Defense & Military
Moody AFB Adds First Air Refueling Probe to A-10C Thunderbolt II
Moody Air Force Base installs and tests the first air refueling probe on the A-10C, enabling probe-and-drogue refueling from C-130 tankers below 10,000 feet.

This article is based on an official press release from Moody Air Force Base.
On May 26, 2026, Moody Air Force Base in Georgia announced a significant tactical upgrade for its A-10C Thunderbolt II fleet. According to an official press release from the base, maintainers have successfully installed and tested the aircraft’s first air refueling probe. This modification transitions the venerable attack aircraft from relying exclusively on traditional “flying boom” refueling systems to utilizing a “probe-and-drogue” method.
We note that this development allows the A-10 to receive fuel from C-130-based tankers, such as the HC-130J Combat King II, at altitudes below 10,000 feet. The integration addresses an urgent combatant command requirement, significantly enhancing the aircraft’s operational flexibility for Combat Search and Rescue (CSAR) and Close Air Support (CAS) missions.
Enhancing Tactical Flexibility for the Warthog
Shifting to Probe-and-Drogue Systems
Historically, the A-10 relied on the KC-135 Stratotanker’s flying boom for mid-air refueling. However, as noted in secondary reporting by The Aviationist, the A-10 has not been operationally certified to receive fuel from the newer KC-46 Pegasus tankers. Relying solely on high-altitude boom tankers limited the tactical flexibility of the A-10, forcing pilots to climb away from the battlefield to refuel and temporarily abandon their close air support overwatch.
The new probe-and-drogue system fundamentally changes this dynamic. By enabling refueling below 10,000 feet, A-10 pilots can now stay aligned with low-level CSAR and CAS missions without breaking formation or losing visual contact with the ground. The modification allows the A-10 to be supported by a wider variety of tactical tankers, including the HC-130J, MC-130J Commando II, and KC-130J Super Hercules.
Simultaneous Refueling Capabilities
Beyond altitude flexibility, the probe-and-drogue system introduces a critical efficiency upgrade. According to the provided operational details, the new system allows two A-10s to refuel simultaneously from a single HC-130J. This capability was impossible with the single-boom KC-135 method and drastically cuts down the total refueling time required for a flight of aircraft operating in contested or austere environments.
The Installation and Testing Process
Overcoming Maintenance Hurdles
The installation process at Moody Air Force Base moved rapidly. According to the press release, maintainers received the new probes on May 11, 2026, and began installation on the first of two aircraft on May 13. The collaborative effort involved Moody’s 23d Maintenance Squadron, including fuels craftsman Tech. Sgt. Brent Vargas, and Tech. Sgt. Wesley Zell, a specialized A-10 refueling probe installer brought in from Davis-Monthan Air Force Base.
While the installation is designed to take approximately four hours, the maintenance team encountered minor challenges with legacy hardware on the aging airframes.
“There’s been a lot of issues getting these bolts removed so we can put the probe on. These screws and bolts hardly ever come out anyway, so doing this is the time-consuming part of it. Once we get that part up, the install of the probe is very simple,” stated Tech. Sgt. Wesley Zell in the official release.
Successful First Flight
Following the hardware installation, pilots from the 74th Fighter Squadron conducted familiarization flights. On May 19, 2026, an upgraded A-10 successfully completed its first flight from an HC-130J Combat King II assigned to the 71st Rescue Squadron.
“It’s a good capability for us. It’ll give us more options when we’re in future fights and during things as simple as moving across country or transoceanic crossings. It’s another capability that can help us,” noted Capt. Wayman, an A-10 pilot with the 74th Fighter Squadron, in the Moody AFB release.
Broader Military Context
AirPro News analysis
We observe a fascinating paradox in the U.S. Air Force’s current management of the A-10 Thunderbolt II fleet. The integration of this new probe-and-drogue technology comes at a time when the military has publicly stated its goal to fully divest and retire all A-10s by the end of the decade. In fact, according to April 2026 reporting by Air & Space Forces Magazine, the final class of new A-10 pilots has already graduated.
Despite its planned retirement, the “Warthog” continues to receive rapid capability upgrades to maintain its relevance in modern conflicts. Upgraded A-10s deployed to the Middle East in 2026 for Operation Epic Fury have been observed utilizing not only the new refueling probe but also advanced electronic warfare systems like the “Angry Kitten” pod. The rapid development and deployment of the refueling probe, first tested by the Air National Guard Air Force Reserve Command Test Center in early April 2026, demonstrate a clear commitment by the Air Force to maximizing the aircraft’s lethality and survivability until its final day of service.
Frequently Asked Questions (FAQ)
Why is the A-10 getting a new refueling probe?
The new probe-and-drogue system was developed in response to an urgent combatant command requirement. It allows the A-10 to refuel at lower altitudes (below 10,000 feet), enabling pilots to stay closer to the battlefield during Combat Search and Rescue (CSAR) and Close Air Support (CAS) missions.
What tankers can the A-10 refuel from now?
With the new probe, the A-10 can receive fuel from C-130-based tactical tankers, including the HC-130J Combat King II, MC-130J Commando II, and KC-130J Super Hercules. It also allows two A-10s to refuel simultaneously.
Is the A-10 retiring soon?
Yes. The U.S. Air Force plans to fully divest and retire the A-10 fleet by the end of the decade, and the final class of new A-10 pilots graduated in April 2026. However, the aircraft is still receiving critical upgrades to support ongoing operations until its retirement.
Sources:
Moody Air Force Base Press Release
Photo Credit: U.S. Air Force photo by Airman 1st Class Rachel Howell
Defense & Military
Tata Boeing Aerospace Delivers 400th AH-64E Apache Fuselage
Tata Boeing Aerospace Limited reached 400 AH-64E Apache fuselage deliveries from its Hyderabad facility on September 7, 2026.

Tata Boeing Aerospace Limited (TBAL) delivered its 400th AH-64E Apache fuselage on September 7, 2026, marking a sustained production milestone for the Hyderabad-based joint venture. The aerostructures manufactured at the Indian facility are integrated into final assembly lines for customers worldwide, including the United States Army and the Indian armed forces.
In a statement released on September 7, 2026, the company emphasized that the delivery highlights the maturity of the domestic aerospace ecosystem and its integration into global defense supply chains. TBAL, a joint venture between Boeing and Tata Advanced Systems Limited (TASL), was established in 2016 to produce aerostructures for the attack helicopter program.
Production footprint and global fleet integration
The 52,000-square-meter manufacturing facility in Hyderabad employs more than 750 engineers and technicians. Fuselages produced at this site supply the global AH-64E Apache production line, serving as a primary source for the aircraft’s structural core.
According to Boeing and TASL, approximately 1,300 Apache Helicopters are currently in operation across 19 countries. The Indian Air Force (IAF) operates a fleet of 22 AH-64E Apaches, following a Contracts signed between India and the United States in 2015. The Indian Army received an additional six Apache helicopters in 2025.
The joint venture described the 400th Delivery as a milestone that highlights India’s growing role in supporting one of the world’s most recognized rotorcraft platforms.
Expanding defense manufacturing partnerships
The fuselage milestone aligns with broader efforts by TASL to expand its role in international defense Manufacturing. Beyond the Boeing partnership, TASL is pursuing additional co-production agreements with United States defense contractors.
In early September 2026, TASL signed a Memorandum of Understanding with the Javelin Joint Venture, a Partnerships between Raytheon and Lockheed Martin. The agreement explores the co-production of the Javelin All Up Round (AUR) missile in India. The proposed partnership includes plans to establish a dedicated final assembly and integration facility within the country.
AirPro News analysis
We view the 400th fuselage delivery as a clear indicator that the TBAL joint venture has transitioned from a localized offset initiative into a critical node in Boeing’s global supply chain. Sustaining a production rate to reach 400 units since the facility’s establishment in 2016 demonstrates mature manufacturing capabilities and quality control standards that meet United States military requirements.
The concurrent development of the Javelin missile co-production agreement suggests that United States original equipment manufacturers (OEMs) increasingly view Indian partners as viable long-term manufacturing bases. As global defense supply chains face capacity constraints, established facilities like the TBAL plant in Hyderabad provide a proven template for future aerospace and defense industrial cooperation.
Sources: Tata Advanced Systems Limited
Photo Credit: Tata Advanced Systems Limited
Defense & Military
L3Harris Completes First 35 Viper Shield Production Units
L3Harris reaches a production milestone for the AN/ALQ-254(V)1 Viper Shield, with 233 units on backlog for eight allied F-16 operators.

L3Harris Technologies has completed manufacturing the first 35 production units of its Viper Shield electronic warfare system, initiating a production ramp-up to fulfill a 233-unit backlog for international F-16 Fighting Falcon operators.
In a press release issued on September 3, 2026, the company announced the milestone at its Clifton, New Jersey, facility. The event also marked the assembly of the first external pod configuration utilizing production-standard hardware. The AN/ALQ-254(V)1 Viper Shield currently stands as the only F-16 electronic warfare suite in active production.
Fulfilling the international backlog
L3Harris is scaling operations to meet demand from eight allied nations that have collectively ordered 233 Viper Shield systems. These international operators have contributed to a $1 billion shared investment funding the development, laboratory testing, flight testing, and current production of the suite.
“The foreign investment is funding development, lab testing, flight testing and current production of Viper Shield systems, which presents the United States with a savings opportunity to avoid upfront costs,” said Chris Aebli, President, Communications & Spectrum Dominance, L3Harris.
Aebli noted that this shared investment means the U.S. Air-Forces and Air National Guard could benefit from joining the program without bearing the initial development burden.
Recent flight testing and fleet integration
The production milestone follows a series of recent technical and commercial validations for the Viper Shield program. On August 5, 2026, L3Harris reported the completion of two-ship flight testing at Edwards Air Force Base in California. During these tests, F-16C and F-16D models flew together with Viper Shield hardware to validate the digital architecture and real-time response capabilities in multi-aircraft scenarios.
Shortly after the Edwards Air Force Base tests, the government of Peru officially selected the Viper Shield system on August 18, 2026, for its incoming F-16 Block 70 fleet. The system is designed to be fully interoperable with the APG-83 Active Electronically Scanned Array (AESA) radar, a standard component of the Block 70/72 configuration and a common upgrade for legacy F-16 airframes.
AirPro News analysis
We note that L3Harris is leveraging international procurement to mature the Viper Shield system before heavily marketing it to domestic operators. By relying on foreign military sales to fund the $1 billion development and testing phase, the manufacturer has effectively de-risked the AN/ALQ-254(V)1 for the U.S. Air Force and Air National Guard. As legacy F-16 fleets undergo radar upgrades to the APG-83 AESA, the interoperability of the Viper Shield positions it as a logical bolt-on enhancement for operators looking to modernize their electronic warfare capabilities without funding a clean-sheet development program.
Sources: L3Harris Technologies
Photo Credit: L3Harris Technologies
Defense & Military
Hermeus Selects Anduril Lattice for Quarterhorse Mk 2
Hermeus partners with Anduril to integrate Lattice autonomy software into the Mach 3 Quarterhorse Mk 2, targeting autonomous flight in 2027.

Hermeus has selected Anduril Industries to integrate the Lattice for Mission Autonomy software into the Quarterhorse Mk 2 high-speed uncrewed aircraft, marking Anduril’s first commercial agreement to supply its autonomy solution for a third-party Group 5 platform.
Announced in a joint press release on September 3, 2026, the partnership aims to achieve the first autonomous flight of the Quarterhorse Mk 2 in 2027. The integration aligns with the United States Air Force (USAF) Collaborative Combat Aircraft (CCA) program’s push for modular systems, demonstrating that advanced hardware and software can be developed independently and combined for high-Mach environments.
Advancing high-Mach autonomous capabilities
The Quarterhorse program, supported by funding from the Pentagon’s Defense Innovation Unit (DIU), targets speeds of Mach 3. Hermeus has maintained an aggressive development timeline, flying its first aircraft in 2025 and reaching supersonic speeds with the Quarterhorse Mk 2.1 exactly 364 days later. The company is currently preparing to fly the Mk 2.2 variant, which was constructed in under a year.
Anduril’s Lattice Software will serve as the core mission planning and execution engine for the Mk 2. Operators will interface with the aircraft using Anduril’s Menace-T command, control, communications, and computing (C4) solution. This system is already utilized by USAF operators to generate sorties with semi-autonomous aircraft.
Speaking to Breaking Defense, Hermeus Chief Executive Officer Zach Shore explained the operational necessity of the Partnerships and the need for scalable command-and-control systems.
“We now need to automate a lot of those flight controls. I want to be able to push a button, have the aircraft spin up, have the aircraft auto takeoff, all those basic features that allow one person to manage multiple platforms,” Shore told the publication.
Validating modular architecture for the CCA program
The agreement serves as a practical application of the Autonomy Government Reference Architecture (A-GRA) standard. By separating the airframe development from the autonomy software, the partnership mirrors the acquisition strategy of the USAF CCA program.
Anduril noted in its September 3 press release that the Hermeus contract validates this focus on modularity. Establishing a common standard ensures cross-compatibility between disparate hardware and software systems, which the company states will accelerate the deployment of autonomous Military-Aircraft.
Brett Darcey, Anduril’s General Manager and Vice President for Mission Autonomy in Air Dominance and Strike, emphasized the maturity of the integration in comments to Breaking Defense.
“We really want to emphasize the fullness of the stack. This isn’t just a mission autonomy science project. This is really readying the Quarterhorse for [autonomous operations],” Darcey stated.
AirPro News analysis
We view this integration as a critical test case for the Pentagon’s broader uncrewed Aviation strategy. If Anduril’s Lattice can successfully manage a third-party airframe operating at Mach 3, it will prove that the A-GRA standard is viable for extreme flight envelopes, not just subsonic loyal wingman platforms. The 2027 flight test will be a major milestone for both companies, potentially opening the door for Anduril to market its autonomy stack to other aerospace Manufacturers while allowing Hermeus to focus entirely on its high-speed propulsion and aerodynamic challenges.
Sources: Anduril Industries
Photo Credit: Anduril Industries
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