Europe 

KIELCE, Poland — MBDA and Poland’s Military Institute of Armament Technology (WITU) are advancing the Counter Mass Interceptor (CMI), a low-cost, supersonic surface-to-air missile designed to counter mass attacks involving one-way attack drones, ISR drones, helicopters and cruise missiles. The programme follows successful seeker field trials in Poland in September 2026, which evaluated the infrared seeker against representative drone targets across several engagement scenarios. The results have cleared the way for the seeker to be integrated into a prototype missile designed by WITU. The first firing campaign is planned for 2027. The CMI is designed for high-volume production and to reduce the cost imbalance between relatively inexpensive drones and the more costly interceptors normally used against them. The missile is intended to engage targets at ranges and altitudes exceeding 6 kilometres. The interceptor weighs approximately 53 kg, is about 2.3 metres long and has a 122 mm diameter. It uses an infrared seeker and carries a blast-fragmentation warhead. MBDA first presented the CMI at the Farnborough International Airshow in July 2026, alongside its surface-launched ASRAAM offering.   Polish Design with MBDA Seeker MBDA and WITU announced their cooperation at the MSPO 2026 defence exhibition in Kielce, where they signed a broader memorandum of understanding covering missile research. Under the CMI programme, WITU is responsible for the missile design, while MBDA provides the seeker technology. The arrangement gives Poland a major role in developing the weapon rather than limiting its participation to local assembly. MBDA has also indicated interest in producing the seeker in Poland, subject to approval by Polish authorities. WITU Director Colonel Paweł Sweklej said the cooperation combines a fully Polish missile design with MBDA's seeker technology and supports the development of Polish technologies for European missile solutions. Chris Allam, UK Managing Director of MBDA, said the project demonstrates MBDA's commitment to Poland and builds on its support for Poland's layered air-defence capability through the PILICA+ and NAREW programmes, including technology transfer. The partnership also comes under the Northolt Treaty, signed by British Prime Minister Keir Starmer and Polish Prime Minister Donald Tusk in May 2026 to strengthen defence cooperation and support joint development of next-generation munitions and European supply-chain resilience.   Part of Poland's Layered Air Defence The CMI is being developed as an additional high-volume layer within Poland's expanding air-defence and counter-UAS capability. Poland is developing a combination of missiles, guns, electronic warfare systems, radars and other effectors to address different types of aerial threats. The CMI is intended for the lower-cost, high-volume end of this architecture, while systems including Piorun, CAMM and CAMM-ER provide other air-defence capabilities. MBDA already has a significant role in Poland through NAREW and PILICA+. WITU is also participating in the European Hypersonic Defence Interceptor System (HYDIS) programme, which focuses on future interceptor technologies for hypersonic and ballistic threats. The immediate focus of the CMI programme is prototype integration followed by the planned 2027 firing campaign. MBDA and WITU have not disclosed a unit price, production target or entry-into-service date.

Read More → Posted on 2026-09-13 16:16:30
 India 

New Delhi — The Defence Research and Development Organisation (DRDO) has demonstrated and implemented indigenous Gallium Nitride (GaN) semiconductor technology for high-frequency defence applications, including next-generation radars and electronic warfare systems. The development is part of India’s efforts to build domestic capability in advanced semiconductor technology. The technology was highlighted in the Ministry of Defence’s annual report for 2025-26. It covers advanced components used to generate, amplify, receive and control high-frequency signals. Such components have applications in radar, electronic warfare, communications, intelligence, surveillance, reconnaissance and unmanned systems.   Indigenous GaN Technology for X-Band Applications A single indigenous GaN chip measuring 3.5 × 3 mm can deliver up to 30 watts of power and operate at speeds reported to be 300 times faster than silicon. The development includes indigenous GaN Monolithic Microwave Integrated Circuit (MMIC) technology for applications up to the X-band. The technology also includes indigenously fabricated S-band GaN High Electron-Mobility Transistor (HEMT) power bars, power amplifiers, low-noise amplifiers and switch MMICs, which have been designed, fabricated and demonstrated. GaN is a semiconductor material suited to high-frequency and high-power applications. Its use in radar transmitters and electronic warfare systems allows the development of compact components capable of handling high-frequency signals and significant power levels.   SSPL Develops GaN and SiC Technology The latest progress builds on work by DRDO’s Solid State Physics Laboratory (SSPL). In November 2024, the Ministry of Defence said SSPL had developed indigenous processes for manufacturing 4-inch-diameter Silicon Carbide (SiC) wafers and fabricating GaN HEMTs rated up to 150 watts and MMICs up to 40 watts for applications up to X-band frequencies. The Ministry said GaN/SiC technology can provide improved efficiency, reduced size and weight, and enhanced performance. It identified the technology as important for future combat systems, radars, electronic warfare, communications, intelligence, reconnaissance and unmanned systems. Limited production capability for indigenous GaN-on-SiC MMICs has also been established at the Gallium Arsenide Enabling Technology Centre (GAETEC) in Hyderabad. According to the Ministry, these multifunctional MMICs have applications in strategic systems, space, aerospace and 5G and satellite communications.   iDEX Brings Private Industry Into GaN Development The development is also linked to the government’s Innovations for Defence Excellence (iDEX) programme. On December 1, 2023, iDEX-Defence Innovation Organisation signed its 300th contract with Agnit Semiconductors Private Limited for the design and development of advanced GaN semiconductors for next-generation wireless transmitters used in defence applications, including radars and electronic warfare jammers. The Ministry of Defence said at the time that almost all GaN components were being imported because the technology is sensitive and cutting-edge, with exports controlled or restricted by several countries. The project aimed to design, develop and manufacture GaN components in India using indigenous technology. The contract was signed in New Delhi by then Additional Secretary (Defence Industries Production) and Defence Innovation Organisation CEO T Natarajan with Agnit Semiconductors Private Limited. Former Defence Secretary Giridhar Aramane and senior civil and military officials were also present. The development of indigenous GaN and SiC-based MMIC technology, together with limited production capability at GAETEC and industry participation through iDEX, is intended to strengthen India’s domestic semiconductor capability for defence and other strategic applications.

Read More → Posted on 2026-09-13 16:00:05
 U.S 

WASHINGTON / ALBUQUERQUE, N.M. — The U.S. Air Force Research Laboratory (AFRL) has awarded BlueHalo LLC an indefinite-delivery/indefinite-quantity contract with a ceiling of $99,832,117 for the Leveraged Orbital Battlespace Optimization (LOBO) research and development program. The five-year contract is intended to support research aimed at advancing scientific knowledge and state-of-the-art technology for space systems. The contract is expected to run through August 29, 2031. Work will be carried out in Huntsville, Alabama, and at Kirtland Air Force Base, New Mexico. AFRL’s Space Vehicles Directorate at Kirtland is the contracting activity. At the time of the award, the Air Force obligated $1,696,597 in fiscal 2026 research, development, test and evaluation funds. The funding supports two initial task orders with a combined ceiling of $20,178,910. Additional work can be placed through future task orders under the contract. The award followed a competitive solicitation that received one offer.   LOBO Program Details Remain Classified The public contract announcement provides limited information about the specific technologies or systems that will be developed under LOBO. The notice describes the effort broadly as research to advance scientific knowledge and state-of-the-art technology supporting space systems. The Air Force Research Laboratory and BlueHalo have not publicly released the technical details of the first two task orders, including the specific hardware, software or orbital platforms involved. BlueHalo has previously worked with AFRL in areas including autonomous space-based sensing, space situational awareness, battle-management command and control, and defensive counterspace technologies. The company has also developed space-based optical communications capabilities. In 2025, BlueHalo demonstrated a two-terminal optical communications system designed to simulate long-distance communications involving low-Earth, medium-Earth and geostationary orbits, advancing the system to Technology Readiness Level 6.   BlueHalo Now Part of AeroVironment The LOBO award comes after BlueHalo became part of AeroVironment Inc. (NASDAQ: AVAV). AeroVironment completed its acquisition of BlueHalo in May 2025 through an all-stock transaction valued at approximately $4.1 billion. BlueHalo is based in Huntsville, Alabama, and Arlington, Virginia, while the LOBO work will be performed at its Huntsville operation and Kirtland Air Force Base. The new contract provides AFRL with a multi-year contracting vehicle for research related to the optimization of the orbital battlespace. While the contract has a maximum value of nearly $100 million, the amount ultimately spent will depend on future task orders issued during the contract period.

Read More → Posted on 2026-09-13 15:40:16
 Europe 

KIELCE, POLAND — Lockheed Martin has displayed its Vectis unmanned combat aircraft at the 34th International Defence Industry Exhibition (MSPO 2026) in Kielce, presenting the Skunk Works-developed Collaborative Combat Aircraft as a potential complement to fifth-generation fighters such as Poland’s F-35A. Poland is building a fleet of 32 F-35A fighters, and Vectis is designed to extend the capabilities of crewed aircraft by distributing sensors, weapons and electronic warfare functions across networked platforms.   Vectis development and propulsion Lockheed Martin publicly unveiled Vectis on September 21, 2025, describing it as a Group 5 Collaborative Combat Aircraft developed by its Skunk Works division for U.S. and allied forces. The clean-sheet, internally funded programme was already under development when it was revealed, with parts ordered and company funding committed to a rapid design-build-fly schedule. Lockheed Martin is targeting a first flight in 2027. In December 2025, the company selected the Williams International FJ44-4 turbofan, which provides more than 3,600 pounds of thrust, to reduce propulsion risk as the aircraft moves toward flight testing.   Missions and low-observable design Vectis is designed for precision strike, intelligence, surveillance and reconnaissance targeting, electronic warfare, and offensive and defensive counter-air missions. It also incorporates multi-domain connectivity and an open-system architecture. The aircraft uses a tailless configuration and blended shaping intended to support low observability. Lockheed Martin has not disclosed exact figures for its radar cross-section, maximum speed, combat radius or internal weapons capacity. The company says Vectis is smaller than an F-16 but larger than its compact CMMT missile-like drones. The aircraft could allow F-35s to operate with additional sensors, weapons and electronic warfare capabilities distributed across the formation. A Vectis operating farther forward could potentially collect targeting information, support electronic warfare or carry additional weapons while crewed aircraft remain at greater distance from heavily defended areas.   Relevance to Poland The concept is particularly relevant to Poland as it develops its F-35 fleet and broader networked combat capabilities. In contested airspace, autonomous aircraft could provide additional capabilities without requiring every new combat platform to be a crewed fighter. Vectis is being positioned toward the higher-survivability end of the CCA market. This differs from the first U.S. Air Force CCA Increment 1 platforms, General Atomics’ YFQ-42A and Anduril’s YFQ-44, for which engineering, manufacturing, development and production contracts were awarded in June 2026. Lockheed Martin has not disclosed a procurement decision involving Poland. The 2027 first flight will provide an opportunity to demonstrate Vectis’ aerodynamic performance, propulsion, autonomy and mission-system integration as development continues.

Read More → Posted on 2026-09-13 15:26:43
 Space & Technology 

WARSAW — A Polish software developer has launched Zuckoff, an app that detects nearby camera-equipped smart glasses by scanning their Bluetooth signals. The app was developed by 30-year-old software engineer Paweł Szydłowski and has gained approximately 5,000 users in its first month on Apple's App Store. The app was created amid growing privacy concerns over the use of smart glasses to record people without their knowledge. It primarily detects Meta's Ray-Ban smart glasses, developed in partnership with EssilorLuxottica. The glasses look similar to conventional eyewear but include a forward-facing camera, microphones and onboard artificial intelligence.   How Zuckoff Works Zuckoff scans Bluetooth Low Energy broadcasts and compares them with a database of known smart-glasses signatures. Szydłowski built the database by purchasing several models and recording their Bluetooth fingerprints, including device identifiers, manufacturer codes and service UUIDs. The project lists codes including 0x0D53 for Luxottica, covering Ray-Ban Meta and Oakley Meta devices, 0x058E for Meta Platforms Technologies wearables, and 0x03C2 for Snap Spectacles. The app can also flag some devices based on advertised product names, but with lower confidence. The free version provides an estimated proximity reading while scanning. Zuckoff Pro adds background detection, push notifications, a Home Screen widget, Lock Screen Live Activity, longer sighting history and CSV export. It costs $9.99 annually, with a free trial week, or $24.99 for a lifetime license with Family Sharing. Scanning takes place on the device. The app does not require an account or access to personal data, location, camera or microphone. Logs remain local unless users export them or voluntarily report an unidentified device.   Detection Limitations Zuckoff can detect compatible hardware but cannot determine whether the camera is recording or identify the wearer. Bluetooth strength provides only a rough proximity estimate and does not show the device's direction. Signals can be stronger when glasses start up, pair or are removed from their charging case, while some devices may broadcast less noticeably during normal use. Therefore, an alert indicates that compatible camera-equipped glasses may be nearby, not that recording is taking place. The app currently supports iOS 18 or later, while an Android version is in closed testing.   Privacy Concerns Privacy concerns around smart glasses have increased following examples of people being recorded without their knowledge. In late 2024, two Harvard students demonstrated I-XRAY, which used Meta Ray-Ban glasses to stream video while software performed facial recognition to identify people. Meta's glasses use a small LED to indicate camera activity. After discovering that some users had covered or removed the indicator, Meta disabled the cameras on thousands of affected glasses. The company said those devices represented less than 0.1% of glasses sold and introduced software updates to improve detection of attempts to obstruct or damage the LED. It also removed online instructions showing how to bypass the indicator. European Union regulators have reportedly contacted Szydłowski for information about Zuckoff's functionality and privacy implications, although details of the reported inquiry have not been independently confirmed. Zuckoff is an independent project with no affiliation with Meta, Luxottica, Ray-Ban, Oakley or Snap. Szydłowski continues to expand its detection database using signals collected from physical hardware and accepts reports of additional smart-glasses models.

Read More → Posted on 2026-09-13 15:20:23
 India 

NEW DELHI — The Defence Research and Development Organisation (DRDO) successfully conducted the maiden flight trial of its indigenous Supersonic Target (STAR) missile in November 2025, according to the Ministry of Defence’s annual report. The STAR programme is designed to provide the Indian armed forces with a high-speed aerial target for testing and training air-defence systems, radars, tracking equipment and missile interceptors against supersonic threats. The system is powered by an indigenous Liquid Fuelled Ramjet (LFRJ) engine developed by the Defence Research and Development Laboratory (DRDL), Hyderabad. The STAR uses a two-stage propulsion system, with a solid rocket booster providing initial acceleration before the liquid-fuelled ramjet takes over for sustained supersonic flight.   Key Development Milestones During 2025, DRDO completed qualification testing of the STAR's onboard avionics, including its navigation, flight-control and telemetry systems. The dedicated launcher and catapult system were also developed and qualified. Static propulsion testing was completed up to the stage of ramjet ignition before the November 2025 flight trial. The STAR is designed to operate at speeds of Mach 1.8 to Mach 2.5, with an altitude range of approximately 100 metres to 10 kilometres. Its stated operational range is 55 to 175 kilometres, while available programme information gives flight durations of 50 to 200 seconds. The system can conduct different flight profiles, including low-altitude and sea-skimming trajectories, allowing air-defence systems to be tested against high-speed targets under different conditions. The programme also supports India's development of indigenous liquid-fuelled ramjet technology. Work has been reported on possible air-launched configurations, although the primary role of STAR remains that of a supersonic target. The successful November 2025 flight, together with the completion of avionics qualification, launcher and catapult development, and static ramjet testing, represents significant progress in the STAR programme.

Read More → Posted on 2026-09-13 14:42:03
 U.S 

WASHINGTON — The U.S. Department of State has approved a possible $140 million Foreign Military Sale to Argentina covering four refurbished UH-60L Black Hawk utility helicopters and associated equipment. The Defense Security Cooperation Agency (DSCA) notified Congress of the proposed sale on September 10 under Transmittal No. 26-79. If finalized, the deal would give the Argentine Army its first Black Hawk helicopters and support the replacement of its aging Bell UH-1H Huey fleet.   Equipment and Support Argentina has requested four UH-60Ls and two General Electric T700-GE-701D engines. The package includes attitude heading reference systems, APX-100 and APX-123 Identification Friend or Foe (IFF) transponders, navigation and instrument landing system receivers, automatic direction finder receivers, AN/ARC-220 high-frequency radios and ARC-186 very-high-frequency radios. It also includes Garmin GTN-750 GPS systems, Cobham C-5000 multiband radios, EBC 406HM emergency locator transmitters, internal auxiliary fuel tanks, fast-rope insertion and extraction systems, rescue hoists, cargo hooks and Bambi buckets. Maintenance and aircrew training devices and software, helmets, transportation, organizational equipment, spare and repair parts, support equipment, tools, test equipment, technical data and publications, personnel training, and U.S. government and contractor engineering, technical and logistics support are also included. Sikorsky, a Lockheed Martin company based in Stratford, Connecticut, is the principal contractor. The U.S. government said no offset agreement is currently known and that the sale would not require additional U.S. government or contractor personnel in Argentina. It would also have no adverse impact on U.S. defense readiness. The State Department said the proposed sale would strengthen Argentina's ability to conduct border security, counter-transnational crime, and humanitarian assistance and disaster-response missions. It also said the sale would not change the basic military balance in the region.   Replacement for Argentina's Hueys Around 50 UH-1Hs remain in the Argentine Army inventory. The service first launched a tender in December 2024 for three used UH-60s, but canceled it in January 2025 because of budget constraints. In June 2026, Argentine Army Chief of Staff Lieutenant General Oscar Santiago Zarich indicated that the service would acquire an initial four Black Hawks still in U.S. service, with plans to expand the fleet over time. Argentina already has experience with the Black Hawk. A single VIP-configured aircraft has operated in the presidential fleet since 1994 and was transferred to the Argentine Air Force in 2024. The Army itself has not previously operated the type.   Part of Wider Military Modernization The UH-60L is an earlier model than the UH-60M currently produced for the U.S. Army and many foreign customers. Sikorsky offers modernization programs for older UH-60Ls, including digital cockpit and avionics upgrades, providing a possible future upgrade path for Argentina. The helicopter acquisition is part of Argentina's wider military modernization program, which also includes 24 surplus F-16s from Denmark and four P-3 Orion maritime patrol aircraft from Norway. The $140 million figure is the estimated value of the potential sale, not a finalized contract price. The final cost could be lower depending on the equipment and services ultimately purchased. No delivery schedule has been set, and Argentina and the U.S. still need to complete negotiations and finalize the Letter of Offer and Acceptance. U.S. Ambassador to Argentina Peter Lamelas said the helicopters would be refurbished and delivered in stages.

Read More → Posted on 2026-09-13 14:22:35
 World 

TAIPEI — Taiwan has resolved a logistics issue involving the charging equipment for its first batch of U.S.-made ALTIUS-600M loitering munitions, after the original chargers were excluded because they contained Chinese-made components.   Charger Excluded Over Supply-Chain Rules The Republic of China Army (ROCA) received its first 291 ALTIUS-600M systems under the “Hunter Owl” project. The first deliveries were reported in August 2025 and the full delivery was completed by early 2026. The original chargers were not included in the U.S. Letter of Offer and Acceptance (LOA) because their components did not meet Taiwan’s “non-red” supply-chain policy, which excludes Chinese-made components from sensitive defense systems. The drones arrived with their batteries fully charged. Each system included one installed battery and one spare, with the batteries designed to retain their charge for up to two years.   U.S. Personnel Supported Charging While a compliant charger was being developed, U.S. technical personnel traveled to Taiwan to recharge the systems when required. The Army said charging support was included in the original LOA and was provided without additional cost. Anduril Industries, the manufacturer of the ALTIUS family, has now completed a charger that meets the non-PRC supply-chain requirement. Delivery of the new chargers is expected under the established procurement schedule.   Taiwan Begins Local Battery Production Taiwan and the United States have also established a non-red supply chain for ALTIUS batteries. Technology transfer has taken place, and a Taiwanese manufacturer has begun producing compatible batteries locally. DPP legislator Wang Ting-yu said the arrangement could eventually allow Taiwanese companies to supply batteries and chargers to other Anduril customers that require non-PRC components. KMT legislator Ma Wen-chun, meanwhile, questioned the logistics arrangements and the planned quantity of spare batteries. She noted that the spare battery inventory for the 291 systems was nearly eight times the number of airframes. The Army has requested a reduction in the spare battery order, which remains under U.S. review.   Taiwan Orders 2,032 More ALTIUS Systems The charger issue comes as Taiwan expands its unmanned weapons inventory through a NT$26.9 billion procurement of 2,032 additional ALTIUS systems. The order includes: 1,554 ALTIUS-700M anti-armor attack drones 478 ALTIUS-600ISR intelligence, surveillance and reconnaissance drones Taiwan's Ministry of National Defense announced the contract at the end of August 2026. Initial deliveries are expected to begin in the fourth quarter of 2026, with the procurement scheduled for completion by June 2033. The expansion follows earlier ALTIUS-600M live-fire testing against maritime targets, during which Taiwan reported a 100 percent hit rate. The development of a compliant charger and local battery production is expected to address the supply-chain issue identified with the first ALTIUS-600M delivery as Taiwan moves ahead with its larger procurement.

Read More → Posted on 2026-09-13 14:07:37
 World 

TEHRAN/MOSCOW — Iran has asked Russia to supply advanced Geran-4 and Geran-5 jet-powered drones for use in its conflict with Israel and the United States, according to the Financial Times. The report cited Western security officials and a source close to the Kremlin. The request was made in 2026 and involves newer versions of the Geran drone family, which developed from Iran’s Shahed-136 strike drone. Iran supplied the Shahed-136 to Russia beginning in 2022, while Russia started domestic production under the Geran name in 2023 and continued upgrading the system based on experience from the war in Ukraine. Unlike earlier propeller-powered versions, the Geran-4 and Geran-5 use jet engines, allowing them to fly at higher speeds. The Geran-5 can reportedly reach up to 600 km/h, carry a warhead of up to 90 kg, and cover up to 1,000 km. It is also equipped with a thermal imaging camera, an AI-based guidance system and anti-jamming capabilities. The jet-powered drones have become more difficult for Ukrainian air defenses to intercept. Ukrainian forces reportedly intercept about 60 percent of the newer versions, compared with around 90–95 percent of older propeller-powered drones. Despite their higher speed and capabilities, they remain cheaper than cruise missiles such as Russia's Kalibr and Kh-101, allowing Russia to use them against a wider range of targets. Russia has expanded Geran production at facilities including the Alabuga Special Economic Zone in Tatarstan. Ukrainian military intelligence has reported production of around 3,000 Geran-4 and Geran-5 drones combined per month at peak periods. The Geran-5, which reportedly entered combat use in early 2026, has an airframe closer to a small cruise missile and uses a Chinese-made turbojet engine. Some reports have also indicated that it can be launched from aircraft such as the Su-25. Earlier in 2026, Western intelligence reported that Russia had sent drones, along with medicine and food, to Iran. Those deliveries were described as involving Geran-2 drones based on the original Shahed-136 design. Iran's reported request for the newer jet-powered Geran-4 and Geran-5 systems marks a further development in military cooperation between Tehran and Moscow. Neither Russian nor Iranian officials has publicly confirmed the specific request.

Read More → Posted on 2026-09-13 13:33:18
 World 

Black Sea — The Ukrainian Navy said on Saturday that one of its uncrewed surface vessels (USVs) destroyed a Russian uncrewed vessel in the Black Sea, describing the incident as the first naval battle in history between unmanned boats. According to the Ukrainian Navy, units of the Main Intelligence Directorate (GUR/HUR) detected the Russian vessel at an undisclosed location. A Ukrainian Sargan 3000 USV equipped with a remotely operated Kongsberg Protector 12.7 mm weapon station was then used to engage the target. The Navy released an 81-second video showing the encounter. The Sargan 3000’s onboard camera shows it acquiring and firing on the Russian USV. Around the 30-second mark, the footage switches to an aerial view from a nearby surveillance platform, although it is unclear whether that platform was crewed or unmanned. The Ukrainian vessel continues firing until parts of the Russian boat break away and it sinks.   Ukraine's Navy says a Sargan unmanned surface vessel destroyed a Russian unmanned boat with machine-gun fire in the Black Sea, the first-ever battle between unmanned surface vessels. Ukrainian Navy personnel operated in coordination with HUR. #Ukraine pic.twitter.com/Avg4ecz8m6 — NOELREPORTS 🇪🇺 🇺🇦 (@NOELreports) September 12, 2026   The Ukrainian Navy did not identify the Russian vessel in its initial statement. Some defense observers have identified it as an improved Orcan-type USV, also known as Zefir or Zephyr in some Russian sources. The identification and the Ukrainian claim have not been independently verified. The exact date and location were also not disclosed, although some reporting places the encounter in the northwestern Black Sea between Odesa and Crimea.   Sargan 3000 The Sargan 3000, meaning “needlefish” in Ukrainian, was introduced by Ukrainian President Volodymyr Zelensky in April 2026 as a multi-purpose platform that had undergone testing and entered service with the Ukrainian Navy. Some sources also refer to it as SeaWolf. The vessel is associated with Nordex and uses Kongsberg’s Protector remote weapon station. It has a low-profile hull designed to reduce radar signature and uses waterjet propulsion, with available descriptions indicating a diesel or hybrid engine. Reported specifications give it a length of 6.9 meters, width of 2.2 meters, an operational radius of up to 1,600 km, a payload capacity of 450 kg, and a speed of 40–55 knots. The Sargan 3000 can connect to Ukraine’s Delta situational awareness system for real-time video, telemetry and targeting data. It is also described as having redundant satellite communications, autonomous inertial and optical navigation for GPS-jammed environments, and electronic countermeasures. Its modular payloads can include machine guns, rockets, FPV drones, electronic warfare systems and mine-laying equipment.   Previous Combat Use The latest engagement follows the Sargan 3000’s previously reported combat use. In July 2026, the Ukrainian Navy said a Sargan 3000 sank the Russian FSB border guard ship Izumrud near Novorossiysk, with some reports placing the incident near Gelendzhik. Ukraine said there were dead and wounded among the ship’s crew and noted that Izumrud had participated in the November 25, 2018 Kerch Strait confrontation involving Ukrainian Navy vessels. It remains unclear from public statements whether the Sargan 3000 was used as a kamikaze vessel or weapons platform in that operation. The latest incident demonstrates the expanding role of armed USVs in the Black Sea. Ukraine has extensively used maritime drones against Russian naval assets and facilities, while Russia has also developed and deployed its own USVs. If confirmed, the engagement would represent a new use of maritime drones, with one armed uncrewed vessel being used to locate and destroy another. Both sides continue to develop USVs for attack, reconnaissance, patrol, electronic warfare and other missions.

Read More → Posted on 2026-09-13 13:01:04
 Europe 

PARIS — France has awarded initial contracts to Dassault Aviation, MBDA, Safran Aircraft Engines and Thales ahead of the planned launch of the Rafale F5 development phase in late 2026. The French Defence Procurement Agency (DGA) notified the contracts during the summer. The initial work is focused on reducing technical risks before the main development phase begins. The F5 is planned as a major modernization of the Rafale, with qualification expected around 2033, followed by entry into service with the French Air and Space Force and later the French Navy. The upgrade will support France’s future airborne nuclear deterrent through integration of the ASN4G fourth-generation hypersonic nuclear cruise missile. It is also intended to improve the Rafale’s ability to conduct first-entry missions in contested environments. A more open aircraft architecture will give France greater flexibility to introduce new capabilities and adapt the aircraft as requirements change.   New Radar, Navigation and Electronic Warfare Dassault Aviation will oversee a new very-low-drift inertial navigation unit using hemispherical resonator gyroscope (HRG) technology. The system is designed to maintain accurate navigation when satellite navigation signals are unavailable or disrupted. Thales will develop the RBE2-XG AESA radar, an evolution of the Rafale’s existing RBE2 radar. It is designed to provide higher power, longer detection range and improved tracking of targets with extremely low radar cross-sections. Increased computing capacity will support greater use of artificial intelligence for collaborative sensing, while the radar will retain the current RBE2’s mechanical footprint and include stronger cyber protection. Thales and MBDA France will also modernize the Rafale’s SPECTRA self-protection system. The upgraded digital architecture will improve threat detection, signal classification and electronic jamming across a broader electromagnetic spectrum. Thales will develop the Inter-Vehicle Data Link (IVDL), based on several years of DGA-funded research. The system is designed to provide high-bandwidth, resilient and difficult-to-detect communications between Rafale aircraft and accompanying uncrewed platforms while resisting jamming.   Safran Develops M88 T-REX Safran Aircraft Engines has received a contract for the preliminary design of the M88 T-REX engine. The upgrade is intended to increase maximum thrust by about 20 percent, from 7.5 tonnes to 9 tonnes. The T-REX will retain the M88-2’s basic dimensions, structure and modular architecture, as well as its low fuel consumption. The modular design will allow selected components to be replaced without removing the complete engine, helping reduce maintenance downtime. The Rafale F5 programme continues France’s approach of upgrading the fighter through successive standards rather than replacing the aircraft with a completely new design. More than 400 French companies are involved in the Rafale programme, supporting more than 7,000 direct and indirect jobs. Eight foreign customers have ordered 299 new-build Rafales and 24 second-hand aircraft. The F5 upgrade is intended to keep the Rafale aligned with French operational requirements for 2035 and beyond.

Read More → Posted on 2026-09-13 12:32:40
 World 

TAGANROG, Russia — Ukrainian forces carried out overnight drone strikes on September 12 against military and industrial targets in Taganrog, Rostov region, and Tolyatti, Samara region. Local reports, satellite imagery, monitoring groups and Ukrainian officials reported fires at several locations. In Taganrog, one of the main targets was the Atlant Aero facility at the former Taganrog Automobile Plant (TagAZ). According to Ukrainian military information and open-source reports, Atlant Aero conducts the design, production and testing of Russia’s Molniya (Lightning) strike-reconnaissance UAVs and produces components for Orion UAVs. Satellite imagery showed at least three impacts on workshops and warehouses, while Exilenova+ and other monitors reported fires and a burning storage tank. NASA’s FIRMS system also detected fire hotspots.   On the night of September 12, Ukraine's Defense Forces struck a key Russian defense industry facility—"Atlant Aero" in Taganrog."Atlant Aero" handles the full cycle of design, manufacturing, and testing for "Molniya" (Lightning) strike-reconnaissance UAVs, as well as components… pic.twitter.com/O5Bg3w8nM2 — Exilenova+ (@Exilenova_plus) September 12, 2026   The airfield and military housing area in Taganrog were also attacked. A fire is currently burning there. pic.twitter.com/DTz8ov5dxN — Exilenova+ (@Exilenova_plus) September 12, 2026   The Security Service of Ukraine (SBU) said its Alpha Special Operations Center, together with other Ukrainian Defense Forces units, struck an FPV drone production facility, two UAV storage warehouses, a fuel and lubricants storage tank, a Pantsir-S2 air-defense system and a P-18 Terek radar station. The SBU said the strikes reduced Russia’s UAV production and storage capacity. Fires were also reported near the Beriev Taganrog Aviation Scientific and Technical Complex and Taganrog-Yuzhny airfield. The Beriev complex maintains and modernizes A-50 airborne early warning and control aircraft, Be-series amphibious aircraft used by the Russian Navy, and Tu-95MS/MSM strategic bombers used to launch Kh-101 cruise missiles. Taganrog-Yuzhny is used for Beriev flight testing. Russian outlet ASTRA reported that Taganrog-Central military airfield may also have been targeted. The airfield is home to Russia’s 708th Military Transport Aviation Regiment, while the nearby 325th Aircraft Repair Plant repairs military transport aircraft. Fires were reported in the area, and monitors reported the destruction of a fuel storage tank. A fire near S-400 positions was also reported, although damage to the systems remains unconfirmed. Taganrog head Svetlana Kambulova said Russian air defenses engaged drones around 7 a.m. and that falling debris caused fires. She reported no casualties. Rostov authorities also reported attacks in several districts and around Taganrog Bay, with debris causing a fire in a store building but no deaths or injuries. In Tolyatti, Ukrainian drones reportedly traveled more than 850 kilometers to strike the KuibyshevAzot chemical plant. Exilenova+ reported a fire at the facility. KuibyshevAzot produces ammonia, ammonium nitrate, urea, ammonium sulfate, nitric acid, caprolactam and polyamide products. Reports said it accounts for about 50 percent of Russia’s caprolactam production and roughly 75 percent of domestic tire-cord output. Samara Region Governor Vyacheslav Fedorishchev confirmed that an industrial enterprise was hit. Local authorities reported damage to several residential buildings, one person hospitalized and temporary evacuation in one neighborhood. No fatalities were reported, while operations at Kurumoch International Airport were temporarily suspended. Ukraine’s General Staff also reported a strike on the nearby Tolyattikauchuk plant, which produces synthetic rubbers and chemical fractions used as binders and components in solid rocket fuel for tactical and ballistic missiles. President Volodymyr Zelensky said Ukrainian forces had also struck two chemical-industry enterprises in Russia’s Perm and Samara regions, a target in the Black Sea and multiple military targets in Taganrog during the previous 24 hours. The strikes followed a September 11 attack on Volgogradpromproekt in Volgograd. Ukrainian sources said FP-5 Flamingo cruise missiles caused a fire at the enterprise, which is involved in Russia’s military-industrial complex and produces ferrocene-based combustion catalysts and chemical production technologies. Damage from the September 12 attacks continues to be assessed through satellite imagery, local footage and official statements.

Read More → Posted on 2026-09-12 16:14:48
 World 

ZAGREB — Croatia has signed a contract worth approximately €410 million (640 billion South Korean won) with South Korea’s Hanwha Aerospace for 18 K239 Chunmoo multiple launch rocket systems (MLRS). The agreement was signed in Zagreb on September 10, 2026, marking the first major defence acquisition between Croatia and South Korea. The contract includes 18 self-propelled launchers, rocket ammunition, ammunition transport vehicles, fire-direction command vehicles, integrated logistics support, crew training and maintenance training. Deliveries are planned to begin within 24 to 36 months, with the systems scheduled to be operational by 2029. DAPA said the contract will also support longer-term industrial, logistics and follow-on cooperation with Croatia. The signing ceremony was attended by Croatian Prime Minister Andrej Plenković, Deputy Prime Minister and Defence Minister Ivan Anušić, South Korean Defence Minister Ahn Gyu-back, DAPA Commissioner Lee Yong-cheol, South Korea’s ambassador to Croatia and Hanwha Aerospace representatives. The two governments also signed a memorandum of understanding on defence cooperation, covering wider defence ties and technology cooperation. Croatia’s cabinet approved a broader €544 million procurement package. Part of the funding will cover integration of Poland’s WB Electronics TOPAZ combat and fire-control system to support interoperability. Croatian company Končar is also set to cooperate with Hanwha on local component integration, maintenance training and depot-level lifecycle support, although the exact production share is still under review. The Chunmoo systems will replace Croatia’s ageing M-92 Vulkan and BM-21 Grad multiple rocket launchers. They will complement eight U.S.-made M142 HIMARS systems ordered by Croatia in December 2024, giving the Croatian Army a combined fleet of 26 modern wheeled rocket launchers. The K239 Chunmoo uses an 8×8 wheeled chassis and has a crew of three. It can carry different types of ammunition through its dual-pod launcher. The Croatian configuration includes 131 mm unguided rockets with a range of about 36 km, 239 mm GPS/INS-guided rockets with ranges of up to 80 km, and CTM-290 tactical missiles with ranges of up to 290 km, depending on the missile variant and configuration. The launcher uses an onboard crane to change pre-packaged ammunition pods. Croatia is the fourth European country to select the Chunmoo, after Poland, Estonia and Norway. The system is also in service with customers in the Middle East, including the United Arab Emirates and Saudi Arabia. Prime Minister Plenković described the purchase as one of Croatia’s major recent defence investments, comparable in importance to the country's acquisition of Dassault Rafale fighter aircraft. The procurement forms part of Croatia’s wider military modernisation programme as Zagreb increases defence spending to meet its NATO capability commitments.

Read More → Posted on 2026-09-12 15:55:58
 World 

NORTH BAY, Ontario — Ukrainian President Volodymyr Zelensky met Ukrainian military pilots undergoing training in Canada on September 12, 2026, at the International Test Pilots School (ITPS), also known as the International Pilot Training School, at Jack Garland Airport in North Bay, Ontario. Zelensky said the pilots are preparing to fly modern fighter jets, including the F-16 and Sweden’s JAS 39 Gripen, to strengthen Ukraine’s combat aviation. He said Ukraine is doing everything possible to protect its skies and praised the new generation of Ukrainian pilots, while thanking Canada, the instructors and the training center.   21 Pilots in Advanced Training Twenty-one Ukrainian pilots are currently enrolled in the program and have been training at the school since April 2025. They are flying Aero L-39 Albatros aircraft during the third and fourth phases of flight training, including Fighter Lead-In Training (FLIT). The training covers Western procedures and tactics, low-altitude navigation and formation flying before pilots move to modern combat aircraft. Flights take place nearly every day when aircraft are available and weather conditions permit. The pilots also use advanced tactical simulators, including F-16 simulators, to practice flight, instrument and tactical scenarios without using actual aircraft. During Zelensky’s visit, four L-39s flown by Ukrainian trainees conducted a flyover. Zelensky also sat in a flight simulator, where pilots explained the differences in handling, ergonomics, instrumentation and avionics between the L-39 and the Soviet-era MiG-29 and Su-27 aircraft on which many Ukrainian pilots previously trained. Instructors also briefed him on aircraft maintenance, life-support systems and pilot equipment.   Canada Provides C$389 Million in Support The Canadian program covers more than pilot training. Ukrainian personnel are also being trained in aircraft maintenance, logistics, ground-support systems, life-support equipment, oxygen systems, ejection equipment, pilot flight suits and aviation English. The first Ukrainian aviation personnel arrived in Canada in September 2024 for preparatory training. Canada has allocated up to C$389 million for Ukrainian aviation personnel between 2024 and 2029, covering pilot training and related equipment and resources. The program operates under the multinational Air Force Capability Coalition.   Training for Ukraine’s Future Western Fighter Fleet The training supports Ukraine’s transition from its Soviet-designed fighter fleet toward Western aircraft. Ukraine has already received F-16s from partner countries and is also preparing for the potential introduction of the Gripen. In December 2025, Ukraine and Sweden discussed training Ukrainian pilots and technical personnel for the Gripen. Zelensky said Ukraine would have both F-16s and Gripens and that other aircraft could follow. Some reports have indicated that donated Gripens could arrive in Ukraine in early 2027, while Ukraine has also discussed purchasing additional Gripen E aircraft. ITPS was established in the United Kingdom in 1986 and moved its headquarters to Canada in 2001. The school provides flight-test, test-pilot and tactical training to military forces from more than 25 partner nations. The school previously operated from London, Ontario, but moved its advanced tactical training to North Bay in July 2026 following concerns from Transport Canada about congested airspace after a near-miss incident. Photos released by the Office of the President of Ukraine showed Ukrainian pilots flying L-39 aircraft, using simulators and training at the Canadian facility.

Read More → Posted on 2026-09-12 15:44:13
 U.S 

FORT HUNTER LIGGETT, Calif. — Northrop Grumman and quantum technology company SandboxAQ have completed flight trials of the Lumberjack Group 3 unmanned aircraft system (UAS) using SandboxAQ’s AQNav magnetic navigation system instead of GPS. The companies announced the results on September 9, 2026, following demonstrations at Fort Hunter Liggett in California. The tests showed the jet-powered drone could maintain stable flight trajectories using magnetic navigation in GPS-denied and satellite-denied conditions.   Rapid AQNav Integration SandboxAQ integrated AQNav into the Lumberjack approximately one month before the flight trials. The system used a commercially sourced, high-sensitivity quantum magnetometer and low-power, off-the-shelf onboard computing hardware. Engineers installed the hardware and software in less than an hour and used a software-based integration approach that avoided a major structural redesign of the aircraft.   How AQNav Works AQNav uses quantum sensors to detect small variations in Earth’s magnetic field caused by differences in geological materials beneath the aircraft. The system: Measures local magnetic variations using quantum magnetometers. Filters magnetic interference produced by the aircraft’s engine, electronics and structure. Compares the resulting magnetic signatures with reference maps of Earth’s magnetic field. Calculates the aircraft’s position without relying on satellite navigation signals. The passive system can operate in all weather and over open water or other environments where GPS may be unavailable or disrupted. The Lumberjack trials also included flight legs over open coastal water, providing an environment with limited visual navigation references.   Lumberjack Platform Lumberjack is an attritable, one-way attack (OWA) drone in the Pentagon’s Group 3 UAS category. The airframe was developed with Empirical Systems Aerospace (ESAero), which was later acquired by AeroVironment. Northrop Grumman provides the mission computing, autonomy and payload integration. Specification Details Gross loaded weight About 290 lb (131 kg) Empty weight About 79 lb (36 kg) Payload capacity 250 lb (113 kg) class Range/endurance Several hundred miles or about 2 hours of loiter Mission cost target $75,000–$100,000 Primary weapon 6-lb (2.7 kg) Hatchet miniature glide bomb Other payloads EW, visual navigation, tactical data links and ISR The aircraft supports air, ground or surface launch. Although Lumberjack is designed for one-way missions, the test aircraft was launched, flown and recovered multiple times during the trials. This allows the platform to also be used for training and experimentation.   Previous Lumberjack and AQNav Testing Lumberjack completed its maiden flight in 2024, less than 14 months after preliminary design work began. In March 2026, it participated in the U.S. Army 101st Airborne Division’s Operation Lethal Eagle, conducting simulated strikes with miniature precision weapons while connected to the military’s Maven Smart System and Palantir targeting workflows. Before the Lumberjack demonstration, SandboxAQ said AQNav had accumulated more than 450 flight hours across four aircraft types, including testing conducted with the U.S. Air Force and Defense Innovation Unit. SandboxAQ described the Lumberjack flight as the first reported test of a magnetic navigation system on an attritable platform and the first reported pairing of magnetic navigation with visual navigation on an attritable one-way attack drone.   No Production Contract Announced Northrop Grumman and SandboxAQ have not announced a production customer, contract or wider procurement timeline for the integrated system. The demonstration instead focused on showing how magnetic navigation can be integrated with an existing unmanned aircraft and provide an additional navigation capability when satellite-based positioning is unavailable or disrupted.

Read More → Posted on 2026-09-12 14:41:54
 Europe 

KIELCE, Poland — Defense technology company SPARC AI Inc. (CSE: SPAI; OTCQB: SPAIF; Frankfurt: 5OV0) has launched Overwatch Patrol, a dismounted positioning application designed to provide continuous location data to soldiers and security personnel when GPS/GNSS is jammed, spoofed, degraded or unavailable. SPARC AI unveiled the system at MSPO, the International Defense Industry Exhibition in Kielce, Poland, held from September 8 to 11. The exhibition is one of Europe's major defense events and a venue for NATO and allied procurement discussions. Before MSPO, SPARC AI demonstrated Overwatch Patrol in Kraków.   GPS-Denied Positioning Without Additional Hardware Overwatch Patrol does not require additional hardware, external receivers, antennas or software installation. Originally developed for military-grade handheld devices, the current version operates through SPARC AI's Overwatch Positioning Network, a cloud-based positioning service. The application can be used as a native mobile app or through a standard web browser on smartphones and tablets. SPARC AI says remote processing of the core spatial calculations reduces the processing requirements on user devices.   Real-Time Team Position Sharing Overwatch Patrol allows multiple users to share their positions on a common digital map in real time. Team members can see each other's movements while walking, running or holding positions without relying on GPS. Commanders can create teams in the field using an encrypted dynamic session code. Personnel can join or leave a group without a central administrator or pre-configured devices. The system also allows any team member to place a rally point on the shared map. The location is immediately synchronized with connected users, allowing them to navigate toward the same point. This can be used to establish new link-up locations after contact, during casualty evacuation (CASEVAC), when a route becomes unusable, or when personnel become separated beyond visual or radio contact.   Integration With Tactical Networks At MSPO, SPARC AI management met with prospective technology partners and tactical communications providers to discuss integrating Overwatch Patrol with military radio networks. The planned integration would allow shared position data to move through existing tactical communications systems. Overwatch Patrol expands SPARC AI's Overwatch Positioning Network beyond aerial platforms. The company previously launched the network for UAVs, allowing drones to send telemetry to remote data centers and receive positioning information without onboard navigation payloads. SPARC AI says its drone-focused service is live for use in Ukraine. The launch adds a dismounted positioning capability to SPARC AI's broader work on navigation in GNSS-denied environments.

Read More → Posted on 2026-09-12 14:34:09
 Space & Technology 

PARIS, — Eutelsat plans to invest about €1 billion to procure 229 additional OneWeb low Earth orbit (LEO) satellites from Airbus Defence and Space, supporting constellation replenishment and expansion through 2034. Eutelsat and Airbus have signed an Authorisation to Proceed (ATP) for initial industrial work. The agreement was announced at the International Space Summit in Paris in the presence of French Minister of Higher Education, Research and Space Philippe Baptiste. The order follows two earlier contracts covering 440 OneWeb satellites, awarded to Airbus in late 2024 and early 2026. Together, the three commitments bring the total number of second-generation OneWeb satellites to be manufactured by Airbus to 669. Production will take place at Airbus Defence and Space's facility in Toulouse, France. The first satellites from the existing 440-unit order are scheduled for delivery in the fourth quarter of 2026, with launches expected shortly afterward. The additional 229 satellites will be introduced over the following decade to replace first-generation spacecraft approaching the end of their design life and to increase capacity for commercial and government customers.   Upgraded Satellites The new spacecraft will feature advanced digital channelisers for improved onboard processing, dynamic beam steering and flexible bandwidth allocation based on traffic demand. They will also include interfaces for hosted payloads, allowing institutional or commercial customers to fly sensors such as Earth-observation or thermal-infrared instruments alongside the communications payload. Structural and power improvements are also intended to improve operational economics over the satellites' service cycle. OneWeb currently operates more than 600 satellites in 12 synchronized orbital planes at roughly 1,200 kilometers altitude. Eutelsat is the only European operator with a fully operational global LEO broadband network. Eutelsat said the approximately €1 billion investment is covered by its existing multi-year capital budget and does not change its capital expenditure forecast through the 2029 financial year. Separately, Eutelsat selected Arianespace for two dedicated Ariane 64 launches of OneWeb satellites in 2027 and 2028 from Europe's Spaceport in French Guiana.   Preparing for IRIS² Eutelsat is positioning OneWeb as its near-term LEO platform ahead of Europe's IRIS² (Infrastructure for Resilience, Interconnectivity and Security by Satellite) programme. Eutelsat is expected to lead the design, deployment and operation of the programme's commercial Ku-band LEO segment, which is expected to enter service by mid-2032. IRIS² is expected to provide more than twice OneWeb's current capacity, with both constellations planned to operate alongside each other through the mid-2030s. Eutelsat CEO Jean-François Fallacher said the additional satellites will strengthen OneWeb while IRIS² will provide new capacity and capabilities. Airbus Defence and Space Head of Space Systems Alain Fauré said the contract demonstrates the maturity of the product, supply chain and Airbus' capability to manufacture large-scale LEO constellations at high rates. The replenishment programme will support service continuity and capacity for government, enterprise, maritime, aviation, defense and telecommunications customers while preparing Eutelsat for Europe's next phase of sovereign satellite connectivity.

Read More → Posted on 2026-09-12 14:16:35
 U.S 

WASHINGTON — The U.S. Army has awarded Rolls-Royce Solutions America Inc. a $39.1 million contract modification to manufacture additional power packs for Israel’s Eitan 8x8 armored personnel carrier (APC). The modification, designated P00011 to contract W56HZV-23-C-0054, is the 11th change to the original contract and increases its total value to approximately $158.9 million. Work will be carried out at Rolls-Royce’s facility in Graniteville, South Carolina, and is scheduled to continue through September 11, 2027. Army Contracting Command at Detroit Arsenal, Michigan, is the contracting activity. The modification is funded entirely through fiscal year 2010 non-expiring Foreign Military Sales (FMS) funds allocated for Israel. Such funds can remain available for eligible defense purchases beyond the fiscal year in which they were appropriated. The order is part of a broader $180 million FMS case approved by the U.S. State Department in April 2025. The package covers additional Eitan 8V199TE21-D powerpack engines and components, U.S. government and contractor technical assistance, non-recurring engineering, logistics and program support. It expanded an earlier $85.5 million procurement case.   MTU 8V199TE21-D Powerpack The Eitan uses the MTU 8V199TE21-D, an eight-cylinder turbocharged diesel engine producing approximately 750 horsepower. The engine is supplied as part of an integrated powerpack with an Allison 4800 Specialty Series automatic transmission. Rolls-Royce Solutions America, headquartered in Novi, Michigan, is the principal contractor for the effort and operates within Rolls-Royce Power Systems. The MTU engine business is part of Rolls-Royce Power Systems and is separate from Rolls-Royce’s civil aerospace operations and Rolls-Royce Motor Cars.   Eitan 8x8 Armored Personnel Carrier The Eitan was developed by Israel following operational experience during the 2014 Gaza conflict, with the aim of providing a faster wheeled armored vehicle alongside the heavier tracked Namer and replacing some of the capabilities of older M113 carriers. The vehicle is roughly 8 meters long and weighs about 30–35 metric tons, depending on configuration. It carries a three-person crew and up to nine additional soldiers. Its protection includes a V-shaped hull, composite armor and the Iron Fist active protection system. The Eitan can reach speeds of up to 90 km/h and is designed to provide protected infantry mobility while offering greater road mobility than heavy tracked platforms. The first production Eitans entered Israeli service in May 2023. Following the October 7, 2023 attacks, the Israel Defense Forces accelerated their deployment, including operations in Gaza alongside other armored vehicles. The Army and Rolls-Royce have not disclosed the exact number of engines covered by the new $39.1 million modification. Public information also does not specify how much of the broader $180 million 2025 FMS case has already been obligated.

Read More → Posted on 2026-09-12 13:57:42
 U.S 

COLUMBIA CITY, Ind. — Naval defense manufacturer Ultra Maritime has announced that all five of its newest U.S.-specification sonobuoy variants are now production ready. The company said the milestone completes what it identifies as the world’s first unified suite of next-generation anti-submarine warfare (ASW) acoustic expendables. The five variants are the AN/SSQ-53H, AN/SSQ-62G, AN/SSQ-101B, AN/SSQ-125B and AN/SSQ-36B, which form the core of the company’s Sea Revealer family. They support underwater surveillance missions ranging from ocean-layer profiling and wide-area acoustic searches to target detection, localization and tracking. The AN/SSQ-53H DIFAR is a passive sonobuoy that listens for acoustic emissions from nuclear and diesel-electric submarines using omnidirectional sensors and directional hydrophone channels. The AN/SSQ-62G DICASS is an active buoy that can be remotely triggered to transmit sound pulses and measure echoes to determine a contact’s bearing and range. The AN/SSQ-101B ADAR uses an unfolding horizontal planar hydrophone array as a high-sensitivity receiver for sound reflected from submerged targets. The AN/SSQ-125B MAC is a multistatic active acoustic source that can operate with passive receivers such as the Q-101B and Q-53H to transmit structured sound bursts across patrol areas. The AN/SSQ-36B AXBT provides environmental data rather than directly tracking targets. Its temperature probe measures the water column down to 800 meters (2,625 feet), generating sound-velocity profiles that help mission systems predict how sonar waves travel through ocean thermal layers.   Production Expansion Ultra Maritime recently modernized and expanded its manufacturing complex in Columbia City, Indiana, adding higher-rate manufacturing automation and updated production processes. The company now reports producing more than 1,000 sonobuoys per day across facilities in the United States, United Kingdom and Canada. The expansion has created hundreds of jobs in Northeast Indiana over the past two years, with additional hiring and facility improvements planned as domestic and international procurement increases. Ultra Maritime’s U.S. supply chain includes suppliers in 24 states, more than 70 percent of which are small businesses. Ultra Maritime says it is the only defense contractor worldwide producing G-size, half-length sonobuoys, which can allow aircraft and unmanned platforms to increase sonobuoy payload capacity without increasing airframe weight limits. It also says it is the only manufacturer with active production lines in multiple allied countries. The company supplies sonobuoys for fixed-wing aircraft, helicopters and unmanned aerial vehicles, including major ASW platforms such as the Boeing P-8A Poseidon and Sikorsky MH-60R Seahawk. Earlier in 2026, the U.S. Navy awarded Ultra Maritime a sole-source, firm-fixed-price contract for low-rate initial production of the AN/SSQ-125B for training, peacetime operations, testing and inventory requirements. The Q-125B incorporates improved signal processing and acoustic performance for demanding ocean conditions. Ultra Maritime also demonstrated the SSQ-125B and Sea Spear passive sonar system during the U.S. Navy’s 2026 Lanternfish exercise, focusing on the detection and localization of unmanned underwater vehicles. Headquartered in Braintree, Massachusetts, Ultra Maritime produces active and passive sonobuoys in A-size and G-size configurations and has received U.S. Navy production contracts and delivery orders for systems including the SSQ-53H and SSQ-62G. The announcement comes amid the company’s broader expansion and follows Lockheed Martin’s proposed $3.45 billion acquisition agreement for Ultra Maritime, announced earlier in summer 2026.

Read More → Posted on 2026-09-12 13:44:25
 Space & Technology 

TORRANCE, Calif. — The Office of the Assistant Secretary of the U.S. Air Force for Space Acquisition and Integration has awarded California-based nuclear energy startup Antares $161 million under a Strategic Breakthrough contract to develop a nuclear reactor designed to power operational spacecraft. Antares said the award is the largest defense contract to date focused specifically on space-based nuclear power. The contract covers two parallel technical tracks. Under the first, Antares will conduct a ground demonstration of its R1-S reactor, a compact system that uses solid-state heat pipes instead of mechanical pumps to transfer heat from the reactor core. After ground validation, the reactor will be integrated into a spacecraft and prepared for flight certification ahead of an orbital launch. The second track involves the Mark-1 reactor, an electricity-producing design scheduled to begin multi-month operational testing in 2027 using a closed Brayton cycle power-conversion system. The reactor will be used to power a ground-to-space military asset. “Space has been core to the Antares thesis since the company was founded,” said Jordan Bramble, CEO and co-founder of Antares. “This partnership with the Space Force turns that long-held vision into a codified space mission. Fission will unlock strategic capabilities that are impossible today.”   Nuclear Power for Spacecraft Most modern satellites use solar arrays and batteries. Antares says a compact fission reactor could provide continuous multi-kilowatt or megawatt-class power regardless of sunlight, orbital shadows or distance from the Sun. The company identifies potential applications including high-throughput edge computing and automated data processing, long-range active radar, directed-energy payloads, and high-power electronic warfare and electromagnetic-spectrum operations. Greater onboard power could also support more flexible spacecraft maneuvering. The United States has not operated a nuclear reactor in orbit since NASA launched SNAP-10A in 1965, leaving a six-decade gap in U.S. space fission systems.   Mark-0 Reached Criticality The contract follows Antares' June 4, 2026, milestone at Idaho National Laboratory (INL), where its Mark-0 microreactor reached criticality, meaning the fission reaction became self-sustaining. The test was conducted under Department of Energy authorization with INL and nuclear fuel supplier BWX Technologies (BWXT), with U.S. Army personnel observing. Antares said it became the first private entity to achieve criticality under the DOE's Reactor Pilot Program and that Mark-0 was the first newly designed reactor to reach criticality at the Idaho site in more than 50 years. The test provided validation of core physics and safety profiles for Antares' HALEU TRISO fuel compacts, which use ceramic coatings designed to retain fission products and withstand high temperatures without melting.   Other U.S. Defense Programs Antares is also using its reactor architecture across other military programs. Data from Mark-0 is supporting Project Pele, the Department of Defense's effort to develop a transportable terrestrial microreactor. The company is also a supplier under the U.S. Army's Project Janus, which focuses on fixed microreactors for domestic military installations, including Fort Moore, Georgia, formerly Fort Benning. Earlier in 2026, Antares was selected through the Defense Innovation Unit to build a prototype installation system at Joint Base San Antonio.   Space Nuclear Power Plans Antares linked the Air Force award to Executive Order 14369, “Ensuring American Space Superiority,” and the National Initiative for American Space Nuclear Power outlined in NSTM-3. These policies call for demonstrating an operational nuclear reactor in orbit as early as 2028, followed by deployment of a surface power reactor on the Moon by 2030. Founded in 2023 in Torrance, California, Antares has engineering and testing facilities in Idaho Falls, Idaho, and Aiken, South Carolina. The company has raised more than $600 million in private capital, including a $470 million Series C round completed in July 2026. The Air Force and Antares have not disclosed the target launch date for the R1-S, the specific spacecraft bus or mission profile, or how the $161 million contract will be divided between the R1-S flight demonstration and Mark-1 ground testing.

Read More → Posted on 2026-09-12 13:29:57
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