Defense & Military
Rostec Showcases Yak130M AnsatM and Su57E at Dubai Airshow 2025
Rostec debuts Yak-130M, Ansat-M, and Su-57E at Dubai Airshow 2025, highlighting import-substitution and advanced aerospace tech.

Rostec’s High-Stakes Showcase at Dubai Airshow 2025
The Dubai Airshow stands as a premier global stage for the aerospace and defense industries, a place where innovation, strategy, and international partnerships converge. For the 2025 event, scheduled for November 17-21, Russia’s State Corporation Rostec is set to make a significant statement. The corporation is not merely presenting its latest hardware; it is showcasing a strategic pivot towards technological sovereignty and a targeted appeal to the Middle Eastern market. This year’s exhibition will be marked by the international debuts of two key platforms: the modernized Yak-130M combat trainer and the fully domestically produced Ansat-M helicopter.
These unveilings are more than just product launches; they represent a calculated response to a shifting geopolitical landscape. The emphasis on “import-substituted” components, particularly in the Ansat-M, underscores a broader push for self-reliance within Russia’s defense industry. By presenting aircraft that are independent of foreign supply chains, Rostec aims to offer its partners a degree of reliability and operational security. Alongside these premieres, the Middle Eastern debut of the Su-57E, the export version of Russia’s fifth-generation fighter, signals a clear intent to compete at the highest echelon of military aviation and capture the attention of nations seeking advanced aerial capabilities.
The Yak-130M: A Trainer Evolved for Modern Combat
The Yakovlev Yak-130 has long been respected as an advanced jet trainer, designed to prepare pilots for the complexities of flying 4th and 5th generation fighters. However, the Yak-130M represents a significant evolution of this platform, transforming it from a dedicated trainer into a versatile and potent light combat aircraft. This modernization effort is aimed squarely at international clients who require a multi-role, cost-effective solution that can perform both training and combat missions without the expense and logistical footprint of a heavier fighter.
Upgraded Firepower and Advanced Avionics
The core of the Yak-130M’s transformation lies in its enhanced combat systems. The aircraft is fitted with a new aviation weapons system, enabling it to carry a combat load of up to 3,000 kg across nine hardpoints. This allows for a wide array of munitions, including sophisticated air-to-air missiles and high-precision air-to-ground weapons guided by satellite and laser systems. This expanded arsenal turns the trainer into a credible threat in a variety of combat scenarios.
To effectively deploy these weapons, the Yak-130M features a completely new suite of airborne equipment. This includes a BRLS-130R airborne radar and a SOLT-130K electro-optical/laser targeting system, which together provide the pilot with superior situational awareness and targeting capabilities. Complemented by a modern KSS-130 communications unit, these systems ensure the aircraft can operate effectively day or night and in all weather conditions, a critical requirement for modern military operations.
Further bolstering its capabilities, the aircraft is equipped with a “President-S130” onboard defense system designed to counter missile threats, enhancing its survivability in contested airspace. A new SM-100 engine option, derived from the AI-222-25, has also been developed, reportedly delivering a 20% increase in thrust and doubling the service life, which translates to improved performance and lower operational costs over the aircraft’s lifespan.
The Yak-130M is engineered to bridge the gap between pilot training and active combat, offering a single, versatile platform for air forces seeking to optimize their fleets and budgets.
Ansat-M: A Testament to Technological Sovereignty
The Ansat-M helicopter is perhaps the clearest example of Rostec’s strategic focus on “import substitution.” This upgraded version of the Ansat light multipurpose helicopter has been systematically redesigned to eliminate reliance on foreign components, a direct response to international sanctions that previously halted the supply of its engines. The successful maiden flight with its new Russian-made engines in the autumn of 2025 marked a critical milestone in this endeavor.
A Russian Heart: The VK-650V Engine
The most significant upgrade in the Ansat-M is the replacement of its Canadian-made Pratt & Whitney engines with two domestically produced VK-650V turboshaft engines. Developed by UEC-Klimov, each engine provides approximately 650 horsepower, ensuring the helicopter maintains its performance characteristics while being completely independent of external supply chains. This move is not just a technical achievement but a powerful selling point for international customers concerned about the long-term sustainability and serviceability of their equipment.
Beyond the new powerplants, the Ansat-M features a modernized airframe with a significant increase in the use of composite materials, rising from 15% to 35%. This change enhances structural strength while reducing overall weight, contributing to improved efficiency and performance. The helicopter’s maximum takeoff weight has been increased to 3,800 kg, and its flight range is approximately 400 km, which can be extended to 600 km with the installation of auxiliary fuel tanks, making it suitable for a wider range of missions.
The modernization extends to its internal systems, with the Ansat-M now equipped with Russian-made avionics, a modern autopilot, and an upgraded fuel system. It boasts the most spacious cabin in its class, capable of carrying 7-8 passengers or a payload of over 1.2 tons. This versatility makes it an ideal platform for various roles, including passenger and cargo transport, medical evacuation, and operations in dense urban environments.
The Su-57E: Russia’s Fifth-Generation Pitch
While the Yak-130M and Ansat-M highlight versatility and self-reliance, the Su-57E represents the pinnacle of Russia’s current aerospace technology. The export variant of the country’s fifth-generation stealth multirole fighter, its participation in the Dubai Airshow’s flying display marks its first public demonstration in the Middle East. Rostec is positioning the Su-57E as a battle-tested platform, claiming it is the only fifth-generation fighter to have proven its efficiency in large-scale combat operations.
The Su-57E is defined by its advanced features. Powered by two AL-41F1 turbofan engines with thrust vectoring, it can achieve speeds of up to Mach 2 and has supercruise capability, allowing it to maintain supersonic flight without the use of fuel-guzzling afterburners. Its design incorporates stealth technology to reduce its radar and infrared signature, making it difficult to detect and track. The aircraft’s sensor suite is built around the advanced N036 Byelka Active Electronically Scanned Array (AESA) radar systems, with a reported range of 400 km, and the L402 Himalayas electronic warfare system, providing comprehensive situational awareness and self-protection.
As an export version, the Su-57E may have some differences compared to the model used by the Russian Air Forces. These could include variations in cost, materials, available weaponry to comply with export regulations, and potentially certain sensitive avionics systems like Identification Friend or Foe (IFF). Nevertheless, its presence and performance in the skies over Dubai are intended to send a clear message to potential buyers in the region about its availability and formidable capabilities.
Concluding Section: A Strategic Display of Resilience and Ambition
Rostec’s lineup for the Dubai Airshow 2025 is a clear reflection of a dual strategy. On one hand, it demonstrates a commitment to technological resilience through the development of import-substituted platforms like the Ansat-M. This addresses a practical need for sanction-proof supply chains and offers customers a guarantee of operational continuity. On the other hand, with the modernized Yak-130M and the advanced Su-57E, Rostec is showcasing its ambition to compete across the full spectrum of the global defense market, from cost-effective multi-role aircraft to cutting-edge fifth-generation fighters.
The reception these aircraft receive in Dubai will be a crucial barometer for the future of Russia’s aerospace exports. The focus on modularity, domestic production, and proven performance is tailored to meet the evolving demands of international partners, particularly in the Middle East. As nations seek to diversify their military assets and secure their supply chains, the platforms unveiled by Rostec offer a compelling, and strategically independent, alternative. The success of this showcase will not only impact sales figures but will also shape perceptions of Russia’s role as a key player in the global defense industry for years to come.
FAQ
Question: What are the main new aircraft Rostec is debuting at Dubai Airshow 2025?
Answer: Rostec is holding the first international presentation of the modernized Yak-130M combat trainer and the fully domestically produced Ansat-M helicopter.
Question: What is the most significant upgrade to the Ansat-M helicopter?
Answer: The most critical update is the replacement of its previous Canadian-made engines with new, Russian-made VK-650V turboshaft engines, making the helicopter independent of foreign suppliers.
Question: What makes the Yak-130M different from the original Yak-130?
Answer: The Yak-130M is a significant modernization that enhances its combat capabilities, turning it into a light combat aircraft. Key upgrades include a new airborne radar, an electro-optical targeting system, and the ability to carry a wider range of high-precision weapons.
Question: Is the Su-57E being shown for the first time?
Answer: While not its first-ever appearance, the Dubai Airshow 2025 will mark the Su-57E’s debut in the Middle East, where it will participate in the event’s flying display.
Sources: Rostec
Photo Credit: Rostec
Defense & Military
BAE Systems Unveils Brontanax UK Autonomous Combat Aircraft
BAE Systems and the UK MoD unveiled Brontanax, the UK’s first uncrewed CCA, at Farnborough 2026.

BAE Systems and the United Kingdom Ministry of Defence (MoD) unveiled Brontanax, the nation’s first uncrewed autonomous Collaborative Combat Aircraft (CCA), at the Farnborough International Airshow on July 22, 2026. The five-metric-ton aircraft is designed to operate alongside crewed fighter jets, providing electronic warfare and precision strike capabilities to the fleet.
According to a BAE Systems press release, the platform serves as the manufacturers offering for the UK government’s £300 million Storm Fighter program. The initiative aims to establish the Royal Air Force (RAF) as Europe’s first sixth-generation air force by integrating uncrewed systems with existing crewed fighters like the Eurofighter Typhoon and the Lockheed Martin F-35 Lightning II.
The Storm Fighter program and development timeline
Development of the Brontanax platform began internally at BAE Systems in 2022. The manufacturer has invested approximately £300 million to date to fund the project. The UK government formalized its financial backing on July 1, 2026, through its Defence Investment Plan, committing an initial £300 million to the sovereign autonomous combat air initiative.
UK Defence Secretary Wes Streeting highlighted the strategic importance of the platform during the unveiling event at Farnborough, noting the government’s intent to adopt the aircraft as an operational concept demonstrator.
“The unveiling of Brontanax, the UK’s first uncrewed autonomous Collaborative Combat Aircraft, is a testament to the extraordinary talent and innovation across our sovereign defence industry. Built at BAE Systems in Warton by British engineers, backed by British businesses large and small, this aircraft demonstrates that the UK has the skills, the technology and the determination to lead the world in combat air power.”
The prototype is scheduled for its first power-up in the third quarter of 2026. Ground trials are slated to begin in the first half of 2027, followed by flight trials in UK airspace in the second half of the year. The RAF plans to bring the aircraft into service before 2030.
Industrial footprint and supply chain realities
The Brontanax program currently involves more than 500 BAE Systems employees and engages over 75 UK companies and small-to-medium enterprises. The aircraft was designed and built at the BAE Systems facility in Warton, Lancashire.
While marketed as a sovereign British aircraft, the initial iterations of the drone utilize a US-made Williams International engine. BAE Systems and the RAF intend to transition to a British powerplant developed by Rolls-Royce for future production models.
Air Chief Marshal Sir Harv Smyth, Chief of the Air Staff, stated that the RAF is working closely with the manufacturer to meet the aggressive development schedule, confirming that a prototype is expected to fly next year.
AirPro News analysis
The unveiling of Brontanax signals the United Kingdom’s formal entry into the highly competitive CCA market. We are seeing a global surge in the development of these uncrewed systems, with aerospace manufacturers including Airbus, Boeing, Anduril, and General Atomics competing for contracts across multiple allied nations.
The primary driver behind this shift is combat mass. Traditional crewed fighters are highly capable but expensive to procure and operate. A large CCA is estimated to cost approximately 25 percent of a traditional crewed fighter. By pairing uncrewed systems with crewed jets, air forces can significantly expand their tactical footprint, sensor networks, and weapons capacity without a proportional increase in procurement budgets or pilot training requirements. The transition from the Williams International engine to a Rolls-Royce powerplant will be a critical milestone to watch as the UK attempts to secure a fully sovereign supply-chain for the Storm Fighter program.
Sources: BAE Systems Press Release
Photo Credit: BAE Systems
Defense & Military
GE Aerospace and Shield AI Complete X-BAT Engine Test
GE Aerospace and Shield AI complete AVEN thrust-vectoring nozzle testing on the F110-GE-129E, keeping X-BAT on track for late 2026 first flight.

GE Aerospace and Shield AI have successfully completed integration, actuation, and engine light-off testing of a multi-axis thrust-vectoring nozzle on an F110-GE-129E engine, clearing a major propulsion hurdle for the X-BAT vertical take-off and landing combat aircraft.
Announced in a July 20, 2026, press release, the testing took place at GE Aerospace’s operations site in Peebles, Ohio. The campaign represents the first fully integrated test of the Axisymmetric Vectoring Exhaust Nozzle (AVEN) hardware and control systems since its original development in the 1990s. The successful light-off keeps the X-BAT program on schedule for a planned first flight in late 2026.
Resurrecting thrust vectoring for vertical flight
The AVEN system pivots engine exhaust in three dimensions, providing the precise directional control required for the aircraft to balance on its tailpipe during vertical takeoff and landing (VTOL) maneuvers. Originally designed in the 1990s, the AVEN program accumulated 73 hours of ground testing and 135 flight hours across 95 flights on an experimental F-16 before being shelved.
Shield AI and GE Aerospace are now adapting that legacy hardware to meet the demands of modern autonomous flight. The integration requires the nozzle to execute rapid, coordinated movement sequences driven by Shield AI’s flight control software.
“The AVEN is what makes vertical flight possible on a platform this size and this capable. We’re applying it differently than it was ever used before. Vertical flight requires fast gimbaling to maintain attitude control, a demand the original program never had to meet,” said Armor Harris, Senior Vice President of Aircraft Engineering at Shield AI.
Harris noted that utilizing hardware with a proven track record allowed the engineering teams to bypass the initial stages of clean-sheet development. The next phase of the program will focus on iterating the propulsion approach to reduce weight and increase speed for future variants.
Scaling the X-BAT for contested environments
Shield AI unveiled the X-BAT in Washington, D.C., on October 21, 2025. The aircraft is designed as a Collaborative Combat Aircraft (CCA) capable of operating independently or as a drone wingman in contested airspace. By November 5, 2025, Shield AI and GE Aerospace had signed a Memorandum of Understanding to collaborate on the platform’s propulsion, selecting the F110-GE-129 engine paired with the AVEN system.
The aircraft relies on Shield AI’s Hivemind autonomy software to conduct missions without traditional runway infrastructure. According to reporting by Tectonic Defense, the X-BAT measures 26 feet in length and features a 39-foot wingspan. Naval News estimates the platform will achieve a range exceeding 2,000 nautical miles and an operational ceiling of 50,000 feet, positioning it for both austere land bases and potential naval integration.
Amy Gowder, President and CEO of Defense & Systems at GE Aerospace, stated that pairing the company’s propulsion scaling experience with Shield AI’s vehicle development allows the program to move rapidly from concept to fielded capability.
AirPro News analysis
We view the successful light-off of the AVEN-equipped F110 as a validation of Shield AI’s strategy to integrate mature subsystems rather than developing bespoke hardware. The GE Aerospace F110 engine family has accumulated 11 million flight hours. By pairing a highly reliable, mass-produced core engine with a previously flight-tested 3D vectoring nozzle, the X-BAT program significantly reduces its technical risk profile.
The primary challenge moving forward will be software integration. While the AVEN hardware is proven, the 1990s-era actuators were not designed for the continuous, high-frequency gimbaling required to stabilize a tail-sitting VTOL aircraft in turbulent conditions. Shield AI’s Hivemind system will need to manage these actuation limits carefully to prevent mechanical fatigue while maintaining attitude control during the critical transition between vertical and forward flight.
Sources: GE Aerospace
Photo Credit: GE Aerospace
Defense & Military
Pratt Whitney Completes 3D-Printed TJ150 Turbojet Demo Test
Pratt & Whitney validates additive manufacturing for the TJ150, consolidating 50+ hot section parts into 3D-printed components.

Pratt & Whitney has successfully completed demonstration testing of an additively manufactured TJ150 turbojet engine, a process that consolidated more than 50 individual hot section components into a small number of 3D-printed parts.
The RTX Corporation subsidiary announced the milestone on July 20, 2026, during the Farnborough International Airshow in London. The test results validate the manufacturer’s strategy to use additive manufacturing to simplify design and accelerate production for expendable military propulsion systems.
Consolidating hot section components
According to the press release, nearly 60 percent of the TJ150 engine’s volume was produced using additive manufacturing. This volume includes major static and rotating hardware. By utilizing 3D printing technologies, engineers reduced the complexity of the engine’s hot section and replaced over 50 traditional parts with a handful of consolidated components.
The TJ150 is a 150-pound thrust class turbojet designed for single-use applications.
“For expendable engines like the TJ150, where missions can last minutes or hours, simplifying the design and scaling production quickly is essential to meeting rising demand,” said Jill Albertelli, President of Military Engines at Pratt & Whitney.
Integration with cruise missiles and decoys
The successful demonstration of the 3D-printed TJ150 follows recent contract awards and integration announcements for the engine platform. On March 10, 2026, Pratt & Whitney secured a follow-on contract from Leidos Dynetics to supply TJ150 engines for the AGM-190A small cruise missile.
In a separate announcement on July 15, 2026, Raytheon confirmed plans to prioritize the TJ150 engine for the initial production of the Miniature Air-Launched Decoy (MALD). Raytheon noted that utilizing the existing engine platform keeps restart timelines short while the company explores additively manufactured engines for longer-term opportunities.
Expanding additive manufacturing applications
Pratt & Whitney plans to apply the manufacturing techniques validated during the TJ150 demonstration to other propulsion programs. Albertelli stated that additive manufacturing helps the company move designs from concept to capability faster. She confirmed that the manufacturer is leveraging the TJ150 learnings to benefit other systems, including the Pratt & Whitney Valox engine family.
AirPro News analysis
The successful test of a heavily 3D-printed TJ150 highlights a critical shift in defense aerospace manufacturing. As military operators demand higher volumes of autonomous systems, decoys, and tactical missiles, traditional supply chains for small turbine engines face significant bottlenecks. Casting and machining conventional hot-section components requires extensive tooling and long lead times. By consolidating dozens of parts into a few additively manufactured pieces, we see manufacturers directly addressing the need for rapid scalability.
Expendable engines operate for very short durations, meaning they do not require the same long-term durability as commercial or manned military turbofans. This specific operational profile makes them ideal candidates for additive manufacturing, allowing producers to prioritize production speed and cost reduction over thousands of hours of time-on-wing reliability.
Photo Credit: RTX
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