Sponsored By Oxley Developments
www.oxleygroup.com
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05 Dec 25. Atrenne Unveils 726 Series VNX+ Rugged Military Computing Solution. Atrenne’s 726 Series VITA 90-VNX+ delivers compact, rugged, and modular high-performance computing for military and aerospace missions with strict SWaP requirements. Atrenne, a Celestica Company, has introduced the 726 Series VITA 90-VNX+, a compact and ruggedized high-performance computing solution engineered for military and aerospace applications with strict Size, Weight, and Power (SWaP) constraints. Designed around OpenVPX standards, the VNX+ leverages a Modular Open Systems Approach (MOSA) to simplify integration, upgrades, and customization. The 726 Series supports a variety of processors, including Intel and NVIDIA, and offers flexible I/O options tailored to mission-specific requirements. Its small form factor and conduction-cooled design make it ideal for deployment in unmanned vehicles, missiles, aircraft pods, and other environments where space is limited and reliable operation in harsh conditions is critical. The system is currently available in 3- and 6-slot configurations. Built to rigorous military standards, the VNX+ operates in temperatures ranging from -40°C to +85°C and meets MIL-STD-810G shock and vibration requirements typical of aircraft and ground vehicles. Its high-density VITA 90.2 backplane connector supports modularity, allowing Atrenne to design custom I/O boards to suit specific mission needs. For instance, SDI ports can be swapped for RF tuners for signals intelligence (SIGINT) applications, or Ethernet interfaces can be replaced with MIL-STD-1553 avionics connections. At Atrenne, customer requirements drive every design decision, ensuring solutions are delivered on time and to exact specifications. The 726 Series VITA 90-VNX+ exemplifies the company’s commitment to providing versatile, mission-ready computing platforms for demanding defense and aerospace applications. (Source: https://www.defenseadvancement.com/)
08 Dec 25. Denchi BB-2590 Smart Battery Provides Rugged, Mission-Critical Power. Product Spotlight: The BB-2590 Smart Battery, a rugged, waterproof lithium-ion power source by Denchi Group is designed for modern defence and aerospace applications Denchi Group, a UK-based leader in mission-critical battery solutions, supplies the BB-2590 Smart Battery, a rugged Level 3 lithium-ion power source engineered to meet the most demanding requirements of military and aerospace operations. With over two decades of experience providing advanced power solutions to the UK Ministry of Defence and leading primes such as BAE Systems, Lockheed Martin, General Dynamics, Leonardo, and Thales, Denchi has built a strong reputation for delivering reliable, high-performance energy systems for defence applications across land, sea, and air domains.
Advanced Smart Power Technology
The BB-2590 integrates an SMBus communication interface, enabling seamless interaction with host equipment and intelligent chargers. This smart functionality provides real-time monitoring of state-of-charge and system status, supporting flexible deployment, safeguarding against misuse, and reducing through-life costs. The battery offers dual voltage outputs (14.4 V and 28.8 V) with capacities of 21 Ah and 10.5 Ah respectively, delivering up to 302.4 Wh of energy. Designed with NMC (Nickel-Manganese-Cobalt) chemistry, it provides a balance of high energy density, long service life, and stable performance across extreme environments.
Ruggedized for Operational Demands
Constructed as a waterproof tactical battery pack, the BB-2590 is built to endure harsh field conditions while maintaining dependable performance. It delivers maximum discharge currents of up to 20 A and operates reliably within a wide temperature range of –40 °C to +60 °C. Denchi’s in-house testing facilities replicate military and aerospace stress conditions, including shock, vibration, thermal cycling, altitude exposure, and electrical stress testing. This ensures the BB-2590 achieves compliance with both civil and military standards, providing operators with assured performance in critical missions.
Key Features
- Dual output modes: 12 V (10–16.4 V) and 24 V (20–32.8 V)
- SMBus smart interface for communication and intelligent charging
- Rugged waterproof design for demanding tactical environments
- High energy density (302.4 Wh) with low self-discharge during storage
- Compact and lightweight, supporting easy system integration
- Designed and manufactured in the UK with ISO-certified processes
Proven Defence Applications
The BB-2590 is deployed in a wide range of mission-critical defence technologies, including:
- Communications systems such as military radios and transceivers
- Unmanned platforms including UAVs and ground robotics
- Sensor systems for reconnaissance and situational awareness
- Airborne and marine systems requiring lightweight, reliable backup power
As with all Denchi products, the BB-2590 benefits from the company’s heritage in supporting programmes such as the Bowman radio platform, where Denchi has provided batteries, chargers, and through-life support for more than 20 years. (Source: https://www.defenseadvancement.com/)
11 Dec 25. The UK Accelerator welcomes eight companies into the 2026 NATO DIANA Programme. A new cohort of innovative companies specialising in Contested Electromagnetic Environments is joining the UK Accelerator 2026 NATO DIANA Programme. Janus Allies consortium (Janus), in partnership with the Defence and Security Accelerator, part of UK Defence Innovation (UKDI-DASA), welcomes a new cohort of innovative companies into the 2026 NATO DIANA Programme. This year NATO DIANA received a record-breaking 3,680 submissions across all NATO member states for this year’s call. The 2026 NATO DIANA cohort has emerged from a highly selective process, placing them in roughly the top 4% of applicants and among the most competitive dual-use innovators in the Alliance. The eight companies joining the Janus UK Accelerator Programme are:
- LSMedical from Estonia
- Slipstream Design from the United Kingdom
- FOSSA Systems from Spain
- Tern AI Inc. from the United States of America
- Testnor AS from Norway
- Oledcomm from France
- SDQ Solutions Canada from Canada
- CX2 Inc. from the United States of America
Tanya Suarez, Founder and CEO of IoT Tribe, lead of Janus consortium welcomes the new Janus cohort: “As we enter our second year delivering the NATO DIANA programme with UKDI-DASA, we’re building on the momentum to strengthen the UK’s role in NATO priorities in line with the Strategic Defence Review. More contact with the end-user and better interoperability for adoption at pace. We are welcoming a new cohort with technologies that address the contested electromagnetic environments that can deny, degrade and disrupt operations. They are absolutely critical to maintaining operational advantage for the UK and NATO allies. These innovators shape capabilities that matter, and our goal remains clear: ensure the UK leads in defence innovation, while reinforcing allied technological sovereignty.”
Anita Friend, Head of UKDI-DASA said: “We are delighted to welcome another cohort of innovators to the UK Accelerator, and are excited to see how their innovative technologies could help shape the future of defence. The UKDI-DASA partnership with NATO DIANA and the delivery of the UK Accelerator programme, is key to unlocking the potential of dual-use technologies to solve critical defence challenges and create solutions that strengthen security across the Alliance and we look forward to supporting these innovators in their innovation journey.”
Over the next six months, the innovators will work closely with the Janus Allies team and partners to support the scaling of their solutions and accelerate adoption across the Alliance. The Janus programme offers a mix of in-person and virtual training: workshops, lectures, mentorship, and guidance aimed to support their dual-use strategies. By working with experts from defence innovation ecosystems in the UK and the wider NATO alliance, the 2026 cohort will be prepared for defence procurement while broadening their commercial opportunities. The strongest dual-use ventures learn to align mission and margin, and the London site is set up to help them do exactly that.
More about the NATO DIANA 2026 Innovators:
All the companies selected to start in January 2026, will receive contractual funding and gain access to DIANA’s expanding network of 16 accelerator sites and more than 200 test centres across the 32 NATO nations. They will be working on solutions across 10 areas drawn from key priorities identified by Allies.
They are:
- Energy and Power
- Advanced Communication Technologies
- Contested Electromagnetic Environments
- Human Resilience and Biotechnologies
- Critical Infrastructure and Logistics
- Operations in Extreme Environments
- Maritime Operations
- Resilient Space Operations
- Autonomy and Unmanned Systems
- Data Assisted Decision Making
Information about the companies can be found at 2026 Cohort of Companies. For further information, please contact .
About NATO DIANA
NATO DIANA finds and accelerates cutting-edge technologies to deliver battle-winning defence and security solutions for the Alliance, while fostering deep-tech innovation. As a cornerstone of NATO’s innovation and technology strategy, DIANA brings together world-class talent and the latest advancements to maintain the Alliance’s technological edge. Leveraging a network of leading accelerator sites, test centres, expert mentors, and Allied expertise across 32 nations, DIANA empowers innovators working at the intersection of defence readiness, commercial potential, and technological breakthroughs.
About Janus
Named after the Roman god of duality to reflect its approach to support dual-use applications, the Janus consortium is a four-partner, delivery-ready consortium with skills and expertise across business support and growth, science and technology, defence and security and deeptech investment. Led by the Defence and Security Accelerator, part of UK Defence Innovation (UKDI-DASA), Janus is a consortium in partnership with IoT Tribe, a specialist deeptech accelerator ecosystem; Atmos Ventures, a trans-Atlantic deeptech and defence investor; and the SETsquared Partnership, a dynamic collaboration between six leading research-led UK universities. Janus aims to enhance the productivity and competitiveness of NATO’s defence industrial base and expand the range of innovative capabilities available for acquisition and deployment by civilian, defence and security customers in the UK and internationally by strengthening the pipeline of talent and new, innovative companies operating in the defence and security markets. (Source: https://www.gov.uk/)
10 Dec 25. Saab build a ‘software-defined’ aircraft fuselage.
The process is said to reduce the number of parts by at least a factor of 100, replacing riveted machine parts with organic structures.
- Saab and Divergent Technologies use software, robotics and additive manufacturing to build an aircraft fuselage, ditching traditional tooling practices
- The platform, whose purpose is yet to be determined, is scheduled to fly sometime next year
- Saab anticipate building more than 1,000 aircraft fuselages per year in the future
- These new digital engineering methods are beginning to scale up under Divergent across the continental United States and later Europe
Saab has announced its construction of an aircraft fuselage using digital manufacturing techniques for the first time with the help of the California-based Divergent Technologies.
In a press briefing on 9 December, business executives from both companies revealed that the frame was produced using a combination of software, robotic assembly and laser powder fusion additive manufacturing to produce several parts that later fit together to form a single, interlocking fuselage. According to Axel Bååthe, head of Saab’s internal startup, The Rainforest, set up to ‘defy conventional approaches’ and drive innovation, the uncrewed autonomous aircraft is scheduled to fly sometime in 2026. It is five metres in length, one metre wide, and 60cm high. It will have a payload capacity of roughly 200 kilogrammes. While the Saab team have not yet pinned down a role for the platform that will take shape next year – combat, ISR, multi mission – the company claim that this new development process is a “world-first” endeavour.
What has changed?
Until now, industrial practices have been limited by simpler Euclidean geometry which made the the shape of a platform limited by what can be stamped, molded, or bent. In a shift away from this practice, the transatlantic team is pursuing what is called ‘software-defined’ manufacturing, named after the central focus on software, which can make any design changes by updating a file and hitting print. Divergent’s printer capacity is around 700 x 700 x 835 millimetres in terms of the volume that can be leveraged for a single individual part. However, Divergent’s chief executive Cooper Keller assured: ‘we can extend the benefits of… additive manufacturing into structures that are far larger than that.’ Still, this newfound flexibility of the software-defined approach allows for considerable changes to be made to a design to meet multiple mission sets in the battlespace. Saab identified this one-system-many-missions requirement, particularly when it comes to military uncrewed systems (UxS). In contrast, current manufacturing techniques mean it would cost ms of dollars in new physical jigs to alter a design. Traditional manufacturing tends to add extra weight due to the nature of the construction process with straight lines and perfect circles. Instead, software allows for topology optimisation, meaning engineers can reduce this extra weight, leading to concepts that appear more naturalistic and organic as seen by the skeletal fuselage.
‘We see compared to a traditional fuselage, a part reduction of over 99% if we count all type of attachments, fasteners, rivets’ noted Bååthe. ‘I think nature is very, very good at at optimisation and creating only the structure required per kilogramme of weight that needs to solve the task at hand.’
Divergent factories
Right now, there is only one Divergent factory with all of these new production systems based in Torrance, California, Keller told Airforce Technology. However, the US company is currently ‘breaking ground’ on a second facility with plans to build five of these digital manufacturing factories across the US over the next two years. When asked about introducing the concept to Europe, Keller confirmed that the first factory will come to the European Union by 2028, ‘but it could happen sooner’ he suggested. ‘The factories are extremely deployable,’ Keller continued. ‘The equipment that we have built is is intended to be launched at scale and at rate. So we’ve built the printers such that they can be deployed rapidly and build the systems around them such that they can be deployed rapidly as well.’ (Source: airforce-technology.com)
10 Dec 25. IFS, the leading provider of Industrial AI software, today announced the release of IFS Cloud 25R2, applying the very latest in AI innovation to the realities of hardcore, industrial work. The release introduces powerful new agentic AI capabilities, including IFS Loops Digital Workers that think, decide, and act across systems, operating as integral members of the industrial workforce. Industrial AI is an operational reality. With 25R2, IFS demonstrates that when deployed at scale, Industrial AI multiplies human capacity against the backdrop of acute labour shortages. At its flagship event, Industrial X Unleashed, IFS revealed a foundational truth: generic AI fails in industrial reality. Industrial sectors face an unprecedented capacity crisis as £17 trillion of capital is deployed to create AI factories, rebuild ageing infrastructure, and stabilise volatile supply chains. Meanwhile, ms of industrial jobs sit unfilled and 50% of the industrial workforce is due to retire in the next five years, taking critical experience and expertise with them. IFS Cloud 25R2 addresses this directly with applied Industrial AI and Digital Workers that have the potential to expand industrial workforce capacity infinitely. Speaking at Industrial X, New York, Pedro Buhigas, CIO at Kodiak Gas Services, IFS customer, said: “If half of our workforce engages with the [IFS Loops] agent once per day, that’s three m dollars a year of ROI. More importantly, that’s ninety thousand hours we can give back to field service technicians to do their job.” With 25R2, IFS.ai expands its embedded intelligence and Digital Workers across the IFS Cloud suite, launching new AI-driven capabilities in its Enterprise Resource Planning (ERP), Enterprise Asset Management (EAM), and Field Service Management (FSM) solutions that make AI a true co-worker with contextual knowledge for every role.
Christian Pedersen, Chief Innovation Officer, IFS, said: “The strength of our solutions lie in their application—AI deeply embedded into the complex processes and workflows of industry to work autonomously, intelligently, and profitably. Generic, consumer-grade, AI tools simply can’t cut it in these environments. This is what attracts world-leading AI partners to work with us as they seek to expand in the industrial space. It’s why customers trust us to transform their operations. This is the next frontier in Industrial AI, and IFS is defining it.”
Ending the Invisible Work Problem – the Next Generation of Automation
Industrial organisations face a hidden productivity drain: “invisible work”—repetitive, time-consuming tasks that consume 40-60% of field and operations staff capacity, but drive minimal strategic value. These repetitive workflows (order processing, inventory management, maintenance scheduling, data entry) delay critical operations, result in unplanned downtime, prevent first-time fixes, and consume hours that frontline experts could spend on high-value judgement calls. IFS Loops Digital Workers represent the next generation of automation—advanced software agents that work alongside teams. They are embedded to execute complex workflows across systems, streamline repetitive processes, and deliver continuous operational value. All within a secure, governed, and fully auditable environment built for enterprise scale. IFS Loops Digital Workers are fundamentally different from consumer-grade automation tools. They:
- Think – Embedded with domain knowledge specific to industrial operations (maintenance protocols, supply chain constraints, asset-specific rules)
- Decide – Autonomous execution within governed parameters; human-in-the-loop for exception management
- Act – Execute complex workflows across systems 24/7 – no downtime, no handoffs
- Remain Auditable – Full traceability and governance for mission-critical and regulated industries
Industrial AI is expanding the workforce, not replacing it. Digital Workers multiply human capability when labour shortages and infrastructure demands have never been greater. The first five Digital Workers available are:
- Customer Order Manager – Accelerates order processing, reduces errors, and ensures accurate, end-to-end order fulfillment
- Supplier Order Manager – Ensures supplier orders are accurate, on time, and coordinated, reducing delays and operational risk
- Inventory Replenisher – Reduces stockouts and overstock by automatically monitoring and replenishing inventory
- Operations Analyst – Provides teams with consolidated, actionable information from multiple sources
- Material Replenisher – Ensures critical materials are available on time, preventing production or service delays
Cathie Hall, Chief Product and Customer Officer, IFS, commented: “Our commitment to customers is to embed industrial-focused AI where it matters most—in the daily workflows of field technicians, maintenance planners, and operations teams. We’re ensuring that what we build is immediately adopted and delivers measurable impact, all with AI at the core. This reflects confidence in our technology and our ambition to lead the market by operating with deeper customer connection than anyone else.”
AI Embedded for Real-Time Orchestration of Industrial Operations and Supply Chain
Alongside Digital Workers, IFS Cloud 25R2 embeds applied Industrial AI throughout the customer journey:
- Field Service Management – Technician-focused AI tools boost productivity and first-time fix rates. IFS.ai Copilot provides instant information and key answers in the field. Work Briefing Generation enhances preparation and reduces oversights with an AI-generated job summary, consolidating critical task information, while Service Report Summarisation accelerates customer sign-off with clear, AI-generated summaries.
- Enterprise Asset Management – AI-driven capabilities improve maintenance accuracy, reduce downtime, and enhance planning precision. The Work Task Template Optimiser utilises AI-driven insights to improve maintenance instructions. New Work Order Reporting: Data Population allows technicians to enter short summaries or voice notes that automatically populate key details. The FMECA Data Enhancer accelerates reliability analysis with AI-driven suggestions for failure modes and causes.
- Enterprise Resource Planning – AI enhancements strengthen planning accuracy, inventory control, and financial agility across operations. Manufacturing gains AI-powered Material Requirements Planning (MRP) Simulation for multi-scenario demand planning, Sales Price Elements for dynamic pricing accuracy, and First Article Inspection for streamlined compliance workflows. Finance benefits from automated supplier invoice data capture and intelligent business planning baselines.
- Aviation Maintenance – AI-powered capabilities accelerate maintenance operations and improve part selection accuracy. The new IFS.ai Smart Part Finder delivers context-aware part suggestions using structured IPC data and AI, reducing search time and improving accuracy to accelerate aircraft return-to-service.
“[With IFS] it wasn’t just about the technology, it was about business processes, operating best practices, and business acumen. My team was totally energised; we had junior through to senior members all in the same room, and it allowed us to stop, innovate, and streamline processes in flight. Through that transition and technology partnership, we drove 30% savings to the bottom line—proof of how simplifying complexity pays off,” Tony Alloway, VP North American Operations, BGIS, IFS customer, speaking at Industrial X Unleashed.
Sustainable and Profitable Growth
IFS Cloud 25R2 continues to embed sustainable practices automatically, while driving financial returns for customers. New AI-powered KPI Narrative Generation and enhanced emissions tracking integrate sustainability into every operational decision—bringing visibility to the forefront rather than treating it as a month-end reporting exercise. This results in companies strengthening compliance and sustainability reporting, while proving that profitability and sustainability advance together. IFS Cloud 25R2 is now available. For more information about IFS Loops Digital Workers and the latest release, visit here: https://www.ifs.com/ifs-cloud/ifs-cloud-release
08 Dec 25. GKN Aerospace to Expand Additive Manufacturing Capabilities in Norway.
- GKN Aerospace to invest in advanced additive manufacturing capabilities at its engines centre of excellence in Kongsberg
- Norwegian Catapult Manufacturing Technology in Kongsberg and The Industrial Growth Company (SIVA) to co-invest NOK 12 m (almost GBP1 m) to strengthen Norway’s position in sustainable industrial innovation
- Partnership accelerates industrial adoption of additive manufacturing and supports GKN Aerospace’s global additive expansion strategy
GKN Aerospace Norway and Norwegian Catapult Manufacturing Technology in Kongsberg (Kongsberg Technology Cluster) have signed a strategic agreement to invest in and expand advanced additive manufacturing capabilities at GKN Aerospace’s engines facility in Kongsberg. Additive manufacturing reduces material waste, shortens supply chains, and lowers environmental impact. Through this collaboration, Norwegian Catapult and GKN Aerospace will accelerate industrial adoption of additive manufacturing and build a platform for advanced, sustainable additive manufacturing in Norway. This agreement marks the next step in the continued expansion of GKN Aerospace’s global additive manufacturing capability, following recent investments in Sweden and the USA. By partnering with Norwegian Catapult, GKN Aerospace is reinforcing its strategy to expand capacity, accelerate innovation, and bring advanced additive manufacturing closer to customers, while simultaneously supporting Norway’s ambition to lead in sustainable industrial innovation and development.
Sébastien Aknouche, Senior Vice President, Material Solutions, GKN Aerospace, added: “Additive manufacturing is a cornerstone of our vision for the future of aerospace. This partnership with Norwegian Catapult enables us to fully industrialise additive technology and bring sustainable, high-performance solutions closer to our customers.”
Ole B. Hoen, Head of Kongsberg Technology Cluster, said: “Together with GKN Aerospace, we are building a platform for future-oriented manufacturing in Norway. This collaboration combines world-class expertise with a shared ambition to drive technological progress and support a greener industry. By co-investing in this initiative, we ensure that the unique infrastructure and competence GKN Aerospace now gets in Kongsberg becomes available to the broader Norwegian Industry who will follow in GKN Aerospace’s footsteps through learning and testing in the Catapult”
The agreement supports GKN Aerospace’s long-term strategy to expand its global additive manufacturing capabilities, including broader investments in advanced machinery, hardware, and industrial infrastructure. This growth is central to the company’s technology roadmap. GKN Aerospace’s proprietary additive manufacturing technologies enable breakthrough methods for producing critical components for many of the world’s leading aerospace engines. Strengthening its centre of excellence in Kongsberg enhances the company’s ability to meet rising demand from engine OEMs and reinforces GKN Aerospace’s commitment to innovation and sustainability in next-generation engine manufacturing. (Source: ASD Network)
10 Dec 25. Wave Sciences has been selected as one of 150 innovators worldwide to join the NATO DIANA 2026 Challenge Programme Cohort. The programme will accelerate the development of its spatial acoustics engine for detecting drones using sound, at longer distances – where radar, cameras and radio-based systems struggle and are susceptible to counter-measures. A key criteria for winning the challenge is the technology’s ability to be adapted for use in civilian settings, unlocking the potential of spatial acoustics in sectors from critical infrastructure to robotics, healthcare and education.
DIANA is NATO’s accelerator for dual-use emerging technologies, giving selected companies funding, expert support, and access to more than 200 test centres across the Alliance.
Wave Sciences was chosen for GLIMPSE®, its patented physics-based AI engine for passive 3D spatial audio. The company will now advance and apply GLIMPSE to drone detection in cluttered and contested environments as part of the DIANA programme. Originally developed for forensic audio – the technology is used to isolate a single clear voice from the background of chaotic, real-world recordings and has been proven previously in murder trials. GLIMPSE has since demonstrated its ability to extract and clarify sound in other challenging environments such as underground and underwater. Now, DIANA will partner with Wave Sciences to develop this technology for distance drone detection in battlefield environments, some of the harshest in the world.
Redefining Acoustic Detection
Acoustic drone detection is not new, but today’s systems face the same limitations that GLIMPSE overcomes in murder investigations: the ‘cocktail party problem,’ where critical signals are lost in noise, reflections and competing sounds. GLIMPSE is designed to plug into and strengthen current systems, solving acoustic challenges they cannot, and drawing on a physics-based AI method to isolate a single sound in environments – and from distances – once considered impossible to overcome.
Instead of relying on sight or radio signals, GLIMPSE is a way to detect what other sensors can’t – using sound. Like the Portrait Mode effect on your digital camera, it isolates a subject, but through audio. This mode creates a 3D focus effect regardless of the sound, distance, or chaotic environment, enhancing the subject while suppressing background noise.
“GLIMPSE can effectively hear the unhearable. It’s a transformational technology that extends capabilities beyond what was previously thought possible,” said J. Keith McElveen, Founder of Wave Sciences. “Through DIANA, we can now extend and validate this innovation in the most difficult, noisy, and unpredictable airspace environments where current systems struggle.”
What DIANA Unlocks
As part of the six-month accelerator, Wave Sciences will extend and test GLIMPSE at long distances at NATO-aligned sites and receive:
- €100,000 in funding
- Access to 200+ test centres in Europe and North America
- Expert support on defence and dual-use applications
- Pathways to scale across NATO’s 32-nation market
Beyond Defence: Unlocking the Potential of “Spatial Acoustics”
Wave Sciences was selected because its capability impact spans multiple civilian and commercial markets, offering the potential for many new applications. This includes sectors such as:
Critical Infrastructure, Smart Cities & Public Safety
Airports, power stations, transport hubs, prisons, and water systems could use GLIMPSE as a passive, low-cost protection innovation that works regardless of visibility or interference. It could also support smart CCTV cameras and acoustic anomaly detection in busy urban environments without relying on cameras or line-of-sight sensors.
Robotics & Industrial
Autonomous robots often struggle in crowded environments. GLIMPSE could help machines to hear with precision and reliably interpret voice ID and industrial sounds amidst heavy environmental clutter in warehouses and on factory floors.
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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.
https://oxleydevelopments.cmail20.com/t/t-l-cdhkulk-yujhutkljd-r/
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.
https://oxleydevelopments.cmail20.com/t/t-l-cdhkulk-yujhutkljd-y/
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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