TAIPEI — U.S. defense technology company Shield AI and Taiwan-based Thunder Tiger Corp. have successfully completed Hivemind's first multi-asset autonomous teaming demonstration on water, validating Shield AI's Hivemind artificial intelligence (AI) pilot aboard Thunder Tiger's SeaShark unmanned surface vessels (USVs) during a coordinated maritime mission in Taiwan. The demonstration, held at Dapeng Bay in Pingtung County, marked the first time Hivemind has coordinated multiple autonomous maritime platforms in a live mission and the first integration of the software with maritime radar and Automatic Identification System (AIS) data. Two Autonomous Drone Boats Complete ISR Mission The demonstration involved Thunder Tiger's SeaShark 600 and SeaShark 800 unmanned surface vessels (USVs) conducting a coordinated intelligence, surveillance, and reconnaissance (ISR) mission. Equipped with Shield AI's Hivemind autonomy software, the vessels used maritime radar, onboard imagery, and AIS data to autonomously plan mission waypoints, search a designated maritime area, identify a target vessel of interest, and coordinate to escort the vessel out of the designated search zone—all without human intervention in mission execution. According to reports from the demonstration, Hivemind divided the search area into separate sectors and assigned one USV to each vessel. After one SeaShark detected the target boat, it immediately shared the information with the second USV. The second vessel then calculated an optimized interception route, allowing both autonomous boats to complete the escort mission in coordination. Personnel from Taiwan's National Chung-Shan Institute for Science and Technology (NCSIST) and the Coast Guard Administration attended the demonstration. Shield AI: Mission Autonomy Can Scale Across Domains Nathan Michael, Chief Technology Officer at Shield AI, said the demonstration highlighted the ability of Hivemind to operate across multiple domains and platforms. "Hivemind continues to prove that true mission autonomy can scale across domains, platforms, and functional assets, unlocking new capabilities for distributed intelligence and maritime security missions," Michael said. "As we continue working with Thunder Tiger to expand the scale and sophistication of autonomous maritime teams, these systems will fundamentally reshape maritime surveillance operations and strengthen deterrence through resilient, intelligent operations." Partnership Began Earlier This Year Shield AI and Thunder Tiger announced a strategic partnership and memorandum of understanding (MoU) in May 2026 to integrate the Hivemind AI pilot across Thunder Tiger's unmanned systems portfolio for dual-use maritime missions. Thunder Tiger manufactures a range of unmanned aerial and surface systems, including Blue UAS-approved first-person view (FPV) platforms that meet cybersecurity and supply-chain standards for U.S. and allied defense applications. Building on the demonstration, both companies said they will continue collaborating on additional sensor integrations, more advanced autonomous behaviors, larger autonomous teams, and open-ocean operations. During the event, Maximilian Chen, Shield AI's Director of Government Relations for Asia, said a fleet of five Hivemind-equipped USVs using autonomous route planning could cover up to 8.3 times their combined search area, highlighting the efficiency gains possible through coordinated autonomous operations. Thunder Tiger Highlights Maritime Security Gene Su, Board Director and General Manager of Thunder Tiger Corp., said autonomous maritime systems will play an increasingly important role in Taiwan's security. "As an island nation, the maritime domain is increasingly critical to Taiwan's security. By integrating AI pilots into our portfolio, we can enable distributed, networked teams that coordinate dynamically to build a more complete understanding of the maritime environment—improving the ability to detect, classify, and identify contacts while helping operators respond with greater speed, scale, and effectiveness," Su said. He added that the demonstration represents an important step toward advancing resilient autonomous maritime capabilities and that the partnership with Shield AI is expected to continue delivering increasingly sophisticated autonomous systems. Thunder Tiger Chairman William Chen also highlighted the growing importance of unmanned aerial vehicles (UAVs) and unmanned surface vessels (USVs), referencing lessons from the Russia-Ukraine war. He called for legislative action on a drone procurement bill as Taiwan continues expanding its unmanned defense capabilities. Strengthening Taiwan's Maritime Defense The demonstration comes as Taiwan continues to invest in asymmetric defense capabilities to strengthen maritime surveillance and coastal defense. Taiwan's Ministry of National Defense has sought funding for coastal reconnaissance drones, attack drones, and unmanned surface vessels as part of broader efforts to build distributed maritime capabilities. The integration of autonomous AI software such as Hivemind could provide several operational advantages as China continues expanding both its naval fleet and unmanned maritime systems. Unlike conventionally operated drones that rely on continuous communications with operators, Hivemind processes sensor information and makes navigation and mission decisions onboard the vessel. This allows autonomous USVs to continue operating even when communications are degraded or disrupted by electronic warfare. Autonomous teams of drone boats can also patrol multiple sectors simultaneously, share information in real time, coordinate target tracking, and maintain persistent surveillance over larger maritime areas. These capabilities can improve maritime awareness while complementing manned naval assets with lower-cost unmanned platforms. China has also accelerated the development and testing of unmanned surface vessels for the People's Liberation Army Navy (PLAN), increasing the emphasis on resilient and distributed autonomous maritime systems on both sides of the Taiwan Strait. Lessons from the Ukraine-Russia War Interest in autonomous drone boats has grown significantly following their operational use during the Ukraine-Russia war. Since 2022, Ukraine has employed unmanned surface vessels such as the MAGURA and Sea Baby in operations against Russian naval assets and military infrastructure in the Black Sea. These systems have been used to strike warships and other maritime targets, demonstrating how relatively low-cost unmanned platforms can challenge larger conventional naval forces and influence naval operations. Military planners have drawn lessons from these operations, particularly the value of distributed unmanned systems for surveillance, reconnaissance, maritime security, and coordinated operations while reducing risks to personnel. Taiwan's continued investment in autonomous maritime platforms reflects a broader effort to strengthen coastal defense and maritime situational awareness using unmanned technologies. Hivemind Across Multiple Military Platforms Shield AI said Hivemind enables military platforms to sense, decide, and act independently without human intervention in those functions. Before the Taiwan maritime demonstration, Hivemind had already been integrated with more than 30 different platforms, including F-16 fighter aircraft, jet-powered unmanned aerial vehicles, helicopters, drone boats, and ground vehicles. Founded in 2015, Shield AI develops autonomy software and aircraft, including the V-BAT and X-BAT systems. Thunder Tiger Corp., listed on the Taiwan Stock Exchange, manufactures unmanned aerial and surface systems for defense, inspection, and other applications, with its FPV platforms holding Blue UAS approval.
Read More → Posted on 2026-07-29 16:24:18KHASAN/TUMANGANG — Russia and North Korea are nearing completion of their first direct road bridge across the Tumen River, a project both governments say is intended to improve trade, tourism and cross-border transport. However, analysts and open-source researchers have raised questions over whether the crossing could also support military logistics as cooperation between the two countries continues to expand. The new bridge links Khasan in Russia's Far East with Tumangang in North Korea. It is approximately one kilometer long and seven meters wide, with two traffic lanes. Including the approach roads, the entire transport crossing extends about 4.7 kilometers. The bridge is located next to the existing Friendship Bridge, a rail-only crossing completed in 1959. Recent commercial satellite imagery analyzed by researchers, including reports by The Guardian and the U.S.-based 38 North project, indicates that the bridge's main structure is largely complete. North Korea has finished its section of the project, including customs, border control and quarantine facilities. Construction on the Russian side is still ongoing. Satellite images show work continuing on a large border checkpoint, supporting infrastructure and other facilities. Reports also indicate that Russia is building a 10-lane border checkpoint and a helicopter landing pad as part of the project. Construction began in early 2025 following an agreement signed during Russian President Vladimir Putin's visit to Pyongyang in June 2024, where Putin and North Korean leader Kim Jong Un concluded a comprehensive strategic partnership agreement. Russian officials had previously targeted June 19, 2026, for the bridge's opening after an April ceremony marking the joining of the two sections. That deadline passed without the crossing becoming operational. As of late July 2026, no revised opening date has been announced. Putin has previously stated that the bridge is expected to open before the end of 2026. Governments Present Economic Purpose Moscow and Pyongyang have consistently described the bridge as an infrastructure project aimed at expanding trade, improving logistics, promoting tourism and supporting economic development in border regions. Russian Transport Minister Andrey Nikitin has said the crossing will increase bilateral trade, improve transport links, strengthen cultural ties and help develop nearby border areas into economic centers. North Korean state media has also presented the bridge as a project that will facilitate travel and the movement of goods. The bridge is estimated to cost around $100 million. Official bilateral trade between Russia and North Korea totaled approximately $34 million in 2024. Tourism between the two countries also remains limited. Around 10,000 Russian tourists visited North Korea in 2025, mostly through organized tours to Pyongyang, which is located nearly 500 kilometers from the new border crossing. Analysts Question Economic Justification Despite the official explanation, several analysts argue that the project's scale exceeds current economic demand. A recent investigation by the Ukrainian human rights organization Truth Hounds, reported by The Guardian, concluded that the bridge's economic justification appears limited when compared with current trade and tourism figures. The organization suggested the crossing could provide a more flexible transport route for personnel, equipment and other cargo as military cooperation between Russia and North Korea has increased since 2024. Road Transport Offers Different Logistics Advantages According to Truth Hounds lead investigator Nazar Myhun, road transport offers practical advantages over rail and sea transport from a logistics perspective. He said trucks are generally more difficult to monitor using satellite imagery because road networks provide many possible routes, making continuous tracking more challenging than monitoring fixed railway lines. Myhun also noted that trucks can be loaded and unloaded more quickly than railway cars, reducing the amount of time cargo remains stationary. He added that railway cars often reveal the type of cargo they are carrying, especially when open railcars are used, while standard transport trucks generally appear similar in satellite images regardless of their contents. Unlike trains, which operate through fixed railway terminals, trucks can be dispatched from many different locations, providing greater operational flexibility. Direct Route Independent of Chinese Infrastructure The new road bridge will also provide Russia and North Korea with a direct land connection that does not rely on Chinese infrastructure. Once operational, the crossing will complement the existing Friendship Bridge and create the first direct road link between the two countries. Infrastructure work on the Russian side, including customs buildings, access roads and related facilities, remains the primary requirement before the bridge can begin operations. Commercial satellite imagery has continued to track steady progress throughout 2025 and 2026, confirming that while the bridge structure is largely complete, work on Russian border infrastructure remains unfinished. As of late July 2026, both governments have not announced a new opening date.
Read More → Posted on 2026-07-29 15:39:57HAMHUNG, North Korea — North Korea has constructed a new production building at its primary short-range ballistic missile factory and later buried the structure beneath earth, according to an analysis of Planet Labs satellite imagery published by NK Pro on July 29. Analysts say the move appears intended to improve protection for one of the country's most important missile production sites as Pyongyang continues expanding its manufacturing capacity. The facility, known as the February 11 Factory, or Plant No. 11, is part of the Ryongsong Machine Complex in Hamhung. It is the only publicly known manufacturer of the Hwasong-11 series of short-range ballistic missiles (SRBMs), designated KN-23 by Western countries. The missiles have been used by Russian forces in strikes against Ukraine since late 2023, while Ukrainian officials have also said North Korea has supplied Russia with launchers and other military equipment. New Building Buried Beneath Earth According to NK Pro's analysis, a new building measuring approximately 65 meters by 35 meters and standing two to three stories high was constructed in a secluded valley at the northern end of the complex between late 2024 and February 2026. Satellite imagery shows the structure was fully completed before being covered with earth between March and May 2026, effectively integrating it into the adjacent mountainside. The building's internal layout, featuring a large open central hall surrounded by smaller rooms, closely resembles assembly and inspection facilities seen at other North Korean weapons production sites. Designed to Improve Protection and Safety Analysts assess that the buried structure follows North Korea's cut-and-cover construction method, which provides greater protection than conventional above-ground buildings. The design is believed to serve two purposes. Covering the facility with earth can reduce its vulnerability to aerial attack while also helping contain the effects of accidental explosions during missile manufacturing. However, analysts note that such structures provide less protection than production facilities excavated deep inside mountains. Satellite imagery and state media footage from Kim Jong Un's visits indicate that the factory's most sensitive machining equipment is already located inside underground tunnels, while above-ground buildings are primarily used for final missile assembly and inspection. Several existing buildings at the complex are also protected by packed-earth berms designed to limit blast damage from industrial accidents. Key Missile Production Site The February 11 Factory remains one of North Korea's most significant missile manufacturing facilities. Images released during Kim Jong Un's inspections, including photographs published following a visit in June 2026, showed rows of Hwasong-11 missiles inside assembly halls. Previous state media images have also suggested the factory may manufacture airframes for longer-range missiles and satellite launch vehicles (SLVs). Open-source monitoring has consistently identified the site as North Korea's principal production center for the Hwasong-11 missile family. Larger Expansion Project Appears Stalled The newly buried facility is part of a broader effort to expand production capacity at the factory. In August 2025, North Korean construction crews demolished three existing buildings near the western entrances to the underground production tunnels to make room for a much larger structure measuring at least 330 meters long and 50 meters wide. Satellite imagery shows foundations were completed around the perimeter, while partial walls for edge rooms were erected on the northern and western sides. The design also suggests a large open central area suitable for missile assembly or inspection. However, imagery indicates construction has shown little or no progress since November 2025, suggesting the project has been suspended or significantly delayed. If completed, the facility would substantially increase missile assembly capacity and could support higher production for North Korea's own military requirements as well as future exports. Part of Wider Military Construction The construction at Hamhung reflects North Korea's continued investment in protected military infrastructure. The country has previously used similar earth-covered construction methods at the Hagap site, which open-source assessments have linked to North Korea's nuclear program. Satellite imagery also continues to show tunneling activity at sensitive military locations in Songgan and Kusong. Growing Military Cooperation with Russia The developments at the February 11 Factory coincide with expanding military cooperation between North Korea and Russia. On July 25, 2026, Ukrainian President Volodymyr Zelenskyy, citing Ukrainian intelligence, said Russia is seeking an additional 30,000 North Korean troops and is preparing to receive new North Korean ballistic missile launchers. He also stated that facilities in Russia's Voronezh region have been prepared since June to accommodate the additional personnel. Ukraine has previously stated that North Korea has supplied Russia with Hwasong-11 ballistic missiles, artillery systems, and other military equipment used during the war. Other Changes at the Factory Satellite imagery also shows continued redevelopment at the February 11 Factory beyond missile production facilities. A new building under construction near the western gate, begun in May 2025, appears close to completion and is believed to be a history museum dedicated to Kim Jong Un. It is located next to an existing museum honoring former leaders Kim Il Sung and Kim Jong Il. In mid-June 2026, the factory's main "Tower of Immortality" monument, a common feature at North Korean industrial sites, was dismantled. The reason for its removal has not been disclosed. Ongoing Modernization Effort The February 11 Factory has been inspected by Kim Jong Un several times in recent years, with state media regularly highlighting missile production activities at the site. The latest satellite imagery indicates that North Korea continues to modernize and reorganize one of its most important missile manufacturing complexes. Although one major expansion project appears to have stalled, the completion and burial of the new production building demonstrate continued efforts to strengthen the protection and operational resilience of the facility.
Read More → Posted on 2026-07-29 15:29:01SHANGHAI, China — A Chinese company has started manufacturing domestic immersion deep ultraviolet (DUV) lithography machines, marking an important step in the country's efforts to strengthen its semiconductor manufacturing capabilities following export restrictions on advanced chipmaking equipment. According to a report by The Information, the immersion DUV lithography systems are expected to be delivered later this year to major Chinese semiconductor manufacturers, including Semiconductor Manufacturing International Corp. (SMIC), Hua Hong Semiconductor, and ChangXin Memory Technologies (CXMT). The development comes after export controls imposed by the United States and the Netherlands restricted China's access to advanced lithography equipment, including certain systems produced by Dutch chip equipment manufacturer ASML. Immersion DUV lithography machines are essential tools used to print microscopic circuit patterns onto silicon wafers during semiconductor manufacturing. These systems are widely used to produce mature semiconductor technologies and can also support more advanced chip production through multi-patterning techniques. Reports identify Shanghai Aishengna Electronic Technology Group, a state-backed Chinese company, as the manufacturer behind the new immersion DUV systems. The company has reportedly brought together engineering teams from several domestic startups to develop the equipment as part of China's broader effort to expand domestic semiconductor manufacturing capabilities. Initial Production Remains Limited Current production plans remain relatively modest. Reports indicate that China aims to manufacture about five immersion DUV machines in 2026, with production expected to increase to around 20 units in 2027. By comparison, ASML plans production capacity for approximately 130 immersion DUV lithography systems in 2026, with additional expansion planned afterward. Industry analysts note that manufacturing lithography machines is only one part of the challenge. Long-term performance, production reliability, wafer throughput, alignment accuracy, maintenance, and manufacturing yields remain key factors for large-scale commercial semiconductor production. Reports also indicate that the new Chinese systems still rely on some imported Japanese components, while delays from domestic suppliers have affected production schedules this year. DUV Systems Can Produce Advanced Chips Through Multi-Patterning Immersion DUV lithography systems are primarily used to manufacture 28-nanometer semiconductor chips directly. They can also support production of smaller technology nodes, including 7nm chips, by using a process known as multi-patterning. However, producing advanced chips without access to extreme ultraviolet (EUV) lithography requires significantly more processing steps. Reports indicate that manufacturing a 7nm chip using DUV typically requires approximately 34 exposure steps, compared with about nine exposures using EUV technology. Each additional exposure increases the possibility of alignment errors, raises manufacturing complexity, and increases production costs. Estimates cited in industry reports suggest that wafer costs can rise by 40 to 50 percent compared with leading EUV-based manufacturing processes, while production yields are often lower than half, increasing the cost of each functioning chip. China's Domestic Equipment Industry Continues to Expand China has continued increasing the use of domestically produced semiconductor manufacturing equipment despite export restrictions. According to industry data cited in recent reports, the domestic share of China's chipmaking equipment increased from approximately 25 percent in 2024 to around 35 percent in 2025. Domestic suppliers account for more than 40 percent of etching equipment, while locally produced lithography equipment remains below 10 percent of the market. A lithography scanner contains thousands of highly precise components supplied through a specialized global manufacturing network that has developed over decades. Analysts note that replicating this supply chain remains one of the most difficult aspects of developing competitive lithography systems. Market Reaction and Analyst Views The reports initially affected semiconductor equipment stocks. ASML shares fell following the publication of the news and were trading about 1.8 percent lower on Tuesday during a broader decline across semiconductor stocks. Despite the decline, the company's shares remain up more than 123 percent for the year. Analysts said the reports demonstrate China's continued progress toward semiconductor self-reliance but are unlikely to significantly affect ASML's competitive position in the near future. Stephane Houri, Head of Equity Research at ODDO BHF, told CNBC that the development should be viewed cautiously, noting that China's production could remain limited to lower-end applications. Analysts also point out that the domestic systems primarily replace equipment that ASML is already restricted from exporting to China under existing export controls, limiting the immediate commercial impact on the Dutch company. ASML Continues to Benefit From Global AI Demand Although export controls have reduced ASML's sales into China—from roughly one-third of company revenue in 2024 to around one-fifth more recently—the company continues to benefit from strong demand outside China. ASML has raised its 2026 sales guidance to between €43 billion and €45 billion, supported by continued investment in artificial intelligence infrastructure by semiconductor manufacturers worldwide. Industry analysts note that progress in immersion DUV technology does not automatically translate into success with EUV lithography, which required decades of development and extensive investment by ASML and its technology partners. Broader Supply Chain Challenges Remain The latest development highlights how export controls have encouraged countries to strengthen domestic semiconductor supply chains rather than eliminate demand for advanced manufacturing equipment. A similar trend occurred in 2019, when Japan restricted exports of three key semiconductor chemicals to South Korea. Korean companies subsequently reduced dependence on Japanese materials from 34 percent of imports to 25 percent by sourcing supplies from Belgium and Taiwan. India's semiconductor manufacturing program is also expected to rely initially on imported equipment. The planned semiconductor fabrication facility at Dholera is expected to begin operations using imported tools while gradually developing a domestic supply chain for advanced semiconductor manufacturing equipment. China's production of domestic immersion DUV lithography machines represents a notable milestone in its semiconductor development efforts under export restrictions. However, industry analysts continue to highlight that expanding production, improving reliability, increasing yields, and developing a complete domestic supply chain remain key challenges before the new systems can compete at scale with established global manufacturers.
Read More → Posted on 2026-07-29 15:03:01WASHINGTON — U.S. and partner forces intercepted multiple ballistic missiles launched by Iran's Islamic Revolutionary Guard Corps (IRGC) toward U.S. military positions in the Middle East on the evening of July 28, according to U.S. Central Command (CENTCOM). CENTCOM said the missiles were launched from Iran at approximately 5:45 p.m. Eastern Time (ET) in what it described as an "attempted surprise attack." The command confirmed that all incoming missiles were successfully intercepted and that no casualties or damage were reported. "U.S. forces remain vigilant and at a high state of readiness," CENTCOM said in a statement following the interceptions. The command did not identify the specific military installation that was targeted. At 5:45 p.m. ET today, Islamic Revolutionary Guard Corps forces launched multiple ballistic missiles from Iran in an attempted surprise attack on U.S. forces based in the Middle East. All Iranian missiles were successfully intercepted. U.S. forces remain vigilant and at a high… — U.S. Central Command (@CENTCOM) July 28, 2026 Jordan Reports Missile Interceptions Jordanian military officials said the country's air defense systems intercepted and destroyed five missiles launched from Iran. Local reports said the interceptions took place over Jordan during the early hours of July 29 local time. Iranian state media, citing the IRGC, reported that the missiles were aimed at Muwaffaq Salti Air Base in Jordan and a U.S. Central Command facility located there. CENTCOM has not confirmed the intended target. The reported target matches the location of an earlier Iranian attack. On July 17, 2026, Iranian ballistic missiles and drones struck the same base. During that attack, two U.S. service members were killed while responding to the strike, one additional service member was listed as missing in action, and four others were evacuated to hospitals in Jordan, according to CENTCOM. End of a Brief Pause in Fighting The July 28 missile launch followed a short period without publicly announced large-scale exchanges between the United States and Iran. Earlier, President Donald Trump had paused a U.S. bombing campaign against Iranian-linked targets after nearly two weeks of military operations. The latest missile attack marks a renewed exchange of hostilities after that temporary lull. CENTCOM said U.S. military personnel worked alongside partner forces to provide air defense during the latest attack but did not disclose the number of missiles fired or additional operational details. Air Defense Response The United States continues to maintain air defense systems across the region to protect military bases and partner facilities. These include systems such as the MIM-104 Patriot and SM-3, although CENTCOM did not identify which interceptor systems were used during the July 28 engagement. The command also did not release information on the missiles' flight paths or other operational details beyond confirming that all incoming ballistic missiles were intercepted successfully. Operation Epic Fury Casualty Figures The latest interception occurred during the wider conflict between the United States and Iran, which began in late February 2026 under Operation Epic Fury. According to the U.S. military's casualty accounting released as of July 16, 2026, 14 U.S. service members had died during Operation Epic Fury. Of those, seven were killed during combat operations, while seven died from non-combat causes or remained under review at the time of that report. The U.S. Army accounted for eight of the deaths, while the U.S. Air Force accounted for six. No casualties were reported for the Navy, Marine Corps, or Space Force in that official accounting. CENTCOM has not announced any additional casualties following the July 28 missile interceptions and said U.S. and partner forces remain prepared to respond to further threats in the region.
Read More → Posted on 2026-07-29 14:41:09SEVERODVINSK, Russia — Russia has completed another milestone in its naval modernization program after the United Shipbuilding Corporation (USC)'s Sevmash shipyard rolled out the Ulyanovsk, the latest Project 885M (Yasen-M) class nuclear-powered attack submarine. The rollout ceremony, held on July 28 at Sevmash in Severodvinsk, marked the completion of the submarine's slipway construction phase. The event was attended by Russian Navy Commander-in-Chief Admiral Alexander Moiseyev and Deputy Prime Minister Yury Trutnev. Although the submarine has now left the covered construction hall, it is not yet ready for operational service. According to the Russian Defense Ministry, Ulyanovsk is scheduled for delivery to the Russian Navy by December 2027 after completing its remaining construction work, testing, and acceptance trials. Rollout Marks Transition to Testing Phase Moving the submarine out of the construction hall confirms that its hull and major internal systems have been assembled. The vessel will now enter the fitting-out stage before beginning a comprehensive testing program. The next phase includes mooring trials, followed by sea trials and state trials. During these tests, engineers and the crew will evaluate the submarine's propulsion system, navigation equipment, weapons integration, deep-diving performance, and overall operational readiness. The full testing period is expected to last roughly a year or more before the submarine is formally handed over to the Russian Navy. Once commissioned, Ulyanovsk will become part of Russia's Northern Fleet, which is responsible for operations across the Arctic, the Barents Sea, and the North Atlantic. Sixth Submarine of the Modernized Yasen-M Series Ulyanovsk was laid down on 27 July 2017 and is the sixth submarine of the modernized Project 885M (Yasen-M) series. Five submarines from the broader Yasen and Yasen-M family are already in service: Severodvinsk (original Yasen class) Kazan Novosibirsk Krasnoyarsk Arkhangelsk The previous Yasen-M submarine, Perm, launched in 2025 and is currently undergoing trials. Sevmash remains the only Russian shipyard responsible for constructing the Yasen and Yasen-M class submarines and has built Russia's nuclear submarines for decades. Multi-Role Nuclear Attack Submarine The Project 885M Yasen-M is an upgraded version of the original Yasen-class submarine and is designed to perform multiple missions, including: Anti-submarine warfare Anti-surface warfare Long-range land-attack missions The submarine measures approximately 130 meters in length and has a displacement of around 8,600 tonnes surfaced and 13,800 tonnes submerged. It is powered by an advanced pressurized water nuclear reactor driving a single-shaft propulsion system, with diesel engines and batteries available as backup power sources. The submarine is designed to operate at depths of approximately 600 meters. Missile and Torpedo Armament The Yasen-M class is equipped with an eight-silo vertical launch system (VLS) capable of carrying 32 to 40 missiles. Its missile load can include: Kalibr land-attack and anti-ship cruise missiles P-800 Oniks anti-ship missiles 3M22 Zircon hypersonic missiles (expected) The submarine also carries 10 angled 533 mm torpedo tubes, positioned amidships rather than in the bow. This arrangement allows space for the large MGK-600 Irtysh-Amfora spherical sonar array in the forward section. The torpedo tubes are capable of launching heavyweight torpedoes, anti-submarine rockets, and naval mines. Design Focuses on Reduced Detectability The Yasen-M design incorporates several measures intended to reduce acoustic and magnetic signatures during underwater operations. These include the use of low-magnetic steel, natural coolant circulation within the nuclear reactor to reduce machinery noise, and a single-hull design intended to improve stealth. Part of Russia's Long-Term Fleet Modernization Russia continues to expand the Yasen-M program as it replaces older Soviet-era attack submarines. On 17 June 2026, Sevmash laid the keel for the ninth Yasen-M submarine, Murmansk, marking the first new keel laying for the class in six years. Russia has stated plans to build approximately 10 to 12 Yasen and Yasen-M submarines by 2035 to replace the aging Oscar II, Akula, and Sierra II attack submarine classes. Next Steps Before Commissioning While the rollout marks an important construction milestone, Ulyanovsk still has several stages to complete before entering operational service. Following fitting-out work, the submarine will undergo mooring, sea, and state trials before its planned delivery to the Russian Navy by December 2027. After commissioning, it is expected to strengthen the capabilities of Russia's Northern Fleet as part of the country's ongoing undersea fleet modernization program.
Read More → Posted on 2026-07-29 13:48:03PARIS — Pierre-Henri Chuet, a former French Navy Rafale pilot and well-known aviation YouTuber, has been placed under formal investigation and judicial supervision in France over alleged intelligence activities linked to China. The investigation is being conducted by France's General Directorate for Internal Security (DGSI). Chuet was questioned by the agency, his home was searched, and he was later presented before an investigating magistrate during the week of July 20, 2026. Under French law, being placed under "mise en examen" (formal investigation) means an investigating judge has found sufficient evidence to justify a judicial inquiry. It is not a conviction or a finding of guilt. Chuet faces four charges: Disclosure of national defence secrets by a person entrusted with them. Intelligence activities with a foreign power. Collection of information concerning the fundamental interests of the nation. Delivery of sensitive information to a foreign state. The case focuses on two trips Chuet made to China in September 2018 and August 2019 while he was still serving in the French Navy. Investigators allege he did not inform his military chain of command, as required by French military regulations. The trips were reportedly arranged and financed by a South African aviation company. During the visits, Chuet allegedly conducted training seminars for Chinese military personnel, with payments reportedly made through his UK-based company, Mach 3 Management. A British pilot also accompanied him during the sessions. According to investigative reports, the seminars covered Catapult Assisted Take-Off But Arrested Recovery (CATOBAR) carrier operations and precision GPS landing procedures. France is one of the few countries outside the United States with extensive operational experience in CATOBAR carrier aviation, making such expertise strategically valuable. The South African intermediary involved has been linked to a broader pattern of recruitment of former Western military pilots. Companies including the Test Flying Academy of South Africa (TFASA) have previously been examined by authorities in the United Kingdom, Spain, and the United States over training provided to Chinese military personnel. The French Ministry of the Armed Forces referred the matter to the Paris prosecutor's office on February 19, 2025, leading to a preliminary investigation that was first reported by French media in April 2025. Chuet has denied any wrongdoing. He told Le Canard Enchaîné that he hosted only two three-day seminars, said the second trip in 2019 did not go well, and stated that he has not returned to China since. A dual French-Canadian national, Chuet flew Super Étendard and Rafale M fighters from the aircraft carrier Charles de Gaulle. He also trained with the U.S. Navy as an exchange officer, completed about 200 carrier landings, and participated in operations in Iraq following the November 2015 attacks in Paris. He left the French naval air arm around 2021 after a medical discharge following a stroke. Since leaving military service, Chuet has worked as an airline pilot, business consultant, author, corporate speaker, defence commentator, and aviation content creator under the name "Até Chuet," where he has built a YouTube audience of more than 560,000 subscribers. The investigation comes amid broader Western concerns over Chinese intelligence activities involving former military personnel. Following the India-Pakistan conflict in May 2025 (Operation Sindoor), French intelligence and the U.S.-China Economic and Security Review Commission concluded that China carried out a coordinated disinformation campaign using deepfakes, AI-generated images, and manipulated video game footage to falsely portray the performance of India's Rafale fighters. French officials assessed that the campaign aimed to undermine the Rafale's international reputation and promote China's J-35 fighter. French authorities have emphasized that Chuet's current legal case is related to the alleged unauthorized transfer of sensitive military knowledge during his naval service, not to his later activities as an aviation commentator or YouTube creator. The judicial investigation remains ongoing, and no verdict has been reached.
Read More → Posted on 2026-07-29 13:38:42WASHINGTON — The U.S. Federal Communications Commission (FCC) has adopted new rules blocking the import, marketing, and sale of new foreign-made advanced robotic devices and connected power inverters that are considered national security risks. The decision primarily affects Chinese manufacturers and is part of a broader U.S. effort to strengthen the security of critical technology supply chains. The measures, announced on July 28 and effective immediately, apply only to new device models that have not yet received FCC equipment authorization. Existing models that were previously authorized can continue to be imported, sold, marketed, and used in the United States. Software and security updates for already authorized products will continue to be permitted through at least January 1, 2029. The restrictions do not apply to fixed stationary industrial robotic arms, which are exempt from the new rules. FCC Expands Covered List The FCC updated its Covered List, preventing newly designated products from obtaining the equipment authorization required for sale in the United States. According to the FCC, national security agencies concluded that certain foreign-produced advanced robotic devices and connected power inverters create unacceptable risks to U.S. economic and national security and could threaten critical infrastructure. In a statement, the FCC said these devices could create supply chain vulnerabilities capable of disrupting U.S. economic and national security while also introducing cybersecurity risks. FCC Chairman Brendan Carr said the agency is acting to secure America's critical supply chains and that the FCC will continue working alongside national security agencies to address emerging technology risks. Concerns Over Advanced Robots The new rules define advanced robotic devices as mobile robots, including humanoid robots and quadruped robotic systems, commonly known as robot dogs. According to the FCC, these network-connected robots collect large amounts of data through cameras, sensors, microphones, and other onboard systems. Officials warned that such information could potentially be exploited by malicious actors for surveillance, support foreign intelligence operations, or allow remote control of the robots through cyberattacks. The restrictions are intended to reduce risks associated with connected robotic systems that may become increasingly common in industrial, commercial, research, and consumer environments. Power Inverters Also Included The FCC also added connected power inverters to the Covered List. Power inverters convert direct current (DC) electricity into alternating current (AC) and are widely used in renewable energy systems, battery storage, power grids, and data centers. According to the FCC, the remote connectivity features built into many modern inverters could introduce cybersecurity vulnerabilities if exploited. Officials warned that compromised inverters could potentially be used to disable equipment, collect sensitive data, enable unauthorized remote access, or support cyberattacks targeting critical infrastructure. The agency noted that these risks become increasingly important as inverter-based energy resources continue expanding across the U.S. electricity grid. Conditional Approval Process The updated rules include a process allowing manufacturers to seek Conditional Approval for affected products. For advanced robotic devices, approvals can be granted by the Department of War. For power inverters, approvals may be issued by either the Department of War or the Department of Homeland Security if those agencies determine that specific products or classes of products do not present unacceptable national security risks. Devices receiving Conditional Approval would remain eligible for FCC equipment authorization. Sources familiar with the process indicated that the FCC is expected to exempt many non-Chinese suppliers, consistent with previous actions involving foreign drones and networking equipment. Impact on Chinese Manufacturers China currently dominates much of the global humanoid robotics industry. According to research firm Omdia, approximately 15,000 humanoid robots are expected to ship globally in 2025. Chinese companies Unitree and AGIBOT each shipped more than 5,000 units, while U.S. companies including Tesla and Figure AI shipped significantly fewer during the same period. Reports estimate that China controls around 85% of the global humanoid robot market, while Counterpoint Research estimates that Unitree holds just under one-fifth of the global market. Unitree was recently added to the Pentagon's list of companies alleged to have links to the Chinese military, a designation Beijing rejects. The company also partnered with Nvidia to integrate the company's Blackwell AI chips into future robotic systems. Nvidia has stated that data collected by these robots remains within the United States and that many of Unitree's customers are U.S. academic and research institutions. Tesla CEO Elon Musk has also acknowledged China's manufacturing strength, stating that Chinese companies are likely to become Tesla's largest long-term competitors in the humanoid robot market. Concerns Over the Inverter Market China is also the world's largest manufacturer of power inverters, led by companies including Sungrow Power Supply and Huawei. Chinese manufacturers have expanded their presence in Western markets by offering lower-priced products. The U.S. Department of Defense is already prohibited from purchasing solar photovoltaic cells, modules, or power inverters produced by foreign entities of concern. Officials have also pointed to lessons from the Volt Typhoon cyber campaign disclosed in 2023, in which attackers compromised privately owned routers to help conceal cyber operations targeting U.S. critical infrastructure. Industry and Political Response U.S. Representative John Moolenaar, chairman of the House Select Committee on China, welcomed the FCC's decision, saying it protects the United States and strengthens the country's robotics industry. Treasury Secretary Scott Bessent recently warned that Chinese artificial intelligence companies could face sanctions if they are found to have stolen U.S. intellectual property. Industry analysts, however, said the restrictions are unlikely to significantly slow China's overall robotics development because of its large domestic manufacturing base and access to other export markets. Morgan Stanley projects that the global humanoid robotics market could reach $15 billion by 2030. Morningstar analyst Kangyuxiao Li said the restrictions may shield U.S. developers from price competition but are unlikely to materially affect China's broader robotics industry. Lian Jye Su, chief analyst at Omdia, said the policy could disrupt existing research and development cooperation between U.S. and Chinese technology companies. China Criticizes the Decision The Chinese Embassy in Washington criticized the U.S. action, urging Washington to stop targeting Chinese companies and threatening them with sanctions. The embassy said China would take necessary measures to protect the interests of its businesses. Speaking in Beijing, Chinese Foreign Ministry spokesperson Mao Ning said the United States was overstretching the concept of national security to suppress Chinese companies. She said protectionism would not improve U.S. competitiveness and would instead harm the interests of American businesses and consumers. Mao added that China would take all necessary measures to protect the legitimate rights and interests of Chinese companies. Broader U.S.-China Technology Strategy The latest restrictions are part of broader U.S. efforts to reduce dependence on foreign technology supply chains and strengthen cybersecurity protections for critical infrastructure. The FCC has previously added certain foreign drones, drone components, and networking equipment to its Covered List over national security concerns. The new measures also come ahead of a planned September meeting between U.S. President Donald Trump and Chinese President Xi Jinping, where technology, trade, and national security issues are expected to remain key topics of discussion.
Read More → Posted on 2026-07-29 13:25:56
TEHRAN — Iran is expected to receive the first shipment within weeks under a contract for up to 400 Chinese-made man-portable air defence systems (MANPADS), according to three sources familiar with the agreement cited by Reuters. The reported contract, valued at $60 million to $70 million, covers between 300 and 400 shoulder-fired air defence missile systems, including the QW-12 and FN-16. If completed as planned, it would represent one of Iran's largest known efforts to strengthen its short-range air defence network since the start of its conflict with the United States and Israel. According to the sources, the agreement was signed with Zhongqing Baoshang International Investment, a Hong Kong-based company that acted as an intermediary between the Iranian side and the Chinese supplier. The company's parent firm, Beijing-based Zhong Qing Bao Shang Group, did not respond to Reuters' request for comment. Focus on Strengthening Short-Range Air Defences The reported purchase comes as Iran seeks to improve protection for military facilities, energy infrastructure and other strategic sites following months of military exchanges involving the United States and Israel. Recent strikes by the United States and Israel have targeted facilities associated with Iran's missile, drone and air-defence programmes. Iran has responded with ballistic missile and drone attacks. Defence analysts note that these developments have highlighted the importance of mobile air-defence systems that can be deployed rapidly around key locations. Unlike fixed air-defence batteries, MANPADS can be carried and operated by small teams, allowing them to be moved quickly and making them more difficult to locate and target. These systems are designed primarily to engage low-flying aircraft, helicopters and drones. QW-12 and FN-16 Missile Systems The reported contract includes the Chinese QW-12 and FN-16 shoulder-fired surface-to-air missile systems. The FN-16 is an upgraded version of the earlier FN-6. It uses a dual-color infrared and ultraviolet (IR/UV) quasi-imaging seeker designed to improve target discrimination and increase resistance to electronic countermeasures such as flares. It is a fire-and-forget missile system with a reported engagement range of up to 6 kilometers. The QW-12 is considered by defence analysts to be less advanced than newer QW-series variants such as the QW-18 and QW-19, but it remains capable of providing short-range protection against low-altitude threats, including drones. The system is reported to offer improved anti-jamming performance while retaining the direct targeting and safe-launch features of earlier models. A European security source told Reuters that authorities were aware of several contracts under discussion involving possible sales of QW-series MANPADS to Iran, including the QW-12, QW-18 and QW-19. Another security source in the Middle East said Iran had sought both QW-12 and QW-18 systems but was unaware that a deal had already been finalized. Planned Delivery Route Sources familiar with the agreement said the initial shipment is planned to be flown from Urumqi in western China before passing through Pakistan en route to Iran. They said it remains unclear whether the final stage of transportation would be completed by air or overland. The sources also cautioned that although the agreement has reportedly been signed, delivery schedules, quantities and other details could still change. Two Western intelligence sources and an Iranian official told Reuters that Tehran has also explored overland routes for transporting Chinese military supplies and dual-use components in a more discreet manner. China and Pakistan Reject the Reports China's Foreign Ministry denied the reports, stating that they were "completely groundless" and adding that China has consistently worked to promote peace and end the conflict. Pakistan's military media wing, the Inter-Services Public Relations (ISPR), also rejected claims that Pakistan would facilitate the transfer of Chinese air-defence systems to Iran, describing such reports as "absolutely concocted and false." Iran's Foreign Ministry did not immediately respond to Reuters' request for comment, while Pakistan's Foreign Ministry also did not provide a response. Broader Defence Procurement Efforts Reuters previously reported that Iran was close to reaching a separate agreement with China involving anti-ship cruise missiles, although it said it could not independently confirm whether that deal had moved forward. The reported MANPADS contract reflects Iran's continuing efforts to strengthen its military capabilities despite long-standing sanctions and restrictions on defence imports. The country continues to rely on a combination of domestic defence production and selected foreign suppliers to maintain and expand its military readiness. Source : Reuters
Read More → Posted on 2026-07-29 13:06:53WASHINGTON — The U.S. Congress has directed the U.S. Navy to conduct a comprehensive review of its torpedo inventory, production capacity, testing infrastructure, and modernization plans under the National Defense Authorization Act (NDAA) for Fiscal Year 2027. The measure is intended to ensure the Navy maintains enough undersea weapons to support operations in two major regional conflicts at the same time. The legislation requires Secretary of the Navy Hung Cao to begin the effort within 90 days after the NDAA becomes law. The review will cover torpedo inventory levels, industrial production, testing systems, supply chain resilience, and future modernization programs. A key requirement of the legislation is the establishment of mandatory inventory floors for every class of U.S. Navy torpedoes and related undersea weapons. These minimum stockpile levels are intended to ensure the Navy maintains sufficient reserves for wartime requirements. The inventory floors will apply to the MK-48 Advanced Capability (ADCAP) heavyweight torpedo, the MK-54 lightweight torpedo, advanced torpedo variants, training and testing rounds, and torpedo countermeasures. The required stockpile levels will be based on Navy assessments of projected torpedo expenditure during a conflict involving two peer or near-peer maritime adversaries. In addition to setting inventory requirements, the NDAA directs the Navy to evaluate the current condition of the U.S. undersea weapons industrial base. The review will identify production bottlenecks affecting key areas, including energetic materials, propulsion systems, acoustic seekers, guidance electronics, specialty metals, undersea weapon integration, manufacturing facilities, and reliance on single-source suppliers. The legislation also requires the Navy to develop a plan to increase production capacity to support both routine peacetime manufacturing and rapid wartime surge production. The plan will examine options such as establishing second-source suppliers for critical components, expanding government-owned and private manufacturing facilities, increasing cooperation between public and private industry, and making greater use of multi-year procurement authority to improve long-term production planning. Congress has also instructed the Navy to strengthen supply chains for sensitive and difficult-to-source components that could become vulnerable during future conflicts. The NDAA further calls for modernization of the Navy's undersea weapons testing infrastructure. Planned improvements include upgrades to target vessels, expansion of undersea test ranges, improvements to digital testing models, and enhanced environmental testing to verify weapon performance in deep-water and Arctic operating conditions. The legislation also directs the Navy to improve resistance to advanced acoustic countermeasures and develop more efficient wartime transportation and logistics methods for undersea weapons. Secretary Cao must submit a comprehensive report within 120 days after the NDAA is enacted. The report will outline the Navy's findings, recommended actions, wartime expenditure estimates, industrial base requirements, production expansion plans, testing improvements, and measures to reduce supply chain risks. Following submission of the report, Secretary Cao is expected to present the findings during congressional hearings, where lawmakers will review production risks, inventory requirements, testing strategies, and investment plans needed to meet future operational demands. The congressional review comes as the Navy continues work on several next-generation undersea warfare programs. Among them is the MK-58 Compact Rapid Attack Weapon (CRAW), developed by Raytheon. The MK-58 is designed for both offensive anti-submarine operations and defensive use as a hard-kill anti-torpedo weapon capable of intercepting incoming torpedoes. According to previously released program information, the weapon uses an electric propulsion system for quiet operation and a stored chemical propulsion system for high-speed intercepts. Its compact size could also allow submarines to carry multiple MK-58 weapons in space typically occupied by a single larger torpedo. The MK-58 was selected over the RAPTOR low-cost heavyweight torpedo. The Navy is also continuing development of improved defensive countermeasures. In February 2026, Ultra Maritime received a contract to develop the next-generation Acoustic Device Countermeasure (ADC) MK6. The system is designed to produce tailored acoustic signatures intended to confuse and divert advanced enemy torpedoes away from U.S. naval vessels. According to the House version of the FY2027 NDAA, the torpedo-related provisions are included in Section 130 under Navy programs. The bill has passed the House of Representatives and, as of late July 2026, remains under consideration.
Read More → Posted on 2026-07-29 12:55:41KYIV, Ukraine — New footage circulating online appears to show Ukraine operating an upgraded, highly mobile version of its STASH short-range air defense system mounted on a Ford F-350 chassis. The video, published on July 28, 2026, and attributed on social media to Ukraine's 208th Anti-Aircraft Missile Brigade, shows the system tracking and intercepting a Russian Shahed/Geran-series strike drone. The footage has not been independently authenticated by Ukrainian authorities at the time of writing. If confirmed, it would represent the first public appearance of the truck-mounted STASH configuration, several months after the system entered Ukrainian service in a trailer-mounted form. New Mobile Configuration The latest version of the STASH system integrates an Israeli-origin RADA radar, a launcher armed with U.S.-made AGM-114L Longbow Hellfire missiles, and fire-control equipment on a single modified Ford F-350 heavy-duty truck. The July 28 footage is described as showing the interception of a jet-powered Shahed/Geran-type drone. Compared with slower propeller-driven variants, jet-powered drones reduce the time available for air defense crews to detect and engage incoming threats. The AGM-114L Longbow Hellfire, originally developed for anti-armor missions, uses a millimeter-wave active radar seeker that provides a fire-and-forget capability. Once launched, the missile can continue tracking its target without requiring continuous guidance from the launcher. The system's Israeli-origin RADA radar is paired with the missile launcher to detect and engage low-altitude aerial targets. Open-source reporting identifies the radar as the RPS-42 Active Electronically Scanned Array (AESA) radar, an S-band system designed to detect slow and low-flying targets. Publicly available information states that some configurations have an instrumented detection range of about 30 kilometers. Public reporting also indicates the AGM-114L has an engagement range of roughly 7 to 11 kilometers, depending on flight trajectory, and carries an approximately 9-kilogram warhead. The missile has been adapted for aerial targets, including drones and helicopters. Evolution From Trailer-Mounted System The STASH system first appeared in Ukrainian service in May 2026. During a large Russian drone attack on May 1, Ukraine's Air Command West released footage showing the system operating from a concealed four-wheeled trailer configuration. The attack reportedly involved more than 400 unmanned aerial vehicles, with at least 58 drones reported shot down in the western sector. At the time, STASH was presented as a compact, low-profile platform designed to defend against low-altitude threats such as Shahed-type drones. The newly observed Ford F-350 configuration replaces the separate trailer and towing vehicle by integrating the radar, launcher, and fire-control system onto a single platform. Defense analysts note that this arrangement can reduce deployment and relocation time while allowing crews to move more quickly between firing positions. A vehicle-mounted configuration may also reduce the time spent at launch locations and improve the ability to reposition during large-scale drone attacks. Ukraine has not released official information regarding the new version's mobility requirements, crew size, or operational doctrine. Links to V2X Tempest Platform Open-source intelligence and defense analysts have linked STASH to the Tempest mobile fires platform developed by American defense company V2X. V2X introduced Tempest in October 2025 during the Association of the United States Army exhibition. The platform was designed as a commercially based, rapid-response air defense system capable of engaging multiple classes of unmanned aircraft while operating with limited exposure. Early Tempest demonstrations used lightweight all-terrain vehicles, commonly described as Can-Am Maverick X3-style buggies, equipped with dual Hellfire launchers and a compact RADA RPS-42 AESA radar. While publicly available information indicates that STASH uses components or design concepts derived from Tempest, it has not been officially confirmed whether the Ford F-350 configuration is a production variant supplied by V2X or a Ukrainian-developed integration based on the original design. Role in Ukraine's Air Defense Network STASH is part of Ukraine's layered short-range air defense network developed to counter Russian one-way attack drones. The system is intended to engage lower-altitude aerial threats, allowing longer-range surface-to-air missile systems to be reserved for more demanding targets. Open-source reporting notes that the AGM-114L Hellfire missile is relatively expensive compared with the drones it is used to intercept, meaning operators may prioritize higher-value targets or employ the system when other interceptors are unavailable. The deployment of mobile STASH systems by units such as the 208th Anti-Aircraft Missile Brigade, which is tasked with defending southern regions including Kherson and Mykolaiv, reflects Ukraine's continued effort to strengthen defenses against persistent drone attacks using radar-guided interceptors and mobile air defense platforms.
Read More → Posted on 2026-07-29 12:42:04WASHINGTON — Teledyne FLIR Defense, a division of Teledyne Technologies Incorporated, has received an order from AeroVironment (AV) to supply its Argus XL counter-drone detection platform for the U.S. Air Force's Titan Multi-Sensor (Titan MS) system. The company announced the award on July 29, 2026. The order supports the Pentagon's Domestic Shield Program, which is focused on protecting U.S. military installations and critical infrastructure from the growing threat posed by small unmanned aircraft systems (sUAS) operating within the United States. Part of $500 Million Pentagon Counter-Drone Contract The Argus XL order is part of a broader three-year, $500 million Indefinite Delivery/Indefinite Quantity (IDIQ) sole-source contract awarded by the Pentagon to AeroVironment. The contract supports the Joint Interagency Task Force 401 (JIATF-401) Domestic Shield Program, which is accelerating the deployment of counter-drone capabilities across the U.S. military. Earlier in July 2026, JIATF-401 issued an $80.5 million task order to AeroVironment under the larger contract for the delivery of the Titan Multi-Sensor (Titan MS) system. The initial deployment will strengthen layered air defense for Air Force Global Strike Command, the organization responsible for the nation's bomber fleet and land-based nuclear missile force. JIATF-401 Expanding Counter-Drone Capabilities JIATF-401 was established by the Pentagon to address the increasing threat posed by small, low-cost drones targeting military bases and critical infrastructure. According to the Department of War, the task force had committed more than $600 million by April 2026 to rapidly field counter-drone systems in support of both the Domestic Shield Program and Operation Epic Fury. Brig. Gen. Matt Ross, director of JIATF-401, has previously said the task force's primary objective is to rapidly deliver counter-drone capabilities to military forces operating both within the United States and overseas. Col. Jason Idleman, chief of the Multi-Domain Operations Division at JIATF-401, said the task force continues working to strengthen the military services' ability to protect personnel and installations from evolving drone threats. Titan MS Combines AI and Multiple Sensors The Titan Multi-Sensor (Titan MS) system serves as the central command and sensor-fusion platform within the defense architecture. It combines data from radar, electro-optical cameras, infrared sensors, and radio-frequency detectors into a single operational picture. Using artificial intelligence and machine learning, the system is designed to detect, identify, classify, track and support the defeat of both remotely piloted and fully autonomous unmanned aircraft systems, reducing the need for operators to monitor multiple independent sensor feeds. Argus XL Provides Frontline Drone Detection Teledyne FLIR Defense's Argus XL will serve as the primary detection component within the Titan MS system. The fixed-site, multi-sensor platform combines radar, electro-optical cameras and infrared imaging to detect and track multiple aerial threats during both day and night, including in poor weather conditions. Its thermal imaging capability enables operators to identify drones by their heat signatures in darkness or through heavy cloud cover. The system also integrates with third-party radio-frequency sensors and counter-drone defeat systems capable of jamming, disabling or destroying confirmed threats. According to Teledyne FLIR Defense, Argus XL provides near-hemispherical coverage over protected locations and can detect and track small and micro drones that older radar systems may struggle to distinguish from birds and other airborne objects. Company Executives Highlight Importance of Early Detection Dr. JihFen Lei, President of Teledyne Defense and Aerospace Group and Senior Vice President of Teledyne Technologies, said the company is pleased to support AeroVironment on the program. "We are proud to collaborate with AV to deliver advanced counter-drone technology that enables the U.S. military to detect, classify, track, and respond to increasingly complex unmanned aerial threats," Lei said. He added that Argus XL, Cerberus XL and other Teledyne FLIR Defense counter-UAS systems provide proven, mission-ready capabilities that are integrated into the Titan MS solution. Lei also emphasized the importance of detection in counter-drone operations, stating: "When countering drone threats, operators can't defeat what they can't find." Domestic Shield Focuses on Protecting Military Bases and Critical Infrastructure AeroVironment Chairman, President and Chief Executive Officer Wahid Nawabi said the broader $500 million Domestic Shield program is intended to protect Americans and the critical infrastructure that supports the country's economy and national security. With Teledyne FLIR Defense supplying the Argus XL detection platform and AeroVironment integrating the Titan MS system, the deployment supports the Pentagon's ongoing effort to strengthen layered counter-drone defenses for Air Force Global Strike Command installations and other critical sites under the Domestic Shield Program.
Read More → Posted on 2026-07-29 12:31:47Moscow — Recent images indicate that Russia, S8000 Banderol cruise missile, ground-based launcher, Kronshtadt Group, Orion UAV, and Mi-28 attack helicopter have become central to a new development, marking the first public appearance of a launcher designed to fire the weapon from a ground vehicle. Until now, the missile had been associated with air-launched platforms, including the Kronshtadt Orion unmanned aerial vehicle (UAV) and the Mi-28 attack helicopter. A photograph published by the Colonel GSh Telegram channel shows a compact launcher mounted on a platform that appears intended for installation on a pickup-type vehicle. The emergence of the system suggests that Russia is expanding the available launch options for the Banderol missile, allowing it to be deployed without relying exclusively on aircraft. A ground-based launcher could increase operational flexibility by enabling missile launches from mobile land vehicles. However, military analysts note that launching a cruise missile from a stationary ground position requires more energy than releasing it from an aircraft already in flight. As a result, unless the ground-launched version has been modified, its operational range would likely be lower than the air-launched variant. Analysts say maintaining the missile's original range could require changes such as a more powerful engine or a reduction in payload weight. No official information has been released confirming whether the ground-launched version has undergone such modifications. S8000 Banderol Cruise Missile The S8000 Banderol, developed by Russia's Kronshtadt Group (also referred to as Kronstadt Group or Kronstadt JSC), is a small jet-powered cruise missile designed with an emphasis on relatively low production costs and simplified manufacturing. Ukrainian Defense Intelligence (HUR) first disclosed the missile's existence and published technical details and component lists in May 2025. The missile has reportedly been in service since 2025 and has been used by Russian forces during the conflict with Ukraine. Before the appearance of the new launcher, it was primarily associated with the Orion UAV, with reports also identifying the Mi-28 attack helicopter as a launch platform. Specifications According to available technical information, the S8000 Banderol has the following characteristics: Length: Approximately 5 meters Fuselage diameter: 30 centimeters Wingspan: Approximately 2.2 meters Maximum speed: 620–650 km/h Cruising speed: 520–560 km/h Maximum stated range (air-launched): Up to 500 kilometers Fuel load: 50–65 kilograms The missile is powered by a Chinese Swiwin SW800Pro (also identified in some reports as the SW800Pro-A95) commercially available turbojet engine. The engine weighs 8.5 kilograms, operates at up to 65,000 rpm, and produces up to 81.6 kgf of thrust. The Banderol carries an OFBCh-150 high-explosive fragmentation warhead with a total mass of 114.3 kilograms, including 49.5 kilograms of explosive material. The explosive mixture consists of HMX (octogen) combined with aluminum powder and a plasticizer. Some reports also refer to a warhead weight of up to 150 kilograms. The missile uses a combination of inertial navigation and satellite guidance. It is also reported to be equipped with the Kometa-M8 jamming-resistant antenna system, designed to improve resistance to electronic warfare. Foreign Components Technical information published by Ukrainian Defense Intelligence indicates that the missile incorporates a range of foreign-made components sourced from multiple countries. Identified parts reportedly include the Chinese turbojet engine, Japanese batteries, South Korean servo drives, Australian telemetry modules, and various U.S.-manufactured electronic components, along with components from other countries. Operational Significance The appearance of a ground-based launcher expands the potential deployment methods for the S8000 Banderol beyond aircraft-based platforms. The system could allow the missile to be launched from mobile ground vehicles, increasing deployment flexibility. Reports published in July 2026 also indicated increased use of the Banderol missile, with Ukrainian sources documenting multiple strikes over a short period. The newly observed launcher represents the first publicly known ground-based launch system for the missile, although no official Russian announcement has been made regarding its operational status or performance.
Read More → Posted on 2026-07-29 12:13:19BRUSSELS, Belgium — The European Defence Agency (EDA) has selected five European defence technology companies to advance to the field-testing phase of its Sentinel Strike Challenge, a competition designed to evaluate next-generation loitering munition systems under realistic operational conditions. The selected companies will deploy their systems this autumn at the Santa Margarida Military Training Area in central Portugal as part of the Hub for European Defence Innovation (HEDI) Operational Experimentation Campaign 2026 (OPEX26). The challenge aims to provide European defence ministries with objective performance data rather than select systems for procurement. Five Companies Advance to Stage 2 Following a highly competitive first stage that attracted more than 140 expressions of interest from organizations across Europe, the EDA selected the five highest-ranked proposals based on technical maturity, operational relevance, safety, and demonstration feasibility. The companies advancing to the operational field trials are: Helsing (Germany) Destinus (Netherlands) C-Astral (Slovenia) UAVision (Portugal) Spirit Aeronautical Systems (Greece) Each company has received a €30,000 Stage 1 prize and will now compete for a share of the €1.8 million Stage 2 prize fund. Five other companies also placed in the top ten but will not participate in the field-testing phase. They are Renegade UxS and Robotto from Denmark, Cerberon Defence Systems from Germany, THALES LAS from France, and ALTUS LSA from Greece. Each has been awarded a €10,000 Stage 1 prize. Operational Trials in Portugal The second stage of the competition will be conducted at the Campo de Instrução Militar de Santa Margarida, an active military training area located about 130 kilometers northeast of Lisbon. Covering approximately 62 square kilometers, the facility includes firing ranges, vehicle courses, and specialized military infrastructure suitable for operational experimentation. The field trials will form part of the OPEX26 campaign and will be carried out alongside the Portuguese Army's ARTEX26 technological experimentation exercise. The combined activities are intended to create a regulatory environment that allows prototype defence technologies to be evaluated under realistic, degraded, and contested operational conditions. According to the current schedule: System acceptance: 21–25 September 2026 Operational experimentation: 28 September–9 October 2026 High-visibility demonstration event: 14 October 2026 (subject to confirmation) Demonstrations may include live-fire activities, subject to safety requirements and host-nation authorization. Focus on Class I Loitering Munitions The Sentinel Strike Challenge focuses on Class I aerial loitering munition systems with a maximum take-off mass of up to 25 kilograms and an operational range of up to 40 kilometers. Often referred to as attack drones, loitering munitions are designed to search for targets before conducting a precision strike. Military personnel from EU Member States will assess each system across the complete precision strike mission cycle, including: Mission planning and preparation Deployment Launch or release Target detection and identification Target tracking Precision engagement Post-engagement damage assessment The evaluation will also compare system performance and resilience when operating under the same operational scenarios. Data Collection, Not Procurement The EDA has emphasized that the Sentinel Strike Challenge is not a procurement competition. Advancing to Stage 2 or winning the challenge does not guarantee future defence contracts or deployment. Instead, the programme is intended to generate objective and comparable operational data that can help European defence ministries assess emerging loitering munition technologies before making future capability and investment decisions. By testing multiple systems in the same operational environment with direct involvement from military users, the challenge aims to provide practical evidence on system performance under realistic conditions. Responding to Rapid Technological Change According to the EDA, recent conflicts have accelerated the development and operational use of loitering munitions, with technological advances often moving faster than traditional defence acquisition cycles. The Portugal trials are designed to provide a common testing environment where participating systems can be evaluated under consistent operational conditions, allowing defence organizations to compare capabilities using standardized data. Winners to Be Announced in 2027 The Sentinel Strike Challenge has a total prize budget of €2 million, including up to €200,000 for Stage 1 and up to €1.8 million for Stage 2. Following the completion of the operational trials in Portugal, the overall winners are expected to be announced in early 2027, with an award ceremony planned during the European Defence Agency Annual Conference. Source : eda.europa.eu
Read More → Posted on 2026-07-29 12:05:34BRASILIA — South Korea and Brazil have signed a memorandum of understanding (MOU) on space cooperation, marking a new phase in bilateral aerospace relations and expanding collaboration in commercial space launches, satellite data sharing, lunar exploration, and the development of the space industry. The agreement was signed on July 27, 2026, during a summit in Brasilia between South Korean President Lee Jae Myung and Brazilian President Luiz Inácio Lula da Silva. The MOU was concluded between the Korea AeroSpace Administration (KASA) and Brazil's Space Agency (AEB) for the peaceful use of outer space. First Space Agreement with Latin America The agreement is KASA's first space cooperation pact with a Latin American country and follows earlier discussions between the two governments, including a summit held in Seoul in February 2026. The MOU is intended to strengthen long-term cooperation in the space sector while providing a framework for scientific, technological, and commercial collaboration. Focus on Commercial Space Launches A key objective of the agreement is to simplify launch licensing regulations and administrative procedures for South Korean aerospace companies seeking to use Brazil's Alcântara Space Center. Located near the equator, the Alcântara Space Center offers geographical advantages for certain satellite missions by reducing fuel requirements for specific orbital trajectories, making it an attractive location for commercial launch providers. By streamlining regulatory procedures, the agreement aims to create a more predictable environment for commercial launches and improve access to Brazilian launch infrastructure for South Korean companies looking to expand their presence in Latin America. Broader Areas of Cooperation In addition to launch operations, the two space agencies agreed to cooperate in several areas, including: Development of the space industry and space economy Launch licensing regulations Satellite data sharing Lunar exploration Scientific, technological, and commercial activities related to the peaceful use of outer space Building on INNOSPACE's Alcântara Mission The agreement builds on recent cooperation between the two countries. In December 2025, South Korean launch company INNOSPACE carried out Korea's first commercial space launch attempt from the Alcântara Space Center using its HANBIT-Nano rocket under the Spaceward mission. The mission carried eight small satellites and payloads from Brazil, India, and South Korea. Although the rocket experienced an anomaly and failed shortly after liftoff, later analysis attributed the failure to a gas leak. Despite the outcome, the mission marked the first commercial orbital launch attempt from Brazilian territory in 22 years and became an important milestone in bilateral space cooperation. Officials said the operational and logistical experience gained during the mission helped lay the foundation for the new agreement. Support for Future Launch Activities According to South Korean officials, the MOU will provide practical support for Korean aerospace companies by reducing launch-related administrative barriers and improving access to Brazilian launch facilities. The agreement is expected to make commercial launch planning more predictable while supporting future space activities between the two countries. INNOSPACE has also continued to identify the Alcântara Space Center as a primary launch site and has indicated plans for additional missions from the facility. Leaders Highlight Expanding Partnership Following the summit, President Luiz Inácio Lula da Silva invited President Lee Jae Myung to return to Brazil in September for a planned joint space launch at the Alcântara Space Center. President Lee said the agreement would strengthen cooperation in commercial launches, satellite data sharing, and space exploration while further expanding collaboration between the two countries' space sectors. Part of Broader Bilateral Cooperation The space cooperation agreement was one of seven memorandums of understanding signed during the July 27 summit. The broader package also included agreements covering supply chains, critical minerals, energy, defense, trade, and cultural exchanges, reflecting efforts by both governments to deepen their strategic partnership. The two leaders also adopted a joint statement describing 2026 as the beginning of a new phase in bilateral relations, with expanded cooperation across multiple sectors, including commercial space and advanced technology.
Read More → Posted on 2026-07-28 16:09:17PLYMOUTH, Minn. — Northrop Grumman is advancing its M230LF Dual Feed Bushmaster Chain Gun and specialized ammunition as militaries seek more effective solutions to counter the growing use of unmanned aerial systems (UAS) on modern battlefields. The company developed the dual-feed configuration to address changing battlefield requirements, where military forces must respond quickly to both aerial drone threats and ground targets. The system allows operators to switch instantly between two different ammunition types without stopping to reload or changing weapons, reducing response time as threats change during combat. According to Northrop Grumman, drones are increasingly being used for intelligence collection, penetrating traditional defenses, and conducting precision attacks. Conventional weapon configurations often required operators to use mixed ammunition belts or separate weapon systems to engage different target types. The M230LF Dual Feed is designed to eliminate that limitation by enabling ammunition selection at the push of a button. "Seeing the emerging needs of the warfighter as C-UAS threats evolve, our team moved with urgency," said Rylan Harris, director of business development for Northrop Grumman armament systems. "We saw where the battlefield was going and built a solution to meet it." Dual-feed design for multiple battlefield threats The M230LF Dual Feed is based on Northrop Grumman's Bushmaster family of chain guns, which evolved from the original M230 cannon used on the AH-64 Apache attack helicopter and its ground-oriented M230LF variant. Its primary feature is a dual-feed mechanism that provides two separate ammunition feed paths. Operators can select the appropriate round immediately without manually changing ammunition belts or replacing the weapon. This enables the same cannon to engage unmanned aircraft overhead and armored or vehicle targets on the ground using different ammunition. Northrop Grumman said the system is intended to improve operational flexibility while simplifying engagement of multiple target types during combat operations. Two ammunition types for different missions The M230LF Dual Feed uses two 30×113 mm ammunition types developed by Northrop Grumman for different operational roles. The XM1211 High Explosive Proximity round was developed with the U.S. Army specifically for counter-unmanned aircraft system (C-UAS) missions. Equipped with a proximity sensor, the round detonates when it detects a target nearby rather than requiring a direct impact. The resulting fragmentation is intended to improve effectiveness against small, fast-moving drones that are difficult to hit directly. Northrop Grumman said the XM1211 has demonstrated effectiveness against unmanned aircraft in real-world applications. If the proximity sensor does not detect a target, the round is designed to self-destruct at maximum range. The second ammunition type, the XM1198 High-Explosive round, is designed to engage armored ground targets and hostile vehicles. "We built this technology because the need is real — and it's ready now to help protect those on the front lines," Harris said. "In the end, defeating drones comes down to reliable capability and the Bushmaster Dual Feed with our proximity ammunition will win the fight." Development and production Northrop Grumman first unveiled the M230LF Dual Feed in October 2024. The company said the system reached Technology Readiness Level (TRL) 6, completed internal live-fire testing, and planned additional demonstrations. The dual-feed cannon maintains a similar weight profile to the existing single-feed M230LF while sharing about 60 percent of its components with the earlier model. According to the company, this commonality is intended to simplify maintenance, reduce logistical requirements, and support existing operators. Northrop Grumman also confirmed it will continue producing the single-feed M230LF for customers who do not require the dual-feed capability. The weapon has an adjustable firing rate of 50 to 200 rounds per minute. The company said the M230LF Dual Feed is suitable for integration on remote weapon stations mounted on 4×4, 6×6, and 8×8 land vehicles, and it has also been demonstrated on systems such as Saab's Trackfire remote weapon station fitted to the CB90 combat boat. Northrop Grumman said the system is intended to provide a kinetic counter-UAS capability against Group 1 and Group 2 unmanned aerial systems while retaining the ability to engage armored ground targets. Expanding manufacturing capacity As global demand for gun-based counter-drone systems continues to grow, Northrop Grumman is expanding production capacity for both the M230LF Dual Feed cannon and its associated ammunition. The company said its investments include manufacturing equipment, production facilities, and tooling to increase output and reduce lead times. "Our advanced ammunition is demonstrating real-world effectiveness against drones, and we're continuing to ramp production on these critically needed rounds to meet escalating global C-UAS threats," Harris said. In December 2025, Northrop Grumman received a U.S. Army contract valued at more than $200 million to produce XM1211 High Explosive Proximity rounds. Production is taking place at company facilities in Minnesota, West Virginia, and Virginia. By combining counter-drone and anti-armor capabilities within a single weapon system, Northrop Grumman is positioning the M230LF Dual Feed Bushmaster Chain Gun as a flexible solution for military forces responding to evolving battlefield threats.
Read More → Posted on 2026-07-28 15:59:09TAMPA, Fla., July 28 — U.S. Central Command (CENTCOM) and the United Arab Emirates (UAE) have reached an agreement to establish their first bilateral military task force focused on accelerating the development and deployment of artificial intelligence (AI) applications for defense operations. The new unit, named Task Force Talon Synapse, is scheduled to officially launch in the coming weeks and will be headquartered in Abu Dhabi. The task force will include approximately 20 American and Emirati personnel with expertise in artificial intelligence, data science, and cybersecurity. According to CENTCOM, the task force will work on safely and effectively integrating AI technologies into joint military operations. Its main areas of focus will include improving intelligence support, protecting critical civilian and military infrastructure, and monitoring the regional security environment across the Middle East. CENTCOM Commander Adm. Brad Cooper described the initiative as an important step in expanding cooperation between the two countries. “This will be a historic milestone as we work with one of our most capable regional partners to rapidly deliver evolving AI advancements to our warfighters,” Cooper said in a public statement. “Together, we and our Emirati partners share a strong commitment to adopting AI applications that will foster innovation at speed and scale.” The concept for Task Force Talon Synapse was first discussed last year during meetings between Adm. Brad Cooper and Sheikh Tahnoon bin Zayed Al Nahyan, the UAE's National Security Advisor and Deputy Ruler of Abu Dhabi. CENTCOM officials later traveled to the UAE last month, where they met with Emirati defense officials and AI industry leaders to finalize operational planning for the new task force. The agreement reflects the growing defense and technology partnership between the United States and the UAE. The Emirates has made significant investments in artificial intelligence in recent years, including establishing the Mohamed bin Zayed University of Artificial Intelligence in 2019 and appointing a federal Minister of State for Artificial Intelligence. The initiative also follows broader U.S.-UAE cooperation in AI and advanced technology. Recent developments include plans for a joint U.S.-UAE AI campus and changes to U.S. export rules related to advanced computing hardware. CENTCOM said the task force will help both countries integrate emerging AI technologies into defense operations while strengthening intelligence capabilities, infrastructure protection, and regional security cooperation. The command announced the agreement through its official channels on July 28, with Task Force Talon Synapse expected to begin operations in the coming weeks.
Read More → Posted on 2026-07-28 15:54:44KYIV, Ukraine — Ukrainian forces have shot down a Russian Forpost-R multirole unmanned aerial vehicle (UAV) over Russia's Kursk region using a domestically developed Chaklun-KM interceptor drone, marking another confirmed loss of one of Russia's relatively rare reconnaissance and strike drone platforms. According to Ukraine's Unmanned Systems Forces, the interception took place on July 27, 2026, during an operation carried out by drone pilots from the 7th Battalion "Topota" of the 414th Separate Unmanned Systems Brigade, commonly known as "Magyar's Birds." Commander of Ukraine's Unmanned Systems Forces, Robert Brovdi, known by the callsign "Magyar," said the Chaklun-KM interceptor successfully engaged the target at an altitude of 4.3 kilometers (approximately 14,100 feet) over Russia's Kursk region. Video of the interception was later released by the brigade. ⚡️A Russian Forpost-R has been hunted down and shot down – a heavy, high-value strike and reconnaissance UAV capable of carrying guided munitions.The platform, capable of carrying KAB-20 laser-guided aerial bombs, was detected and destroyed on July 27, 2026, over Russia’s Kursk… pic.twitter.com/kCViSek7aC — 414 Magyar's Birds (@414magyarbirds) July 27, 2026 The downed aircraft was identified as a Forpost-R, a reconnaissance and strike UAV capable of carrying guided aerial munitions. According to available records, this is the sixth visually confirmed destruction of a Forpost-R since the start of Russia's full-scale invasion of Ukraine and the second such drone destroyed by the 414th Brigade, following an earlier interception in April 2025. The successful engagement highlights the increasing use of dedicated interceptor drones by Ukrainian forces to counter Russian reconnaissance and strike UAVs operating at higher altitudes. Russian Forpost-R Drone The Forpost is a Russian reconnaissance and strike unmanned aerial system produced under license from the Israeli IAI Searcher Mk II, originally developed by Israel Aerospace Industries. Russia first acquired the platform in 2009, purchasing two Searcher II UAVs for evaluation at a cost of US$12 million. In 2010, Russia signed a US$300 million agreement to assemble the drones from Israeli-supplied kits at the Kazan Helicopter Plant. Localized production began in 2012 at the Ural Civil Aviation Plant, where the aircraft entered service under the name Forpost. Each Forpost system consists of the unmanned aircraft and a ground control station. The original version is equipped with electro-optical and infrared imaging systems that enable day-and-night reconnaissance missions. It has an operational range of up to 250 kilometers when using a directional antenna and an endurance of up to 18 hours. Russia introduced the upgraded Forpost-R in 2019. The newer version is powered by the domestically produced APD-85 engine and has a maximum take-off weight of 500 kilograms. Its service ceiling is 5 kilometers, and unlike the original model, it can carry light guided munitions for strike missions. KAB-20 Guided Bomb One of the primary weapons carried by the Forpost-R is the KAB-20 guided aerial bomb, which is also used by Russia's Orion unmanned aerial system. The KAB-20 measures 900 millimeters in length, has a 130-millimeter body diameter, and a 350-millimeter wingspan. The munition weighs 21 kilograms, including a 7-kilogram high-explosive fragmentation warhead. When released from high altitude, its maximum stand-off range is up to 8 kilometers. The bomb is produced in two known variants. The KAB-20L uses laser guidance, while the KAB-20S employs a satellite navigation guidance system and was officially accepted into Russian service in April 2023. There have also been reports suggesting Russia has been developing a version capable of targeting mobile phone signals. However, no confirmed information has been released regarding its adoption or operational use. Previous Ukrainian Interceptions Ukrainian forces have been engaging Forpost-family drones since the Anti-Terrorist Operation (ATO) in the Donbas. The first confirmed interception occurred in August 2014, when an Israeli-made IAI Searcher UAV with board number 920 was shot down near Vilkhivchyk (then known as Novopetrivske). Later that year, additional IAI Searcher drones with board numbers 905 and 916 were also shot down. On May 4, 2015, reports indicated that another IAI Searcher had been destroyed, although further details were limited. On May 20, 2015, Ukrainian forces confirmed the destruction of a Russian Forpost UAV with board number 923. The last known interception during the ATO period occurred in October 2016, when an IAI Searcher carrying board number 915 was shot down. The latest interception over the Kursk region adds another confirmed loss to the Forpost-R fleet and demonstrates the continued use of Ukrainian-developed interceptor drones against Russian reconnaissance and strike UAVs operating near the battlefield.
Read More → Posted on 2026-07-28 15:46:17ODESA, Ukraine — Russian forces have deployed a modified version of the Geran-series one-way attack drone, known as the Seeker variant, featuring upgraded optical targeting, autonomous terminal guidance, and mesh-network communication systems. The new configuration is designed to engage high-value and dynamic targets, expanding the capabilities of the baseline Geran-2, the Russian-produced version of the Iranian Shahed-136. Information on the upgraded drone comes from the examination of a Seeker-equipped Geran-2 recovered near Odesa, statements by Ukrainian specialists, and open-source imagery analyzed through mid-to-late July 2026. According to the recovered airframe, the Seeker variant incorporates a multi-sensor package that enables operators to identify and engage targets with greater precision than earlier versions, which primarily relied on pre-programmed flight paths and fixed target coordinates. Dual-Camera Targeting System One of the main upgrades is a dual-camera arrangement connected to a mesh modem through an onboard Ethernet switch. One camera provides a rearward view, allowing operators to monitor the surrounding airspace and maintain situational awareness during flight. The second forward-facing camera is designed for target acquisition and includes zoom capability. Analysis of the recovered drone showed that this optical unit also includes day and thermal imaging functions as well as a laser rangefinder, enabling operators to identify and measure the distance to intended targets. The system allows the operator to locate and lock onto a target before the drone begins its final attack phase. Autonomous Terminal Guidance The Seeker variant also incorporates an automatic target recognition (ATR) system supported by onboard processing built around a Raspberry Pi single-board computer architecture. During an attack, the operator uses the drone's camera feed transmitted through the mesh network to identify a target, typically from approximately one kilometer away. After the target is selected and locked, the onboard guidance system takes control of the final approach. This autonomous terminal guidance enables the UAV to continue toward the designated target even if communication with the operator is interrupted during the final stage of flight. Mesh Network and Telemetry The upgraded drone uses mesh-network modems with dedicated antennas to maintain communication between the UAV and its operator. Unlike conventional direct radio links, mesh networking is designed to route data through multiple available paths, supporting command transmission and live video feeds. The Geran-2 recovered near Odesa was also fitted with a commercial LTE modem. According to the available analysis, this modem is used for transmitting real-time flight telemetry. Designed for High-Priority Targets Ukrainian radio-technology specialist and Defense Ministry adviser Serhii Beskrestnov, known by the callsign Flash, described the Seeker as a modification intended to locate and strike particularly important targets. According to the available information, the Seeker equipment package can be integrated into Geran-2 through Geran-4 airframes. Jet-powered Geran-4 Seeker variants have also appeared more frequently in recent months. The combination of electro-optical sensors, thermal imaging, operator video transmitted through the mesh network, onboard target recognition, and autonomous terminal guidance enables the drones to engage both fixed and moving targets. Similar Systems Observed on Other UAVs Open-source analysis has also identified similar camera systems, mesh communication equipment, and autonomous terminal-guidance components on Gerbera unmanned aerial vehicles, suggesting that these technologies are being adopted across related drone platforms. The Seeker modification represents an incremental development of the long-range Geran UAV family. Based on the analysis of recovered airframes, statements from Ukrainian specialists, and publicly available imagery, the upgraded configuration introduces enhanced sensing, communication, and terminal guidance capabilities while maintaining the overall design of the Geran platform.
Read More → Posted on 2026-07-28 15:27:59Washington, D.C. — The U.S. Department of Defense (DoD) has launched a new initiative to accelerate the development of affordable, mass-produced long-range precision strike weapons as it looks to supplement its inventory of high-cost guided munitions with scalable alternatives. Managed by the Defense Innovation Unit (DIU), the new Ground-Based Affordable Mass (G-BAM) challenge invites defense companies and technology firms to propose mature, low-cost strike systems that can be rapidly tested, certified, and moved into production. The initiative is designed to support sustained military operations by providing commanders with more affordable long-range strike options while preserving high-end precision weapons for priority targets. The announcement comes as recent conflicts and ongoing regional tensions have highlighted the challenges of relying heavily on expensive precision-guided weapons. According to the DIU, future conflicts will require the Joint Force to generate long-range effects at a scale, cost, and pace that current inventories alone cannot support. Focus on Affordable Long-Range Strike Systems The G-BAM program aims to complement existing high-end precision munitions rather than replace them. By fielding lower-cost weapons in larger numbers, the Pentagon intends to expand the range of targets that can be engaged while maintaining sufficient stocks of advanced munitions for missions requiring higher-end capabilities. The effort aligns with the Direct Reporting Portfolio Manager for Unmanned Systems (DRPM-UxS), a recently established office focused on rapidly fielding low-cost autonomous systems at scale. The DoD is seeking systems that can be demonstrated within 60 to 90 days and transitioned into production within 12 to 18 months, reflecting one of the department's fastest acquisition timelines for a long-range strike capability. Technical Requirements The Defense Innovation Unit has outlined several mandatory performance and production requirements for proposed systems. The preferred system should include: Minimum range of 600 nautical miles. Payload capacity of at least 35 pounds, with more than 100 pounds strongly preferred. All-up flyaway cost below $250,000 at production scale. Existing manufacturing capacity or a credible plan to produce more than 100 systems per month. Ground launch capability without proprietary launch infrastructure, with remote, low-signature, and containerized launch methods preferred. In addition, the Pentagon is seeking systems capable of operating in contested environments, including those affected by electronic warfare and GPS disruption. Desired capabilities include automatic target recognition, autonomous terminal guidance, alternative or redundant Position, Navigation and Timing (PNT) technologies for GPS-denied environments, and compatibility with existing targeting, command-and-control, and fires networks. The department has not specified whether the final solution must be a missile or a one-way attack drone. Instead, it is seeking any ground-launched autonomous precision strike system that meets the required operational objectives. Submission and Demonstration Timeline Companies interested in participating must submit either a pitch deck of no more than 15 slides or a white paper of up to five pages by August 5, 2026, at 11:59 p.m. Eastern Time. Each submission must also include a recorded video showing the proposed system operating in a real-world environment. The competition is open to both U.S. and international vendors, and prior combat use is not required, although demonstrated operational performance is considered an advantage. Selected participants will advance to a Phase II flight demonstration scheduled for early November at a government test site. During the event, each team will provide a 30-minute system presentation followed by technical discussions with government and allied experts. Each Phase II participant will receive a $250,000 cash prize and must provide at least three representative inert systems while limiting its demonstration team to no more than eight personnel. The highest-rated proposals may receive up to $5 million to deliver operational test quantities directly to military units. Transition Opportunities Beyond the prize competition, successful participants may become eligible for additional government contracting opportunities. These include Prototype Other Transaction agreements under 10 U.S.C. § 4022, follow-on production contracts, and Army Small Business Innovation Research (SBIR) Direct-to-Phase II awards of up to $2 million for qualifying U.S. small businesses. The Pentagon has allocated up to $250 million for prize execution and follow-on transition activities associated with the G-BAM challenge. The UK Ministry of Defence is also supporting the initiative by contributing expertise related to long-range strike systems. Part of a Broader Pentagon Strategy The G-BAM challenge is one element of the Pentagon's broader effort to develop lower-cost, mass-producible precision strike capabilities. Related initiatives include the Family of Affordable Mass Missiles (FAMM-BAR) program, which is developing methods to launch cruise missiles from standard cargo aircraft, and the Low-Cost Containerized Missiles program, which focuses on reducing the cost of advanced strike weapons. Through these efforts, the Department of Defense aims to expand production capacity, reduce operational costs, and improve the ability to sustain long-duration military operations while reducing dependence on limited inventories of expensive precision-guided munitions. Source : Defensenews.com
Read More → Posted on 2026-07-28 14:41:17
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