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04 Jun 25. US Army to lead nuclear microreactor development to power bases. Some Army installations could be powered by nuclear microreactors under an executive order recently issued by President Donald Trump. The order, published May 23, calls for deploying advanced nuclear reactor technologies for national security and directs Army Secretary Daniel Driscoll to establish a program using the technology for both installation and operational energy. It orders the operation of a nuclear reactor at a domestic military base or installation by Sept. 30, 2028.
“Advanced nuclear reactors include nuclear energy systems like Generation III+ reactors, small modular reactors, microreactors, and stationary and mobile reactors that have the potential to deliver resilient, secure, and reliable power to critical defense facilities and other mission capability resources,” according to the order.
Testifying before the House Armed Services Committee on Wednesday, Driscoll and Army Chief of Staff Gen. Randy George took multiple questions from various committee members on the initiative. Driscoll indicated his support for the move in response to a question from Rep. Derrick Van Orden, R-Wis., as to where microreactors fit into America’s national security strategy.
“I think microreactors can be an incredible asset as we solve against the future energy needs of the United States Army, both CONUS [continental United States], OCONUS [outside the continental U.S.] and peacetime and wartime,” Driscoll said. “We are excited to lead that effort.”
Neither Driscoll nor George had details as to which installation might feature such a reactor. But both said the reactors could provide energy resilience and independence for some installations. Pentagon officials announced in early 2022 that the Defense Department would build a nuclear microreactor that could be flown to an austere site by a C-17 cargo plane and set up to power a military base. The initiative, dubbed “Project Pele,” outlined a 40-ton reactor that could fit in three to four 20-foot shipping containers and provide one to five megawatts of power on full power for up to three years before refueling. The name is a reference to the Hawaiian deity Pele, the goddess of fire and volcanos. The acronym also stands for Portable Energy for Lasting Effects. The Pentagon awarded an initial $300m contract in June 2022 to Lynchburg, Virginia-based BWX Technologies to build the reactor. (Source: Defense News Early Bird/Military Times)
06 Jun25. Advantech, a leader in IoT, edge, and AI computing solutions, is demonstrating its GPU servers for AI and IoT applications at NVIDIA GTC 2025. With the complexity of AI, high-performance computing (HPC) and data analytics increasing exponentially, over the next decade scientists and developers will require advanced computing platforms with performance that’s several orders of magnitude better than today to overcome these extraordinary challenges. With the NVIDIA MGX reference architecture, system manufacturers can quickly and cost-effectively build more than 100 server variations. Advantech is launching a series of NVIDIA MGX GPU servers to suit a wide range of AI, high performance computing, and NVIDIA Omniverse-based physical AI simulation applications. The Advantech SKY-622G4 is a 2U GPU server with dual Intel® Xeon® 6 processors, supporting up to four double-width NVIDIA GPUs for intensive AI and HPC workloads. It features 7 x PCIe 5.0 expansion slots, enabling seamless Smart NIC and DPU integration for enhanced networking and computing performance. Additionally, the SKY-622G4 is equipped with 8 x E1.s storage bays and up to 6000W CRPS AC power supplies to meet the demands of AI-driven computing environments To fuel Omniverse applications, which require high-performance CPUs, multiple GPUs, and high-speed networking, the SKY-622G4 is an OVS Certified ready server that supports up to four double-width GPU cards, including the NVIDIA RTX PRO™ 6000 Blackwell Server Edition, which is a powerful data center GPU for AI and visual computing. It accelerates demanding enterprise workloads, including AI, scientific computing, graphics, and video applications. It supports MIG (Multi-Instance GPU), enabling up to four fully isolated instances to power both AI and graphics workloads. With 96GB of GDDR7 memory, it offers twice the memory capacity and up to 5x the performance of the L40S, making it ideal for large-scale LLM (Large Language Model) inference applications. Learn more about the NVIDIA RTX PRO™ 6000 Blackwell Server Edition: https://blogs.nvidia.com/blog/rtx-pro-6000-blackwell-server-edition/ In conclusion, the SKY-622G4 is the ideal choice for developing applications on the NVIDIA Omniverse platform , delivering exceptional computing power, scalability, and efficiency.
SKY-622G4: 2U MGX Server
- Dual Intel® Xeon® 6 Processors
- 32 x DDR5 ECC/RDIMM
- 4 x PCIe 5.0 x16 Dual Slot GPU
- 3+1 6000W Redundant PSU
- NVIDIA MGX Compliant Design
NVIDIA RTX PRO 6000 Blackwell Server Edition: A New Standard for AI and Omniverse Computing
Based on the Blackwell Universal architecture, it delivers exceptional performance for AI, HPC, and Omniverse applications.
- Up to 4 MIG (Multi-Instance GPU) partitions for universal workloads, delivering 4x higher utilization compared to L40S
- GDDR7 memory capacity up to 96GB, doubling the memory size of L40S and enabling larger LLM (Large Language Model) workloads
- Higher media engine count per GPU, ensuring 1 media engine per MIG instance for superior multimedia performance
- PCIe Gen5 x16 interface, providing 2x the bandwidth of PCIe Gen4
- Configurable TDP (400W-600W) for optimized power efficiency
Built for mission-critical environments, the SKY-622G4 series incorporates industrial-grade design with hot-swappable PCIe SSDs and comprehensive connectivity. Its scalable architecture, aligned with NVIDIA MGX, empowers enterprises to optimize their infrastructure for next-generation AI-driven applications.
Besides SKY-622G4, Advantech also showcases SKY-602E3 mid tower GPU server at NVIDIA GTC 2025. SKY-602E3 mid tower GPU Server is a compact AI computing solution powered by the AMD EPYC™ 8004 Series Processors. Featuring 6 DDR5 ECC/RDIMM slots and four PCIe 5.0 x16 slots, it delivers high-performance graphics processing for AI applications. The server supports multiple NVIDIA GPUs, including RTX 6000 Ada, RTX 4000 SFF Ada, and L4/L40, ensuring scalability. With dual M.2 PCIe 5.0 storage and versatile mounting options—table, wall, or 4U rack—it is ideal for various AI and data-intensive environments.
SKY-602E3Mid-Tower GPU Server
- Single AMD EPYC™ 8004 Series Processor
- 6 x DDR5 ECC/RDIMM
- 4 x PCIe 5.0 x16 DW GPU
- 2 x PCIe 5.0 x8 slots
- 2 x 2.5” SATA SSD internal
- 800W Redundant PSU
Advantech SKY-6 series GPU servers aim to transform enterprises and empower them with intelligent connectivity from IoT devices to cloud-based services. The SKY-6 series is able to scale out from a single-GPU node to multi-GPU nodes when needed in industrial applications, especially in the areas of healthcare and video streaming. With NVIDIA EGX platform support, Advantech SKY-6 GPU servers offer a wide selection of optimized and efficient solutions for intelligent edge applications. They provide seamless integration from the network edge to the public/private cloud, and support evolving applications that enable an intelligent planet.
Learn more about our SKY-6 Series server: https://www.advantech.com/en/products/gpu-servers/sub_bc4ce515-2d0a-40d4-889c-e42ec79c53a0
As a well-established manufacturer in the embedded industry, Advantech’s servers and server-grade motherboards are built with longevity and strict revision control. Advantech has over 40+ history and experience in customization and configure-to-order services to meet flexible customer requirements. To learn more about Advantech’s industrial-grade servers, server boards, and chassis, please visit https://www.advantech.com/en/solutions/industrial-and-telecom-servers.
04 Jun 25. Service Leaders Talk Emerging Technologies at AI Expo. Senior leaders from each military branch spoke about changing battlefield technology and their service’s current transformation efforts during the AI+ Expo in Washington this week. The recent Ukrainian attacks on Russian air bases are prime examples of how rapidly technology is changing the battlefield, said Army Gen. Randy A. George, Army chief of staff.
“Look at how cheap those systems were compared to what they took out,” George said, referring to the relatively inexpensive Ukrainian drones that knocked out a significant number of Russian bombers, June 1, 2025.
To keep up with the changing technological landscape, the Army needs to be more agile in its procurement, he said. “That’s a struggle because everybody wants us to buy the same drone for the next 25 years.” Instead, the general noted that the way forward is to use and adapt commercial drones at speed and scale. The Army employed a similar approach by converting a commercial truck into an infantry squad vehicle. “Our soldiers love that system,” he said, adding that they modified it for their needs. George said the service is also considering off-the-shelf interactive glasses adapted for soldiers to use. Soldiers are innovative, and they understand technology intuitively, he added. Industry engineers are also inventive, and when they go out in the field with soldiers and observe how they use their equipment, it sparks fresh ideas.
Gen. David W. Allvin, Air Force chief of staff, said in the changing character of warfare, the Air Force brings speed and agility to the fight, not only projecting power overseas but also defending the homeland through two of the three legs of the nuclear triad — strategic bombers and intercontinental ballistic missiles — as well as contributions the service will make in building the air defense system known as the Golden Dome.
Allvin said in addition to building the planned F-47 sixth-generation fighter aircraft, the Air Force is planning human-machine teaming using both manned and unmanned aircraft.
“I believe human-machine teaming is a door we need to push through very rapidly. There are opportunities there that we’re seeing play out in other parts of industry and other parts of society that we really need to leverage to keep that edge,” he said.
He added that assimilating artificial intelligence into areas such as data fusion, predictive maintenance and strategic decision-making are ways the service is experimenting with technology.
“We have to keep our imaginations wide open to understand this is a game-changing technology … when it comes to air dominance, but we can only do that if we don’t sort of get trapped by the vestiges of the past,” Allvin said.
Gen. Christopher J. Mahoney, assistant commandant of the Marine Corps, spoke not only about technological changes on the battlefield but also about changes to the way Marines fight, survive and thrive in contested spaces, known as force design.
To fight the future fight, talent management is essential, Mahoney said.
“Let’s make sure we have the right Marines with the right skill sets and keep them around longer,” he said, adding that it’s important that they engage in realistic and challenging training.
Implementation of force design, he said, involves things like:
- Making the force more distributed.
- Enhancing Marines’ ability to maneuver and sustain themselves.
- Having Marine formations broadcast a smaller signature to avoid detection.
- Supplying Marines with longer-range fires, including the ability to hit ships from the shore.
- Providing Marines with better sensing capabilities for situational awareness and targeting.
- Equipping Marines with more autonomous and robotic systems.
Mahoney spoke highly of young Marines today, saying they’re what made him stay in the service for 38 years.
“They are motivated. They’re resilient. They have surrendered to a life of … honor, courage and commitment,” he said.
Vice Adm. James Pitts, deputy chief of naval operations for warfighting requirements and capabilities, said the Navy’s navigation plan includes developing key capabilities, including long-range fires, robotic and autonomous systems, and enablers like live, virtual and constructive training, so sailors can be better trained for a potential high-end fight.
The admiral also emphasized shipbuilding, noting the history of cost overruns and maintenance and modernization backlogs.
“We do need a whole-of-government, whole-of-nation effort in order to revitalize our shipbuilding base,” Pitts said.
The service is navigating in the direction of building a hybrid fleet that includes manned and unmanned platforms, he added.
The Navy established its disruptive capabilities office to develop and scale robotic and autonomous systems, along with other technologies, the admiral said, adding that the Navy is also seeking more flexible funding to support these initiatives.
He said the Navy is hoping to use less expensive defensive weapons against things like inexpensive one-way drones. Such weapons could include high-powered lasers and microwaves.
Space Force Gen. B. Chance Saltzman, chief of space operations, said his service will play a critical role in building the Golden Dome. Its contribution, he said, includes sensing capability to rapidly identify threats and the ability to quickly move quality data from the collection point to the decision maker for use in targeting information and space-based interceptors. A lot of research and development work still needs to be done with industry’s help, Saltzman said.
“One of our great asymmetric advantages as a country is the tremendous innovative capacity that we see in the commercial sector,” he said, adding that the service is bringing in the best and brightest to make an impact.
“We don’t want the tremendous skill sets that people are coming into the service with to languish and suffer because they are not working at the leading edge of industry. So, we’re trying to send our people back into industry — even if it’s just for six, eight months or a year — to maintain that credibility in the industry and then bring that knowledge back into the force,” he said.
The Space Force plans to establish a futures command later this year to assess the potential operating environment over the next 12 to 15 years and identify how the U.S. can counter any emerging threats. Saltzman said industry partners will play a significant role in that development. (Source: U.S. DoD)
03 Jun 25. Lockheed Martin [NYSE: LMT] is pioneering a competitive environment designed to accelerate the testing and operational deployment of artificial intelligence to support warfighters in their missions. Lockheed Martin’s AI Fight Club™ is a comprehensive testing ground to simulate how AI systems perform in air, land, sea, and space domains.
“There has never been a more important time to prove which implementations of AI technologies are the best, to help the United States stay ahead of the threats facing our nation and allies,” said John Clark, Lockheed Martin’s senior vice president of Technology and Strategic Innovation. “AI Fight Club uses advanced simulation and visualization to evaluate AI in realistic and complex scenarios that mimic the challenges of modern warfare. Teams with the best AI will battle each other to determine the most robust, reliable and effective models.”
A Proving Ground for the Best AI in the Nation
AI Fight Club will use a synthetic environment developed by Lockheed Martin that simulates realistic scenarios across domains. This gives companies and teams of all sizes the opportunity to test their models in simulations that meet Department of Defense (DOD) qualifications. AI models will meet exacting DOD standards that are an integral part of the AI Fight Club proving ground, demonstrating the feasibility of the models for national security. Ultimately, events will bring together teams from across the industry and government experts to collaborate in a unique environment that fosters innovation, identifies vulnerabilities and informs the development of more advanced AI systems to benefit national security as a whole.
How it works
- Teams of experts across industry will compete in head-to-head matchups.
- Government representatives will engage with the competitors as they demonstrate their capabilities.
- Organizers will select a scenario for each match that reflect realistic and complex military operations for the competitions, such as:
- Airborne operations in a contested environment
- Layered Homeland Defense
- Coastal defense against amphibious assault
- Space-based surveillance and reconnaissance
- Teams will submit their systems, which then will be evaluated in competitions on their performance in each scenario.
- Insights and lessons learned from the AI Fight Club will inform the development of future AI systems, push industry forward, and ensure American capabilities are optimized to support the unique needs of the warfighter and the Joint Force.
- Teams will have the opportunity to publish and present their research and results, showcasing their innovations and advancements in AI.
03 Jun 25. US Army contracts Picogrid for military system integration. Legion software platform serves as a bridge, connecting data from various military assets. The US Army has contracted defence technology company Picogrid to implement Legion, a software solution designed to integrate disparate military systems. Legion is designed to address the need for cohesive system integration within the military’s diverse technological landscape. It serves as a bridge, connecting data from various military assets including outdated systems, sensors, and weaponry platforms. This data is then streamlined into essential operational applications such as the tactical awareness kit (TAK), which is the Army’s chief app for coordination efforts, along with other pivotal mission-centric software tools. By transforming isolated data streams into a unified operational picture, Legion enhances decision-making speed and improves collaborative efforts among different military units.
Picogrid co-founder Martin Slosarik said: “Legion breaks down the walls between systems that were never meant to work together. We’re giving soldiers access to powerful, modular software that plugs into what they already use and extends its capabilities.”
The US Army Engineer Research and Development Center Construction Engineering Research Laboratory has taken a leading role in this project partnership, with Program Manager David Delaney at the helm of this initiative. Prior tests of Legion have been conducted with units from both the US Air Force and Space Force and have seen application in numerous extensive Army training operations. The $1.1m contract aims to further expedite Legion’s assessment process and broaden its deployment throughout various Army divisions for operational use. Recently, the US Army has initiated the army transformation initiative (ATI), aimed at revamping its operational processes and expediting the delivery of advanced technologies to service members. The initiative is focused on promoting rapid learning, swift adaptation to new challenges, and the provision of ready-to-use technological solutions that are responsive to dynamic operational requirements. In May 2025, US Army secretary Dan Driscoll, Army chief of staff general Randy George sent a letter to the force and outlined the ATI. In the letter, they said: “Autonomous systems are becoming more lethal and less expensive. Sensors and decoys are everywhere. Dual-use technologies are continuously evolving and outpacing our processes to defeat them. To maintain our edge on the battlefield, our Army will transform to a leaner, more lethal force by adapting how we fight, train, organise, and buy equipment.” (Source: army-technology.com)
02 Jun 25. DoD software scandal should be added to Mapisa-Nqakula charge sheet – Niehaus. After the Special Investigating Unit (SIU) set aside a R257 m software contract between the Department of Defence (DoD) and SoftwareOne due to procurement irregularities, the Economic Freedom Fighters’ Portfolio Committee on Defence and Military Veterans representative is calling for the contract to be added to the charge sheet of former Minister Nosiviwe Mapisa-Nqakula. In his capacity as permanent representative to the defence committee, Carl Niehaus noted that the 2018 contract was awarded under Mapisa-Nqakula, who is already charged with 12 counts of corruption and one count of money laundering for soliciting R4.5 m in bribes from defence contractor Nombasa Ntsondwa-Ndhlovu between 2016 and 2019.
“The EFF demands that the SoftwareOne scandal be added to her charges. Her successors, Ms Thandi Modise and the current Minister, Ms Angie Motshekga, alongside Deputy Ministers Maj Gen (Ret) Bantu Holomisa and Mr Richard Mkhungo, and the South African National Defence Force (SANDF) senior command, have failed to address this scandal, making them equally culpable,” Niehaus said.
“The Special Investigating Unit (SIU) and Special Tribunal’s findings on 30 April 2025 prove this was a deliberate looting of public funds. The EFF demands the immediate dismissal of Motshekga, Holomisa, Mkhungo, and the SANDF leadership, and accountability for Mapisa-Nqakula and Modise,” he added.
The SIU exposed that the 2018 contract, worth R257 536 303.41, for Microsoft software licences, was awarded to SoftwareOne under Mapisa-Nqakula’s watch without competitive bidding, without a budget, and for licences never used. The Special Tribunal declared it unconstitutional, unlawful, and invalid, violating the Public Finance Management Act (PFMA). The SIU found suspicious third-party payments and evidence of fraud, referred to the National Prosecuting Authority (NPA).
“This scandal, following the R41.6m EOH Microsoft deal in 2016–2017, shows a pattern of corruption that began under Mapisa-Nqakula, continued under Modise, and remains unaddressed by Motshekga, who has failed to ensure accountability,” Niehaus stated.
Mapisa-Nqakula’s charges stem from soliciting R4.5 m in bribes from Ntsondwa-Ndhlovu’s Umkhombe Marine to secure a R104 m SANDF logistics contract, where she allegedly pocketed over R2.1 m in cash between December 2016 and July 2019.
“These 2024 charges, tied to 12 meetings where she demanded payments, confirm her corruption,” Niehaus said. “The SoftwareOne scandal, with its R257 m contract and fraudulent payments during her tenure, must be investigated as another instance of her corruption. The EFF demands that it be added to her charges, given the SIU’s evidence of fraud. We will not tolerate this looting of our nation’s wealth.”
Niehaus believes the R257 m spent on the software licenses could have modernized the SANDF or supported veterans “neglected by the DoD’s mismanagement.” He added that the Auditor-General’s report of financial mismanagement in the DoD for 2023/24, Motshekga’s absence from briefings on the SANDF’s DRC withdrawal and 1 Military Hospital, and her failure to deliver a promised SANDF report by September 2024 “show she’s unfit to lead.” Niehaus put Holomisa and Mkhungo, as deputy ministers, in his crosshairs as well, accusing them of having failed to fix procurement, “while the SANDF senior command lets corruption erode our security.” (Source: https://www.defenceweb.co.za/)
02 Jun 25. Honeywell (NASDAQ: HON) has expanded its navigation portfolio with the addition of the HG3900 Inertial Measurement Unit (IMU), a small, lightweight and low-power tactical-grade device with accuracy and reliability comparable to larger near-navigation-grade IMUs. The HG3900 is comprised of all-silicon MEMS (microelectromechanical systems) gyroscopes and accelerometers, which enables a significant reduction in size, weight and power from comparable IMUs using traditional technologies. Its advanced sensors significantly boost its performance by offering a 20-time improvement over other Honeywell MEMs. The HG3900 is designed with backward compatibility in mind. As the highly successful Honeywell HG1900 IMU nears its end of life, the HG3900 will be offered in a nearly identical package to enable an easy transition for existing HG1900 customers. In addition to Honeywell’s rigorous product development process, the HG3900 IMU has successfully completed full environmental testing by the U.S. Army and Navigation Technology Associates (NTA) where it met requirements while under demanding environmental conditions including high vibration and dynamic temperature changes.
“Our HG3900 IMU is an ideal solution for customer applications requiring tactical or near-nav grade performance in a small, lightweight package,” said Matt Picchetti, vice president and general manager, Navigation and Sensors, Honeywell Aerospace Technologies. “Extensive Honeywell and customer testing demonstrates that our new IMU offers superior real-world performance in a smaller package as compared to other IMUs.”
IMUs are widely used on aircraft, ships, spacecraft and other applications where precision positioning and navigation are critical. The importance of these devices has intensified considerably over the past decade with the significant growth in autonomous vehicles and other autonomy use cases. IMUs utilize gyroscopes, accelerometers and electronics to determine where a vehicle is, what direction it is going, at what speed and how far it has travelled. Advanced MEMS IMUs such as the HG3900 are highly resilient and can provide accurate navigation and orientation data with or without global navigation satellite system (GNSS) inputs. They can function independently for extended periods when GNSS signals are jammed, spoofed or are simply unavailable. The design verification process will continue into 2026 with initial production and deliveries to commence in late 2026 or early 2027. Honeywell is accepting orders for pre-production units for delivery in 2026. Honeywell has been a top innovator in IMU technology for more than three decades and pioneered the use of MEMS technologies in navigation. Learn more about Honeywell’s full suite of IMU technologies here. Honeywell will showcase the HG3900 IMU, along with the rest of the Navigation products, at the Joint Navigation Conference in Cincinnati from June 2-5, including a feature session on June 4.
30 May 25. Anduril, Meta to develop advanced XR solutions. This initiative is financed entirely through private investment, ensuring no reliance on public funds. Defence technology company Anduril Industries has entered into a collaborative agreement with Facebook owner Meta to develop and deploy a suite of integrated extended reality (XR) technologies aimed at enhancing the capabilities of US military personnel. The XR products are aimed at improving situational awareness and facilitating seamless command of uncrewed systems by military personnel during combat operations. This initiative will leverage the companies’ extensive investments in hardware, software, and artificial intelligence over the past ten years. It is financed entirely through private investment, ensuring no reliance on public funds. The collaboration seeks to deliver cost-effective solutions to the US military by repurposing commercially developed high-performance technology components for defence applications, with the potential to generate significant cost savings for the military budget. Anduril explains that the new XR tools will function in conjunction with its AI-driven command and control system, Lattice, which synthesises data from myriad sources to deliver instantaneous battlefield insights in real time. The collaboration will integrate role-specific augmented reality (AR) and virtual reality (VR) interfaces into their products, granting military personnel intuitive interaction with Lattice’s analytical tools. This integration is intended to enhance the way combatants perceive, process, and assimilate information on the battlefield. By offering immersive technological solutions, the aim is to bolster the effectiveness of tactical decision-making in various combat situations.
Anduril founder Palmer Luckey said: “I am glad to be working with Meta once again. Of all the areas where dual-use technology can make a difference for America, this is the one I am most excited about. My mission has long been to turn warfighters into technomancers, and the products we are building with Meta do just that.”
For Meta, the partnership extends its Reality Labs ventures and promotes the use of its open-source AI models, such as Llama, for national security purposes by the US and allied nations. The partners have already submitted a white paper as a team for SBMC Next, formerly IVAS Next. Following the transition of the integrated visual augmentation system (IVAS) contract from Microsoft to Anduril, the companies have made strides in evolving IVAS into a soldier-borne mission command system. Progress includes enhanced operational efficiency, expedited delivery schedules, reduced costs, and software updates that now take less than 18 hours instead of 180 days. Testing is currently underway for Lattice-integrated IVAS headsets.
Meta founder and CEO Mark Zuckerberg said: “Meta has spent the last decade building AI and AR to enable the computing platform of the future. We’re proud to partner with Anduril to help bring these technologies to the American servicemembers that protect our interests at home and abroad.”
In November 2024, Meta made its open source Large Language Model Meta AI (Llama) model available to US government agencies working on defence and national security applications. (Source: army-technology.com)
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Oxley Group Ltd
Oxley offer a range of Military Marine NVG friendly LED lighting that includes navigation lights and controls, flight deck landing lights and interior compartment lighting. Our lighting products are used by Navies around the world including our own Royal Navy on UK Aircraft Carriers, Canadian Frigates, Swedish Submarines, Australian Surface vessels and Submarines, on board French Naval Carriers and in Naval Gun Turrets.
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The technology is extremely energy efficient and built robustly, with proven long life. The lighting is NVG friendly, dimmable and programmable to allow for operations with aircraft pilots using military night vision goggles. They offer superior design giving high reliability for the most demanding environments with high sealing and the ability to meet the most stringent EMC standards.
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Oxley are proud to say that we are working in partnership with SeaKing to enable a control panel to be offered with our LED Navigation Lighting. All of Oxley navigation lights have been specifically developed for vessels over 50 metres.
Contact Marcus Goad on 07850 917 263 for more information or to arrange samples.
Oxley specialises in the design and manufacture of advanced electronic and electro-optic components and systems for air, land and sea applications within the military sector. Established in 1942, Oxley has manufacturing facilities in the UK and USA and enjoys representation worldwide. The company’s products include night vision and LED lighting, data capture systems and electronic components. Oxley has pioneered the development of night vision compatible lighting. It offers a total package incorporating optical filters, equipment modification, cockpit and external lighting along with fleet wide upgrade services including engineering, installation, support, maintenance and training. The company’s long experience of manufacturing night vision lighting and LED indicators, coupled with advances in LED technology, has enabled it to develop LED solutions to replace incandescent and fluorescent lighting in existing applications as well as becoming the lighting option of choice in new applications such as portable military hospitals, UAV control stations and communication shelters.
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