technical framework needed to enable the operation of drones under a declarative framework (those classified as specific assurance and integrity level (SAIL) III under the specific operation risk assessment – SORA). These means of compliance cover organisational aspects, flight manual, structures and configuration control, with particular attention paid to the management of design changes. Stakeholders are invited to comment before September 12, 2025. For SAIL IV, UAS designers are required to receive a design verification report (DVR) for their product. To support this process, EASA has published a reference table to assist DVR applicants in proposing means of compliance to Special Condition Light UAS. The table outlines ways applicants can meet each requirement of the Special Condition, using EASA’s published means of compliance and recognised standards. The table, which also provides information on ongoing activities in this field, is a living document and will be updated by EASA whenever new significant material will become available. (Source: www.unmannedairspace.info)

 

25 Jul 25. “Ukraine’s Kvertus deploys ‘Berserk’ C-UAS robotic electronic warfare system to the battlefield.” Ukraine’s United24 news outlet reports a ground-based robotic electronic warfare system known as Kvertus AD Berserk, designed to counter a range of enemy drone activities, has entered serial production in Ukraine. The announcement was made on July 21 by Yaroslav Filimonov, CEO of the defense technology company Kvertus, through official channels, said the report.

“The Berserk robot can disrupt control signals across all frequency bands used by FPV drones, multirotor drones, and aerial bombers. According to the manufacturer, the system has a 20 km operational range, can remain active for up to 12 hours, and is remotely controlled from a similar distance of up to 20 km.

The company said the platform will support: evacuation of wounded personnel from frontline positions; cover during demining operations; Protection of logistics routes.

“Kvertus has confirmed that multiple orders are already in progress, underscoring demand for the system’s battlefield-tested effectiveness,” said the report. “The firm also emphasized that its technologies are undergoing monthly upgrades, with engineers continuing to enhance performance in response to evolving threats. he Berserk system was developed on the basis of a nationally produced mobile platform and integrates high-capacity battery power, rugged terrain mobility, and multi-spectrum jamming systems.

For more information: https://united24media.com/latest-news/ukraine-deploys-new-berserk-robot-to-jam-enemy-drones-protect-troops-at-front-10070 (Source: www.unmannedairspace.info)

 

26 Jul 25. Thor Dynamics invited to demonstrate directed energy C-UAS at USSOCOM event. U.S. Special Operations Command (USSOCOM) has selected Thor Dynamics to demonstrate its Laser Armor counter-uncrewed aerial system (C-UAS) platform at the command’s invitation-only Technical Experimentation (TE) 25-3 event. Laser Armor is a directed energy system that provides a scalable, and ammunition-free option for neutralising drone swarms. It is designed for integration into existing C2 architectures. TE 25-3, which runs from September 8-12, will identify potential Technology Readiness Level (TRL) of 3 or greater technology solutions, to meet special operations forces objectives. (Source: www.unmannedairspace.info)

 

28 Jul 25. US/Ukraine deepen ties with Ukraine drone export and Swift Beat deals. On July 24, President of Ukraine Volodymyr Zelensky announced that he has reached an agreement with U.S. President Donald Trump for the United States will purchase drones, many of them C-UAS intercept drones from Ukraine, according to Ukrinform. Zelensky said this while speaking to journalists on July 24.

“With America, with President Trump, we agreed that they will buy drones from us. That’s the agreement. I have tasked [NSDC Secretary] Umerov, [Defense Minister] Shmyhal, and [Advisor to President on strategic affairs] Kamyshin with handling this. It’s very important to prepare this contract — a serious contract worth USD10–20–30 bn,” Zelensky stated in the article.

This follows the signing of a memorandum between Ukraine’s Ministry of Defense and Swift Beat, LLC “which will enable scaling up the production of interceptor drones capable of shooting down large numbers of Shaheds,” according to Volodymyr Zelenskyy, in a presidential statement. Before the memorandum signing, the Head of State met with Swift Beat, LLC CEO Eric Schmidt to discuss increasing the production of modern drones for Ukraine. “This is a co-production document between Ukraine and the United States. It will involve several companies focusing on various types of drones. But the most important thing is this year and next year. This year – hundreds of thousands of drones. And next year – there will be an increase,” Volodymyr Zelenskyy said. The President emphasized that the main component of the document is the production of interceptor drones, which have already proven effective in Ukraine.

For more information: https://www.president.gov.ua/en/news/memorandum-mizh-ukrayinoyu-ta-amerikanskoyu-kompaniyeyu-swif-98817/https://www.ukrinform.net/rubric-defense/4018767-zelensky-us-agrees-to-buy-ukrainian-drones.html (Source: www.unmannedairspace.info)

 

30 Jul 25. Indonesia’s Elang Hitam surveillance UAV makes maiden flight. West Java International Airport (BIJB) in Majalengka on 28 July. (PTDI) Indonesian state-owned aerospace company PT Dirgantara Indonesia (PTDI) announced on 29 July that its Elang Hitam (Black Eagle) unmanned aerial vehicle (UAV) has made its maiden flight. PTDI said the Elang Hitam medium-altitude long-endurance (MALE) UAV was tested at West Java International Airport (BIJB) in Majalengka on 28 July. Elang Hitam is designed to conduct intelligence, surveillance, and reconnaissance (ISR) operations. It features an open and modular architecture to enable further developments based on mission requirements. Elang Hitam can currently fly for up to 24 hours at altitudes of up to 20,000 ft, PTDI added. This UAV has been developed by a PTDI-led consortium that includes Indonesia’s Agency for the Assessment and Application of Technology (BPPT), National Institute of Aeronautics and Space (LAPAN), and Bandung Institute of Technology. The development was supported by the Ministry of Defense (MoD) and the Indonesian Air Force, PTDI added. “The flight test serves as a proof of concept for mastering key technologies [incorporated in Elang Hitam], which include the system configuration design, automatic flight control system, and long-range communication system. This proof of concept serves as a basic reference for further development of MALE UAVs in line with national requirements,” Moh Arif Faisal, director of Commerce, Technology, and Development at PTDI, said. During the test, a PTDI-owned Kodiak aircraft acted as the chase aircraft for Elang Hitam to monitor its performance and ensure flight safety, PTDI said. The tests will continue until the UAV obtains “official certification from the relevant authorities”, PTDI added. (Source: Janes)

 

25 Jul 25. Cuashub.com said today that UND partners with National Guard to advance C-UAS training. Last week, the University of North Dakota (UND), in collaboration with local military leadership, showcased its latest training efforts aimed at enhancing the US armed forces’ C-UAS capabilities and operational readiness. In partnership with the North Dakota Army and Air National Guard, UND Aerospace hosted a series of training exercises at Gorman Field UAS Test Range, located just south of Grand Forks Air Force Base. According to Paul Snyder, director of UND’s UAS program, the recent session marked the fifth in a series conducted over the past six months. These exercises were established through a Memorandum of Understanding with both the Air and Army National Guard. Previous sessions were held at Camp Grafton, an Army National Guard installation near Devils Lake, N.D. The training scenarios simulate adversarial drone activity, with UND operating small UAS aircraft to challenge Army command posts. Overhead, UND’s Boeing Insitu Scan Eagle and the Air Guard’s General Atomics MQ-9 Reaper provide aerial oversight. Snyder emphasized the strategic value of Gorman Field for these operations. The 33-acre site boasts advanced radar capabilities and holds a waiver for beyond visual line of sight (BVLOS) flight operations.

Colonel Ryan Ayers, deputy commander of the Fargo-based 119th Wing of the North Dakota Air National Guard, praised the region’s robust UAS ecosystem.

“I can’t think of any other environment like this in the world,” he said. “When you have an environment like this, there is so much goodness you can tap into. We’re essentially selling an environment where you can study, train or research whatever you want to do.”

The collaborative environment also supports education and workforce development – critical components in a field defined by rapid technological evolution.

“Having all these students who are able to be a part of this is exciting, because they are fully engaged and learning about this stuff,” Snyder said. “They are going to come up with the next big idea.”

Colonel Ayers noted that the realism of these exercises allows for effective training while minimizing risk.

“Maybe you have a new student who you feel isn’t quite savvy enough with air traffic control restrictions, and having them bust out of airspace right now would put this at risk,” he said. “Flying the simulated asset can be their 101 ride – because the instructor can correct them, there’s no risk, and they’re still getting all the sets and reps of how to coordinate airspace.”

UND partners with National Guard to advance C-UAS training

(Source: https://cuashub.com/)

 

25 Jul 25. Cuashub.com said today that NTS and XTEND announce strategic partnership to advance C-UAS capabilities. NexTech Solutions LLC (NTS), a provider of C-UAS solutions, has announced a strategic partnership with XTEND, a developer of AI-enabled UAS. The collaboration aims to deliver advanced tactical solutions for defense and government clients by integrating NTS’s operational expertise with XTEND’s autonomous drone technologies. NTS brings extensive experience in C-UAS strategy, deployment, and sustainment, supporting defense and intelligence operations across complex environments. XTEND’s drone platforms, known for their autonomous capabilities and user-friendly interfaces, will be incorporated to enhance mission readiness and threat response.

Key Features of the Partnership Include:

  • Customized C-UAS planning, integration, and support from NTS
  • AI-driven drone systems from XTEND for real-time aerial engagement
  • Precision-focused kinetic engagement options with minimal collateral impact
  • Rapid deployment capabilities for both tactical and strategic missions

“XTEND is a leader in the UAS space, and we are excited to partner with them to execute CUAS missions, leveraging their top-of-the-line platforms,” said Joe Paull, CEO of NTS. “This partnership enhances our ability to deliver robust CUAS mission support and protect high-value assets in an increasingly contested air domain.”

NTS will oversee systems integration, operational deployment, training, and lifecycle support to ensure seamless adoption and field performance of the C-UAS platforms.

According to the press release, both NTS and XTEND are aiming to set “a new standard for CUAS operations – providing defense and government agencies with mission-ready tools to detect, assess, and neutralize aerial threats with speed, precision, and confidence.”

Earlier this year, XTEND entered into another strategic partnership, this time with fellow Israeli company Sentrycs, integrating Sentrycs’ protocol manipulation-based counter-drone technology – commonly referred to as Cyber over RF – with XTEND’s AI-driven autonomous platforms and its proprietary operating system, XOS.

NTS and XTEND announce strategic partnership to advance C-UAS capabilities

(Source: https://cuashub.com/)

 

25 Jul 25. Cuashub.com said today that 6 ways Taiwan can learn from Ukraine’s counter-drone strategy. Taiwan’s defense planners are increasingly focused on the threat posed by China’s growing drone arsenal. PLA forces routinely deploy UAS around Taiwan’s coast and drones would likely factor heavily in any Taiwan-China conflict. Ukraine has already done much of the hard work in learning how to fight an asymmetric war against a far larger adversary, making its battle-hardened counter-UAS tactics especially relevant to Taiwan. As Auterion CEO Lorenz Meier put it, “the lessons learned from the war in Ukraine are definitely applicable to a potential conflict with China.” The U.S. Senate has explicitly cited China’s “advancing capabilities” in UAS as a driver for new counter-drone funding under the Replicator initiative. Taiwan, which lacks the military capabilities that the U.S. does, would struggle to defend against the coordinated, swarm tactics that China would likely deoloy.  Facing a one of the world’s leaders in offensive UAS capabilities, Taiwan is wisely studying Ukraine’s experience to harden its own counter-UAS posture. Below we take a look at six of the key elements of Ukraine’s counter-UAS approach that Taiwan could apply in its own defensive efforts.

  1. Deploy decentralized counter-UAS units

Ukraine’s experience shows the power of small, mobile drone-defense teams rather than large, slow centralized batteries. In practice, Ukraine abandoned hierarchical military structures in favor of decentralized ‘islands of forces’ that encourage rapid adaptation.  For example, pickup-truck–mounted teams armed with net launchers, jammers or even rifles loaded with special counter-drone rounds can be trained in hours and dispatched immediately.  In Ukraine, such grassroots teams were able to shoot down enemy drones after as little as six hours of training. Taiwan can mimic this model by creating regional defense cells, each equipped with portable jammers, net-guns or improvised AA weapons, giving them autonomy to detect and down drones locally. This distributed approach also spreads risk. If one node is hit, nearby teams can still cover the area, avoiding single points of failure.

  1. Integrate civilian tech into defense

Ukraine rapidly harnessed off-the-shelf electronics and open-source tools to fill capability gaps. For instance, Ukrainian innovators built the Sky Fortress acoustic sensor network out of cheap components, using cell phone CPUs to process microphone data and detect the sound of incoming drones. Each sensor costs only a few hundred dollars and can be deployed in minutes, turning ordinary hardware into an air-defense system. Open-source software also played a role with developers reusing autopilot code and other civilian drone tech for both offensive and defensive drones. Taiwan has the advantage of time which offers the ability to prepare dedicated systems based on the lessons learned in Ukraine. However, should Taiwan’s military capabilities fall short in the event of a Chinese invasion, its large electronics industry and hobbyist community could similarly be mobilized. Smartphone processors, homemade radars or acoustic arrays could all be repurposed for drone detection and jamming. By tapping commercial innovation for cheaper sensors, DIY software, etc., Taiwan can scale up its counter-UAS toolkit quickly and affordably, just as Ukraine did.

  1. Use AI and machine learning for threat detection

Ukraine has shown that machine learning can greatly sharpen drone warnings. Its acoustic detection systems have been trained on large libraries of drone and missile sounds so they can recognize incoming threats in real time.

Even when Russian operators tried to mask their drones’ engines, the ML models still identified targets with only a 3 percent drop in accuracy. Taiwan could employ similar AI-driven sensors, not just acoustic, but also radar or RF classifiers, that learn the signatures of new drone types.

For example, AI-powered radar could learn to pick out drone flight patterns in cluttered terrain, or neural nets could analyze intercepted control frequencies for swarm behavior. By fusing AI/ML with traditional sensors, Taiwan would gain early warning of drone swarms or hostile UAS trajectories, giving air defenses more time to respond.

DroneShield’s DroneSentry-C2 counter-drone command-and-control system. Credit DroneShield

  1. Harden critical infrastructure against drone strikes

Russia has used relatively cheap attack drones to strike Ukraine’s power plants, communication hubs, ports and supply lines. Taiwan’s similar targets, power grids, ports, factories and cell towers, would likely be key targets tempting to a Chinese drone offensive.

Taiwan, being a much smaller nation than Ukraine, relies on fewer critical infrastructure facilities. In light of this, the defence of each facility becomes much more vital as Taiwan possesses much less redundancy in for example, its energy infrastructure. Due to its smaller size, Taiwan also lacks the relative safety of a ‘rear zone,’ meaning all of Taiwan could effectively become a frontline in the event of an aerial invasion.

Taiwan has the advantage of an opportunity to pre-deploy counter-UAS defenses around these critical sites. This could include jamming devices that scramble drone GPS, RF monitors that alert to any drone control signals and passive detectors (acoustic or thermal) that cover key sites.

By hardening facilities, for instance with redundant power feeds, hardened communications and mobile counter-UAS units on standby, Taiwan can attempt to blunt the effects of drone attacks. Specialized measures like GPS-spoof detection and networked RF sensors can also help spot stealthy recon drones before they reach key assets.

RELATED CONTENT: Taiwan unveils ‘Overkill’ suicide drone, inspired by Ukraine

  1. Develop a national drone defense network

Ukraine has built a nationwide grid of detectors and linked them into a common picture. For example, the Sky Fortress network now numbers over 14,000 sensors across the country, with plans to add another 15,000 and the Zvook network reportedly covers 5 percent of Ukrainian territory.

These microphones all feed into centralized alert systems, creating a 360-degree “threat map” for defenders. Taiwan can emulate this by creating a unified counter-UAS network that ties together military radars, police cameras, civilian spotting posts and even volunteer sensors.

In practice, that means standardized datalinks and shared software so that if any one node (say a police station or coastal radar) picks up a drone, all agencies are warned instantly. Such integration makes intelligence sharing automatic.

Ukraine’s experience shows that linking these local alerts transforms them into real-time actionable intelligence. The Taiwanese government could coordinate a public-private program, perhaps crowdsourcing sensor data via apps, and establish a single “drone situation center” to fuse inputs from every source. This national grid would help spot swarm launches from any direction and cue interceptors or jammers to the precise locations identified.

The Zvook acoustic detection system at the presentation of the Brave1 platform. Credit: Brave1

  1. Train civilians in passive drone defense

In Ukraine, civilians have become the first line of warning for drone attacks. A volunteer phone app, called ePPO, lets ordinary people report any flying object, drone or missile. Users point their smartphone at the target and hit a button, instantly alerting military defense forces.

The goal is to “enlist the entire population” in spotting threats before they hit critical areas. Taiwan could launch a similar public-awareness campaign and easy-reporting app. Especially in rural or coastal regions, where official radar may be sparse, trained spotters and app users could feed real-time sightings to the national counter-UAS grid.

Even simple measures like encouraging citizens to use emergency services numbers or a dedicated drone-spotting hotline could be effective. By training volunteers in distinguishing drone silhouettes and sound signatures, Taiwan would create thousands of extra “eyes on the sky.”

These passive defenses would multiply Taiwan’s vigilance much like air-raid spotter networks of old, forming a low-cost, community-based layer of defense that buys precious seconds.

6 ways Taiwan can learn from Ukraine’s counter-drone strategy

(Source: https://cuashub.com/)

 

23 Jul 25. Canada firms up plans for Australian-developed over-the-horizon radar. Australia and Canada have solidified their bilateral cooperation as Ottawa moves towards adoption of over-the-horizon radar (OTHR) technology on offer from Australia. On 18 July, Australia’s Department of Defence announced that a new technology partnership agreement to support this aim had been signed. This revelation came exactly four months after Canada declared that it wished to establish such a radar network to protect its arctic borders. Some 40% of Canadian territory sits above the Arctic Circle, and it requires improved domain awareness to close gaps in coverage of its icy periphery. Australia already fields such an OTHR system, which is known as the Jindalee Operational Radar Network (JORN). Obviously, however, Australia’s system endures very different environmental conditions than what Canada faces. Australia stated, “The signing of this agreement will enable Australia and Canada to work across government and industry to investigate technical challenges associated with OTHR operation in the arctic, to further develop JORN technology, and to conduct detailed planning for the development, manufacturing and commissioning of a new Canadian OTHR capability.” Australia’s Defence Science and Technology Group will collaborate with Defence Research and Development Canada and Canada’s Department of National Defence Digital Services Group. Based on their respective expertise in JORN and arctic operation of high-frequency (HF) radars, they will jointly pursue advancements that bring mutual benefit. JORN allows Australia to detect objects in the air or on the sea at range of up to some 3,000km away. The OTHR system bounces HF radio signals off the ionosphere, and it relies upon three radar antenna arrays in far-flung sites – Longreach, Queensland; Laverton, Western Australia; and Alice Springs, Northern Territory. BAE Systems Australia has been managing JORN since 2018. It declined to comment on the pending Australia-Canada deal, though Ashley Searl, Director of the company’s Battlespace Integrated Solutions, told Asian Military Review that ionosphere conditions “are very important to how the system operates. I guess a lot of the smarts in JORN is understanding what different ionospheric conditions can give you in terms of performance.” He acknowledged that one of JORN’s strengths is adjusting itself to match conditions of the day. Searl also added, “You can select how you operate it. You can do it over broader areas or narrower areas, depending on where your mission set is.” BAE Systems Australia is currently implementing a decade-long upgrade of JORN under Project Air 2025 Phase 6. This contract awarded in 2018 represents a midlife upgrade that introduces new digital waveform transmitters and receivers, and it extends JORN’s operational life till at least 2042. Back in March, the Canadian government stated, “This partnership will include developing Canada’s Arctic Over-the-Horizon Radar (A-OTHR) system, an investment of more than C$6bn [US$4.3bn] that will provide early-warning radar coverage from threats to the Arctic.” The A-OTHR network would also contribute data to the North American Aerospace Defense Command (NORAD) modernisation plan. This bilateral cooperation does not yet represent an acquisition contract. Canberra stated, “This agreement demonstrates our shared commitment to security through investment in cutting-edge technology and opens the door to what maybe a potentially significant export opportunity for Australian industry.” If a deal is eventually inked, it would be one of Australia’s most lucrative defence exports ever. (Source: AMR)

 

25 Jul 25. L3Harris and ELT Group to Establish Multi-Sensor Test Facility in Italy. L3Harris Technologies (NYSE: LHX) has partnered with ELT Group, the Italian global leader in electromagnetic spectrum operations, to establish a multi-sensor test facility for commercial, military and government programs.  This collaboration marks the first time an Intelligence, Surveillance and Reconnaissance (ISR) test and calibration facility of this type will be available outside of the United States. L3Harris and ELT Group will work together to create an in-country center of excellence for the Italian military and allied nations.

“L3Harris’ industry partnerships deliver long-term benefits that support Italian businesses, while also maximizing mission readiness for military units,” said Jon Rambeau, President, Integrated Mission Systems, L3Harris. “This new sensor test facility further strengthens Italy’s defence infrastructure.”

The new facility will support the G550 Joint Airborne Multi-Mission, Multi-Sensor System and Electronic Attack aircraft along with other air, surface and maritime platforms.

“ELT Group is pleased to be selected as a partner company for this important program, bringing forward more than 70 years of expertise supporting allies in ISR, multi-mission and electronic attack operational support,” said Domitilla Benigni, CEO and COO of ELT Group. “This cooperation marks the first step in developing next-generation capabilities in the Italian test and operational range environment.”  (Source: ASD Network)

 

29 Jul 25. DroneShield, a global leader in counter-unmanned aerial systems (CUAS) technology, is proud to announce its participation in Project FlyTrap, a multinational defense initiative led by the U.S. Army V Corps. This critical exercise, running from June to August 2025 in Germany and Poland, brings together United States and United Kingdom forces to advance CUAS capabilities in response to rapidly evolving aerial threats on the modern battlefield.   DroneShield has been exclusively focused on CUAS technology for over 11 years and has deployed nearly 4,000 units across more than 40 countries. Notably, DroneShield’s counter-drone technologies have been deployed to Ukraine since the onset of the conflict, proving their reliability and effectiveness in real-world combat. This battle-tested experience further highlights the company’s commitment to providing proven, operational solutions for countering drone threats and has made it a key player in the defense sector.

“CUAS is no longer optional—it’s essential. We see exercises like Project FlyTrap as crucial to testing technology before it gets into the warfighter’s hands,” said Tom Branstetter, VP of Business Development and Sales at DroneShield. “We’re honored that our technology is playing a role in shaping the future of CUAS operations and supporting the mission readiness of our allied forces.”

Project FlyTrap reflects the ongoing evolution of counter-drone efforts among NATO allies, particularly in response to the escalating drone threats observed in recent conflicts, such as the war in Ukraine. By participating in this exercise, DroneShield continues to reinforce its position as a trusted partner in the defense industry and a key enabler of future-ready security solutions.

 

28 Jul 25. UK to host expansion of German anti-drone firm Alpine Eagle. A German startup developing what it calls the world’s first airborne counter-drone system has announced plans to expand into the United Kingdom as part of a growing defence technology presence. Munich-based Alpine Eagle confirmed it has appointed a former Royal Navy aerospace engineer, Michael Golden, as its new UK Head amid growing interest in technologies that can counter the threat of cheap, disposable drones on the modern battlefield. The announcement follows Alpine Eagle’s participation in Project Vanaheim, a Ministry of Defence-run trial designed to explore new methods for detecting and defeating uncrewed aerial systems (UAS). The exercise, conducted with UK and US military forces, comes amid a wider effort by NATO nations to adapt to drone-enabled warfare, driven in large part by lessons from Ukraine. Alpine Eagle’s system, known as Sentinel, is designed to be mounted on airborne platforms and used to detect and track hostile drones. Unlike many existing ground-based counter-UAS systems, Sentinel operates air-to-air and is being pitched as a scalable solution for protecting critical infrastructure and deployed forces. According to the company, the system has already been supplied to the German military and is aimed at filling what it describes as a persistent capability gap in counter-drone operations. Golden, who also previously worked as a management consultant at McKinsey, said in a statement: “The UK and Europe face the same challenge, and the UK’s military strength and influence on the world stage mean that it must be an integral part of the solution. Any solution built has to be by Europe, including the UK, for Europe.” The move comes as Germany and the United Kingdom deepen defence cooperation under a new bilateral pact signed this month. Alpine Eagle’s expansion also reflects growing investor confidence in European defence startups, with the firm recently securing £9 m in seed funding from IQ Capital and General Catalyst.

Alpine Eagle CEO Jan-Hendrik Boelens said the Ukraine conflict had prompted a rethinking of defence procurement and industrial policy. “By investing in local talent like Michael, developing strategic partnerships with local businesses and developing local manufacturing capacity, we’re committed to working with the UK as part of our wider mission to build European defence capabilities,” he said.

The company says it intends to establish a UK base not just for business development but also for manufacturing, research and future exports. Project Vanaheim is one of several initiatives under the UK’s new Strategic Defence Review aimed at accelerating adoption of digital and autonomous technologies. (Source: News Now/https://ukdefencejournal.org.uk/)

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

July 24, 2025 by

Sponsored by Echodyne

 

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21 Jul 25. The Defense Innovation Unit (DIU), in close collaboration with U.S. Northern Command (USNORTHCOM), U.S. Army, U.S. Navy, U.S. Marine Corps, and U.S. Indo-Pacific Command representatives, today announced the selection of ten finalists to advance in the Counter-small Unmanned Aircraft System (C-sUAS) Low-Cost Sensing (LCS) challenge. These selected companies, chosen against a rigorous set of criteria from 118 outstanding submissions, will move forward to demonstrate their sensor technologies during USNORTHCOM’s Falcon Peak exercise in September.

“The evolving threat from unmanned aerial systems demands that we leverage every tool at our disposal – from cutting-edge commercial solutions to robust partnerships across government and industry,” said DIU Director Doug Beck. “This challenge directly supports DOD’s strategic priorities by tapping into non-traditional defense companies to develop scalable, cost-effective sensing solutions that help our forces at home and abroad to identify threats with the speed and fidelity needed to counter them.”

The solutions selected represent a diverse range of sensor modalities, including radio frequency passive detection, active radar, acoustic, optical cameras, infrared cameras, and several mixed modality technologies. The selected approaches have the potential to deliver significant value compared to current DOD systems for key coverage areas, at a potential cost savings of 50-80 percent in total cost of ownership. The ten finalists selected are:

  • BLUEiQ
  • CHAOS 1
  • Fortem Technologies
  • Guardian RF
  • Hidden Level
  • MatrixSpace
  • REVOBEAM
  • Squarehead Technology
  • Teledyne FLIR Defense
  • Thalrix

Launched in May 2025, the LCS challenge was designed to address a critical need: to complement exquisite sensor systems with affordable, distributed sensing technologies that can scale. Protecting the homeland from small UAS threats requires broad situational awareness with reach, redundancy, and resiliency.

“These ten finalists represent the forefront of sensor innovation, demonstrating how diverse technological approaches can enhance our layered defense,” said Director of Replicator 2, David Payne. “Our collaboration with USNORTHCOM, the US Army, and other partners has been instrumental in aligning this effort with the Department’s most critical sensing needs. Ultimately, this prize challenge is about helping to provide the tools to extend cost-effective sensing capabilities to our most critical installations.”

Selected finalists now advance to live demonstration and testing at USNORTHCOM’s Falcon Peak 25.2 exercise. Falcon Peak will provide a real-world test of these low-cost sensing solutions and the prize purse will be distributed based on performance at the event.  Beyond the prize money, top performers may also be considered for follow-on opportunities, including Other Transaction (OT) agreements, a Cooperative Research and Development Agreement (CRADA), and direct transition into operational use, accelerating the deployment of these capabilities and making the best tech available to the warfighter with the speed and scale required.

Matthew Kling, VP and GM of AI Systems at MatrixSpace, “We’re honored to be a finalist in the @DIU Low-Cost Sensing Challenge, addressing the urgent need to scale counter-UAS operations, from single sites to national borders. MatrixSpace offers the only commercially available, distributed radar network for persistent, low-altitude monitoring. Combining advanced radar processing, distributed data orchestration and sensor management, and AI-driven classification, we empower governments and enterprises to safeguard people, infrastructure, and national interests with unmatched scalability, resilience, and cost-versus-performance.” https://www.diu.mil/latest/diu-usnorthcom-us-army-announce-finalists-for-c-uas-low-cost-sensing

 

21 Jul 25. Germany launches autonomous, non-kinetic C-UAS challenge. SPRIND, the German Agency for Disruptive Innovations that finances new and emerging technologies, has launched a counter-uncrewed aerial systems (C-UAS) challenge. The aim is to develop a fully autonomous C-UAS system that neutralises small and micro UAVs precisely, in real time and without collateral damage. It should be able to operate without weapons effects, external communication or human intervention. The system must be able to detect threats, clearly classify them and react appropriately to the situation with non-kinetic, reversible measures such as capturing, redirecting or blocking. The SPRIND Funke programme will launch on August 15, 2025, and will run for a total of just under four months in two phases. A jury of recognised experts will assist SPRIND in evaluating applications and select up to 20 teams to participate in the first phase. SPRIND offers full support at each stage, including financial assistance and direct access to a network of experts and potential collaboration partners. Teams can receive up to EUR 22,000 (plus VAT) for the first stage, which lasts one month. After the first stage, the jury reviews the interim results and evaluates which teams demonstrate the greatest breakthrough innovation potential. Up to ten teams reach Stage 2 and receive funding of up to EUR 30,000 (plus VAT) per team for the remaining 1.5 months. (Source: www.unmannedairspace.info)

 

15 Jul 25. Workshop aims to support the growth of India-made UAS and C-UAS. With the aim of achieving self-reliance in defence technologies, India’s Headquarters Integrated Defence Staff (HQ IDS) in collaboration with the Centre for Joint Warfare Studies (CENJOWS), is organising a Workshop and Exhibition on Indigenisation of Critical Components Currently Being Imported from Foreign OEMs in the Areas of UAV & C-UAS tomorrow, July 16, at the Manekshaw Centre in New Delhi. The event follows recent India-Pakistan hostilities, including Operation Sindoor, which highlighted the strategic importance and operational effectiveness of uncrewed aerial systems (UAS) and counter-UAS.  Recognising the importance of reducing the dependency on OEMs for critical UAS and C-UAS components, tomorrow’s event aims to bring together all relevant stakeholders, including defence experts, policymakers, military leaders, scientists and private industry, to develop a strategic roadmap for indigenisation. The Indian government hopes the event serves as a catalyst for innovation, knowledge sharing and long-term capability building in uncrewed systems. The workshop will feature talks by prominent experts, live demonstrations of indigenous technologies and discussions on overcoming existing challenges in domestic production. Chief of Defence Staff General Anil Chauhan will attend the event and Chief of Integrated Defence Staff Air Marshal Ashutosh Dixit will deliver the closing address, summarising the discussions and presenting the expected outcome – a strategic policy document focused on the indigenisation of UAS and C-UAS systems and their critical subcomponents. The initiative aligns with India’s vision of Aatmanirbhar Bharat, or ‘self-reliant India’, which works to bolster national security, enhance defence preparedness and transform India into a global hub for advanced military technologies. (Source: www.unmannedairspace.info)

 

17 Jul 25. India tests Akash Prime at high altitude. The Indian Army has successfully tested the Akash Prime aerial defence system in Ladakh, according to multiple reports from Indian media outlets today.  The Economic Times reports that the trials, held at an altitude exceeding 15,000 feet, were conducted by the Army Air Defence Corps in collaboration with senior scientists from the Defence Research and Development Organisation, which developed the system.

“Officials confirmed that the missile achieved two direct hits on fast-moving aerial targets in the rarified atmosphere of the high-altitude region,” the article stated.

India Today reports that Akash Prime will be inducted as part of the Army’s third and fourth Akash regiments.  The system was used in Operation Sindoor in May where it defended Pakistan-launched Turkish drones. (Source: www.unmannedairspace.info)

 

18 Jul 25. US Army issues new information to tank commanders on defence against drones. The US Army has outlined new measures its tank commanders should take to defend themselves from drone attacks. The latest version of the Army’s “Tank Platoon” publication says: “The platoon should assume they are being observed by enemy reconnaissance and targeting systems, and not assume they are under a protective umbrella of friendly air and missile defense units. UAS is a key threat to the tank platoon’s ability to maneuver. While not all hostile air threats require engagement using air defense measures from air and missile defense units, there is still a requirement to detect, identify, and be prepared to counter and defeat all classes of UASs.”

The publication says tank commanders should appoint air guards to identify drone threats as early as possible.

“Air guards will perform actions such as search and scan techniques for approaching threat UASs while observing their assigned sectors. Air guards should position themselves where they can best observe and more importantly listen for threat UAS. When listening, OPs should exercise noise discipline, ensure all engines are off and remove their headgear to listen. Early warning is the key for air guards since it is their responsibility to alert the formation of any possible air threats. Reporting threat UAS activity should include an estimate of the threat location from the air guard position. The air guard reports the approximate distance, time, duration, size, estimated elevation, and direction the UAS was heading when detected.”

Once a threat is detected the platoon can adopt either “passive” or “active” counter UAS measures.

“Limiting damage and attack avoidance measures are passive defense measures that are used to avoid detection from aerial threats and limit damage if attacked. Platoons must use caution when exercising C-UAS passive measures. Platoon leaders should select positions of advantage that provide concealment for Soldiers, equipment, and unit activities.” Other defensive measures include reducing multiple sets of tracks which leave a large overhead signature, use decoys and deception to set up false locations with smoke to draw attention away from an operation or emitters and emulators to confuse collection activities, the use protective construction and overhead cover to provide damage limiting cover for friendly forces and equipment.

In terms of active defence measures, the manual says platoon leaders should establish standard operating procedures (SOPs) for disseminating WCS (weapons control status) and hostile criteria. The platoon leader should consider training forces in the following active measures: define characteristics for threat UAS (factors for defining the characteristics of threat UASs are speed, altitude, location, and heading); develop and transmit WCS (a control measure designed to establish procedures for forces using surface-to-air weapons including small arms weapons; and engaging the threat UAS with small arms using combined arms for air defence firing techniques.

For more information

https://armypubs.army.mil/epubs/DR_pubs/DR_a/ARN44282-ATP_3-20.15-000-WEB-1.pdf?fbclid=IwY2xjawLm9rJleHRuA2FlbQIxMABicmlkETFmUkRQcjZKTDluTEVCcHFDAR5hh9Ax (Source: www.unmannedairspace.info)

 

18 Jul 25. SkeyDrone to secure the skies over Formula 1 Belgian Grand Prix. SkeyDrone will deploy its drone detection system to safeguard the Formula 1 Belgian Grand Prix at Spa-Francorchamps, taking place from 25 to 27 July 2025. As one of the most popular circuits on the calendar, tens of thousands of spectators, teams and media representatives will gather for the event, and SkeyDrone will work closely with event organisers and security teams to help ensure a safe and secure race weekend.  SkeyDrone’s drone detection system delivers real-time insights into drone activity, including the drone’s model, height, speed and location, as well as the drone pilot’s position. This enables rapid threat assessment and response, helping to prevent disruptions caused by unauthorised or malicious drone flights. Given that a limited number of drones will be authorised to operate during the event, SkeyDrone’s whitelisting feature will enable the security team to distinguish between known operations and potential threats. (Source: www.unmannedairspace.info)

 

18 Jul 25. French startup Harmattan develops collision-based C-UAS drone. French defence technology startup Harmattan AI, has been awarded a multi-m-US dollar contract by an undisclosed NATO government for the delivery of AI-enabled small uncrewed aerial systems (UAS). The systems will be delivered in mid-October.  The company, founded in April 2024, already has operations across Europe, the Middle East and the United States. While the contract announcement does not mention which Harmattan UAS is to be delivered, the company has developed, among other systems, a high-speed UAS designed for rapid interception of hostile group 1-2-3 drones. GOBI is designed to neutralise a target in approximately one minute from launch by colliding with it. Its AI models handle target recognition and tracking without external input although there is a human ‘in the loop’. Launched automatically, following a command from a surveillance system, GOBI scans the airspace for threats and navigates to its calculated interception point. As GOBI approaches the target, it enters a guidance mode and uses onboard IR and radar systems to execute an intercept. “Computer vision identifies the optimal impact point and autonomously applies final trajectory adjustments,” Harmattan says. Given its attack method, GOBI is not designed as a reusable counter-UAS system. (Source: www.unmannedairspace.info)

 

18 Jul 25. NATO-backed competition tests cooperation between crisis response drones. From 6-10 July, four teams of seven researchers and professors from universities in the Netherlands, United Kingdom, United States and Austria challenged each other at the Huntsville UAS (Unmanned Aircraft System) and C-UAS (Counter UAS) test range in Alabama, United States as part of a competition supported by the NATO Science for Peace and Security (SPS) Programme. The event, hosted by the University of Alabama in Huntsville, was the second of three competitions organised through the SPS-supported “SAPIENCE” initiative, which aims to demonstrate how autonomous drones that cooperate with each other may be used in crisis management scenarios.

“Expanding in scope from the first competition, which took place on 29 and 30 August 2024 in an indoor arena in London, United Kingdom, the Huntsville event required participating teams to develop autonomous drones suitable for outdoor conditions and for a scenario grounded in local conditions: the aftermath of severe storms that generated several tornadoes, which are an annual occurrence in the southeastern United States,” NATO explained.

“A flight test range simulated just such a disaster scenario, and the four university teams were assigned tasks such as damage assessments of residential communities, search and rescue for victims, and the delivery of lifesaving medical supplies. They were encouraged to perform these tasks using multiple fully autonomous drones simultaneously, thus demonstrating innovative approaches to the technical challenges of autonomous multi-platform systems.”

The third and final SAPIENCE competition will take place in 2026 in the Netherlands, where the four university teams will build on the lessons learned in London and Huntsville to complete tasks in a scenario combining indoor and outdoor conditions. (Source: www.unmannedairspace.info)

 

18 Jul 25.  Denmark’s transport minister “wants to give ports, airports power to shoot down drones.” Denmark’s Transport Minister Thomas Danielsen wants to give airports and ports permission to shoot down drones that may pose a threat, according to Denmark’s DR News portal and highlighted by Skypuzzler’s Jesper Skou in a Linkedin post.

“He has sent a bill for consultation that would make it legal for certain public authorities and “infrastructure managers” to neutralize so-called uncooperative drones in areas designated as geographic drone zones,” said the DR news report, translated by google translate. “These could be, for example, airports, ports or companies responsible for operating bridges. If a drone flies that they don’t know about, and they’re already out regulating seagulls, or whatever, they can just shoot it down, says the minister.

“The bill is being well received at Copenhagen Airports. Over a longer period of time, we have experienced increasing drone activity around the airport, which can potentially disrupt air traffic, writes Kristoffer Plenge-Brandt, Operations Director at Copenhagen Airport, in a written response. Therefore, we are very satisfied that it is being looked at from a political perspective, it says.”

“At the Port of Køge, Director Thomas Kampmann also welcomes the proposal. We are looking into a situation where ports like Køge Port, which are used for military shipments, are of interest to foreign powers, he says. Today, there’s not much we can do other than call the police, and then the drone or drones are typically gone when the police arrive, he says. At the beginning of the year, the Port of Køge was severely disturbed by drones flying. It is still unknown who was behind it. They may have been from foreign powers, but perhaps also from private individuals who thought it was fun to fly in and be on the news in the evening, says Thomas Kampmann.”

According to a Linkedin commentary by Jesper Skou: “The Minister of Transport’s proposal to allow ports and airports to shoot down drones testifies to due diligence in relation to the increasing threat posed by unauthorized drone activity. Security in and around critical infrastructure must of course be the highest priority.  However, it is crucial that we implement a nationwide UTM (Unmanned Traffic Management) system, which by the way both Norway and Sweden are in full swing with.  With a UTM system, we can identify in real time the drones that are flying legally and registered – the so-called “cooperative drones”. Without a UTM system, it is difficult to identify the “non-cooperative” drones and we risk penalizing hobbyists and companies that operate fully legally, but are indistinguishable from the “non-cooperative” ones. At the same time, a nationwide UTM system can be the infrastructure that ensures the use of drones in national security and response.”

For more information

https://www.linkedin.com/in/jesper-skou-557473/

https://www.dr.dk/nyheder/indland/minister-vil-give-havne-og-lufthavne-lov-til-nedskyde-droner (Source: www.unmannedairspace.info)

 

21 Jul 25. Fundamental lethality shift for British Army spearheaded by novel targeting tech ‘ASGARD.’ British Army showcase new technology that improves the accuracy of targeting enemies and reduces decision-making time for strikes. A pioneering digital targeting web, called ASGARD, has been showcased this week, following successful trials by British soldiers deployed on NATO’s eastern flank. The project will enable soldiers to rapidly find and strike enemy targets at greater distances than ever before.   Following the Strategic Defence Review, the Army will deliver a tenfold increase in lethality over the next ten years by harnessing firepower, surveillance technology, autonomy, digital connectivity, and data – leading the way in NATO in its use of technology to change how it fights, improving speed and accuracy. ASGARD will exploit AI and novel communications networks, providing rapid targeting and decision-support to personnel.      The Ministry of Defence is committing funding for the next phase of ASGARD’s development. This will allow the Army to expedite its lethality and deepen its links with society through partnership with British industry, delivering on the Government’s Plan for Change by keeping the UK secure at home and strong abroad.

Minister for Defence Procurement and Industry, Rt Hon Maria Eagle MP said: “We are learning the lessons from Ukraine so our frontline personnel can strike further and faster and maintain advantage over our adversaries.  ASGARD exemplifies the vision of the Strategic Defence Review, with speed and world-class capability achieved by bringing together military, Government and industry professionals with a focus on rapid frontline delivery.”

ASGARD forms part of the work to create a wider digital targeting web across the UK’s Armed Forces by 2027, backed by more than £1 bn in funding. It will better connect military weapons systems and allow battlefield decisions for targeting enemy threats to be made and executed faster.   ASGARD was showcased this week to international allies and industry partners in London, with participants shown the capability in action, including its overwhelming effect on adversaries.

Chief of the General Staff, General Sir Roly Walker said:  “Project ASGARD proves we can do things differently. It’s not just a pathfinder for transformation; it’s a transformation in how we find, fund, and fight with cutting-edge capabilities. ASGARD helps double our lethality and exponentially reduces the time to see, decide, and strike. What took hours, now takes minutes. Today, the UK possesses a similar Recce-Strike system to the one used by Ukraine to maul Russian forces in the Donbas. That system now sits at the heart of our Forward Land Forces in Estonia. We are particularly proud of the collaboration between tacticians and technicians, between Defence and Industry, and the support of and to small and medium enterprises and jobs across the UK.”

Using a novel acquisition approach, ASGARD was first announced by the Defence Secretary in October 2024 and progressed at an unprecedented pace, with contracts awarded in January 2025 and a prototype capability deployed only four months later for NATO Exercise Hedgehog in Estonia. ASGARD’s capabilities were successfully tested, increasing the UK and NATO Armies’ lethality by improving targeting precision and significantly cutting decision-making time.  This quick turn-around was achieved through a collaboration between industry technicians and military tradecraft experts, bringing together a consortium of military, civil service and industry partners to deliver the best possible product in the shortest amount of time.  The Strategic Defence Review recommended a shift towards greater use of autonomy and Artificial Intelligence within the UK’s conventional forces, facilitated by a Digital Targeting Web. The next phase of ASGARD will deliver on this, focusing on enhancing the lethality at the Corps and Divisional levels as the Army’s contribution to the Defence Targeting Web. It will exploit the Digital Decision Accelerators from the Defence Commercial framework to harness the talents across a broader array of industry partners to improve core capability. (Source: https://www.gov.uk/)

 

17 Jul 25. Singapore’s military, US intelligence-gathering aircraft make Talisman Sabre debut in Australia.  For the first time, sophisticated US Intelligence, Surveillance and Reconnaissance (ISR) aircraft have deployed to Australia as part of the large-scale multinational, multidomain Talisman Sabre military exercise. The exercise, codenamed Talisman Sabre, is taking place throughout northern and eastern Australia for three weeks starting from July 13. It brings together more than 35,000 military personnel from the militaries of 19 nations including that of host Australia, the US, the United Kingdom and Japan training on land, airspace and waters around Australia, according to a news release from the US Embassy in Australia. Notably, this year’s edition marks the first time a US Air Force RC-135W Rivet Joint from the 55th Wing, normally at Offut Air Force Base in Nebraska, and a US Navy P-8A Poseidon fitted with specialized ISR and communications suites, have taken part in the biennial exercise. The latter is from the Dallas-based Naval Air Systems Command-Flight Support Detachment test & evaluation unit and was photographed in Australia by locals carrying the belly mounted AN/APS-154 Advanced Airborne Sensor (AAS) multifunction radar and Mobile User Objective System (MUOS) Satellite Communications (SATCOM) system on top of its fuselage. According to Naval Air Systems Command, the AAS is an integrated ISR and targeting system with the additional capability of Mast and Periscope Detection for detecting submarines, while the Defense Technical Information Center (DTIC) describes MUOS is a narrowband, beyond line-of-sight system that can provide “10 times the throughput capacity of current narrowband SATCOM”

Justin Bronk, the Senior Research Fellow for Airpower and Technology at the Royal United Services Institute in London, told Breaking Defense that both aircraft would bring exceptional Signals Intelligence and Electronic Intelligence gathering capabilities.

The P-8A also possesses anti-submarine and surface search capabilities, and excellent cross domain communications and data-sharing support to the exercise.

“It’s not surprising to see these assets taking part in Talisman Sabre given how inherently multi-domain any high-end air-led operations would need to be to be effective in the Indo-Pacific,” he added.

Another notable first participant in this year’s exercise: the Singaporean military.

Singapore’s Ministry of Defence said that two of its M142 High Mobility Artillery Rocket System (HIMARS) launchers and two Boeing CH-47F Chinook helicopters are participating at the exercise, with its HIMARS taking part in a multinational live fire exercise with vehicles from Australia and the US on July 14. More than 100 personnel from the Southeast Asian nation will be taking part in the exercise, including from the Special Operations Task Force of the Singaporean army and Republic of Singapore Air Force Special Operations Aviation Task Group crew. The latter, flying CH-47F Chinooks, have been seen flying together with MH-47F Chinooks and MH-60L Blackhawk helicopters of the US Army’s 160th Special Operations Aviation Regiment and Australian UH-60M helicopters in the lead up to the exercise.

Euan Graham, Senior Analyst on Defence Strategy at the Australian Strategic Policy Institute, said that the presence of Singaporean special forces at the exercise is noteworthy.

“Singapore has advanced military capabilities that no other partner in Southeast Asia comes close to, so for them to take part in Talisman Sabre is an opportunity for them to drill as part of a large coalition force, and at the more complex end of the activity spectrum,” he added (Source: Defense News Early Bird/Breaking Defense.com)

 

23 Jul 25. Cuashub.com said today that Joint U.S.–German C-UAS exercise tests drone response readiness. U.S. Army Garrison (USAG) Rheinland-Pfalz conducted a joint C-UAS exercise on July 16 near Miesau, Germany. The operation brought together U.S. Army, U.S. Air Force, and German Polizei units to test their ability to detect and respond to unmanned aircraft system (UAS) threats in a real-world scenario. The C-UAS exercise featured a DJI Phantom 4 flown by operators from the U.S. Air Forces in Europe and Africa’s Combat Training School. The drone simulated a hostile incursion, allowing teams to practice detection, signal disruption, and coordinated response procedures using current counter-UAS technologies.

“The DJI Phantom 4 is a commercially-available small UAS, making it ideal for this type of training,” said Emily Roemer, antiterrorism officer with USAG Rheinland-Pfalz Directorate of Plans, Training, Mobilization and Security.

Air Force personnel deployed signal disruptors and hijackers to neutralize the simulated threat. “This exercise showed the importance of a joint force working together to combat small UAS threats. Our procedures are sound,” said Staff Sgt. Michael Sopha, noncommissioned officer in charge of C-UAS for the 569th U.S. Forces Police Squadron.

German Polizei officers were fully integrated into the drone exercise, reflecting the importance of host nation cooperation. “Host nation response during a real-world event is critical. The Army likes to train how we fight, so we knew getting host nation participation for this exercise was a must,” Roemer added.

USAG Rheinland-Pfalz police chief DJ Diallo emphasized the need for international coordination: “The lines between civilian and military airspace are increasingly blurred, demanding seamless information sharing and coordinated responses. Without robust international cooperation between Polizei and USAG Rheinland-Pfalz DES, we risk critical gaps in our ability to detect, deter, and respond to drone-related threats.” The exercise is part of the Army Transformation Initiative, the U.S. Army initiative to invest in technologies including artificial intelligence, autonomy and counter-drone systems to outpace future threats. The garrison plans to continue joint training events to improve readiness, enhance interoperability, and strengthen multinational partnerships in C-UAS operations. https://cuashub.com/en/content/joint-u-s-german-c-uas-exercise-tests-drone-response-readiness/ (Source: https://cuashub.com/)

 

18 Jul 25. Cuashub.com said today that India hosts UAS and counter-UAS workshop. In a push to strengthen domestic capabilities in unmanned aerial technologies, India’s Ministry of Defence hosted a workshop and exhibition today on the indigenisation of UAS and counter-UAS at the Manekshaw Centre in New Delhi. Organised by the Headquarters Integrated Defence Staff (HQ IDS) in collaboration with the Centre for Joint Warfare Studies (CENJOWS), the event is part of a broader effort to reduce India’s reliance on foreign suppliers for critical defence components. The initiative comes amid growing recognition of the strategic role UAS and counter-drone technologies play in modern military operations. The workshop follows the recent India-Pakistan confrontation referred to as Operation Sindoor, where indigenous UAS and C-UAS systems were reportedly deployed for surveillance and precision targeting. Defence officials have credited these technologies with helping to minimize risk to personnel while maintaining operational effectiveness, highlighting the importance of homegrown systems in active conflict scenarios.

Chief of Defence Staff General Anil Chauhan inaugurated the event, stressing the importance of counter-UAS in asymmetric warfare: “Asymmetric drone warfare is making large platforms vulnerable and driving militaries to rethink the conceptual aspects of air doctrines, development of C-UAS and adaptive moves of engagement,” he said.

The workshop reportedly concluded with a valedictory address by Air Marshal Ashutosh Dixit, Chief of Integrated Defence Staff, to present key findings and unveil a policy roadmap to support the domestic development of UAS and C-UAS systems and subcomponents. The agenda includes technical presentations, panel discussions and live demonstrations of indigenous technologies. Discussions are expected to focus on innovation, capability development and the challenges facing India’s defence manufacturing sector, especially in areas such as sensors, propulsion, communications and electronic warfare. The workshop is part of India’s broader efforts to advance self-reliance in defence under the “Atmanirbhar Bharat” (self-reliant India) initiative, with unmanned systems seen as a high-priority area due to their growing relevance across surveillance, combat and homeland security missions. https://cuashub.com/en/content/india-hosts-uas-and-counter-uas-workshop/ (Source: https://cuashub.com/)

 

23 Jul 25. Cuashub.com said today that ROKETSAN and FNSS announce ALKA-KAPLAN hybrid mobile C-UAS system. Turkish defense firms ROKETSAN and FNSS have announced the integration of the ALKA Directed Energy Weapon System (ALKA DEWS) into the KAPLAN HYBRID vehicle platform, creating a mobile armored anti-drone system. The combined platform, known as ALKA-KAPLAN, will be presented at the upcoming IDEF 2025 defense industry exhibition. The ALKA DEWS is designed to detect and neutralize a range of aerial threats, including fixed-wing and rotary-wing mini/micro unmanned aerial vehicles (UAVs) and loitering munitions. The system features a two-layered defense mechanism: an electromagnetic jamming weapon for soft-kill capabilities and a laser weapon for hard-kill engagements. It is capable of addressing threats such as swarm UAVs, loitering munitions, and improvised explosive devices (IEDs), including those placed in urban environments or along roadways. The KAPLAN HYBRID Powerpack, which began development in 2021 and was first demonstrated at IDEF 2023, is a hybrid propulsion system designed for tracked vehicles. It has completed mobility and verification testing and is now configured for operational deployment. The system is engineered to support high-energy weapons like ALKA without requiring an additional power unit. A diesel generator, developed by FNSS, supplies high-voltage power for both vehicle propulsion and mission systems, enhancing operational range by over 10% when not in active use. The ALKA-KAPLAN system is designed to be adaptable across various deployment scenarios – fixed, portable, or mobile – and can be integrated with a range of platforms. It supports multiple laser power levels, sensor configurations (including radar and electro-optical systems), and advanced targeting technologies. The system also includes artificial intelligence-supported detection and tracking algorithms and user-friendly interfaces. https://cuashub.com/en/content/roketsan-and-fnss-announce-alka-kaplan-hybrid-mobile-c-uas-system/ (Source: https://cuashub.com/)

 

18 Jul 25. Cuashub.com said today that. DRONERESPONDERS launches national public safety drone training program. The non-profit group AIRT, known for its DRONERESPONDERS initiative supporting drone use in public safety, has announced a new nationwide training program aimed at improving the management and sustainability of UAS programs within emergency services. The initiative, titled UNITE (UAS National Initiative for Training and Education), was launched in response to findings from AIRT’s 2025 Government and Public Safety Sector Survey, which gathered input from nearly 900 participants. The survey revealed widespread concerns over training limitations, staffing challenges and a lack of long-term planning among public safety UAS programs. A key issue highlighted in the survey is that 91 percent of public safety drone pilots hold collateral responsibilities, meaning drone operations are not their primary role. This dual-duty structure has created operational stress and raised concerns about program sustainability.

Other findings include:

  • Only 26 percent of agencies are satisfied with their ability to train remote pilots internally.
  • Just 18 percent expressed strong satisfaction with access to external training providers.
  • A mere 31 percent of agencies have implemented formal succession plans for drone operators.
  • More than 76 percent said their agency would benefit from additional training focused on UAS program management.

To address these gaps, UNITE will offer three structured learning paths:

  1. Online Training – Starting with a “UAS Leadership Series” focused on developing management skills for current and future program leaders.
  2. Regional Workshops – Hands-on, multi-agency training events across the U.S.
  3. Custom Training – Tailored courses to meet the specific needs of individual agencies.

The program will be led by Jason Day, appointed as DRONERESPONDERS’ Deputy Director for Training. Day previously led the Texas Department of Public Safety’s UAS program, one of the largest in the country.

While DRONERESPONDERS promotes the program as a much-needed solution, its broader impact will depend on adoption across diverse agencies with varying resources and needs. UNITE is expected to roll out its first online modules later this year.

DRONERESPONDERS launches national public safety drone training program

(Source: https://cuashub.com/)

 

22 Jul 25.  NATO Integrated Defence: Leonardo’s Capabilities at Formidable Shield 2025. During the Formidable Shield 2025 exercise, the Italian Navy’s Giovanni delle Bande Nere deployed Leonardo’s SADOC 4 and Dual Band Radar systems to detect and track ballistic, aerial and surface threats. As operating environments grow more complex and interconnected, validating the effectiveness of systems in multi-domain scenarios and their ability to operate cohesively and coordinated between allied naval forces is now a strategic imperative. To address this need, the At Sea Demonstration / Formidable Shield 25 (ASD/FS25) was held–a joint Integrated Air and Missile Defence (IAMD) activity planned every two years by the United States Sixth Fleet and conducted by STRIKFORNATO, a NATO command based in Lisbon. Among the protagonists of the operation was the Italian Navy, which deployed the Giovanni delle Bande Nere: the first of the MPCS/PPA (Multi-Purpose Combat Ship/PPA) Multi Mission Combat Units in “full” configuration equipped with the most advanced combat systems developed by Leonardo. During the exercise, which included a series of live-fire events, the unit successfully deployed SADOC 4, the command-and-control system with IAMD capabilities, and Dual Band Radar, an advanced radar suite designed to track ballistic, airborne (including drones and supersonic missiles) and surface threats. Market Forecasts by Region, Platform, Application, Role, and Component. Market and Technology Overview, Market Dynamics, Scenario and Opportunity Analysis, and Leading Companies SADOC 4 is the ship’s brain: a new-generation command-and-control system designed to quickly and effectively coordinate defence against air and missile threats, even the most advanced and difficult ones to intercept. Designed for today’s and tomorrow’s operational needs, SADOC 4 integrates advanced technologies based on the continuous evolution of interaction between man and machine. From the keyboard to multi-touch controls, the system revolutionises the way operators manage information and access commands, simplifying tasks and reducing decision-making times. A more intuitive and dynamic approach that improves operational readiness and makes the ship even more responsive and aware of the scenario in which it operates. The Dual Band Radar is a radar suite designed to be installed on various types of ships. It offers high performance thanks to the arrangement of its panels, which ensure complete coverage and reduce electromagnetic interference. The radar is capable of performing multiple functions simultaneously: surveillance, target tracking, missile guidance, fire support and electronic attack, operating in all directions in a coordinated and flexible manner. Thanks to the capabilities of the command-and-control system developed by Leonardo, the ship operated cohesively and effectively with NATO allied forces, contributing significantly to the shared situational awareness of the naval force. Notably, the onboard radar suite detected and tracked a short-range ballistic target while maintaining tracking and disseminating the track to the point of impact at sea. The ship also acted as a Forward Observer, independently identifying medium-range ballistic missiles launched from both land and sea, and sharing data in real time via tactical links. Leonardo’s Dual Band Radar stood out for its ability to initialise tracking within seconds of launch and accurately track ballistic missiles for hundreds of kilometres, even at supersonic speeds. During the final forum of the exercise, held in the North Sea from 3 to 23 May 2025, the Italian Navy was recognised as having one of the highest levels of IAMD capability in the world, thanks to the capabilities of its sensors and the ability of SADOC 4 to operate and exchange data with the systems of the most technologically advanced units in the world, first and foremost the American ones. (Source: ASD Network)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

July 18, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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17 Jul 25. Upgraded E-2D Block II aircraft will be fielded in a “couple of years.” This needs to be sooner rather than later as the US cancelled its E-7 Wedgetail order as part of the administration’s efficiency crusade. The E-2 airborne command and control aircraft, a platform that has been in service for more than 60-years, will receive upgrades under the forthcoming E-2D Advanced Hawkeye Block II iteration for use in the coming years. During the Chief of the Air Staff’s Air and Space Power Conference in London on 16 July, Jane Bishop, sector vice president and general manager, global surveillance, Northrop Grumman, confirmed that this iteration will be “fielded in a couple of years”. This needs to be sooner rather than later as the US government cancelled its Boeing E-7 Wedgetail order at the end of June 2025, as part of the current administration’s efficiency crusade. The US Department of Defense estimated costs had climbed by $136m per aircraft (out of 26 units), and added that there were survivability issues. Instead, the US Air Force (USAF) has resolved to lean on space-based capabilities as well as the legacy E-2D aircraft – a variant that reached initial operational capability in October 2014 – for its future airborne early warning and control (AEW&C) fleet.

US and Europe requirements

Not only is E-2D less costly, but the platform is designed to deploy from aircraft carriers which will prove invaluable in conducting Indo-Pacific operations against China. Meanwhile, the hulking Wedgetail, based on the Boeing 737, has a top-hat radar that covers a significantly larger array than the E-2D. As it is jet-powered, Wedgetail can exceed the turboprop in speed and range. This is one benefit the Wedgetail provides another Indo-Pacific partner, the Royal Australian Air Force, given the vast theatre stretching 100 m kilometres. (Source: naval-technology.com)

 

16 Jul 25. Hoverfly Technologies announces the success of a significant video surveillance and live streaming effort at the Big Sandy Range Live Fire and Northrop Grumman’s Bushmaster User Conference this past April. Two Spectre systems were tasked with recording and live streaming the event, showcasing their unmatched capability as elevated ISR nodes with persistent video backhaul and multi-mission versatility. Hoverfly’s participation highlighted the Spectre system’s ability to seamlessly integrate into dynamic, real-world operations. Operated remotely, the two Spectre units were deployed in on-the-move configurations atop Expeditionary Modular Autonomous Vehicles (EMAV)—developed for the U.S Army’s Robotic Combat Vehicle – Light (RCV-L) program. The Spectres were equipped with NextVision Raptor gimbals to provide uninterrupted, high-definition aerial coverage throughout the event. To ensure reliable video backhaul, the Spectres were also outfitted with Silvus radios for secure and persistent network connectivity while delivering real-time situational awareness to both on-site and remote viewers. This multi-payload multi-mission configuration epitomizes the Spectre’s ability to adapt to dynamic operations and fulfill a breadth of mission critical scenarios. Not only was this effort a concrete example of Spectre’s exemplary capability set, but it was also a testament to the expertise and adaptability provided by Hoverfly’s Services and Solutions. The Bushmaster User Conference brought together key military stakeholders, systems developers, and operational teams to witness the latest innovations and capabilities of Northrop Grumman’s Bushmaster® Chain Guns®, advanced ammunition, and cUAS solutions. The event required long-duration flights and intense operating conditions with a live firing range and Hoverfly persevered in every facet. Organizers from Northrop Grumman stated that Hoverfly’s deployment “brought an enhanced customer experience to view down range effects from the demonstration,” as the persistent video backhaul managed by Hoverfly operators made viewing the firing range a live and engrossing experience from an elevated viewpoint. Hoverfly Spectre’s compact, rugged design and easy deployment made it ideal for the conference’s mobile and fast-paced setting. This deployment continues to position Spectre as an indispensable tool in the evolving landscape of tactical communications and battlefield situational awareness.

“This demonstration reinforces what many of our defense partners already know — Spectre is not just a drone, it’s a force multiplier,” said Steve Walters, CEO of Hoverfly Technologies. “Whether for ISR, comms relay, or live event coverage, Spectre continues to prove its multi-mission value across a growing number of operational scenarios.” Learn more about Hoverfly TeUAS at https://hoverflytech.com/ (Source: PR Newswire)

 

16 Jul 25. Lockheed Martin has achieved a major breakthrough in AI and airborne surveillance with the potential to detect and track maritime targets with unprecedented accuracy. In a recent flight test on the west coast of the United States, Lockheed Martin engineering teams successfully demonstrated technology to automatically recognize targets using an AI-powered Synthetic Aperture Radar (SAR) with embedded sensor control autonomy. SAR is a gold standard technology for imaging targets at sea, like warships, but traditionally requires manual interpretation of images. AI unlocks the full potential of SAR for enhanced object detection with faster, more accurate and automated image analysis. By leveraging AI-powered SAR target recognition, warfighters will be able to quickly differentiate a combatant vs. civilian vessel without the need for manual analysis.

“This is a major leap for harnessing AI to help enhance situational awareness and decision-making capabilities, with unparalleled threat identification across extended ranges and all-weather conditions,” said John Clark, senior vice president of technology and strategic innovation at Lockheed Martin. “We are committed to continuing to advance this capability, including data integration from multiple sensors, to create more accurate insights and help the warfighter make informed decisions in the maritime battle space.”

This groundbreaking achievement, developed by the Lockheed Martin AI Center (LAIC), Skunk Works®, and Rotary Mission Systems (RMS) team, is a significant advancement of situational awareness in maritime target recognition. In the demonstration, the SAR Automatic Target Recognition (ATR) capability, enabled by Machine Learnings Operations (MLOps) tools for rapid retraining, successfully classified targets of interest in near real-time. SAR ATR was coupled with autonomous sensor control, which re-tasked the radar in real time based on target detections. This capability was deployed on low Size, Weight, and Power (SWaP) hardware in the field, rapid edge processing, without the need for large cloud compute or ground stations. Testing of AI powered SAR ATR will continue over the course of the year. Data collected during these flight tests will be used to develop and mature multiple Lockheed Martin autonomous systems, including collaborative combat aircraft and family of systems applications.

 

16 Jul 25. L3Harris Showcases Counter-Drone Capability to British Soldiers at VANAHEIM. As the threat landscape rapidly evolves with increasingly agile and unpredictable uncrewed aircraft systems (UAS), L3Harris is staying ahead of this warfighter need with adaptive, integrated counter-UAS solutions (CUAS) capable of responding in real-time. Warfighters need the right tools and technology at the right time to execute their missions successfully, stay safe, and maintain operational advantage over adversaries. During VANAHEIM, a dynamic field-based demonstration run by the British Army’s RAPSTONE Task Force, L3Harris placed its advanced counter-small UAS technology, CORVUS-RAVEN, directly into the hands of British soldiers to gain valuable, real-time feedback, shaping the future of the technology.

What is VANAHEIM?

VANAHEIM is a joint exercise run between the British and U.S. Armies at Hohenfels Training Area, Germany, to identify new CUAS solutions to aid the British Army in updating and modernising capabilities, technology and tactics against the rapid development of small UAS threats in line with recent global conflicts.

Getting CORVUS-RAVEN in the Hands of Users

VANAHEIM required that each CUAS solution be designed for use by generalist soldiers, small enough to be portable and focused on Class 1 UAS systems. These requirements aligned perfectly with L3Harris’CORVUS-RAVEN counter-small UAS capability, a counter-drone system that provides enhanced situational awareness through the rapid detection and indication of drone threats, as well as integrated jamming functionality. With passive detection capability up to four kilometres and a visual display with battle management applications such as Android Tactical Assault Kit (ATAK), CORVUS-RAVEN is a lightweight and highly portable solution ideally placed to address counter-small UAS challenges on the battlefield.

L3Harris showcased CORVUS-RAVEN in two configurations at VANAHEIM, a unit mounted onto a Coyote vehicle and a dismounted variant wearable by soldiers. During the L3Harris demo, British Army soldiers operated CORVUS-RAVEN in various realistic mission scenarios and provided direct feedback to L3Harris experts based on their experience with the kit, helping to shape and inform future capability.

“VANAHEIM provided an invaluable opportunity to get L3Harris CORVUS-RAVEN capability into the hands of users,” said Ian Menzies, General Manager of L3Harris’ Intelligence and Cyber International division. “By taking part in the trial, we’ve been able to show British soldiers how our equipment can benefit their missions in a live field environment. This close collaboration with the customer will inform further development of the capability, ensuring our technology is fully aligned to their needs and ready for the future.”

CORVUS-RAVEN brings operators unsurpassed signal detect-and-defeat jamming capability. At the heart of this system is L3Harris’ Individual CORVUS Node (ICN), a lightweight, compact electronic warfare system that enables forces to rapidly switch between multirole, multiplatform and multifunction capabilities. Software-defined, this capability is ready to rapidly detect, locate, classify and defeat evolving UAS threats across the future battlespace. (Source: ASD Network)

 

16 Jul 25. Cuashub.com said today that Drone strike hits U.S.-operated oil field in Iraqi Kurdistan. A drone strike disrupted operations at the Sarsang oil field in Iraq’s autonomous Kurdistan region on Monday, marking another targeted attack on the region’s energy infrastructure. The Kurdistan Regional Government (KRG) denounced the strike, calling it an act of terrorism. The field, located in Duhok province, is operated by U.S.-based HKN Energy. In a statement, HKN confirmed that the strike occurred at approximately 7:00 a.m. local time and damaged one of its production facilities.

“Operations at the affected facility have been suspended until the site is secured,” the company said, adding that emergency response teams contained a fire that broke out following the impact. No injuries were reported.

The incident is the latest in a series of drone-related attacks in northern Iraq. In recent weeks, a drone incident occurred near Erbil International Airport, which hosts U.S. and coalition forces, and another strike caused material damage to the Khurmala oil field. While no group has claimed responsibility, Kurdish officials have previously accused Iran-aligned militias of being behind similar operations. The KRG, which maintains its own oil and gas contracts independent of Baghdad, has faced increasing pressure from the federal government in recent years. Tensions between Erbil and Baghdad have grown over control of natural resources, with Iraq’s federal government opposing unilateral Kurdish deals with foreign firms. Iraq’s Oil Ministry announced a preliminary agreement with HKN Energy just hours after the drone strike. The agreement involves developing the Hamrin oil field, located in a separate region under federal control. Iraqi Oil Minister Hayan Abdel Ghani emphasized Baghdad’s intent to continue working with American firms, despite legal and political disagreements over Kurdish energy policy.

“Iraq welcomes cooperation with U.S. companies to boost energy development,” he said.

Roughly 2,500 U.S. troops remain stationed in Iraq as part of the ongoing coalition mission against ISIS, primarily advising and assisting Iraqi and Kurdish forces. The rise in drone attacks, many suspected to be conducted by Iran-backed groups, highlights the growing challenge of securing against UAS threats facing foreign firms and infrastructure in the region.

Drone strike hits U.S.-operated oil field in Iraqi Kurdistan

(Source: https://cuashub.com/)

 

16 Jul 25. Cuashub.com said today that France tests new warhead-free interceptor drone. French startup Harmattan AI has begun flight testing a new counter-drone system designed to intercept and destroy enemy UAS without using a warhead. The drone, named Gobi, is part of a contract awarded by France’s Directorate General of Armaments (DGA) and is aimed at providing a cost-effective air defense solution. Founded just 14 months ago, Harmattan AI has focused on reducing the cost of drone interception through autonomous navigation and a simplified method of target destruction. According to the company, the Gobi drone is capable of engaging targets ranging from small quadcopters (Category 1) to medium-sized UAVs weighing up to 600 kilograms (Category 3). Gobi is an expendable fixed-wing drone that can reach speeds of up to 250 km/h and intercept targets at distances of up to 5 kilometers. The drone is launched automatically after receiving a signal from a ground-based surveillance system. During flight, it is guided toward the target area via radio commands. In the final phase of interception, the system switches to autonomous targeting using onboard infrared sensors, radar and computer vision algorithms. The drone does not carry a warhead. Instead, it is designed to physically collide with its target, specifically aiming to damage the rotor or propeller. Harmattan AI says this design choice helps reduce both the weight and production cost of the system. Video footage from test trials released by the company shows Gobi successfully intercepting and disabling drones in flight. The drone is not intended to be reusable.

Operational use and limitations

The developers highlight Gobi’s autonomous guidance capabilities and low production cost as its primary advantages. However, the system depends on visual tracking in its final targeting phase, which may limit its effectiveness in poor weather conditions such as fog, rain or snow. Additionally, unlike systems that use proximity fuses or explosive charges, Gobi must make direct physical contact with the drone to be effective. This could limit performance against maneuvering or fast-moving aerial targets.

Future development

Harmattan AI has not disclosed specific details about production timelines or unit costs. However, the system is being promoted as part of France’s broader effort to develop scalable and affordable counter-UAS capabilities. It is unclear whether Gobi will be integrated into French military forces beyond the testing phase. https://cuashub.com/en/content/france-tests-new-warhead-free-interceptor-drone/ (Source: https://cuashub.com/)

 

16 Jul 25. Cuashub.com said today that Belarus shoots down Russian drone headed toward Ukraine. A Belarusian military helicopter shot down a Russian drone near the Ukrainian border on Saturday, according to Ukrainian intelligence sources cited by RBC-Ukraine. The drone, identified as a Russian Gerbera model, was intercepted while flying through Belarusian airspace en route to Ukraine. The incident reportedly occurred on July 12, when a Belarusian Mi-24 helicopter conducting routine airspace control detected the UAS and destroyed it. The wreckage of the drone fell in the Gomel region of southeastern Belarus, not far from the Ukrainian border. According to the same Ukrainian sources, at least three Russian drones were operating in Belarusian airspace at the time. It is unclear whether the others continued their mission or returned to Russian-controlled territory. The Gerbera drone is believed to be a decoy system, designed to simulate the radar signature of an armed UAS in order to distract or confuse air defense systems. Its use has increased in recent months as Russia attempts to probe and overwhelm Ukrainian air defenses. This is not the first time a Gerbera drone has drawn regional attention. Just two days earlier, on July 10, Lithuania scrambled fighter jets in response to an unidentified drone that crossed into its airspace from Belarus. The incident prompted emergency protective measures, with senior government officials briefly sheltering. The drone later crashed near the shuttered Shumsk border checkpoint, roughly one kilometer from Belarusian territory. Lithuania’s National Defense Minister Dovilė Šakalienė later confirmed that the drone involved in that incident was also a Russian Gerbera model. Its flight path, reportedly traversing parts of Ukraine and Belarus before entering Lithuania, remains under investigation. Neither Belarusian nor Russian officials have publicly commented on this most recent incident.

Belarus shoots down Russian drone headed toward Ukraine

(Source: https://cuashub.com/)

 

08 Jul 25. USD2bn plus for counter-UAS in President Donald Trump’s “Big Beautiful Bill.” President Donald Trump’s “Big Beautiful Bill” was signed into law on July 4, 2025.  According to analysts Holland & Knight:

“The defense portion of the reconciliation bill addresses critical capability gaps identified by the Trump Administration, military leadership and members of Congress. It includes significant investment across multiple domains, with particular emphasis on shipbuilding, supply chain resilience, low-cost weapons and munitions production, DOD cybersecurity, nuclear modernization, Indo-Pacific Command capabilities and readiness initiatives. The legislation also provides an initial investment in the president’s Golden Dome initiative, which is a comprehensive layered missile defense architecture.”

The key counter-UAS expenditure line items are included in Section 20004: “Enhancement of DOD Resources for Munitions and Defense Supply Chain Resiliency (USD25bn)”. This section includes investments in various munitions and counter-drone programmes, including:

  • USD500m for counter-unmanned aerial systems programs to address emerging drone threats:
  • USD350m for non-kinetic counter-unmanned aerial systems programs
  • USD250m for development of land-based counter-unmanned aerial systems
  • USD200m for ship-based counter-unmanned aerial systems

Further funding of USD500m for state and local drone detection capability and USD2.77 for “cutting-edge surveillance technologies“ for border control agencies will push the final total to more than USD2bn. The bill also includes a preliminary USD12.5bn from a total of  USD31 bn President Trump has identified for ATC modernization; how much of this will be made available for investment in new UAS traffic management systems is not yet clear, though the switch to more digital technologies and investment in new weather systems plus USD50m to fund the FAA’s Center for Advanced Aviation Technologies (CAAT) should provide some funding for more UTM development. According to an AUVSI statement: “This is a major milestone for the autonomy and robotics industry, positioning the U.S. to lead the world in secure, innovative, and scalable uncrewed technologies. Thanks to sustained engagement from AUVSI and our members, the bill includes bns in funding across all domains of autonomy, including: USD13.5B+ for small UAS, maritime robotics, autonomous munitions, and more; robust funding for shipbuilding, ground vehicles, AI/ML integration, and counter-UAS; USD500M to support state and local UAS detection capabilities; major investments in uncrewed systems for the Coast Guard, border surveillance, and public safety missions

For more information:

https://www.hklaw.com/-/media/files/insights/publications/2025/07/onebigbeautifulbillcomprehensiveanalysis.pdf

https://www.linkedin.com/company/auvsi/posts/?feedView=all

https://www.congress.gov/bill/119th-congress/house-bill/1/text (Source: www.unmannedairspace.info)

 

08 Jul 25. Drugs continue to be smuggled into UK prisons by drone, annual report warns. The UK’s Chief Inspector of Prisons has again warned of the widespread ingress of illegal drugs into prisons by drone. In his Annual Report, published today (July 8), Charlie Taylor said the prison service, police and security services must work closely together to tackle the threat from organised criminals. His report notes that drones were making regular deliveries to Manchester and Long Lartin which held some of the most dangerous men in the country, including terrorists and organised crime bosses. As we reported in January, the Chief Inspector found that physical security such as netting, windows and CCTV was found to be inadequate, seriously compromising safety and representing a threat to national security. These findings were revealed earlier in the year due to immediate concerns over the security of airspace above some prisons.

“Organised criminal activity was driving the drug economy with an alarming increase in the use of drones at many jails to deliver illicit items into prisons,” the new annual report states. “A lack of investment in technology and staff training made it hard for some jails to detect and deter the ingress of illicit items.”

In October 2024, the Ministry of Justice released figures for the number of drones spotted over prisons, rising from 122 in 2019 to 1063 in 2023. The 2023 total was a substantial increase over the previous year when 478 were “sighted or reported”. Chief Inspector Taylor’s comments in January and again today would suggest that this number has continued to rise.

For more information: Annual report at HM Inspectorate of Prisons  (Source: www.unmannedairspace.info)

 

10 Jul 25. SkeyDrone to monitor skies over Belgium’s Tomorrowland festival. SkeyDrone will again deploy its drone detection technology at the Tomorrowland music festival this summer. At last year’s festival, SkeyDrone detected more than 1000 drone flights in the airspace above the event in Boom, Belgium. This year, all drone pilots must request flight authorisation via the SkeyDrone Planner before operating in the Tomorrowland geozone. Drone flights over or near the festival area will only be authorised if operated by Tomorrowland staff, official contractors or the police. Other drone operators must provide a valid justification for flying in the remaining areas of the geozone. Requests must be submitted at least 24 hours in advance via the SkeyDrone Planner application. Drones must remain in visual sight of the operator at all time, and the drone must have remote identification activated and be equipped with a geo-awareness system.

The temporary geozone above the festival site will be active on the following dates:

– from 17/07/2025 7.00 CET until 21/07/2025 14.00 CET

– from 24/07/2025 7.00 CET until 28/07/2025 14.00 CET

For permitted drone flights, the pilot must hold an A2 certificate of remote pilot competency or higher, and all instructions by the police and the Tomorrowland Flight Coordinator must be followed. The drone pilot must have two-way radio communication with the coordination team during the flight. Attendance at the mandatory operational briefings is required for all drone pilots.

Non-compliance will lead to exclusion from further drone operations in the geozone. (Source: www.unmannedairspace.info)

 

14 Jul 25. American Robotics’ Kestrel awarded US public events safety contract. Ondas Holdings’ wholly owned subsidiary American Robotics has secured a purchase order from a “major urban public safety organisation” in the United States for its Kestrel drone detection system.  The Kestrel system is available in both active and passive detection configurations, supporting fixed and mobile applications. It can also be integrated with American Robotics’ Optimus System to support fully remote autonomous drone operations, when Optimus is deployed for aerial security and inspection.  American Robotics has received Federal Aviation Administration (FAA) beyond visual line of sight (BVLOS) waivers for Kestrel.  This contract will see Kestrel provide layered security at high-visibility public events where airspace awareness and safety are particularly valuable to support public safety officials in protecting the public.  Ondas has also recently announced a new partnership agreement with Klear, a financial technology company offering non-dilutive working capital and treasury management services. “The teaming agreement establishes a collaborative framework through which Ondas and Klear will jointly support acquired and affiliated companies with embedded capital tools, liquidity planning and treasury management infrastructure,” Ondas said on July 7. (Source: www.unmannedairspace.info)

 

14 Jul 25. DroneShield R&D and Manufacturing Capacity Expansion.

  • DroneShield is committing to invest $13m in a significant R&D and manufacturing capacity expansion
  • New dedicated 3,000sqm of own production space (3x the floorspace of the current production facility)
  • Addition of 2,500sqm to the R&D area in its headquarters, for engineering and lab space
  • Together with planned expansions to its Australian contract manufacturing, and plans to set up contract manufacturing in Europe and the US, the current $500 m annual manufacturing capacity is estimated to expand to $2.4 bn, by the end of 2026
  • The expansion in Australia is concurrent with DroneShield’s European and US manufacturing initiatives, against the backdrop of record global demand

DroneShield Limited (ASX:DRO) is making a more than $13m initial investment via a multi-year lease and fitout commitment into a brand new 3,000sqm production facility in Sydney’s Alexandria, with expected opening in December 2025. This is in addition to 2,500sqm of R&D area in its headquarters, expanding its own annual production capacity to $900m by mid-2026 and a combined total annual manufacturing capacity to $2.4bn by the end of 2026, as it targets a $2.34bn and rapidly growing global sales pipeline including in Europe, its fastest-growing export market.  The $13m amount refers to 5 years of initial lease commitment as well as the fit-out cost for its expanded R&D area, and the new production facility. As DroneShield engages with third party supply chain, substantially Australian, there is no requirement for heavy machinery and similar capital expenditure investment. The new facility, including advanced in-house production, testing and warehousing capabilities is DroneShield’s largest to date and more than three times the size of its current production assembly floor near central Sydney. The existing production assembly floor will be converted into an additional R&D area for the Company, resulting in a 5,530sqm total R&D area.  It comes on the heels of DroneShield announcing it has received a $61.6 m European contract in June, the biggest single order in DroneShield’s history, followed shortly by a $9.7 m Latin American contract and an $11.7m Five-Eyes R&D contract. In line with the broader increase in military spending across the EU region, DroneShield has also announced its significant expansion into Europe, where it is planning to establish a European Centre of Excellence, including manufacturing and production facility, to support the continent’s domestic defence programs such as the EUR800bn ReArm Europe Plan / Readiness 2030. “In response to rising threats and multiple wars taking place across the globe, Australia’s allies are increasing investment in modern defence capabilities,” said Oleg Vornik, CEO, DroneShield. “We are stepping up to meet this demand by investing in state-of-the-art facilities here and abroad, and in sovereign Australian skills development to provide the most modern and effective counter-drone capabilities in the world. Our new facility in Alexandria will epitomise the value Australian engineering can bring to a changing geopolitical landscape.”

 

13 Jul 25. Nordic Air Defence raises $3m to expand operations and advance drone defence technology. Swedish defence technology firm Nordic Air Defence (NAD) has raised $3m in an expanded pre-seed funding round, bringing the total raised to $4.4m. The investment, led by venture capital firm Inflection, marks one of the largest pre-seed rounds in the European defence tech sector. As the company moves into what it calls “Phase Two”, NAD has restructured its board and made several senior engineering hires to support growth. The new team members come from leading firms including Anduril, Einride, and FLIR, underlining NAD’s aim to develop sovereign drone defence solutions within Europe.

NAD CEO Karl Rosander stated: “What were once imagined as future conflicts are happening right now. There can be no complacency: the world is rapidly changing and Europe must create new industrial might and deliver defensive hardware at-scale.. Inflection recognises the urgency of the mission at hand and has invested in Nordic Air Defence; their investment brings us closer to bringing the Kreuger 100, our first product, to market and ultimately in the field. The race is on to deploy and have Nordic Air Defence providing protective cover.”

Inflection Partner Jonatan Luther-Bergquist said: “Nordic Air Defence has built a winning team, one we feel has the entrepreneurial mentality and skills to fundamentally transform the defence tech industry. Our investment underpins our commitment to technologies that empower sovereign computation and resilience. We are not only investing in the superb team at NAD, but also in Europe: for too long defence tech was stale and we cannot let the continent fall behind. Europe has storied engineering and defence heritage. Nordic Air Defence has captured its very essence and we are excited to support them as they get closer to launching the Kreuger 100.”

NAD also announced the appointment of Nicholas Högasten as Head of Product, following more than two decades at Teledyne FLIR, where he led development projects in imaging and sensing. Högasten, who has been based in California for 18 years, will relocate to Stockholm this summer. Dominic Surano will join NAD as Director of Special Projects after leading unmanned aerial systems development at Anduril Industries, as well as previous roles at Insitu and General Atomics Aeronautical Systems. Bianca Otake, formerly of Einride, joins as a Navigation Engineer, bringing expertise in autonomous driving technologies. (Source: Google/DIE)

 

11 Jul 25. Cuashub.com said today that US Army tests battlefield 3D printing of FPV drones. The U.S. Army is exploring a future where front-line units can manufacture and deploy FPV drones on-demand, using mobile 3D printers to maintain drone production on the frontline. During the recent Combined Resolve 25-02 exercise held in Germany, both U.S. and opposing force (OpFor) units were equipped with 3D printers as part of an Army initiative to evaluate whether FPV drones can be produced close to the battlefield in active combat conditions.

“Every unit right now that’s a [Transformation in Contact] TiC-based unit is trying to develop capabilities in-house to create these small UAS or FPV-style drones,” said Lt. Col. Dan Huff, commander of the 1st Battalion, 4th Infantry Regiment, which served as the OpFor during the exercise.

Huff’s unit operated two 3D printers at battalion headquarters, producing one-way attack drones and transporting them forward through logistics convoys. While effective in the exercise, the setup highlights the logistical and operational questions the Army is still working to resolve.

“It really drives the cost down, and it allows us to be more nimble,” Huff noted. “We don’t have to wait for something commercial off-the-shelf to be available.”

The 3D printing initiative is driven in part by the need to decentralize drone production and maintain tactical flexibility in large-scale combat operations, according to Col. Nick Ryan, director of the Army Capability Manager for Unmanned Aircraft Systems.

“We’re trying to figure out what right looks like when you’re in a large-scale combat operation and you’re always having to constantly jump and move because you could be targeted by the adversary,” Ryan said. “Is it really the right answer to have a brigade carrying around 3D printers in the back of a truck trying to print 100, 400, 500 of these things at a time?”

Ryan suggested a hybrid approach may be more viable, mass-producing drone bodies in rear-area facilities and forwarding components to smaller 3D printing and assembly cells closer to the front lines. These cells could finalize the builds and deliver drones to combat teams on demand.

“That’s kind of the process we’re thinking through,” Ryan said. “How does this look as an actual doctrinal, strategic process for us to actually fight with… in a large-scale combat operation?”

The 1st Armored Brigade Combat Team, 3rd Infantry Division also participated in Combined Resolve, using a mix of 3D-printed and commercial drones as it transitioned its former Shadow drone platoon into an FPV drone unit. While their 3D printers were stationed too far back to fully support fast-turn battlefield production, Col. Timothy Gatlin said the unit plans to refine the approach further during training back in the U.S.

“We still have some work to do on that [set up],” Gatlin said. “We’re going to bring it back here to home station and test it even more.”

The Army’s experimentation with frontline 3D printing seeks to enable adaptable, soldier-driven drone manufacturing practices. Such practices could prove critical in future conflicts given the reliance on FPV drones that has been observed in the Russo-Ukrainian conflict. (Source: https://cuashub.com/)

 

11 Jul 25. IAI’s Systems Lead Multi-Domain Defense in Operation Rising Lion, Delivering Real-Time Threat Detection & Interception. IAI (Israel Aerospace Industries), a world-class aerospace and defense leader, played a critical strategic role during the recent Operation Rising Lion (the 12 day war), serving as a national anchor for the State of Israel. IAI’s advanced ground-based and airborne radar systems successfully detected all incoming threats, enabling the Israel Defense Forces (IDF) and Israel’s Home Front Command to provide timely warnings to civilians nationwide. IAI’s Arrow-2 and Arrow-3 defense systems precisely intercepted the ballistic missiles launched by Iran. At the same time, its remotely-crewed aircraft Heron (Shoval) and Heron TP (Eitan) operated continuously for thousands of flights in the ‘third circle’, while protecting the lives of Israeli forces. IAI’s Barak MX air and naval defense system delivered a robust operational response to diverse aerial and maritime threats, including cruise missiles, rockets, aircraft, and sea-to-sea missiles. In addition, as Israel’s space house, IAI’s Ofek reconnaissance satellites scanned tens of ms of square kilometers, delivering high-quality imagery using electro-optical and radar sensors around the clock, while Amos communications satellites ensured continuous essential communications for operational support in all theaters of operation. This is the first time that several of these technologies have been deployed operationally in the ‘third circle,’ thousands of kilometers from the State of Israel, in combination with artificial intelligence. These systems enabled seamless connectivity across all domains – land, sea, air and space – integrating multiple battlefronts into a unified operational framework. This unprecedented capability delivered real-time intelligence that directly informed decision-making, both within Israel’s defense establishment and at the political level.

Boaz Levy, IAI’s President & CEO: “The State of Israel demonstrated to the world that it possesses some of the most advanced and effective operational capabilities, underpinned by technological superiority and strategic preparedness. In this latest war, Israel’s defense industries, led by IAI, stood as a key pillar of national defense. For the first time, our country faced a coordinated attack involving hundreds of ballistic missiles, and we are proud that Israeli-developed systems delivered a full-spectrum, strategic response across air, sea, land and space. This achievement reflects years of tireless efforts of IAI’s employees, who have worked around the clock since October 7, 2023, with one mission – to safeguard Israel’s citizens. We remain firmly committed to developing the next generation of innovative defense technologies that will ensure Israel stays steps ahead of any threats, while continuing to support our global partners.” (Source: ASD Network)

 

11 Jul 25. Leonardo, Enav and UkSATSE sign an agreement to restore Ukraine’s ATM System. At the Ukrainian Recovery Conference, Leonardo, Enav SpA and the Ukrainian State Air Traffic Services Enterprise (UkSATSE) have signed a Memorandum of Cooperation to launch a collaborative effort aimed at restoring and enhancing Ukraine’s civil air navigation infrastructure under the framework of the Ukraine Air Traffic Management (ATM) Restoration and Recovery Plan (UARRP). The agreement marks a significant step towards the re-establishment of Ukraine’s ATM capabilities, which have been severely affected by the ongoing conflict. Through this partnership, Leonardo, a European leader in aerospace, defence and security, will act as a supporter and provider of technological and infrastructure components of the recovery plan. At the same time, Enav, Italy’s national Air Navigation Service Provider, will contribute with its operational knowledge and consultancy services. On its end, UkSATSE, Ukraine’s Air Navigation Service Provider, will lead the implementation as the end user and beneficiary of the restored systems. The three parties are committed to jointly coordinate the planning and execution of key projects under the UARRP and to work closely with institutional partners to identify sustainable financing solutions. In the framework of the cooperation, two Donation Agreements have been signed between Leonardo, Enav and UkSATSE, covering the transfer of five en-route primary radar systems and associated equipment. These systems are expected to play a meaningful role in restoring Ukraine’s basic surveillance capacity and enabling a phased reopening of its airspace for civil operations. This initial delivery represents the first tangible milestone in the broader implementation of the UARRP and reflects Leonardo’s concrete support for Ukraine’s recovery needs.   The Memorandum and the Donation Agreements reaffirm the shared intention of all three parties to build a secure and functional airspace infrastructure for Ukraine’s future. The agreement may be the subject of subsequent binding agreements that the parties will define in compliance with the applicable legislation, including that relating to transactions between related parties. (Source: ASD Network)

 

11 Jul 25. L3Harris Delivers 1st P-8A Poseidon Aircraft to US Navy. L3Harris Technologies (NYSE: LHX) has delivered the first overhauled P-8A Poseidon aircraft to Naval Air Systems Command (NAVAIR) – a key milestone that supports the U.S. Navy’s readiness goals. L3Harris is performing program depot maintenance along with repair and overhaul for NAVAIR’s fleet of 139 aircraft. NAVAIR aircraft perform missions that include maritime patrol, long-range anti-submarine warfare, anti-surface warfare and intelligence, surveillance and reconnaissance. L3Harris will also support foreign military sales of P-8A aircraft.

“We’re keeping the Navy’s fleet mission-ready with this first P-8A delivery,” said Jason Lambert, President, Intelligence, Surveillance and Reconnaissance, L3Harris. “Our proven expertise in aircraft maintenance enables us to enhance performance and extend fleet longevity.”

L3Harris anticipates up to nine aircraft inductions during the first contract year. The company is currently overhauling seven aircraft, with all on track for delivery this year. Work on the Navy’s P-8A fleet began in 2024 at L3Harris’ aircraft modification facility in Waco and continues through September 2029. (Source: ASD Network)

 

07 Jul 25. Lockheed Martin successfully delivered the first Aegis System Equipped Vessel (ASEV) shipset comprised of four AN/SPY-7(V)1 radar antennas to the Japan Ministry of Defence (JMOD). The delivery was facilitated through Mitsubishi Corporation under a Direct Commercial Sale arrangement after rigorous acceptance testing.

“The successful on-time delivery of all antennas for the first ASEV showcases the maturity and scalability of the SPY-7 radar as well as production capacity, while also demonstrating Lockheed Martin’s dedication and expertise in system integration,” said Chandra Marshall, vice president of Multi-Domain Combat Solutions at Lockheed Martin.

The JMOD is acquiring two ASEVs, and both are on track for commissioning in Japan Fiscal Year 2027 and 2028. Marshall continued, “We will continue full system integration and testing with all four antennas at the Production Test Center in Moorestown, New Jersey this year, prior to equipment delivery to Japan, which will significantly reduce integration risk and enable commissioning on schedule.”

The SPY-7 Advantage: With advanced detection and tracking capabilities, SPY-7 effectively counters complex threats, enabling simultaneous engagement of multiple targets and delivering a robust 21st century security capability that enhances the effectiveness of naval forces in an increasingly uncertain and dynamic environment.

In addition to Japan’s ASEVs, the SPY-7 radar is also being produced for Canada’s River-Class Destroyers, Spain’s F-110 Frigates, and the land-based version has been deployed by the Missile Defense Agency for the Guam Defense System (TPY-6) and the Long-Range Discrimination Radar. The selection of Lockheed Martin’s solid-state radar by both the US and multiple international allies demonstrates the world-class capability and maturity of the radar. In December 2024, Lockheed Martin’s land-based version of the SPY-7 radar, known as TPY-6, successfully intercepted a mid-range ballistic missile as part of the Aegis Guam System during Flight Experiment Mission-02.

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

July 11, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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04 Jul 25. New Partnership Boosts Electro-Optical Technology for Defense & Security Forces. Safran and Trillium team up to enhance electro-optical solutions, offering lighter, more versatile imaging systems for drones, helicopters, and modern aerial platforms Safran Electronics & Defense and Trillium Engineering are set to partner to combine their expertise and expand the range of electro-optical solutions available for drones, helicopters, and other aircraft. This collaboration will enhance Safran’s Artis portfolio by integrating Trillium’s compact, high-performance stabilized camera turrets ranging from 2 to 25 inches in size. These smaller systems complement Safran’s established focus on larger gyrostabilized gimbals, offering more options suited to light aircraft and unmanned aerial vehicles.  Both companies are well known for developing advanced solutions that are smaller, lighter, and more energy efficient, qualities that are increasingly important for modern aerial platforms. Their combined technologies aim to improve operational flexibility and mission effectiveness across a wide range of defense and security applications.

Alexandre Ziegler, Head of the Defense Global Business Unit at Safran Electronics & Defense, said, “The increasing complexity and diversity of operational requirements create a need for a broader range of electro-optical solutions. Partnering with Trillium Engineering enables us to extend our offering and effectively support a wide variety of platforms in this rapidly evolving context. Together, we are addressing the changing needs of armed forces as they face the new realities and complexities of the modern battlefield.”

Mark Mirelez, Chief Executive Officer of Trillium Engineering, added, “Through our collaboration with Safran Electronics & Defense, Trillium Engineering’s compact gimbal solutions extend their global accessibility, providing users with more mission flexibility and a clear path to achieving their objectives.”

Trillium Engineering specializes in lightweight electro-optical and infrared gimbals designed specifically for unmanned aerial systems and other airborne platforms. Their advanced imaging technology includes high-definition electro-optical and infrared sensors, laser designation, and precise geolocation capabilities. These systems have been successfully integrated into many platforms, significantly boosting intelligence, surveillance, and reconnaissance operations. This partnership is said to reflect a shared commitment to delivering advanced, reliable technologies that meet the changing needs of defense forces worldwide. (Source: https://www.defenseadvancement.com/)

 

10 Jul 25. DroneSense and MatrixSpace have partnered to accelerate the safe expansion of beyond visual line of sight (BVLOS) drone operations for Drone as First Responder (DFR) programs. The integration brings MatrixSpace Radar’s real-time object detection and airspace awareness capabilities directly into DroneSense Remote (DSR), the leading operational software platform for public safety drone missions. This enables radar tracking across urban and rural settings enhancing safety, responsiveness and mission success. MatrixSpace Radar delivers affordable, AI-powered situational awareness in all conditions, including low-light and low-visibility environments. With AiEdge software for real-time classification and expandable centralized sensor fusion, agencies can scale DFR operations confidently.

“DroneSense is committed to building an open ecosystem that incorporates the best available drone hardware and detect-and-avoid (DAA) technologies,” said Aydin Ghajar, Chief Operating Officer at DroneSense. “This integration with MatrixSpace represents the first of several partnerships to unlock BVLOS operations for public safety agencies. By bringing real-time radar awareness into our OpsHub interface, we’re enhancing both mission execution and safety.”

This capability has already supported some major milestones: Palm Springs Police Department (PSPD) expanded its Drone as First Responder (DFR) program, establishing the largest first responder agency coverage area (37 square miles) monitored by radar sensors instead of humans in the United States. Campbell Police Department (CPD) became the first law enforcement agency in California to receive FAA authorization for single-operator BVLOS missions under a Part 91.113(b) waiver using radar instead of human visual observers. The waiver enables safer and more effective drone operations, even during night or adverse weather conditions.

“The partnership between two exceptional technologies—DroneSense and MatrixSpace—is a game-changer,” said Chief Charles L. Werner (Emeritus-RET), Director of DRONERESPONDERS Public Safety Alliance. “It delivers critical situational awareness to real-time crime centers, fusion centers, and command staff through a single mission platform.”

As more public agencies, regional consortiums, and critical infrastructure providers turn to drones for real-time intelligence, the integration of ground-based radar is essential to scaling safe and effective BVLOS operations.

“DroneSense is leading the charge in advancing operational best practices and technology for public safety,” said Lori DeMatteis, Chief Revenue Officer at MatrixSpace. “Together, we’re delivering a turnkey radar and software solution that supports next-generation airspace awareness, including nighttime and low-visibility BVLOS operations.”

 

10 Jul 25. Metis wins contract to supply Skyperion drone detection systems to a NATO ally. Metis, specialists in providing innovative technologies to detect a wide range of Radio Frequency (RF) threats across diverse sectors, has won a contract to supply a number of Skyperion drone detection systems to a NATO customer to provide the drone detect function as part of an integrated Counter Uncrewed Air Systems (C-UAS) capability.  This purchase bolsters the customer’s current capabilities helping safeguard their airspace, key installations and critical infrastructure against the threats posed by rogue drones and is the fourth NATO ally to purchase Skyperion.   Due to the sensitive nature of the capability, and to maintain operational advantage, it is not possible to disclose the customer or quantity purchased.  However, there are now over 80 Skyperion systems in operation with NATO partners, or deployed supporting their national security interests, in current operations globally. Metis has its roots in sophisticated signals intelligence gathering technology development and operational experience, which more recently has been increasingly focused on countering the rising asymmetric drone threat.  For over 10 years, Metis has been at the forefront of C-UAS RF detection capability development, having originally received government backed research funding to help develop their innovative RF detection technologies, including Skyperion.  The Skyperion product range captures RF emissions of varying strengths across the spectrum, filtering out background noise and known entities before rapidly analysing them to identify and locate potential threats. Metis is an ideal choice for the RF drone detect component because not only do they produce technically superior RF detect products, but they also design and manufacture modular systems with an open architecture, enabling seamless integration with other electronic warfare capabilities and systems.  This allows sovereign nations, large primes or systems integrators to easily incorporate Metis products with other best in class technologies, to deliver world leading detection, tracking, identification and defeat of rogue drones.

Unlike many systems, Metis has combined an Open ESM AI enhanced waveform analysis algorithm with a more traditional library database to deliver a self-learning comprehensive RF detect function across a vast array of frequencies.  The system can detect a drone signature out to 2.5km and depending on the target, environment and other factors successfully identify a rogue drone out to 10km.  The customer will be using these systems in a fixed site role, but the Metis Skyperion Rugged version can be easily transported in its military grade rugged cases, can operate in a mobile role if required and is designed and constructed to survive in the most austere of conditions.

Tony Burnell, CEO of Metis said: “I am extremely proud of the unique RF detect capabilities we field.  The ability of our products to detect RF signatures beyond that of our competitors has been proven operationally and during various trials with reassuring regularity.  We are very pleased to again have been selected by a major prime to deliver the drone detect function and are proud to be supporting a NATO partner nation with enhanced security.  Looking to the future, our diverse capabilities have much greater utility beyond just drone detection and because we maintain an agnostic open architecture, seek to be the provider of choice for RF detection across defence and government organisations globally.“

 

10 Jul 25. Estonia’s Marduk Participates in Swedish C-UAS Demonstration. Marduk Technologies took part in the recent Counter-Unmanned Aerial Systems (C-UAS) demonstration held on Gotland as part of the GUTE project. This event, operated by FMV and Swedish Armed Forces, brought together Swedish and international industry partners to test and evaluate modular solutions against drone threats in operational conditions. As part of the demonstration, Marduk’s SHARK system was fully integrated into the sensor-effector chain. SHARK provided real-time passive detection, classification and high-precision targeting information of aerial threats for the integrated systems. Marduk has worked for several months with FMV, Swedish industry partners, and end-user representatives on system integration efforts within the GUTE project. This process focused on ensuring the seamless deployment and operational readiness of the SHARK system ahead of the demonstration. The GUTE project underlines the Sweden’s commitment to fielding flexible, mobile, and rapidly deployable counter-drone solutions.

“At Marduk Technologies we are proud to see SHARK performing alongside world-class systems in one of Europe’s most advanced C-UAS solutions,” said Leet Rauno Lember, COO at Marduk Technologies. “This demonstration is a testament to the strength of our partnerships and a proof of how passive electro-optical targeting strengthens a layered defense against complex aerial threats.” (Source: UAS VISION)

 

08 Jul 25. Robotican, a leading Israeli pioneer in the development of autonomous robotic and drone technologies, proudly announces the successful delivery of dozens of ROOSTER hybrid drone systems to European special operations forces, intervention units, and infantry teams. These deliveries represent a significant operational milestone for Robotican’s flagship system. Building on this momentum, the ROOSTER has recently secured official NATO registration, reinforcing its status as a trusted solution that meets the requirements and standards of NATO military forces. The ROOSTER is a compact, hybrid tactical drone that merges aerial agility with robotic ground mobility, making it uniquely suited for indoor, subterranean, and GPS-denied environments. Its ability to rapidly shift between flying and rolling allows for energy-efficient operation in complex and confined spaces. The integrated protective cage enables a unique robotic rolling capability, allowing the ROOSTER to maneuver across challenging terrains and access confined areas that are inaccessible to conventional drones. The system is capable of extended missions, with a typical 90 minutes of overall active operation and up to 5 hours in standby mode. It features robust MESH communication that enables up to three ROOSTER units to work together as a team—even in environments with no external communication. The Rooster is equipped with a built-in day/night IR sensitivity camera and visible/IR illuminators. Designed for flexibility, the ROOSTER supports a range of swappable sensor payloads, including thermal imager, oxygen and radiation detectors. These capabilities make it ideal for a wide range of missions, including tactical reconnaissance, urban search & rescue, hazardous materials response and industrial safety inspections. Lightweight, rugged, and operable by a single user, the system can be deployed quickly from a tactical backpack, offering forces immediate situational awareness with minimal exposure.

“The ROOSTER was developed as a strategic response to the growing need for precise intelligence in challenging environments where access is limited and situational awareness is critical” said Hagai Balshai, CEO of Robotican. “By enabling forces to gather critical data before operational breach, it significantly reduces risk and enhances mission planning. Its adoption by the Israeli Ministry of Defense and Home Front Command, alongside elite European & US

Special Operation Forcess, reflects its field-proven value. NATO registration further positions the ROOSTER as a trusted asset for allied operations in the modern battlespace.”

 

09 Jul 25. Cuashub.com said today that Taiwan unveils ‘Overkill’ suicide drone, inspired by Ukraine. Taiwan has successfully completed trials of a new indigenous suicide drone named Overkill, a first-person view loitering munition designed to enhance the island’s defenses amid mounting threats from China. Modeled on battlefield innovations seen in Ukraine’s war against Russia, the Overkill drone has passed combat certification and is set to enter production. The drone was developed jointly by Thunder Tiger, a Taiwanese robotics firm, and the National Chung-Shan Institute of Science and Technology (NCSIST), with advanced artificial intelligence and optics systems provided by Auterion, a Swiss-American drone software company. The same technology suite has helped Ukrainian forces target and destroy Russian tanks, armored vehicles, and other high-value assets.

“The lessons learned from the war in Ukraine are definitely applicable to a potential conflict with China,” said Auterion CEO Lorenz Meier. “The drone will easily destroy a Chinese warship if it lacks air defense.”

The Overkill drone is designed for precision strikes and is piloted in real time by an operator using FPV controls. Its integration of Auterion’s AI-driven software and high-performance camera systems marks a technological leap for Taiwan’s growing drone arsenal.

Thunder Tiger has secured licenses to install Auterion’s software on 25,000 drones, with plans to scale production and earmark some for export. Taiwan is also preparing a dedicated drone procurement budget, which officials plan to submit to the legislature later this year.

The launch of Overkill highlights Taiwan’s urgent drive to reduce its reliance on Chinese-manufactured drone components. Taiwan is seeking closer ties with American and European defense firms and positioning itself as a supplier of non-Chinese drone technology to Southeast Asia, where countries like the Philippines, Vietnam, India and Indonesia are increasingly wary of Chinese surveillance and hardware. Taiwan’s drone development program began in earnest three years ago. While early production goals fell short, recent breakthroughs like Overkill point to meaningful progress and growing industrial capacity. Taiwan has already experimented with naval drones, drawing on Ukrainian tactics. On June 3, Ukraine’s Security Service conducted a high-profile maritime drone attack on the Kerch Bridge, a move that reportedly influenced some of Taiwan’s recent naval drone trials. Overkill’s successful debut signals Taiwan’s determination to rapidly adapt modern drone warfare to its own defense posture. With cross-strait tensions continuing to rise and the PLA Navy’s presence expanding, Taiwan’s military is betting on drones to provide an asymmetric edge. https://cuashub.com/en/content/taiwan-unveils-overkill-suicide-drone-inspired-by-ukraine/ (Source: https://cuashub.com/)

 

09 Jul 25. Cuashub.com said today that Multiple drones downed over The Hague during NATO summit. Dutch military personnel shot down multiple drones over The Hague as part of a wide-ranging security operation during the NATO summit, the Ministry of Defense confirmed Friday. While the summit itself took place indoors, much of the security effort was focused outside, where military forces operated alongside police units to secure the surrounding area. According to the Ministry, soldiers “neutralized countless drones” as part of ongoing airspace monitoring and defense.

“With, among other things, anti-drone operations, the military kept the airspace safe. And that was necessary, ” the Ministry stated in the press release.

The Ministry highlighted the role of the military’s Counter Unmanned Aircraft Systems Battery, which was tasked with early detection, identification and potential neutralization of drones. The unit operated with a range of sensors, including specialized infrared viewers and Squire radar systems. Some of the equipment used had been acquired on short notice specifically to support the summit.

State Secretary for Defense Gijs Tuinman and The Hague Mayor Jan van Zanen visited the counter-UAS team near the Peace Palace, where they received a briefing and observed the system in operation.

“It is good to see, together with the mayor, how this unit operates,” said Tuinman, describing the air defense capability as “unique” and of significant importance.

The Ministry of Defense did not specify the number or type of drones neutralized, nor did it comment on their origin or intent. https://cuashub.com/en/content/multiple-drones-downed-over-the-hague-during-nato-summit/ (Source: https://cuashub.com/)

 

08 Jul 25. Cuashub.com said today that Pentagon’s FY2026 budget emphasizes unmanned systems and C-UAS investments. The Pentagon’s fiscal year 2026 budget request places strong emphasis on near-term investments in unmanned systems and C-UAS technologies, according to senior defense and military officials.

“This historic defense budget prioritizes strengthening homeland security, deterring Chinese aggression in the Indo-Pacific [region], revitalizing the defense industrial base, and maintaining our commitment to being good stewards of taxpayer dollars,” a senior defense official said.

While detailed budget documents are still being released, officials offered early insights during an off-camera press briefing on Thursday. A senior defense official highlighted a notable structural change in the budget: “This is the first year we’ve designated a dedicated section for autonomy. The request totals $13.4 bn for autonomy and autonomous systems.”

Specifically, the Army is proposing a total of $1.7bn in flexible funding across three key domains: UAS, C-UAS, and electronic warfare (EW). This includes $79 m to rapidly acquire ready-to-deploy EW capabilities, $693 m for counter-drone systems, and $959 m to support a range of drone platforms. Furthermore, it is requesting $729m to accelerate the procurement of Maneuver Short Range Air Defense (M-SHORAD) vehicles and is also planning to intensify the work in enhancing the integration of counter-UAS capabilities within maneuver platoons. These funding increases come as the U.S. military faces mounting challenges in integrating and defending against rapidly evolving drone threats – systems that are often far cheaper to produce than the high-cost missiles used to intercept them. The overall budget also includes a $3.1bn allocation across military branches specifically for counter-UAS capabilities. The request marks a 13.4% increase over the fiscal year 2025 budget and includes $848.3 bn in discretionary spending, along with $113.3bn in mandatory funding allocated through congressional reconciliation. https://cuashub.com/en/content/pentagons-fy2026-budget-emphasizes-unmanned-systems-and-c-uas-investments/ (Source: https://cuashub.com/)

 

08 Jul 25. Cuashub.com said today that U.S. Congress raises alarm over drone incursions at U.S. military sites. A sharp rise in unauthorized drone flights near U.S. military sites has prompted renewed scrutiny from lawmakers on Capitol Hill. In letters sent on June 26 to the Departments of Defense, Justice, and Transportation, the House Subcommittee on Military and Foreign Affairs highlighted more than 350 drone incursions reported across over 100 military installations in 2024. One case, involving a drone that loitered near Langley Air Force Base for 17 consecutive days, was cited as evidence of “coordinated intelligence gathering.”

Challenges: Autonomy and Obscurity

Many recent incursions have involved drones equipped with AI-driven navigation and minimal RF signatures, complicating detection and attribution. The Subcommittee noted that such systems challenge existing response protocols designed for slower, human-controlled aircraft.

“The current legal and regulatory structure was designed for manned aircraft, not autonomous drones,” lawmakers wrote. The growing use of commercially available platforms for surveillance further exacerbates the challenge of differentiating between consumer tech and adversarial reconnaissance.

Legal Uncertainty, Uneven Response

Under current law, base commanders must determine “hostile intent” before acting, an increasingly untenable requirement in fast-moving airspace. Coordination among federal and local agencies was described as fragmented, reactive, and inconsistently applied, exacerbating what is already a nation-wide challenge. Some reported incursions targeted sites tied to critical infrastructure and sensitive testing programs, highlighting the urgency of the issue and need for timely and effective mitigation.

Request for Accountability

The Subcommittee requested a full account of policies, interagency memoranda, incident reports, and internal assessments since January 2022. Agencies were also asked to identify installations operating under Title 10, Section 130(i), which authorizes direct counter-drone action.

Next Steps

With no formal response yet issued by the Department of Defense, lawmakers signalled their intent to pursue legislative and budgetary action to address the current shortfalls.

“Without decisive reform,” the letters concluded, “America’s most sensitive military assets remain exposed.”

U.S. Congress raises alarm over drone incursions at U.S. military sites

(Source: https://cuashub.com/)

 

08 Jul 25. Cuashub.com said today that 5 C-UAS lessons from Ukraine’s Operation Spiderweb. Operation Spiderweb has shattered long-held assumptions about what drones can do—and how far they can reach. Ukraine’s audacious strikes deep inside Russian territory exposed critical blind spots in traditional counter-UAS strategies. Ukraine weaved together months of covert logistics, telecom exploitation and ground infiltration to strike targets thousands of kilometers from the front. This evolution will force defenders to rethink every layer of their air defenses, from human intelligence and cargo screening to telecom monitoring and point-defense systems. The Spiderweb attacks mark a new era of drone warfare, one where distance offers no safety, civilian networks become weapons and threats can emerge from trucks parked meters from bn-dollar assets. We take a look at five counter-UAS lessons the world has learned from Operation Spiderweb.

  1. Counter-intelligence is now a core component of counter-UAS

The Spiderweb strikes were not a simple set of random raids. They were the culmination of 18 months of clandestine planning, smuggling drones and payloads deep into Russian territory before launch.

As Institut Montaigne observed, this “reveals the current dominance of Ukrainian counter-intelligence” over its adversary.

In practice, that means traditional counter-UAS defenses (radars, jammers, guns) are not enough on their own. Security services must also prioritize human intelligence and counter-espionage to detect hidden UAS networks and supply chains before they strike.

Effective counter-UAS now requires guarding against long-term infiltration and routinely hunting for secret drone caches or sleeper networks just as much as it requires radar detection.

  1. Telecom networks offer a new attack surface

The Spiderweb drones were not flown in via typical operator control links, they essentially functioned as mobile phones. As the U.S. think tank CSIS notes, each FPV strike drone was “remotely controlled through Russian mobile telecommunications networks, including 4G and LTE”.

In effect, civilian telecom infrastructure became part of Ukraine’s targeting chain. This means adversaries can exploit commercial networks, or even local Wi-Fi/5G, to pilot drones from extreme distances.

Defenders will need to deny or harden those networks. Counter-UAS plans should include monitoring or jamming suspect cell/LTE signals near sensitive sites, enforcing strict communications encryption and working with telecoms organizations to flag unusual drone-related traffic.

The border between cyber/telecom security and physical air defense is blurring. Attackers can weaponize any data link, so defenders must secure them as vigorously as they secure airspace.

  1. Distance is no longer a defense

Before Operation Spiderweb, bases 2,000 – 4,000 km behind the frontlines were thought safe by virtue of distance. This is no longer the case.

The Strikes hit both Olenya, ~2,000 km from Ukraine, and Belaya, ~4,000 km away, demonstrating that geographic depth alone will not protect high-value assets.

Many modern UAS have reliable autopilot (e.g. open-source ArduPilot) and can recover GPS dropout by dead reckoning, while LTE/satellite links allow pilots to guide them from thousands of kilometers away.

In practice, even remote bases or ships at sea can now be reached by low-cost drones. Defenders must assume that any point on the map is potentially within range. This drives the need for persistent, multi-layered surveillance including radars, acoustics and cameras, not just at the border, but around every asset.

  1. UAS threat vectors have expanded beyond the sky

Defenders conventionally focus on airborne threats, but Spiderweb showed that UAS threats can arrive along roads among civilian traffic. The Ukrainian drones never flew across the front line, they were smuggled in by truck and assembled in rented warehouses.

According to security service reports, dozens of drones were hidden inside cargo containers, then placed on trucks and driven near target airfields. At the pre-planned time a remote mechanism opened the container roofs and the drones flew out right next to their targets.

This tactic bypassed most radar and standoff defenses entirely. The key takeaway is that attackers can exploit any vector, including containers, trucks, ships or even trains, to position UAS deep inside a theater.

To be entirely comprehensive, counter-UAS planning must therefore include ground-based countermeasures, screening inbound cargo and vehicles, interdicting clandestine logistics networks and using intel to patrol routes.

In short, protect “the last mile” of the threat chain. If a hostile drone can be driven or smuggled in nearby, it can strike almost unimpeded once launched.

  1. Traditional air defenses are not equipped for close-range drone threats

Conventional anti-air systems simply aren’t optimized for tiny, close-proximity drones. In the Spider Web attacks, the drones were launched from just outside the airfields, often meters away, making them virtually invisible to systems like the Pantsir or S-300, which are tuned for jets and missiles.

CSIS reports that “Pantsir and S-300 units” failed to detect or engage the low-flying quadcopters launched from cargo trucks nearby. In effect, the enemy slipped inside the ring of traditional air defenses. For defenders, this means even a modern air-defense battery is insufficient against swarming, ground-level threats.

Solutions require dedicated short-range counters such as small radar/optical sensors, quick-reaction drones or anti-drone missiles, acoustic gunfire locator systems or even handheld jammers.

https://cuashub.com/en/content/5-c-uas-lessons-from-ukraines-operation-spiderweb/ (Source: https://cuashub.com/)

 

03 Jul 25. Researchers propose changes to conventional radar approach for C-UAS operations. A new paper by researchers at Wuhan University in China explores recent advancements in radar systems for drone detection, focusing on two key challenges: extracting weak signals and reliably recognising small drone echoes.

“Traditional approaches often employ multi-layered sensor architectures–combining radars at various frequency bands with EO/IR (Electro-Optical/Infrared) sensors–based on the assumption that a single radar cannot effectively address these issues,” the paper states. “In contrast, we argue that an effective drone detection radar should function as a comprehensive WYSIWYG (What You See Is What You Get) platform, offering 24/7 autonomous operation, long detection range, real-time responsiveness, and robust recognition capabilities.”

To achieve this, the team, led by Jiangkun Gong, Jun Yan and Deren Li, proposes a reconfiguration of the conventional radar signal processing chain, reducing dependence on track-based recognition.  The paper includes a case study demonstrating the practical viability of this approach. The team says this study shows that “a single radar, equipped with track-free Automatic Target Recognition (ATR) technology, can deliver long-range detection, real-time performance and reliable classification of small drones”. (Source: www.unmannedairspace.info)

 

01 Jul 25. Frontex announces shortlist for C-UAS contest and details of Phase 2. Frontex, the European border and coast guard agency, has selected five companies advancing to Phase 2 of its Counter-Unmanned Aircraft Systems (C-UAS) Prize Contest, which Unmanned Airspace reported on earlier this year. Frontex said that Adevex Soluciones, Dat-Con, Hertz Systems, MBDA France and Nordic Air Defence were selected for their “exceptional technical proposals” submitted in Phase 1. “Their proposals showed technical maturity (minimum TRL 7), alignment with European Border and Coast Guard (EBCG) operational needs, and readiness for deployment in live trials.” Each finalist is awarded EUR 20,000 for their submission.

“Out of all the applications submitted, 10 high-quality technical proposals met the predefined eligibility, exclusion, and admissibility criteria, and underwent a merit-based evaluation by Frontex’s Evaluation Committee,” the agency said on June 30. “All the evaluated proposals possessed significant potential to address the capability gap in neutralising unauthorised UAS threats, such as illicit surveillance and smuggling, thereby enhancing secure and effective EU external border protection.”

In Phase 2, scheduled for October 2025, the top five finalists will compete in live operational trials, lasting three – four weeks, at a designated test site in Europe. These trials will assess the performance, effectiveness, and reliability of their technologies against simulated UAS threats, including off-the-shelf and custom-made UAS. This phase will conclude with a two-day workshop, where finalists will present their solutions to EBCG authorities, EU Member State representatives and other stakeholders.  The winners of Phase 2 will be announced in November 2025, with prizes ranging from EUR 100,000 to EUR 270,000. (Source: www.unmannedairspace.info)

 

08 Jul 25. In light of the ongoing tense global political situation – from Russia’s war against Ukraine to rising tensions in the Middle East – the NATO summit held on June 24–25 in The Hague held special geopolitical significance. In response, the host country, the Netherlands, launched the most extensive security operation in its history under the codename “Orange Shield.” Nearly half of the national police force, along with more than 10,000 military and emergency personnel, were deployed. Also on site: drone detection and defence specialists from AARONIA AG.

Airspace Fully Closed to Civilian Drones

To protect heads of state and government, the Netherlands Civil Aviation Authority issued a temporary flight restriction:

  • Within a 16 km radius of the World Forum in The Hague, all flights—including drones—were banned from June 23 at 3:00 p.m. until June 25 at 11:59 p.m.
  • In the extended 93 km radius, only manned and unmanned systems with special government authorization were permitted to fly. Violations were met with substantial fines and the confiscation of aircraft.

Multiple AARTOS X9 Systems in 360° Operation

To effectively counter potential drone threats, Dutch security forces deployed a squadron of AARONIA’s AARTOS X9 systems for the first time in the Netherlands. In addition to stationary sensor points, a fully integrated mobile shelter solution based on a Mercedes-Benz Unimog was used. This autonomous unit combines radar, RF direction finding, EO/IR cameras, and jammers into a single system that can be deployed in under five minutes.

The networked X9 systems provided seamless 360° surveillance over several kilometers through passive 3D RF direction finding, active radar, and optical verification, delivering real-time data on both suspicious drones and the locations of their pilots. This technology had already proven itself during the G20 Summit 2024 in Rio.

Knowledge Transfer and On-Site Operational Support

Experts from AARONIA trained the Dutch Armed Forces ahead of the summit on how to operate the AARTOS system, including the RTSA Suite PRO software, which played a key role in building a comprehensive situational awareness. During the event, AARONIA specialists remained on-site and available around the clock as technical advisors.

Due to confidentiality, authorities have not disclosed details regarding specific drone incidents; however, all detected objects were identified and neutralized at an early stage, ensuring that there was never any threat to the delegations.

“A mission like this is always both an honour and a challenge for us. I would like to expressly thank the Dutch security authorities for their trust and the excellent cooperation on the ground,”

says Stephan Kraschansky, CEO of Aaronia GmbH Austria, who led the deployment on-site.

ABOUT AARTOS

With more than 650 installations, AARTOS is the world’s most successful counter-drone system. In operation since 2015, the system—now available in its 6th generation—is continuously being developed to remain at the cutting edge of technology. As a result, AARTOS provides optimal protection for critical infrastructure against unauthorized drone activity.

ABOUT AARONIA

Founded in 2003, AARONIA AG is an internationally renowned high-tech company specializing in measurement, localization, and monitoring technology. Thanks to our expertise, innovative products, and numerous international patents, we offer high-performance and intelligent drone detection and defense systems with exceptional range, precision, and reliability. AARONIA AG develops, manufactures, tests, and calibrates all products exclusively in Germany.

 

07 Jul 25.  Ukraine codifies domestic pump-action shotguns for use against kamikaze drones. The Ministry of Defence of Ukraine has codified a number of new domestically manufactured infantry weapons.  These include three domestically produced modifications of 12-gauge smoothbore pump-action shotguns which have been approved for operational use in the military. Pump-action shotguns have demonstrated their effectiveness during the Russian invasion of Ukraine as a countermeasure against enemy kamikaze drones. The Ministry of Defence says they are particularly suitable for infantry operating in dense urban environments or narrow trench systems.  The infantry arsenal has also been reinforced with a new 40 mm automatic grenade launcher developed in Ukraine as well as optical devices and ammunition. (Source: www.unmannedairspace.info)

 

03 Jul 25. MyDefence receives US$26m C-UAS order from US Army. MyDefence has been awarded a contract from the U.S. Army valued at USD 26m, the largest in the company’s history. Under the contract, MyDefence will supply its counter-uncrewed aerial system (C-UAS) technologies designed to detect and track a broad spectrum of drone threats. The company manufactures a range of wearable, vehicle-mounted and perimeter systems to detect and neutralise drones. A video accompanying the new contract press release shows the company’s wearable C-UAS systems being built. The systems will be deployed across US Army operations to enhance force protection and tactical readiness. (Source: www.unmannedairspace.info)

 

30 Jun 25. New York Police Department “plans to purchase C-UAS technology” The New York Post reports that the New York Police Department is planning to purchase a counter-drone system to protect the city.   The article continues that Deputy Mayor of Public Safety, Kaz Daughtry, said the city is in talks with Maryland-based American Robotics to buy technology that can detect, track and intercept hostile drones. American Robotics has developed the Iron Drone Raider, a portable station that can launch two or three small drones that are capable of intercepting a suspect drone and firing a lightweight mesh net at it, entangling its rotors and preventing it from flying. A parachute is then activated, bringing the drone down safely. The drones would be launched from wherever cops are patrolling, and piloted remotely from One Police Plaza in Lower Manhattan, the article says. To deploy the system in New York, restrictions that ban local jurisdictions from taking down drones would need to be lifted, but Daughtry told the New York Post that the Trump administration is “open to it”. (Source: www.unmannedairspace.info)

 

07 Jul 25. CSIR develops new ground-based surveillance radar.

The CSIR’s new Ground-based Surveillance and Classification Radar.

The Council for Scientific and Industrial Research (CSIR) has developed a new radar system for ground-based detection, which can be deployed on its Meerkat wide area surveillance system. The Meerkat currently uses a Reutech Radar Systems RSR 904 radar but the new CSIR developed unit is more cost effective. Meerkat combines the radar with day and thermal cameras for 24-hour operation, and information analysis software that is able to detect, track and classify people entering certain areas. It can monitor up to 200 square kilometres at a time. The new Ground-based Surveillance and Classification Radar (GSCR) developed by the CSIR is able to classify targets – for example distinguishing between animals and humans, and may thus be able to operate without the Meerkat cameras that currently aid in identifying and classifying targets. The GSCR’s goal is unattended automated operation, with a game ranger, for example, obtaining a notification of an intrusion on a cell phone. The new GSCR radar uses C-band electronically-steered antenna technology for improved sensitivity and better target classification. It is available in 4 km, 7 km and 10 km variants. It was developed with support from the Department of Science and Innovation (DSI). The CSIR is aiming the new radar at the Border Management Authority, for counter-rhino poaching, and other applications. The CSIR sees the radar, and its Tyto, Otus and RINO cameras, as building blocks potentially forming part of a larger family of surveillance radar systems for wildlife protection, border safeguarding, counter-crime on farms and in suburbs, key point security, counter air intrusion etc. The CSIR has a long history of radar development, and is working on numerous radar projects at the moment, such as a synthetic aperture radar (SAR) for unmanned aerial vehicles, and has delivered a radar-based drone detection system to armasuisse (Federal Office for Defence Procurement) in Switzerland (SAMURAI: Swiss African MUltistatic RAdar Initiative). The CSIR’s most notable recent radar project is the Quadome, developed in conjunction with Hensoldt South Africa. This is the biggest local radar project in many years, and has already secured an export customer (the UK’s Royal Navy). (Source: https://www.defenceweb.co.za/)

 

07 Jul 25. Thales contributes to strengthening Malaysian air sovereignty with two additional Ground Master 400 alpha long-range air surveillance radars.

  • During the Malaysian Prime Minister Datuk Seri Anwar bin Ibrahim’s state visit to France, Thales has received the official Letter of Award (LOA) to provide two additional Ground Master 400 alpha (GM400α) radars to reinforce the country’s situational awareness. These additional radars will bring the total number of GM400 to 4 in the country, showing Malaysia’s renewal of trust in Thales’ radar technology.
  • Recognised worldwide for its technological superiority and high mobility, the GM400α has been deployed by more than 20 nations. These two radars will enhance air surveillance capabilities for the Royal Malaysian Air Force (RMAF), being able to detect all types of threats with a 515 Km range.
  • Thales has been present in Malaysia for over 40 years, in both the civilian and military sectors. Malaysia was the first customer to order the GM400 radar.

Aligned with its strategy to strengthen local industrial capabilities, Thales will partner with Malaysian enterprise Weststar Group to install and deploy the radars in line with the terrain and operational requirements of the RMAF (Royal Malaysian Air Force), in Peninsular and Eastern Malaysia. Through Industrial Cooperation Programmes (ICPs), Thales will provide maintenance and support of GM400α radars throughout their lifecycle, in close proximity to the RMAF. Thales will also embark on knowledge transfer and on-ground training to build Malaysia’s future generations of radar experts. Given the multitude of threats in constant evolution, building a reliable, accurate, up-to-date Recognized Air Picture (RAP) is critical. The GM400α is an asset to armed forces for early threat detection, giving them a tactical advantage to aid decision making. Highly mobile, highly available and tactical, the radar is easy to upgrade and integrates seamlessly to existing systems. Leveraging on years of successful field experience, GaN technology and surveillance capabilities, the GM400α detects simultaneously targets from fast jets and missiles, to hovering helicopters and UAVs, flying close to the ground, hiding in the clutter near the radar. In addition, the radar maintains the highest level of mobility and availability performance on the market and today has sold more than 270 combat-proven air surveillance radars in the Ground Master (GM) family worldwide. This Letter of Award reaffirms Thales’s commitment to strengthen Malaysia’s air surveillance capabilities in addition to supporting its national agendas in Artificial Intelligence, Space and cybersecurity.

“This award is a recognition of Thales’ unparalleled radar expertise, honed through the years and on the battlefield. We are delighted to receive this award from Prime Minister Anwar on his state visit to France to commemorate the strong bilateral relations between our two countries. As a global technology leader and with our long-standing relationship with Weststar, Thales is committed to helping Malaysia build up its national defence sector.”, Hervé Dammann, Executive Vice-President, Land and Air Systems, Thales.

 

04 Jul 25. Quantum Systems and Fraunhofer FHR to Integrate State-of-the-Art Radar Technology into UAVs. Quantum Systems – a leading European manufacturer of AI-powered ISR systems for defense, public safety, and industry, and the Fraunhofer-Institute for High Frequency Physics and Radar Techniques (FHR), one of Europe’s leading research centers for radar and high-frequency technologies, announced their strategic partnership at the Wachtberg Forum. This collaboration marks a significant step in the development and integration of state-of-the-art high-frequency and radar components into Quantum Systems’ UAV platforms. As part of a joint research and technology study with the German Armed Forces Technical Center 81, the integration of an innovative mmW-SAR sensor (millimeter-wave synthetic aperture radar) into the Trinity Pro platform is being tested. This sensor was developed at FHR. This technology enables weather-independent, high-resolution radar imaging with synthetic aperture, thereby significantly expanding the platform’s ISR (Intelligence, Surveillance, Reconnaissance) sensor capabilities. The partnership also opens possibilities for future cooperation in the areas of radar signal processing, radio detection, interference-resistant radar, and electronic countermeasures. Signature measurement and radar cross section (RCS) will also be crucial for the further development of these technologies. Quantum Systems also plans to set up a research and development office in Rheinbach near Bonn, in close proximity to Fraunhofer FHR, in order to further develop its expertise in the field of RF (radio frequency) and radar sensor technology. (Source: UAS VISION)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

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RADAR, EO/IR, C-UAS, NIGHT VISION AND SURVEILLANCE UPDATE

July 4, 2025 by

Sponsored by Echodyne

 

www.echodyne.com

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04 Jul 25. Hanwha Fighting Vehicles fitting ASELSAN Gun Fire Detection System. The Republic of Korea’s Hanwha and Türkiye’s ASELSAN announced the intent to offer the latter’s SEDA 100 L C Gun Shot Detection System on its armoured vehicles. The SEDA 100 is an acoustic shot detection system capable of determining the direction from which a gunshot is fired and the location of the shooter. It is then able to rapidly direct weapons on the vehicle onto the identified location to allow for effective return fire to neutralize the threat. The SEDE 100-L-C being integrated is a lightweight version specifically designed to be mounted onto vehicles including onto remote weapon stations (RWS). The SEDA is effective regardless of the time of day and weather conditions, as well as if stationary or moving. It offers 360-degree coverage detecting gun shots from infantry weapon and machine gun/automatic weapon calibres with a response within under 1.5 seconds. Its accuracy is better than five degrees in azimuth with a range error of plus/minus twenty degrees. Integrated into an RWS/turret it can automatically train the vehicle weapon onto the target and provide highly accurate responding fire in seconds. It is especially effective in enhancing situational awareness for the vehicle crew even buttoned up in the vehicle. It is invaluable in not only immediately alerting the crew that they are under attack but to provide an accurate orientation to the threat, something that can be difficult for the crew to ascertain. The SEDA’s detection information can also be easily integrated into an onboard geographic information system (GIS) providing accurate and automatic marking of the shooter’s location on the map. It can also be integrated and linked to onboard cameras and control systems via the Ethernet interface. ASELSAN developed algorithms and data processing as well as the incorporation of artificial intelligence allows the SEDA to filter out interference and differentiate false alarms and outside background even in complex acoustic environments. Development of SEDA 100-cUAS that can detect, identify, and provide direction and range against unmanned drones is under development. The SEDA 100 has been proven in combat with over two hundred systems having been provided by ASELSAN to Ukrainian forces since 2022. Integrating acoustic detection and locating capabilities onto armoured combat vehicles will appreciably enhance not only their situational awareness and therefore contribute to their survivability but also positively contribute to their ability to regain the advantage over those that seek to engage and destroy them. (Source: AMR)

 

30 Jun 25. Radar Processing Solutions for Modern Naval Defense. Defense Advancement is showcasing Tocaro Blue’s marine radar processing solutions for enhanced situational awareness in naval and defense applications. Tocaro Blue is a developer of AI and machine learning-powered marine radar processing solutions that provide crewed and uncrewed naval and marine defense vessels with enhanced situational awareness capabilities, ensuring collision avoidance and successful mission outcomes. As a supplier partner, Defense Advancement is showcasing innovative solutions and capabilities across Tocaro Blue’s supplier profile. Tocaro Blue’s technology upgrades the capabilities of legacy marine radar systems, providing solutions to the excess noise and slow scanning speed of traditional radar while continuing to leverage its long range and reliable performance under harsh conditions.

ProteusCore

ProteusCore is a powerful software package that utilizes proprietary machine learning models to provide rapid and reliable detection, classification and tracking of hundreds of marine radar targets simultaneously.

Ideal for small tactical craft as well as uncrewed and autonomous vessels, it enhances the capabilities of legacy and COTS radar systems to create next-generation perception systems that operate without the need for manual intervention, constant range and gain tuning, or human interpretation.

ProteusCore Devkit Hardware

Tocaro Blue’s full-featured edge computing solution allows OEMs and system integrators to instantly take advantage of the complete ProteusCore API without any additional development or integration effort, allowing you to get up and running and test the software under real-world conditions.

The rugged device is designed for reliable operation in harsh marine environments, featuring IP67-sealed connector covers and a solid-state heatsink. It can be powered via the NMEA 2000 bus for easy integration into existing vessel networks.

Proteus Hub

Proteus Hub is an advanced navigation system that leverages the power of machine learning and the ProteusCore software to output intuitive 2D and FPV views of the marine environment, upgrading the utility of existing marine displays and reducing operator cognitive load.

The system renders radar returns as distinct recognizable objects, providing enhanced safety and situational awareness under the most challenging of conditions.

More details.

To find out more about Tocaro Blue’s marine radar processing solutions, please visit their profile page: https://www.defenseadvancement.com/company/tocaro-blue/ (Source: https://www.defenseadvancement.com/)

 

02 Jul 25. Mesa Tactical, trusted by professionals for rugged and reliable shotgun upgrades, is proud to introduce its latest innovation: the Reflex Sight Mount for the Beretta 1301 Tactical and A300, precision-built for optics using the Aimpoint Acro® footprint. This isn’t just another accessory—it’s a performance-driven upgrade to two of the most respected tactical shotguns on the market. Replacing the factory Picatinny rail segment, Mesa Tactical’s dedicated mount delivers a low-profile setup with absolute co-witness between your red dot and factory ghost ring sights. The result? Faster target acquisition, more intuitive sight picture, and increased shooter confidence in high-stress environments.

“Red dots on shotguns aren’t a luxury anymore—they’re a tactical advantage,” said Greg Friedman, COO of Mesa Tactical. “Our new Reflex Sight Mount brings that edge to the Beretta 1301 and A300, with the rock-solid engineering operators expect from Mesa Tactical.”

Machined from aircraft-grade aluminum and finished in a durable Type 3 hard coat anodized black, this mount is built to handle the recoil and abuse of duty, defense, or range use. It installs directly to the receiver’s factory-drilled and tapped holes—no modifications, no compromises.

Compatible with red dots featuring the Aimpoint Acro® footprint, including:

  • Aimpoint Acro P-1/P-2
  • Aimpoint Acro C-1/C-2
  • Steiner MPS
  • Burris FastFire E
  • Griffin Armament Griffin Micro Sight
  • C&H Duty and Duty-XL
  • Vector Optics Enclosed Frenzy Plus

(Optic not included)

Whether for duty use, personal defense, or tactical competition, Mesa Tactical’s Reflex Sight Mount gives Beretta 1301 Tactical and A300 owners the next-level performance they’ve been waiting for.

MSRP is $74.95.

For more information, visit www.mesatactical.com.

 

01 Jul 25. Sentrycs, a global leader in Protocol Manipulation-based counter-drone technology—commonly known as Cyber over RF—announced today the integration of its advanced solution into Rafael’s Drone Dome system. Rafael’s Drone Dome is an end-to-end, modular, combat-proven Counter-Unmanned Aerial System (C-UAS) that is already operationally deployed by multiple customers worldwide. Delivering 360-degree, all-weather protection against hostile drones, Rafael’s Drone Dome combines radar, SIGINT/RF sensors, EO sensors, jamming systems, and a centralized C2 center to detect, track, and intercept aerial threats. The integration of Sentrycs’ Cyber over RF solution adds a critical layer of intelligence to Drone Dome’s defense architecture, enabling the system to distinguish between authorized and unauthorized drones, reduce false alarms, pinpoint both the drone’s location and that of its operator, and identify in real time the communication frequencies being used—particularly valuable against frequency-hopping threats. By incorporating this technology, Drone Dome now delivers faster, more accurate threat detection and mitigation, while maintaining operational safety for friendly UAVs and avoiding unnecessary interference with nearby systems. Unlike conventional C-UAS solutions that rely on layered and sequential detection processes, Sentrycs’ approach interacts directly with a drone’s communication protocols, enabling immediate identification and tracking as soon as a signal is detected. This transforms detection from a separate stage into an integrated component of the response process. By analyzing the protocol-level communication between drone and operator, the system offers advanced situational awareness, including operator location estimation—capabilities essential in complex, dynamic threat environments. With no dependency on preloaded signal libraries, the system can dynamically analyze and respond to new or modified drone platforms, while ensuring that only unauthorized threats are engaged. Once a hostile drone is identified, the system seamlessly assumes control, guiding it to a pre-defined landing zone without the need for jamming or kinetic engagement. This protocol-based intervention ensures precise, lawful, and interference-free mitigation, allowing Drone Dome operators to neutralize threats without disrupting nearby communications, critical systems, or authorized aerial activity.

“We are honored to cooperate with Rafael and to have our Cyber over RF technology integrated into the Drone Dome system,” said Meir Avidan, VP Business Development and Strategic Partnerships at Sentrycs. “This collaboration offers unmatched precision, safety, and operational effectiveness against evolving drone threats. Sentrycs continues to advance its mission of enabling smarter, more secure airspace management through intelligent, non-disruptive counter-drone solutions.”

Col. (Res.) Yossi Margalit from Rafael, Vice President, Director of the C-UAS & Low Altitude AMD Systems, adds: “Drone Dome, already combat-proven and operational worldwide, is a flexible system with an open architecture and spiral development capabilities. Partnering with companies like Sentrycs enhances Drone Dome’s synergistic value and resilience in a highly competitive market. We warmly welcome this collaboration and are pleased to work alongside Sentrycs.” Already operational in more than 20 countries across critical infrastructure, military bases, borders, and law enforcement sites, Sentrycs’ solutions offer a proven, lawful, and intelligent approach to countering the growing threat of unauthorized drones.

 

02 Jul 25. NYPD Considers Net-Firing Drones to Take Down ‘Hostile’ Drones. The NYPD plans to cast a wide net when it comes to protecting the Big Apple against nefarious drone operators. The city is in talks with Maryland-based American Robotics to buy technology that can detect, track and intercept “hostile drones,” Deputy Mayor of Public Safety Kaz Daughtry told The Post. The company has developed a portable station that can launch two or three 8-pound drones capable of intercepting a suspect drone in midair — then fire a lightweight mesh net at the invasive drone, entangling its rotors and preventing it from flying. A parachute then activates to bring the enemy drone down safely to the ground. The drone launchers can be used along parade routes or other large events, he said.

“They have a counter-drone detection system where it will detect a hostile drone,” said Daughtry, a former NYPD detective. “The net will go around the drone and it will safely land.”

Daughtry, who directs the city’s fleet of 150 drones, has been in talks with the company about using its Iron Drone Raider System and hopes to have a deal soon, he said.

“We could station it anywhere throughout the city,” Daughtry said.

The system, which uses eight-pound racer drones, costs less than $200,000, American Robotics CEO Eric Brock said.

“Ground radar would detect something that’s unidentified,” Brock said, explaining that the person in charge of the drone would then press a button to activate it. “Once we locate the drone we track it and hunt it.”

His company shows off the tech in a dramatic video on YouTube. Brock said he couldn’t identify the company’s current clients because of security issues, but said they have been working with the UAE in the Middle East. Similar tech — minus the parachute — has been used by the Ukrainians to take down Russian drones. Before the raider drones could be deployed in NYC, the federal government would have to lift restrictions that ban local jurisdictions from taking down flying vehicles. Right now, only feds have that authorization.

Daughtry, who worries most about potential drone attacks from a “lone wolf,” has been lobbying the Trump administration with Chief of Department John Chell to change that.

“I’m hearing that the [Trump] administration is open to it,” he said.

Daughtry has been on the leading edge of drone use as an NYPD official under Mayor Adams.

Daughtry has been talking to Police Commissioner Jessica Tisch about assigning drones to members of the NYPD’s Community Response Teams. The drones would be launched from wherever cops are patrolling, and piloted remotely from One Police Plaza in Lower Manhattan, he said.

The drones would then provide video feed of suspects trying to flee and help cops find them, he said. Officers would no longer have to wait for the Aviation Unit to send helicopters from Floyd Bennett Field in Brooklyn.

“When they have a barricaded suspect or a suspect who’s hiding in the woods, they can just open their trunk, put the drone up, turn it on and they can run,” he said. “They can just leave and the drone will launch itself.”

The move to put drones in cars was the final phase of a program that started last year with placing drones on precinct station house roofs in crime-prone areas and using them as first responders on 911 calls.

Earlier this month the NYPD had Skydio X10 drones out in droves to monitor anti-Trump protests and was able to use them to track crowd movement and deploy its officers to hotspots.

“There were drones all over the place,” Daughtry said.

Those drones can go as high as 800 feet but the city keeps them at 400 so they don’t collide with airplanes, he said. The drones give NYPD brass eyes in the sky, but can also be crime deterrents.

“When people are committing acts like vandalism or they’re about to do something we can bring the drone down real close so they know that we’re watching them,” he said.

The FDNY has drones that can monitor its beaches for struggling swimmers and the Office of Emergency Management has drones for use in mapping out disasters. When Daughtry first began championing drones back in 2022, he got pushback from some other cops, he said.

“They told me that we would never be able to have drones in the city,” he said. “Guess what? Now we’re using them all over the place.” (Source: UAS VISION/The New York Post)

 

02 Jul 25. L3Harris Delivers Missionized ISR Aircraft. L3Harris Technologies has delivered its second Bombardier Global 6500 missionized with advanced ISR capabilities, enhancing survivability, payload capacity, and standoff ranges for critical global missions, and reinforcing its market leadership with 103 missionized business jets and over thousands of aircraft delivered for various special missions. L3Harris Technologies has delivered its second operational Bombardier Global 6500 aircraft missionized with intelligence, surveillance and reconnaissance (ISR) capabilities. The aircraft has greater survivability and targeting line of sight along with more capacity for payloads and standoff ranges to support critical missions across the globe.  In February 2025, L3Harris delivered the first missionized Bombardier Global 6500 aircraft. The latest delivery establishes the only pair of fully operational platforms equipped with advanced radar, electronic and communications intelligence capabilities.

“Given the operational need for affordable yet capable ISR aircraft, we are seeing an uptick in demand to take a commercial platform like a business jet and add mission equipment and survivability features,” said Jason Lambert, President, ISR, L3Harris. “This model accelerates the timeline for aircraft delivery and mission readiness.”

The delivery of the next-generation ISR aircraft brings the company’s total to 103 missionized business jets fielded to date. It reinforces the company’s global market leadership in business jet missionization. With more than 70 years of experience, the company has delivered thousands of aircraft missionized for ISR, maritime and other special missions based on more than 130 platform types from dozens of aircraft manufacturers. The company has an additional 14 business jet aircraft modifications currently on order. (Source: ASD Network)

 

02 Jul 25. NGC to Offer Advanced Ground Based Radars to Romania with ROMARM. Northrop Grumman Corporation (NYSE: NOC) has signed a Memorandum of Understanding with ROMARM, a Romanian state-owned leader in defense, to collaborate in offering a ground-based radar solution to the Romanian Air Force. The radar will deliver advanced capabilities and performance against today’s most sophisticated threats while also providing interoperability with command-and-control systems employed by NATO countries, including the United States.

“Our industrial partnership with ROMARM will deliver a proven, ready-now solution to help strengthen Romania’s security against evolving threats,” said Greg Teitelbaum, vice president, land and maritime sensors, Northrop Grumman. “Our solutions provide long range 360-degree surveillance and fire control for air and missile defense, made possible with secure and interoperable software.”  (Source: ASD Network)

 

02 Jul 25. Teledyne FLIR OEM, a part of Teledyne Technologies Incorporated (NYSE: TDY), today announced National Defense Authorization Act (NDAA) compliance of its lineup of dual-use Neutrino®, Boson®, Hadron™, and Lepton® thermal camera modules for United States government contractors and original equipment manufacturers (OEMs). These modules enable the development of secure, high-performance thermal imaging systems in compliance with the NDAA.  The NDAA restricts the use of video surveillance and telecommunications equipment from certain foreign sources in U.S. defense systems. Teledyne FLIR OEM’s NDAA-compliant thermal camera modules are eligible for a wide range of federal, state, and local government contracts. They are easily integrated into both existing and next-generation defense platforms, including ground vehicles, uncrewed systems, threat warning, missile seekers, targeting systems, counter-unmanned aircraft systems (C-UAS), precision strike platforms, and soldier systems.

“Our thermal imaging technologies provide critical situational awareness and decision support for the U.S. Armed Forces and allied nations,” said Jared Faraudo, vice president, product management, Teledyne FLIR OEM. “The comprehensive portfolio of NDAA-compliant Neutrino, Boson, Hadron, and Lepton camera modules reflects our significant investment and strict adherence to meeting congressional standards through SWaP-optimized (Size, Weight, and Power) thermal imaging solutions.”

Performance-Driven NDAA-Compliant Imaging Portfolio:

  • Neutrino LC and SX8: High-operating temperature (HOT) mid-wave infrared (MWIR) focal plane array (FPA) technology in a compact format—ideal for gimbals, handhelds, and targeting systems.
  • Neutrino QX and SX12: High-resolution, fast-frame MWIR models designed for intelligence, surveillance, and reconnaissance (ISR), counter-drone, and wide-area motion imaging (WAMI) missions.
  • Neutrino IS: Combines Neutrino LC and SX camera modules with continuous zoom (CZ) lenses to offer high–performance, SWaP-optimized imaging solutions.
  • Neutrino Ground ISR: Turnkey MWIR solutions for integrators developing long-range, ground-based ISR systems.
  • Boson: 12 µm uncooled long-wave infrared (LWIR) radiometric camera modules available in 640 × 512 or 320 × 256 resolutions with multiple frame rate options
  • Boson+: High-performance Boson variant offers industry-leading thermal sensitivity with a noise equivalent temperature difference (NETD) of less than 20 millikelvin.
  • Boson+ CZ: Combines the Boson+ LWIR camera module and 5x CZ lens, offering a high–performance imaging solution and simplified integration.
  • Hadron 640: Integrates a 64MP visible camera with a 640 × 512 radiometric Boson thermal sensor in a single module for streamlined integration in uncrewed systems.
  • Lepton: World’s highest-volume LWIR thermal imaging module, enabling scalable thermal innovation.

All NDAA-compliant thermal imaging models are designed and assembled in the U.S., with trusted supply chains and final testing conducted at the company’s Goleta, California facility. All modules are also non-ITAR (International Traffic in Arms Regulations) and are classified under the jurisdiction of the U.S. Department of Commerce for export.

To learn more about NDAA-compliant thermal camera cores from Teledyne FLIR OEM, visit www.flir.com/oem.

 

26 Jun 25.  Saab demonstrates C-UAS technologies in Swedish military exercise. Saab participated in an air defence demonstration at Tofta Firing Range in Gotland, Sweden yesterday (June 25), which was held in collaboration with and hosted by the Swedish Armed Forces and the Swedish Defence Materiel Administration. The event brought together key decision-makers from across the defence sector to experience the operational capabilities of Saab´s counter-uncrewed aerial systems (C-UAS) technologies. Similar to Loke, this Swedish C-UAS capability is modular and adaptable, and is designed to address the urgent threat posed by drones. The demonstration was designed to be mobile and fast to deploy, as well as easy to manoeuvre, and was mainly conducted by conscripts. Saab demonstrated early detection, tracking and classification with the Giraffe 1X radar, decision-making and visualisation via a SHORAD command and control system, and kinetic engagement with a Trackfire ARES (Aerial Response) remote weapon station and the BAE Tridon MK2. This configuration relies on the flexible integration of existing and modular systems, making use of military off-the-shelf components that have already been field-tested and proven. The Giraffe 1X radar and the Trackfire ARES remote weapon station were mounted on the new 4×4 Sisu GPT vehicle. Meanwhile, the Tridon MK2 was mounted on a Scania flatbed truck. The live demonstration featured several operational scenarios. The Giraffe 1X multi-mission radar detected the aerial objects and its integrated ‘Drone Tracker’ function classified and identified the drone as hostile. This information was then relayed to the SHORAD command and control system for processing and coordination with the effectors, which successfully neutralised the threat. (Source: www.unmannedairspace.info)

 

26 Jun 25. DroneSec launches new Stolen Drone Database version to support law enforcement, C-UAS operators. DroneSec, an expert in drone adversary threat intelligence, has today announced the launch of the second version of its industry-first Stolen Drone Information (SDI) Database. Built for tactical, investigative, and real-time capabilities, the enhanced database offers an ability to identify, assess, and act upon stolen or misused drones across both domestic and international domains. Since its initial release, SDI has become an important  intelligence tool for security teams, civil aviation authorities, Federal and SLTT law enforcement agencies in identifying drones that appear in a global theft database, says the company in a press release.

“As drone-enabled threats evolve, knowing whether a drone is stolen is a decisive advantage. The upgraded SDI allows law enforcement agencies and C-UAS providers to automatically flag suspicious UAVs during detection events, providing immediate context and alerts against national Remote ID blacklists. This intelligence layer supports real-time drone detection platforms, enabling a shift from passive monitoring to proactive threat classification and tactical escalation.”

“For law enforcement and C-UAS vendors, the value isn’t just in identifying the drone — it’s in understanding the intent behind it,” said Jared Page, Chief Technology Officer at DroneSec. “Stolen drones are frequently repurposed for hostile surveillance, contraband drops, and intrusions. This database helps stop that cycle. DTI systems that do not integrate into a stolen drone registry are already behind the curve.”

When a drone’s serial is detected by RF or Remote ID sensors, integration with SDI allows for instant verification against global drone theft records, enabling responders to rapidly differentiate between potentially careless and potential criminal intent. Since its initial release, the SDI has directly supported multiple high-impact investigations involving cross-border flights, restricted flight-zone breaches, and game day major sporting event violations. In one instance, SDI led to the detection of a drone in the USA – its original stolen location was Spain, an insight not possible without the SDI record, said the company.

“We’ve seen federal and local units use this intelligence to open cases, link incidents, detect and seize drones that would have otherwise gone unflagged,” added Page. “SDI is no longer just a registry – it’s an operational asset.”

For C-UAS technology providers, the new version of SDI offers integration via secure APIs – enabling rapid deployment into existing detection systems. The database matches drone serial numbers, geo-location metadata and police reports against real-time detections, returning actionable alerts within milliseconds.

“This interoperability enhances situational awareness and allows C-UAS vendors to provide value-added intelligence to their end-users, improving threat classification and response accuracy without additional hardware. Adding SDI to a C-UAS system turns it from a detection tool to an intelligence tool with insights into determining intent.” For more information: www.dronesec.com. (Source: www.unmannedairspace.info)

 

02 Jul 25. Britain reportedly interested in Aussie ‘super radar.’ The UK is watching with interest after Canada leapfrogged the United States to become the first overseas customer for Australia’s Jindalee Over-the-Horizon Radar (JORN) system – in what is expected to become Australia’s largest ever defence export. According to an exclusive report by ABC Australia’s defence correspondent Andrew Greene, newly elected Canadian Prime Minister Mark Carney confirmed Ottawa’s $6.5 bn deal to acquire the JORN technology, following a conversation with Australian Prime Minister Anthony Albanese. The announcement was made during a high-profile visit to the Arctic territory of Nunavut, where Carney described the system as vital to detecting and responding to threats in Canada’s northern approaches.

“It will most fundamentally keep all Canadians safe,” Carney said. The Canadian version of the system will support NORAD, the joint US-Canadian aerospace defence initiative, and is designed to monitor both air and maritime threats far beyond the horizon.

The JORN system, developed by Australian scientists and built by BAE Systems Australia, has been in operation for over 30 years. Unlike conventional line-of-sight radar, JORN uses high-frequency radio waves bounced off the ionosphere to monitor targets as far as 3,000 kilometres away. Its over-the-horizon capability has been described as among the most advanced of its kind globally. While the United States had long been in discussions with Australia about acquiring the same technology, ABC reports that negotiations were stalled by the Pentagon’s ongoing spending review, known as the DOGE audit. Canadian officials saw an opening following Donald Trump’s return to the US presidency and moved quickly to secure the deal ahead of Washington. According to the ABC, “the Canadians were always going to follow the US purchase and slipstream off that, but circumstances changed and things moved quickly.” UK officials are also said to be exploring the possibility of acquiring the JORN system. As Greene reports, “the United Kingdom, where the parent company of BAE Systems Australia is based, has also expressed interest in purchasing the JORN technology, but is yet to approve the idea.” No formal deal has yet been announced. UK defence planners may see JORN as a valuable tool in protecting Northern airspace and providing persistent surveillance over long distances, particularly as the UK deepens defence ties in the Arctic and Indo-Pacific. However, the political and industrial implications of adopting Australian-developed radar over homegrown or allied systems will likely form part of the ongoing consideration.

Australia’s Defence Minister Richard Marles has called the Canadian agreement “potentially the biggest defence industry export that Australia has ever been a part of,” telling ABC’s News Breakfast that the deal could bring enormous benefits to Australian industry.

How does it work?

The Jindalee Operational Radar Network (JORN) is an over-the-horizon radar (OHR) system operated by the Royal Australian Air Force. It is designed to detect and track air and maritime activity across vast distances, with a nominal range of 1,000 to 3,000 kilometres and a potential maximum reach exceeding 4,000 kilometres. The system operates by bouncing high-frequency radio waves off the ionosphere, enabling it to monitor areas far beyond the radar horizon. This capability allows JORN to cover all of Australia’s northern approaches and parts of Southeast Asia, making it central to Australian defence surveillance and early warning strategies. JORN can also monitor meteorological variables such as wind direction and wave height, and is reportedly capable of detecting low-observable aircraft and missile launches at intercontinental distances. JORN consists of three active radar stations located near Longreach in Queensland, Laverton in Western Australia, and Alice Springs in the Northern Territory. Each radar station comprises a widely separated transmitter and receiver pair to minimise mutual interference. Signals are generated using Frequency-Modulated Continuous Wave (FMCW) transmission between 5 and 30 MHz, far lower than conventional radar systems. Beam steering is achieved electronically rather than through physical movement of antennas, while signal detection relies on Doppler shifts and phase differentials across extensive antenna arrays. The system’s effectiveness hinges on continuous ionospheric monitoring, supported by a network of twelve vertical ionosondes which map real-time ionospheric conditions every 225 seconds. The JORN Coordination Centre (JCC), located at RAAF Base Edinburgh in South Australia, serves as the operational hub, managing data flows and coordinating with other defence and intelligence entities. The system is operated by No. 1 Remote Sensor Unit (1RSU). Data collected by the radar is used not only for defence surveillance but also supports broader strategic objectives, including missile detection and space situational awareness. JORN was the subject of extensive research and development spanning several decades, with early prototypes demonstrated as far back as the 1970s. Its final operational form, delivered in 2003, was later upgraded under successive phases, including a \$1.2 bn enhancement contract awarded to BAE Systems in 2018. JORN’s sensitivity has proven sufficient to detect small aircraft, such as a Cessna 172, at distances over 2,500 kilometres. The system’s performance is nonetheless constrained by atmospheric and solar conditions, particularly variations in the ionosphere and disturbances from extreme weather. As with all Doppler-based radar systems, JORN is limited in its ability to detect objects moving tangentially to its line of sight or those matching the speed of surrounding media. (Source: ukdefencejournal.org.uk/)

 

27 Jun 25. Indian and French military train together on EW and C-UAS capabilities. Specialist units from India and France are engaging in electronic warfare (EW) and counter-uncrewed aerial system (C-UAS) training, incorporating signal interception, jamming, spectrum control and drone-neutralisation exercises. The training exercise, conducted at Camp Larzac, La Cavalerie, France from 18 June to 1 July is the eighth edition of the biennial India-France joint military exercise known as SHAKTI, which aims to enhance interoperability and operational coordination.  The Indian contingent comprising of 90 personnel is being represented primarily by a battalion of the Jammu and Kashmir Rifles besides personnel from other units. The French contingent is represented by personnel from the 13th Foreign Legion Half- Brigade. This SHAKTI edition will focus on joint operations in a sub-conventional environment under Chapter VII of the United Nations Charter, with training being conducted in semi-urban terrain. The exercise will provide a platform for both contingents to rehearse and refine tactical drills, share best practices, train on new generation equipment and strengthen physical endurance. It will also foster ‘esprit-de-corps’, mutual respect and professional camaraderie between the two armies. (Source: www.unmannedairspace.info)

 

03 Jul 25. France’s Thales eyes radar factory in Saudi Arabia and AI centre in UAE. Kingdom was the largest military spender in the Middle East and the seventh biggest globally last year. French defence and technology group Thales is pursuing opportunities in Saudi Arabia for a radar production factory, and in the UAE for an AI research centre, as Gulf nations seek a role in global supply chains. Thales is seeking to expand a joint venture with Saudi Arabian Military Industries (SAMI) that was set up with the aim of localising defence production.

“We have an intention to grow this joint venture to work, not only on radars, but more generally speaking on air defence,” Pascale Sourisse, senior executive vice-president of international development at Thales, told The National on the sidelines of the Paris Airshow.

“This joint venture should host the various activities we will have in Saudi Arabia … But I expect that there will be some work on communications systems.”

The move comes as Saudi Arabia strives to develop its own military production capabilities to reduce reliance on foreign suppliers. The strategy is intended to diversify its economy from a reliance on oil, create more jobs for Saudis, attract highly-skilled workers, prioritise technical know-how transfers and become part of the global industrial supply chains. Saudi Arabia was the largest military spender in the Middle East in 2024 and the seventh biggest worldwide, according to an April report by the Stockholm International Peace Research Institute (Sipri). The kingdom recorded a modest military spending increase of 1.5 per cent, reaching an estimated $80.3 bn, but still 20 per cent lower than in 2015 when the country’s oil revenue peaked.

Ms Sourisse said it is “too early” to provide further details on the timeline and investment for a factory in Saudi Arabia.

Thales’ proposed plan in the kingdom will include local manufacturing, engineering and maintenance support services, similar to its agreement with the UAE, she said.

The company’s wholly-owned unit Thales Emarat Technologies will invest in a factory to produce Ground Master series air surveillance radars in the UAE, as part of an agreement with Tawazun Council. The factory, which is expected to be fully operational by 2027, will assemble, test and qualify advanced air surveillance radars for domestic use and to export markets, Thales said in a statement in May during the ‘Make it in the Emirates’ event in Abu Dhabi. The project is entirely funded by Thales, according to Ms Sourisse, who declined to provide the size of investment. The agreement includes co-operation with UAE companies to become part of Thales’ supply chain, she added.

AI research centre

Now Thales is in discussions with the UAE to open an AI research centre in Abu Dhabi, according to Ms Sourisse. Thales’ AI research centres, dubbed cortAIx, are currently set up in Singapore, France, Canada and Britain. This means the Abu Dhabi centre, if it goes ahead, will become the first of its kind in the Middle East.

“Considering the number of equipment that we have in the UAE that will embed AI, it makes sense to set up a cortAIx centre in the UAE,” Ms Sourisse said.

While it is too early to firm up a timeline for establishing the centre, discussions are under way.

“We are working on it, it’s not yet announced … it’s a bit early to say, but that is the direction we’re heading. We also need to agree with customers like the UAE Armed Forces on how they want to proceed.”

The idea is to collaborate with military customers to work with them on use cases for AI applications in defence.

“It is not only about setting up an AI competence centre, it’s really establishing a partnership with users to work on use cases … they can directly tell us that this kind of information that we can derive from data-processing is the priority for them,” Ms Sourisse said.

Asked if the conflicts in the Middle East are accelerating Thales’ discussions with customers in the region, the veteran executive said: “We are expecting an increase in the level of orders that we get in very many countries, in the region certainly, but not only [there].”

“There’s tensions in many areas of the world, so countries will continue to increase their investment in defence.”

The capabilities that are in high demand include air surveillance, air defence, weapon systems, communications systems, drones either used in offensive or defensive ways and counter-drones, she added. (Source: News Now)

 

27 Jun 25. Cuashub.com said today that EU Defence Minister warns Europe will need millions of drones if Russia attacks. Europe must prepare to field a large-scale drone force capable of countering Russia in a potential future conflict, according to EU Defence Commissioner Andrius Kubilius. His warning follows military intelligence assessments suggesting Russia could be ready to strike a NATO country within the next five years.

According to Kubilius, Europe needs to urgently scale up its drone capabilities. He estimates that ms of drones would be required to match Russia’s growing inventory and battlefield experience.

“Russia can have around five m drones, so we need to have capacities bigger than those in order to prevail,” he said.

Since its full-scale invasion of Ukraine in 2022, Russia has faced an evolving threat from Ukraine’s rapidly advancing drone forces. The war has driven innovation and mass production in unmanned systems, with Ukraine expected to produce more than four m drones this year alone. Ukrainian officials have claimed that drone units are now responsible for up to 80 percent of Russian frontline losses.

Kubilius, who has visited Ukraine to observe its drone operations, cited one heavily contested area dubbed “Death Valley” as evidence of how drones dominate the modern battlefield.

“Nothing can move. Everything is controlled by drones. A traditional tank in that zone survives six minutes,” he said.

Drawing a parallel to his home country of Lithuania, which shares a long border with Russia and Belarus, Kubilius estimated that a nation like his would need three million drones annually in a high-intensity conflict. However, he cautioned against stockpiling drones now, as technology is evolving rapidly. Instead, he argued for investment in personnel and industrial capacity to enable a rapid scale-up when needed.

“On the European continent, at the moment, there are only two armies battle-tested with the ability to use ms of drones: one is Russian, which is planning new aggressions; another one is Ukrainian,” he said.

European defense closing the gap

European defense companies are working to develop systems that will close the gap with regard to UAS and counter-UAS capabilities. German start-up STARK has developed loitering munitions for Ukraine and emphasized the need for constant adaptation.

“Every day you have to adapt,” said STARK’s senior vice president Josef Kranawetvogl. “You have such fast development cycles in Ukraine – two or three weeks, then there’s something new upcoming and you have to be prepared for this.”

German firm Alpine Eagle is developing interceptor drones designed to shoot down hostile UAS at ranges of up to five kilometers. CEO Jan-Hendrik Boelens warned that NATO members are currently unprepared for mass drone attacks like those seen in Ukraine.

“We are absolutely not ready in my view,” he said.

Boelens pointed to Ukraine’s production of around 1.3m drones last year, and estimated that NATO countries such as Germany may have procured only a few hundred.

“If Ukraine consumed 1.3m drones per year, that’s 3,000 a day. So, if you have 100 in your inventory, that would not last an hour.”

While a spokesperson from the German Defence Ministry said those figures “do not closely reflect reality,” they acknowledged that drones are now an integral part of military operations and training.

NATO leaders have declared drone warfare a strategic priority. At a recent summit, members committed to increasing defense spending to 5 percent of GDP by 2035 and boosting air defenses fivefold.

NATO Secretary General Mark Rutte stated: “We see Russia’s deadly terror from the skies over Ukraine every day, and we must be able to defend ourselves from such attacks.”

The UK has announced that drones will be central to its new warfighting doctrine, outlining a 20-40-40 strategy in which 20 percent of combat platforms are traditional heavy systems, 40 percent are expendable drones and 40 percent are reusable unmanned systems. An additional £2bn has been earmarked for army drones in this parliamentary term. Elsewhere, European countries are signing co-production deals with Ukraine. Germany and Denmark have followed the UK in pledging closer collaboration with Ukrainian industry on drone manufacturing. In Berlin, Sven Weizenegger, head of the German military’s cyber innovation hub, said his team receives up to 20 enquiries daily from companies offering drone technologies. He emphasized the need for faster procurement to keep up with evolving threats.

“We are very advanced in the innovation process… Unfortunately, what we are not good at right now… is getting these things into real operations,” he said.

Germany has pledged to accelerate its defense buildup, with Chancellor Olaf Scholz promising to create “the strongest conventional army in Europe.” Unmanned systems and air defense are set to be key pillars of that effort. https://cuashub.com/en/content/eu-defence-minister-warns-europe-will-need-ms-of-drones-if-russia-attacks/ (Source: https://cuashub.com/)

 

27 Jun 25. Cuashub.com said today that Saab demonstrates modular C-UAS in live-fire exercise. Saab took part in a live counter-UAS demonstration at Tofta Firing Range on the Swedish island of Gotland, showcasing its modular air defense technologies during an event hosted by the Swedish Armed Forces and the Swedish Defence Materiel Administration. The event, attended by defence officials and stakeholders, focused on the growing challenge posed by small, fast-moving drones and how rapidly deployable systems can address emerging threats. The demonstration was primarily conducted by Swedish conscripts and featured operational scenarios replicating real-world drone threats. The showcased counter-UAS system, referred to as “Gute” by the Swedish Armed Forces, is designed to detect, track, classify and engage aerial targets. The core components of the system included Saab’s Giraffe 1X radar, a short-range air defence (SHORAD) command and control system and kinetic effectors such as the Trackfire ARES remote weapon station and the BAE Systems Tridon Mk2. These elements were integrated into a mobile platform. The Giraffe 1X radar, mounted on a Sisu GPT 4×4 vehicle, provided early detection and tracking capabilities. Its drone detection software flagged potential threats, which were then processed through the command and control system before being engaged by weapon stations. The Tridon Mk2, mounted on a Scania flatbed truck, served as a stationary firing unit for higher-calibre responses. The demonstration emphasized the system’s mobility and modularity, highlighting its ability to be rapidly deployed and adapted to different operational needs. According to Saab, the system uses military off-the-shelf components, which allows for quicker field deployment and system integration. The event also comes amid increasing concerns over drone proliferation and recent examples of low-cost UAS being used in long-range strikes, particularly in Ukraine. These developments have prompted armed forces worldwide to seek more flexible and responsive countermeasures. While Saab issued a statement highlighting its commitment to developing adaptable counter-UAS solutions, the demonstration itself focused on proving the interoperability of existing technologies and their ability to form a cohesive defense system in a field environment. https://cuashub.com/en/content/saab-demonstrates-modular-c-uas-in-live-fire-exercise/ (Source: https://cuashub.com/)

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Echodyne is a U.S. designer and manufacturer of advanced commercial radar solutions for defense and national security applications. The company’s proprietary metamaterials electronically scanned array (MESA®) architecture, a rare breakthrough in advanced radar engineering, leverages a physics-design approach to adapt conventional materials and deliver unexpected and beneficial behavior. The result is a solid-state, low-SWaP unit coupled with advanced software capabilities that delivers superior radar performance and unparalleled data integrity, radically improving system performance and enhancing safety for people and machines. With leading positions in counter-UAS, force protection, base security, and portable ISR, Defense Agencies and Suppliers rely on Echodyne radar for extraordinary accuracy and consistent, reliable operation.

For more information, please visit: Echodyne.com.

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