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Türkiye Signs Contract for Mass Production of KAAN Stealth Fighter

Türkiye formalizes contract to produce 20 KAAN fifth-generation stealth fighters by 2030, with export deals to Indonesia and talks with Spain.

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This article summarizes reporting by Anadolu Agency.

On May 6, 2026, Türkiye achieved a major milestone in its defense sector by signing the first procurement contracts for the mass production of the KAAN, its domestically developed fifth-generation stealth fighter. The agreement was formalized at the SAHA 2026 International Defense and Aerospace Exhibition in Istanbul, according to reporting by Anadolu Agency.

The contract officially transitions the KAAN from its prototype and development phase into serial production. The Turkish Air Force is scheduled to receive an initial batch of 20 Block-10 aircraft between 2028 and 2030. This procurement represents a critical step in Ankara’s long-term strategy to replace its aging F-16 fleet and establish aerospace sovereignty.

Alongside the KAAN agreement, officials also signed a serial production contract for the ANKA-3 unmanned combat aerial vehicle (UCAV). Industry research indicates the ANKA-3 is designed to operate as a “loyal wingman” alongside the KAAN, utilizing a modern Manned-Unmanned Teaming (MUM-T) concept.

Contract Details and Delivery Timelines

Formalizing the Agreement

The historic signing ceremony featured key figures in the Turkish defense industry, including Haluk Görgün, President of the Defense Industries Secretariat (SSB); Ömer Cihad Vardan, Chairman of Turkish Aerospace Industries (TAI); and Mehmet Demiroğlu, CEO of TAI.

The initial order focuses on the Block-10 variant of the KAAN. Delivery of these 20 jets to the Turkish Air Force Command is slated to begin in 2028 and conclude by the end of 2030, as outlined in the provided research data.

“Starting from 2028, we aim to deliver 20 Block-10 KAAN aircraft to the HKK by the end of 2030,” stated Haluk Görgün, Head of the Defense Industries Secretariat.

Company leadership emphasized that this initial procurement is just the beginning of a much larger production run.

“The initial sale was made for the first batch of 20 Block 10 aircraft… Over time, we expect the numbers to increase,” noted TAI CEO Mehmet Demiroğlu.

Technical Specifications and Engine Development

Fifth-Generation Capabilities

Initiated in 2010 and officially contracted for development in 2016, the KAAN completed its maiden flight on February 21, 2024. The twin-engine, single-seat aircraft is designed to compete with other fifth-generation fighters by prioritizing stealth, survivability, and sensor fusion.

According to technical specifications provided in the research data, the KAAN features a wingspan of 13.4 to 14 meters and a length of 20.3 meters. It boasts a projected maximum speed of Mach 1.8 to Mach 2.0 and a service ceiling exceeding 55,000 feet. The aircraft is equipped with an Active Electronically Scanned Array (AESA) radar developed by Aselsan, alongside advanced electronic warfare suites and AI-assisted mission systems.

The Path to Propulsion Independence

A critical element of the KAAN program is its propulsion system. Early prototypes and the initial Block-10 production models will utilize American-made General Electric F110 engines. However, to ensure full export independence, Türkiye is developing an indigenous turbofan engine known as the TF35000.

Unveiled in May 2025, the TF35000 is being developed by TAI Engine Industries (TEI) and TRMotor. The engine is designed to produce 35,000 pounds of thrust, which will enable supercruise capabilities. Prototype production is expected to begin in 2027, with integration into the Block-30 KAAN platforms targeted for 2032.

Global Implications and Export Markets

Disrupting the Defense Market

The KAAN program is positioning Türkiye as a viable alternative for nations seeking fifth-generation fighter capabilities without the political restrictions often associated with Western defense contractors.

In July 2025, Indonesia became the first export customer for the KAAN, signing a $10 billion contract for 48 aircraft. This 10-year delivery agreement includes extensive technology transfer and the establishment of local aerospace infrastructure in Indonesia, according to industry reports.

Furthermore, as of May 2026, Spain is reportedly in preliminary government-to-government talks with Türkiye regarding a potential acquisition of the KAAN. Following Madrid’s rejection of the F-35 and delays in the European Future Combat Air System (FCAS) program, Spain is reportedly drawn to Türkiye’s offer of deep technology transfer, a model previously established when Spain purchased Turkish Hürjet trainer aircraft.

AirPro News analysis

At AirPro News, we view the transition of the KAAN from development to serial production as a watershed moment for Türkiye’s defense autonomy. The phased shift from US-made General Electric engines to the domestic TF35000 will be the ultimate test of the program’s long-term viability and export potential.

Additionally, the simultaneous procurement of the ANKA-3 drone highlights a forward-looking operational doctrine. By adopting next-generation manned-unmanned teaming (MUM-T) tactics early in the production cycle, the Turkish Air Force is aligning its capabilities with the most advanced aerospace strategies globally. The export interest from nations like Indonesia and Spain underscores a growing demand for flexible, technology-sharing defense partnerships that traditional suppliers often withhold.

Frequently Asked Questions

  • When will the Turkish Air Force receive the first KAAN fighters?
    The first batch of 20 Block-10 KAAN aircraft is scheduled for delivery between 2028 and 2030.
  • What engine does the KAAN use?
    Initial Block-10 models will use American-made General Electric F110 engines. Future Block-30 models, expected by 2032, will use the domestically developed TF35000 engine.
  • Has any other country purchased the KAAN?
    Yes, Indonesia signed a $10 billion contract for 48 aircraft in July 2025. Spain is also in preliminary talks as of May 2026.

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Photo Credit: Anadolu Agency

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Defense & Military

Gripen F Completes Inaugural Flight in Linköping Sweden

Saab and the Brazilian Air Force completed the first flight of the Gripen F two-seat fighter on August 28, 2026.

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Saab and the Brazilian Air Force have successfully completed the inaugural flight of the Gripen F, the two-seat variant of the Gripen E fighter, initiating the airborne test campaign for the jointly developed aircraft.

The aircraft took off from Saab’s airfield in Linköping, Sweden, on August 28, 2026. In a press release issued today, the manufacturer confirmed the milestone advances a comprehensive technology transfer program designed to deliver both pilot training and full operational combat capabilities.

Inaugural flight and test campaign

The flight commenced at 09:40 local time and lasted 40 minutes. Saab Chief Test Pilot Jakob Högberg and Brazilian Air Force Test Pilot Lieutenant Colonel Aviator Abdon de Rezende Vasconcelos operated the aircraft.

Lars Tossman, Head of Business Area Aeronautics at Saab, highlighted the collaborative effort behind the milestone.

“This first flight represents an important step forward for both Saab and the Brazilian Air Force. Seeing Gripen F take to the skies is particularly significant for all the Swedish and Brazilian teams whose years of engineering work have helped turn this aircraft into a reality. It is designed to accelerate pilot training while and enhancing operational performance in advanced combat missions,” Tossman said.

The Gripen F test program will now transition into a progressive envelope expansion phase. Saab stated that upcoming flights will clear performance limits, including speed, altitude, G-load, and angle of attack, while evaluating the tactical systems of the independent rear cockpit.

Design specifications and Brazilian procurement

The Gripen F incorporates specific design modifications to accommodate a second crew member. According to Air Data News, the two-seat variant measures 15.9 meters in length, compared to the 15.2-meter single-seat Gripen E, and has a maximum takeoff weight of 16,500 kilograms. To make room for the rear cockpit, engineers omitted the internal 27 mm Mauser BK27 cannon found on the single-seat model. Despite this change, the aircraft retains full operational combat capability and utilizes the same General Electric F414G engine.

The development of the Gripen F is heavily tied to Brazilian defense procurement. Aviation Week reports that the Brazilian Air Force ordered eight Gripen F aircraft as part of a broader 36-aircraft contract signed in 2014. Saab officially presented the first Gripen F during a rollout ceremony in Linköping on June 2, 2026. The manufacturer noted that more than 350 Brazilian engineers, technicians, and pilots have participated in training and development activities for the program.

AirPro News analysis

We view the successful first flight of the Gripen F as a critical validation of the technology transfer agreement between Saab and its Brazilian partners, including Embraer. The integration of a fully combat-capable rear cockpit ensures the Brazilian Air Force can conduct advanced training while maintaining frontline fleet readiness. Delivering the two-seat variant on schedule strengthens Saab’s position in future export campaigns where dual-role trainer and combat aircraft are required.

Sources: Saab

Photo Credit: Saab

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Neura Defense Systems Rebrands as Volantyx Aerospace

Neura Defense Systems rebrands as Volantyx Aerospace to develop counter-UAS tech targeting RF-silent drone swarms.

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Saint Petersburg, Florida-based Neura Defense Systems, Inc. announced on August 26, 2026, that it has rebranded as Volantyx Aerospace, Inc. to reflect its expansion from a single-product defense developer into a broader aerospace technology platform.

In a press release issued Wednesday, the company stated the original Neura Defense Systems name will be retained for its defense division and current operating business. The corporate restructuring aligns with the company’s focus on developing a distributed edge-intelligence architecture designed to counter autonomous, radio-frequency-silent drone swarms.

Addressing the RF-silent swarm-drone gap

Volantyx Aerospace is targeting a specific vulnerability in current counter-Unmanned Aircraft Systems (UAS) defense networks. Traditional detection and mitigation rely heavily on radio frequency (RF) signals, which are ineffective against pre-programmed or autonomous aircraft that do not emit such signals.

Founder and Chief Executive Officer Sam Talari explained the limitations of legacy systems in the company’s announcement, noting that the new architecture is built on the assumption that any single sensor can be degraded or absent.

An RF sensor cannot detect a signal that is not there, and a jammer cannot sever a control link that does not exist. We start from the aircraft’s physical signature instead — radar return, sound, heat, visual — and combine those into one track and one decision picture for the operator.

The company has filed 13 United States provisional patent applications covering multi-modal sensor fusion, distributed networking, cognitive command, and the detection of non-emitting aircraft. The resulting intelligence layer is designed to make decisions at the edge without cloud dependency while preserving a record of system observations.

Development timeline and market positioning

The rebranding occurs as federal investment in counter-UAS technologies accelerates. Volantyx Aerospace remains in the development stage, with its core capabilities currently undergoing hardware integration and field evaluation following initial tests in a controlled environment.

The company clarified in its release that it does not yet claim a fielded deployment, operational performance metrics, or a contract award. Volantyx Aerospace plans to begin manufacturing or supplying effectors in early 2027. The corporate name change is a structural adjustment for the Delaware corporation and does not alter existing agreements, obligations, or ownership.

AirPro News analysis

The transition from Neura Defense Systems to Volantyx Aerospace signals a strategic pivot to capture dual-use commercial and defense markets. As autonomous UAS capabilities proliferate, the reliance on RF jamming and detection is becoming a recognized vulnerability in airspace security. By focusing on multi-modal physical signatures, we view Volantyx’s approach as a necessary evolution in counter-UAS architecture. The company’s explicit acknowledgment that it lacks fielded deployments or contract awards underscores the significant gap between conceptual architecture and operational validation. The early 2027 target for effector manufacturing will be a critical milestone to monitor as the company attempts to transition from a development-stage startup to an active aerospace supplier.

Sources: Neura Defense Systems, Inc. (via PR Newswire)

Photo Credit: Neura Defense Systems, Inc.

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Lockheed Martin Offers Peru $1.8B F-16 Block 70 Offset Package

Lockheed Martin proposes a $1.8B industrial package for Peru’s F-16 Block 70 program, including UAS assembly and MRO expansion.

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Lockheed Martin has outlined a $1.8 billion industrial and social collaboration package for Peru, designed to integrate local firms into the global aerospace supply chain as part of the country’s F-16 Block 70 procurement program.

Announced in a press release on August 26, 2026, the offset proposal follows the Peruvian government’s April 2026 decision to acquire an initial batch of 12 F-16 Block 70 aircraft. The comprehensive package aims to position Peru as a regional hub for advanced unmanned systems and aerospace services.

Expanding Peru’s aerospace industrial base

The proposed industrial agreement focuses heavily on technology transfer and domestic manufacturing. Key components include the domestic assembly of an Unmanned Aircraft System (UAS) tailored for the Latin American market, the establishment of joint research hubs, and the creation of a UAS Technical Institute. The package also outlines plans to expand Peru’s high-tech maintenance, repair, and overhaul (MRO) footprint.

“As we collaborate with the local industry, we aim to deliver tangible, high-value opportunities that build a skilled workforce, enable knowledge transfer and create lasting economic impact on both sides of the partnership,” said Tara Lause, Vice President of Business Development for the Integrated Fighter Group at Lockheed Martin.

Lause added that the procurement creates enduring alliances and industrial collaboration opportunities with the United States and other partner nations.

Fleet modernization and electronic warfare capabilities

Peru is currently working to replace its aging fleet of Soviet-era MiG-29s and French Mirage 2000s. The F-16 Block 70 was selected over competing bids from Saab and Dassault. To equip the new fleet, the government of Peru selected L3Harris Technologies to provide its AN/ALQ-254(V)1 Viper Shield all-digital electronic warfare suite, a decision announced on August 17, 2026. The Viper Shield system provides advanced radar warning and jamming capabilities.

Lockheed Martin noted that the F-16 is currently operated by 29 countries, with a global fleet of 2,800 aircraft. Mike Shoemaker, Vice President of the Integrated Fighter Group at Lockheed Martin, stated that the selection highlights the aircraft’s operational performance and ability to meet pressing defense requirements.

AirPro News analysis

The announcement of a $1.8 billion industrial offset package is a strategic move by Lockheed Martin to solidify the F-16 Block 70 sale amid a complex political environment in Lima. While the Peruvian government selected the aircraft in April 2026, regional defense reporting indicates that the procurement process has encountered delays linked to ministerial resignations and defense budget debates. By offering substantial domestic manufacturing opportunities, including UAS assembly and MRO expansion, Lockheed Martin is providing Peruvian leadership with a strong economic justification to finalize the state-to-state contract. We view this comprehensive technology transfer as a critical lever in moving the procurement from selection to a finalized, funded agreement.

Sources: Lockheed Martin

Photo Credit: Lockheed Martin

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