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Boeing MQ-28 Ghost Bat Fires AIM-120 Missile in Autonomous Test

Boeing and RAAF’s MQ-28 Ghost Bat drone fired an AIM-120 missile autonomously, validating its combat role with integrated manned and unmanned systems.

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This article is based on an official press release from Boeing and public research regarding the December 9, 2025, test event.

Boeing MQ-28 Ghost Bat Successfully Fires Air-to-Air Missile in Historic Autonomous Test

On December 9, 2025, Boeing and the Royal Australian Air Force (RAAF) marked a significant milestone in the evolution of autonomous aerial warfare. Operating at the Woomera Test Range in South Australia, an MQ-28 Ghost Bat “loyal wingman” drone successfully fired a live AIM-120 Advanced Medium-Range Air-to-Air Missile (AMRAAM), destroying a high-performance target drone.

According to Boeing, this event represents the first time an autonomous Military-Aircraft has engaged an aerial target with this specific class of weapon while operating within a “force integrated” team. The mission validated the operational concept of the Collaborative Combat Aircraft (CCA), where uncrewed systems work in tandem with manned fighters and command aircraft to extend lethality and survivability.

The “Kill Chain” Architecture

The test was not a solo effort by the Drones but rather a demonstration of advanced “sensor-to-shooter” data fusion. The mission involved a coordinated team of assets:

  • MQ-28 Ghost Bat: The uncrewed carrier of the weapon.
  • E-7A Wedgetail: An Airborne Early Warning & Control aircraft that maintained “custodianship” of the drone.
  • F/A-18F Super Hornet: A manned fighter that provided sensor coverage and target tracking data.

In this scenario, the F/A-18F Super Hornet tracked the target,a Phoenix Jet Uncrewed Aerial Target designed to simulate enemy fighters,and shared that data instantly with the MQ-28 and the E-7A. While the Ghost Bat maneuvered autonomously, the final authority to launch the missile remained with a human operator aboard the E-7A Wedgetail, adhering to military ethics regarding human-in-the-loop control for lethal force.

“The Ghost Bat transforms a single fighter jet into a formidable team,capable not only of surveillance but also of engaging adversaries. This delivers a vital layer of protection for our aviators who remain our most valuable asset.”

, Pat Conroy, Australian Minister for Defence Industry

Technical Evolution: Block 1 vs. Block 2

The aircraft utilized in the December 9 test was a “Block 1” variant of the MQ-28. Technical analysis of the airframe highlights specific aerodynamic features relevant to this stage of development. The Block 1 features a “dogtooth” leading edge on the wing, a design choice that creates a vortex over the wing at high angles of attack to improve stability during slow, tight maneuvers.

However, Boeing is already advancing toward “Block 2” operational assets. Future iterations are expected to remove the dogtooth design in favor of a smoother profile. This evolution suggests a prioritization of reduced radar cross-section (stealth) and aerodynamic drag reduction to increase range, moving away from the extreme low-speed maneuverability required in traditional dogfighting.

“This is the first time an autonomous aircraft has completed an air-to-air weapon engagement with an AIM-120 missile, establishing the MQ-28 as a mature combat capable CCA.”

, Amy List, Managing Director, Boeing Defence Australia

Strategic Implications: The Era of “Affordable Mass”

The successful firing of an AMRAAM by an uncrewed system underscores the strategic shift toward “affordable mass.” In a high-intensity conflict, air forces face the challenge of risking expensive manned assets against dense air defense networks. The MQ-28 program aims to solve this by deploying lower-cost drones capable of absorbing risk.

Industry estimates place the cost of an MQ-28 unit between $8 million and $10 million USD. By comparison, a manned F-35A Lightning II costs approximately $80 million to $100 million. This cost differential allows commanders to deploy swarms of CCAs to penetrate contested airspace without risking a pilot or a critical financial asset.

AirPro News Analysis

While this test is a triumph for Australian sovereign capability,marking the first military combat aircraft designed and manufactured in Australia in over 50 years,it also sends a signal to the global market. The United States Navy has previously expressed strong interest in the MQ-28 for its own carrier-based requirements, targeting a unit cost under $15 million.

Furthermore, the test places the MQ-28 in direct competition with other emerging loyal wingman programs. Turkey’s Bayraktar Kızılelma has similarly conducted live missile firings, and China has displayed the FH-97A, which bears a striking visual resemblance to the Ghost Bat. The successful integration of the AIM-120, a standard NATO weapon, positions the MQ-28 as a highly compatible option for Western allies.

“It is a true example of speed-to-capability… The team implemented open architectures… to successfully integrate, test and employ the weapon in a live, operationally relevant scenario in under eight months.”

, Colin Miller, VP for Phantom Works, Boeing

Sources

Photo Credit: Boeing

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Defense & Military

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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IAF Issues RFI for 150 Advanced Jet Trainers to Replace Hawk Fleet

India’s IAF seeks 150 next-generation Stage-III jet trainers worth ₹15,000 crore to replace aging Hawk Mk-132 aircraft.

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The Indian Air Force (IAF) and the Ministry of Defence (MoD) have initiated a procurement program to acquire approximately 150 next-generation Stage-III advanced jet trainers, issuing a Request for Information (RFI) to global and domestic aerospace manufacturers in mid-August 2026. The estimated ₹15,000 crore project aims to replace the IAF’s aging fleet of BAE Systems Hawk Mk-132 aircraft and modernize the final training pipeline for pilots transitioning to 4.5 and fifth-generation combat platforms.

According to reporting by The New Indian Express, vendors have until October 5, 2026, to submit their responses to the RFI. The MoD is targeting December 2027 for the issuance of a formal Request for Proposal (RFP). The procurement falls under India’s Defence Acquisition Procedure (DAP) 2020 “Buy (Indian) or better” category, which mandates significant domestic manufacturing, technology transfer, and supply chain integration.

Replacing the Hawk Mk-132 fleet

The IAF currently relies on the BAE Systems Hawk Mk-132 for Stage-III training, a platform that entered Indian service in February 2008. Defence Standard reports that the global production line for the Hawk has closed, preventing the IAF from acquiring additional airframes of the same type to meet its training requirements.

The urgency of the procurement is underscored by current operational shortfalls. Aerospace Global News notes that the IAF is operating with 29 fighter squadrons against an authorized strength of 42.5. Streamlining the pilot training pipeline is viewed as a critical step in getting aviators into operational squadrons more rapidly.

The RFI outlines stringent technical requirements for the new trainers. The IAF mandates advanced capabilities including fly-by-wire flight controls, embedded virtual avionics, electronic warfare (EW) simulation, and Live-Virtual-Constructive (LVC) training systems. These features are designed to prepare trainees for the sensor-heavy environments of modern combat aircraft, such as the Dassault Rafale, Hindustan Aeronautics Limited (HAL) Tejas, and the future Advanced Medium Combat Aircraft (AMCA).

Potential contenders and industrial requirements

While the IAF has not officially shortlisted any platforms during this preliminary market-sounding phase, defense analysts have identified several likely contenders. These include the HAL HLFT-42, the Boeing-Saab T-7A Red Hawk, the Korea Aerospace Industries (KAI) T-50 Golden Eagle, and the Leonardo M-346 Master.

International manufacturers are already signaling interest in the program. In a statement provided to the Halldale Group, a Leonardo spokesperson confirmed the company is “closely assessing the Indian Air Force advanced trainer fleet modernisation plan and national industrial collaboration opportunities.”

The RFI stipulates a strict delivery timeline. According to The New Indian Express, the selected vendor must complete the delivery of all 150 aircraft within 60 months of the contract signature. The first new trainer aircraft are projected to reach IAF flying training bases in the mid-2030s.

AirPro News analysis

We view the IAF’s insistence on the “Buy (Indian) or better” category as the defining hurdle for foreign original equipment manufacturers (OEMs) in this competition. Platforms like the T-7A Red Hawk or the M-346 Master offer the LVC and embedded training capabilities the IAF requires, but winning the ₹15,000 crore contract will depend entirely on a vendor’s willingness to transfer technology and establish a deep manufacturing footprint within India. HAL’s indigenous HLFT-42 concept holds a natural home-field advantage under the current defense procurement framework, though it remains in the developmental stage compared to the proven, off-the-shelf alternatives from Boeing, KAI, and Leonardo.

Sources: The New Indian Express

Photo Credit: IAF

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US Approves $2.3B Black Hawk Sale to Norway for 21 UH-60M

The U.S. State Department approved a $2.3B sale of 21 Sikorsky UH-60M Black Hawks to Norway, replacing a prior HH-60W order.

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The U.S. Department of State has approved a potential $2.3 billion Foreign Military Sale to the Government of Norway for up to 21 Sikorsky UH-60M Black Hawk helicopters. The August 21, 2026 authorization marks a strategic pivot for the Norwegian Armed Forces, which previously planned to acquire a smaller fleet of specialized combat rescue rotorcraft.

Announced by the Defense Security Cooperation Agency (DSCA) under Transmittal 26-83, the proposed package includes the airframes, 46 General Electric T700-GE-701D engines, and extensive defensive and communication suites. The acquisition is designed to enhance Norway’s tactical air mobility across its Arctic territory and border regions, replacing the Royal Norwegian Air Force’s aging fleet of 18 Bell 412 helicopters.

Shifting from specialized rescue to multi-role utility

The approval officially reverses a July 11, 2025 decision in which the U.S. State Department cleared a $2.6 billion sale of nine Sikorsky HH-60W Jolly Green II helicopters to Norway. The HH-60W is heavily optimized for combat search and rescue missions.

By opting instead for 21 UH-60M variants, Norway prioritizes volume and multi-role utility over specialized rescue capabilities. The larger fleet will provide increased capacity for troop transport, medical evacuation, and equipment movement in demanding Arctic environments.

Equipment package and implementation details

The $2.3 billion ceiling covers a comprehensive suite of avionics, defensive countermeasures, and weaponry. According to the DSCA press release, the package includes 25 sets of AN/AAR-57 Common Missile Warning Systems, Common Infrared Countermeasures (CIRCM), and AN/APR-39E(V)2 Radar Warning Receivers.

Navigation and communication upgrades feature 50 EAGLE-M+429 embedded Global Positioning Systems and Inertial Navigation Systems, alongside 100 AN/ARC-231A radios. The authorization also includes 18 M240H machine guns. Lockheed Martin Corporation’s Sikorsky division in Stratford, Connecticut, will serve as the principal contractor. The DSCA noted that approximately 15 U.S. government and contractor representatives will travel to Norway to support equipment fielding and training.

Rebuilding Norway’s military helicopter operations

The UH-60M acquisition is part of a broader restructuring of Norway’s military helicopter operations following the collapse of its NHIndustries NH90 program. In June 2022, the Norwegian government terminated the NH90 contract and grounded the fleet, citing severe operational delays and low availability rates.

Since the NH90 cancellation, Norway has increasingly turned to U.S. manufacturers to fulfill its rotary-wing requirements. In addition to the newly approved Black Hawks, Norway initiated a plan in 2023 to purchase six Sikorsky MH-60R Seahawk helicopters for maritime operations.

AirPro News analysis

We view Norway’s pivot from the HH-60W to the UH-60M as a pragmatic alignment of procurement with geographic realities. While the HH-60W offers superior survivability in contested airspace, a fleet of only nine airframes would have severely limited operational availability across Norway’s extensive landmass. Securing 21 UH-60M airframes for a lower estimated maximum cost provides the Royal Norwegian Air Force with the necessary density to maintain continuous tactical mobility along NATO’s northern flank. Standardizing on the H-60 family for both land and maritime operations will likely yield long-term maintenance and training efficiencies.

Sources: U.S. Department of State

Photo Credit: Lockheed Martin

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