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Italy Courts Germany and Saudi Arabia to Join GCAP Fighter Program

Italy seeks new GCAP partners as costs triple to €18.6B, with Germany and Saudi Arabia named as candidates for the sixth-generation fighter.

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This article summarizes reporting by Reuters by Angelo Amante.

Italy is actively courting new international partners, including Germany and Saudi Arabia, to join the Global Combat Air Programme (GCAP) in an effort to distribute the sixth-generation fighter’s escalating development costs. The overture follows the recent collapse of a rival European fighter project, positioning the trilateral alliance of the United Kingdom, Italy, and Japan to potentially absorb displaced industrial partners.

Italian Defence Minister Guido Crosetto announced the expansion strategy in Rome on June 23, 2026. According to Reuters, Crosetto emphasized that broadening the coalition would increase the program’s viability by sharing the massive financial burden required to field the advanced aircraft by its 2035 target date.

Expanding the international coalition

The GCAP initiative formally launched in December 2022 to develop a next-generation combat aircraft. While the core partnership remains between the UK Ministry of Defence, the Italian Ministry of Defence, and the Japanese Ministry of Defense, Italian leadership is now publicly identifying specific nations for potential inclusion.

Crosetto noted that Canada has expressed interest in joining the program as an observer, an arrangement Italy fully supports. Beyond observer status, the defense minister explicitly named Germany and Saudi Arabia as candidates for deeper involvement. He stated that adding these nations would improve the chances of successfully delivering the aircraft while driving down overall costs.

The invitation to Germany is particularly notable given the shifting landscape of European defense procurement. Earlier in June 2026, Germany and France abandoned the Future Combat Air System (FCAS) due to unresolvable industrial disputes between Airbus and Dassault Aviation. The dissolution of FCAS leaves Germany without a domestic sixth-generation fighter program, making GCAP a logical alternative. Leonardo S.p.A. Chief Executive Officer Lorenzo Mariani previously signaled support for this pivot on June 9, 2026, noting that Germany would bring valuable industrial expertise to the joint venture.

Financial pressures and upcoming milestones

Italy’s push for new partners aligns with a sharp increase in its domestic financial commitments to the project. In January 2026, the Italian Ministry of Defence informed its parliament that the estimated cost for the first two phases of GCAP had tripled. The projected expense rose from an initial estimate of €6 billion to €18.6 billion ($21.8 billion) as technology maturation and development requirements became clearer, according to Defense News.

Despite the rising costs, the core partners are advancing toward binding agreements. Breaking Defense reported that the UK is expected to sign a new international contract for the next phase of GCAP by the end of June 2026. This pending agreement, valued at £686 million ($905 million) for design and development work, follows mid-June meetings between UK Prime Minister Keir Starmer and Japanese Prime Minister Sanae Takaichi aimed at accelerating the program’s timeline.

AirPro News analysis

We view the potential integration of Germany into GCAP as a major realignment of the European aerospace sector. If Berlin formally pivots to the UK-Italy-Japan consortium, it would consolidate European sixth-generation fighter development under a single umbrella. However, integrating a partner of Germany’s industrial weight will require complex renegotiations of workshare. The current industrial arrangement is carefully balanced among BAE Systems, Leonardo, and Mitsubishi Heavy Industries. Adding German contractors to the Edgewing joint venture would dilute the existing partners’ shares, potentially complicating the rapid development schedule required to meet the 2035 in-service target.

Sources: Reuters

Photo Credit: Leonardo

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Defense & Military

HAL and Safran Sign Aravalli Engine Co-Development Contract

HAL and Safran finalize the Aravalli engine contract via SAFHAL JV to power India’s IMRH and DBMRH helicopters by 2032-2033.

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Hindustan Aeronautics Limited (HAL) and Safran Helicopter Engines have finalized a contract to co-develop the new-generation Aravalli engine, marking a definitive shift in Indian aerospace manufacturing from licensed production to indigenous propulsion design.

The agreement, signed on August 26, 2026, in Bengaluru, India, formalizes the design, development, manufacture, and lifecycle support of the engine through SAFHAL Helicopter Engines Pvt. Ltd. SAFHAL is a 50:50 joint venture between the two aerospace manufacturers. The Aravalli engine is slated to power India’s future 13-ton Indian Multi-Role Helicopter (IMRH) and its naval variant, the Deck-Based Multi-Role Helicopter (DBMRH).

Technical specifications and manufacturing

The Aravalli engine will operate in the 3,500 to 4,000 shaft horsepower (shp) class. Under the terms of the agreement, HAL will gain access to core engine technologies, including the high-pressure compressor, power turbine, and accessory gearbox. This technology transfer is designed to build domestic intellectual property and expertise in high-power engine design.

Manufacturing operations for the Aravalli program will be based at HAL’s facility in Tumakuru, Karnataka. Safran Helicopter Engines Chief Executive Officer Cédric Goubet noted the precedent set by the agreement in a press release issued by HAL.

“This is the first time Safran HE has taken up such a class of engine as co-development. The Aravalli engine programme represents a new chapter in the strategic relationship between France and India, combining the expertise of our teams to develop propulsion systems for future Indian rotorcraft.”

Development timeline and strategic shift

The final contract follows a multi-year negotiation and planning phase. HAL and Safran initially signed a Memorandum of Understanding for the project in July 2022, followed by detailed workshare discussions at Aero India in February 2023. The companies executed an airframer contract on August 30, 2024, to commence joint design work.

The design and development phase is targeted for completion between 2032 and 2033. Once operational, the IMRH platform is intended to replace the Indian Air Force’s aging fleet of Mil Mi-17 Helicopters. HAL Chairman and Managing Director Ravi K emphasized the domestic industrial impact of the program.

“The signing of this contract marks a significant step forward in India’s pursuit of self-reliance in aero-engine technologies. Through this collaborative programme with SAFHAL and Safran Helicopter Engines, we are creating a strong foundation for powering next-generation Indian helicopter platforms.”

AirPro News analysis

The Aravalli engine contract represents a critical maturation point for India’s defense aviation sector. Historically, Indian aerospace manufacturing has relied heavily on licensed production of foreign designs, which limits domestic engineering capability and intellectual property ownership. By securing a 50:50 co-development structure that includes core engine components like the high-pressure compressor and power turbine, we view this agreement as a foundational step toward true Propulsion independence for the Indian military. If the 2032 to 2033 development timeline holds, HAL will be positioned not just as an assembler, but as a primary original equipment Manufacturers (OEMs) for high-power rotorcraft engines.

Sources: Hindustan Aeronautics Limited

Photo Credit: Hindustan Aeronautics Limited

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Raytheon Wins $603M Contract for B-52H Radar Modernization

Raytheon secures $603M USAF contract to produce the AN/APQ-188 AESA radar for the B-52H fleet under the B-52 Radar Modernization Program.

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This is a developing story. Information may change as official details are released.

Raytheon has secured a $603,000,000 sole-source contract from the U.S. Air Force (USAF) to produce and sustain the new AN/APQ-188 radar for the Boeing B-52H Stratofortress fleet, advancing a critical modernization effort despite the recent loss of the program’s primary test aircraft.

The U.S. Department of Defense announced the indefinite-delivery/indefinite-quantity (IDIQ) contract on August 25, 2026, following the official award on August 21, 2026. The agreement establishes the ceiling value for the production phase of the B-52 Radar Modernization Program (RMP). The Air Force Life Cycle Management Center (AFLCMC) at Wright-Patterson Air Force Base (FFO) in Ohio is the contracting activity, obligating $46,008,396 in fiscal 2026 aircraft procurement funds with the initial delivery order.

Upgrading the B-52 radar capabilities

The RMP replaces the bomber’s 1960s-era mechanically scanned AN/APQ-166 radar with the Raytheon AN/APQ-188, an Active Electronically Scanned Array (AESA) system. The new Radar-Systems is a derivative of the AN/APG-79 used on the F/A-18 and forms a cornerstone of the broader B-52J upgrade package designed to keep the fleet operational into the 2050s.

According to the Department of Defense, Raytheon will perform the contract work across multiple facilities, including Forrest, Mississippi; El Segundo, California; McKinney, Texas; and Warner Robins, Georgia. The contract is expected to be completed by August 20, 2031.

Program continuity following testbed loss

The production contract award follows a major setback for the RMP during the flight testing phase. On June 15, 2026, the sole B-52 radar testbed aircraft crashed shortly after takeoff at Edwards Air Force Base (EDW) in California. The USAF confirmed the accident resulted in the deaths of all eight crew members on board, which included military personnel, government civilians, and contractors. The official cause of the accident remains under Investigation by the USAF.

Despite the loss of the initial testbed, military officials have confirmed the modernization program will proceed. According to reporting by DefenseScoop, Col. Spencer Turner, the B-52 System Program Manager, stated that the original acquisition strategy always included two test aircraft.

Turner confirmed that work on the second aircraft is actively underway at The Boeing Company facility in San Antonio, Texas. He noted that the service expects to “complete the full modification and put the full radar suite onto the aircraft this year and proceed with testing.” Following the June 15, 2026 accident, the active USAF fleet stands at 75 B-52H bombers.

AirPro News analysis

The decision to award a $603,000,000 production contract just two months after the loss of the primary testbed underscores the firm commitment of the USAF to the B-52J upgrade timeline. Because the AN/APQ-188 is heavily derived from an existing, mature AESA system, the service likely views the radar technology itself as low-risk, separating the radar’s production readiness from the ongoing investigation into the June 15 accident. We note that delaying the production contract until a second testbed completes flight trials would have likely pushed the B-52J initial operational capability timeline to the right, a delay the USAF appears unwilling to accept as it plans to operate the airframe for another three decades.

Sources: U.S. Department of Defense

Photo Credit: US Air Force

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TUSAŞ ŞİMŞEK-K Completes First RATO Ground Launch

Turkish Aerospace’s ŞİMŞEK-K UAV completed its first rocket-assisted ground launch and live warhead strike test in August 2025.

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Turkish Aerospace (TUSAŞ) has successfully conducted the first ground launch of its ŞİMŞEK-K unmanned aerial vehicle using a rocket-assisted take-off system, culminating in a live warhead strike on a ground target.

The test, announced by the Defence Industry Agency of Türkiye (SSB) on August 22, 2025, and detailed in an August 25 press release, confirms the platform’s transition from a pure training target into a dual-role tactical strike asset. The integration of a rocket-assisted take-off (RATO) system eliminates the drone’s previous reliance on catapult infrastructure or aerial carrier launches from larger platforms such as the Anka Unmanned Aerial Vehicle.

Technical specifications and operational capabilities

The ŞİMŞEK-K measures 2.4 meters in length with a 1.5-meter wingspan and a maximum take-off weight of 83 kilograms. It can carry a payload of up to 18 kilograms, which now includes a live warhead for one-way strike missions.

The drone operates at a maximum speed of Mach 0.63 and can reach altitudes up to 25,000 feet. Powered by a 35-liter fuel capacity, the system offers an endurance exceeding 45 minutes. It maintains a datalink range of 150 kilometers and features a total operational range of more than 500 kilometers.

Strategic shift in Turkish unmanned systems

The successful RATO launch and strike test marks a deliberate shift in how Turkish defense contractors are utilizing existing airframes. SSB President Haluk Görgün highlighted the strategic value of the test.

“Our defense industry has added another one to its critical capabilities. This step is a concrete indicator of technologies developed entirely with national resources, increasing our operational flexibility and strengthening our deterrence.”

TUSAŞ CEO Mehmet Demiroğlu echoed this sentiment, emphasizing the engineering progress required to integrate the RATO system.

“We have left behind another milestone in our defense industry. ŞİMŞEK K, produced with national resources, took off from the ground for the first time with a rocket-assisted take-off system (RATO). This new capability gained by ŞİMŞEK K clearly reveals the level reached by our national engineering.”

The ŞİMŞEK family has evolved significantly since the original target drone’s maiden flight on August 4, 2012. The ŞİMŞEK-K variant was introduced to the public in July 2025 at the IDEF exhibition in Istanbul. TUSAŞ continues to expand its kamikaze UAV portfolio and is currently developing a dedicated jet-powered one-way strike UAV named AYAZ, which is scheduled to be unveiled at the SAHA EXPO in May 2026.

AirPro News analysis

We view the integration of RATO capabilities into the ŞİMŞEK-K as a highly practical evolution of an existing airframe. By removing the need for bulky catapult infrastructure or a larger carrier aircraft like the Anka, TUSAŞ has created a rapidly deployable asset suitable for asymmetric warfare environments. Converting legacy target drones into loitering munitions or one-way strike platforms is a growing industry trend, allowing manufacturers to leverage proven aerodynamics and existing production lines to field tactical weapons quickly and cost-effectively.

Sources: Turkish Aerospace

Photo Credit: Turkish Aerospace

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