CCA

General Atomics FQ-42A Vengeance CCA Now Flying Together With USAF Fighters

General Atomics has given us the first look at its FQ-42 Vengeance Collaborative Combat Aircraft (CCA) drone flying in formation with crewed fighters. The U.S. Air Force is continuing to expand crewed-uncrewed teaming and other testing of the FQ-42, as well as Anduril’s FQ-44 Fury, as it aims to start fielding both types around the end of the decade.

The newly released picture from General Atomics’ Aeronautical Systems, Inc. division (GA-ASI), seen at the top of this story, shows an FQ-42 in flight together with an F-35A Joint Strike Fighter and an F-15E Strike Eagle. The company has also disclosed the delivery of another Vengeance drone to the Air Force, this time to the service’s main drone operations hub at Creech Air Force Base in Nevada.

“The FQ-42 that arrived at Creech will continue regular test and evaluation operations with the Air Force aimed at experimentation with the new aircraft,” according to a press release GA-ASI put out today. “Previous efforts with Vengeance and other GA-ASI jets, including [the] XQ-67A Off-Board Sensing Station and MQ-20 Avenger – have found the trio of combat jets flying in various scenarios that push the boundaries of combat aviation. GA-ASI’s jets have flown semi-autonomously and autonomously with various AI pilots and under collaborative control of human fighter pilots operating F-22 Raptor and F-35 Lightning II jets.”

From top to bottom, General Atomics MQ-20 Avenger, XQ-67 OBSS, and YFQ-42 drones. GA-ASI

GA-ASI has previously confirmed that the XQ-67A, an earlier experimental drone TWZ was first to report on, served as a prototype for the development of the FQ-42. The Air Force’s F-22s also look set to be the first operational airborne controllers for USAF CCAs.

As mentioned, the Air Force is steadily working to broaden the scale and scope of testing involving the FQ-42 and FQ-44 to include more and more operationally relevant scenarios. Both types are set to make their first appearance at a large-force employment (LFE) exercise in December, offering a valuable new opportunity for deeper and more realistic integration with crewed fighters.

The Air Force otherwise continues to lay the groundwork for future CCA operations, including through a major round of testing at Creech in July, which TWZ was first to report on. The service is heavily focused now just on figuring out how the drones will be deployed, launched, recovered, supported, and otherwise operated on a day-to-day basis. A dedicated test squadron called the Experimental Operations Unit (EOU), established at Nellis Air Force Base in Nevada, has been leading those efforts.

Work is also underway to demonstrate tactical capabilities, such as the FQ-44 launching an AIM-120 Advanced Medium-Range Air-to-Air Missile (AMRAAM) for the first time earlier this year.

“We’re on path right now to do our air-to-air shot coming up here in the near future,” Mike Shortsleeve, Vice President for Strategy Business Development at GA-ASI, told TWZ‘s Jamie Hunter on the floor of the Air & Space Forces Association’s (AFA) 2026 Air, Space & Cyber Conference last week.

Last week, GA-ASI separately announced a new demonstration of semi-autonomous air-to-air combat capability involving crewed F-5AT Advanced Tiger jets belonging to private adversary air contractor Tactical Air Support, Inc. and an unspecified “CCA test aircraft.” The company did use a picture of an Avenger drone to illustrate the press release. The F-5s and the CCA surrogate were equipped with infrared search-and-track sensors (IRST) during the testing.

The stock picture of an Avenger drone that General Atomics used to illustrate its press release last week. General Atomics

“The live exercise proved that a CCA and a manned fighter can collaborate to fuse sensor data from AMS-GRA-compliant sensors to track, engage, and eliminate an airborne target while using a Beyond Line of Sight (BLOS) data link to accomplish seamless coordination between the two aircraft,” according to the GA-ASI release.

“The demonstration utilized BLOS communication between the CCA and the airborne F-5, enabling the Advanced Tiger to send data about targets from an AMS-GRA-compatible system. These commands were relayed to the CCA’s TacACE [Tactical Autonomy Ecosystem software] system,” the release added. “This flight showed that many companies’ platforms can interoperate using the plug-and-play government reference architectures ecosystem. The U.S. Air Force isn’t locked into using a single vendor or system.”

GA-ASI has previously demonstrated the ability of MQ-20s flying with podded IRSTs to detect and track aerial targets semi-automatically. Generally speaking, IRSTs look set to be an important sensor for future CCAs, and are particularly relevant in the air-to-air role. As we have written in the past:

IRSTs are especially valuable for helping spot stealthy targets with features designed to reduce their radar cross-sections since they detect and track infrared emissions. By extension, IRSTs are also immune to radio frequency electronic warfare jamming. As passive sensors, they do not emit their own signals that could alert a target to the fact they are being tracked, either. IRSTs can still be used to cue or otherwise be linked to other sensors, including active electronically-scanned array radars. Fusing data from multiple sources can provide higher fidelity tracks of multiple targets, as well as improved situational awareness overall.

An Avenger drone with a podded IRST sensor under its wing. General Atomics

Air-to-air combat is expected to be the primary mission set, at least initially, for Air Force CCAs. At the same time, an air-to-ground role for the FQ-42 and FQ-44, and/or other future CCA-type drones the Air Force might acquire, is emerging on the horizon. Anduril has already fit-checked a variety of air-to-ground ordnance on Fury.

As it stands now, the Air Force is looking to have its first operational CCAs in service toward the end of the decade. The service is also presently aiming to have a total fleet of at least 500 CCAs of all types by 2032.

“If we can’t be ready, then certainly you’re not going to have the forces that you need and the numbers that you need going forward. This signifies that mass is certainly important again, but also autonomy is just as important,” General Atomics’ Shortsleeve told us last week in talking about the Air Force’s CCA fleet size target. “So the ability to have these autonomous systems, whether they’re bringing in additional weapons, sensing capability, whatever it is, all of those working in a collaborative environment, whether it’s manned, unmanned teaming, or unmanned and unmanned capabilities, that right there is what’s going to help the warfighter in the future.”

FQ-42 Vengeance fighter drone update from General Atomics thumbnail

FQ-42 Vengeance fighter drone update from General Atomics

“And when we say autonomy, it’s not just strictly this is going to go off and do its own thing. It’s going to be directed,” he added. “Whether it’s on the ground, in the air, [it] makes no difference to the system itself. It’s going to work hand-in-hand [with humans]. So that human-machine teaming, that’s what they’re really focusing on. There is figuring out how to best use this capability in the advancement of actually having to employ it in [the] real world.”

Though just flying in formation is very different from collaboration with a high degree of autonomy, the new picture of the FQ-42 together with the F-35A and the F-15E is a window into the future teamed operations the Air Force is hoping to build.

Contact the author: joe@twz.com

Joseph is TWZ’s Deputy Editor, helping to oversee the site’s highly experienced and dedicated team, while also writing informative and impactful defense and national security content. He lives right in the thick of it in the Washington, D.C. area.




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Anduril’s YFQ-44A Fury CCA Has Flown Alongside F-35s

Anduril’s YFQ-44A Fury Collaborative Combat Aircraft (CCA) has already flown in formation alongside F-35 fighters during U.S. Air Force testing, company executives have revealed, offering the clearest indication yet that live manned-unmanned teaming work with the fifth-generation fighter is underway.

The disclosure came during a briefing by Anduril executives Jason Levin, senior vice president for Air Dominance and Strike, and Erin Simpson, vice president for Strategy for Air Dominance and Strike, at the Air & Space Forces Air, Space and Cyber Symposium that TWZ is attending. The executives said the Fury flew alongside F-35s during a July exercise conducted with the Air Force’s Experimental Operations Unit (EOU) at Creech Air Force Base, Nevada. You can read more about that event in our past reporting here.

A YFQ-44A Fury aircraft assigned to the Collaborative Combat Aircraft Experimental Operations Unit taxis toward a sunshade at Creech Air Force Base, Nevada, July 20, 2026. The CCA took part in an Agile Combat Employment exercise that provided information necessary to validate the reduced logistical footprint required to operate in remote, forward-deployed locations. (U.S. Air Force photo by Senior Airman Renee Blundon)
A YFQ-44A Fury assigned to the Collaborative Combat Aircraft Experimental Operations Unit taxis toward a sunshade at Creech Air Force Base, Nevada, July 20, 2026. U.S. Air Force photo by Senior Airman Renee Blundon Senior Airman Renee Blundon

“We’ve already started flying in formation alongside crewed. I can even say fifth-gen fighters. F-35,” Levin said.

The testing is an important step toward the Air Force’s broader vision for its Collaborative Combat Aircraft program, in which relatively inexpensive autonomous aircraft are intended to operate alongside and support crewed fighters in contested airspace.

The executives stressed, however, that the F-35 was not yet controlling the Fury during those flights.

“But they’re not controlling it from the crewed fighter yet,” Levin said. “Not yet.”

Instead, the July testing involved Fury operating under its Mission Autonomy system while sharing airspace with crewed fighters, other CCAs, and other aircraft. Anduril says Air Force personnel were able to operate the autonomy system without Anduril personnel directly running the aircraft, although company personnel remained on site in a supporting role.

Lattice for Mission Autonomy: An Unfair Advantage for Unrivaled Deterrence thumbnail

Lattice for Mission Autonomy: An Unfair Advantage for Unrivaled Deterrence

The company described the progression toward direct manned-unmanned teaming as a “crawl, run, build-up” process.

Anduril says it has already begun work on what it calls “quarterback integration,” referring to the ability for a crewed aircraft to direct or task autonomous aircraft. That work has been conducted in hardware-in-the-loop and software-in-the-loop environments as well as on the Fury itself.

“Most of those events will be coming up here in a matter of weeks or months,” Levin said when asked about the timeline for the first quarterback integration with Fury.

Asked whether those events would involve live flying, the answer was unequivocal: “Yes.”

A YFQ-44A, part of the Air Force’s Collaborative Combat Aircraft (CCA) program, undergoes an undated captive carry test at a California test location. This test phase uses inert munitions to methodically validate weapons integration, structural performance and safety, ensuring the platform can safely carry external stores. The CCA program is a critical part of a larger, integrated system-of-systems designed to extend the reach and effectiveness of crewed aircraft, giving U.S. warfighters an overwhelming advantage in future conflicts. (Courtesy photo)
A YFQ-44A undergoes an undated captive carry test at a California test location. This test phase uses inert munitions to methodically validate weapons integration, structural performance and safety, ensuring the platform can safely carry external stores. Courtesy photo via U.S. Air Force Secretary of the Air Force Publi

Exactly how an F-35 would control Fury remains part of that ongoing development effort. The executives pointed to work involving integration of the appropriate human-machine interfaces, primarily including tablet-based control from the crewed fighter, at least at first.

The distinction between flying alongside an F-35 and being controlled by an F-35 is important. The former demonstrates that Fury’s aircraft and autonomy systems can operate safely in the same battlespace as a fifth-generation fighter. The latter would represent a much more significant demonstration of the operational concept behind CCAs: allowing a single crewed fighter to employ and manage additional autonomous aircraft as part of a larger force.

Anduril’s July testing went beyond simple formation flying. The company said Fury was conducting Mission Autonomy flights using live sensor data and was operating in airspace shared with crewed fighters and other CCAs. Air Force operators reportedly conducted both relatively basic route and pattern work and more representative tactical scenarios.

The Fury’s work with the Air Force’s Experimental Operations Unit has progressed through two increasingly ambitious phases. During the first exercise in April at Edwards Air Force Base, Air Force personnel were trained to operate the aircraft and were able to launch and recover it using Anduril’s compact Menace-T setup, essentially a pair of ruggedized cases and a laptop rather than a conventional ground-control station.

By the second exercise, conducted at Creech in July, the Air Force had reduced the manpower and infrastructure required further. A single EOU operator could launch and recover the aircraft after only hours of training, while Air Force personnel independently operated Fury’s Mission Autonomy. The aircraft also flew in airspace shared with other CCAs, while the exercise demonstrated disaggregated operations and a rapid “hot reload” in which two operators replaced an AIM-120 AMRAAM with the engine running, reducing the turnaround between sorties to single-digit minutes.

A U.S. Airman assigned to the Collaborative Combat Aircraft Experimental Operations Unit loads an inert missile onto a YFQ-44A Fury aircraft at Creech Air Force Base, Nevada, July 20, 2026. The data from the exercise will be used to develop and refine new tactics, techniques, and procedures for semi-autonomous air operations when deployed from main operating bases. (U.S. Air Force photo by Senior Airman Renee Blundon)
A U.S. airman assigned to the Collaborative Combat Aircraft Experimental Operations Unit loads an inert missile onto a YFQ-44A Fury aircraft at Creech Air Force Base, Nevada, July 20, 2026. U.S. Air Force photo by Senior Airman Renee Blundon Senior Airman Renee Blundon

The July exercise also included a live weapons demonstration that Anduril characterized as a complete end-to-end kill chain rather than simply a captive-carry or basic weapons-release test. The Fury launched from Edwards with a single operator and received a track generated by an external source over a beyond-line-of-sight connection. That track was ingested by Anduril’s Lattice AI-infused autonomy software system, after which the operator tasked the aircraft to engage. Fury then launched an AIM-120 AMRAAM and guided the weapon to the target. Anduril described the test as demonstrating the complete kill chain from offboard targeting information, through the aircraft’s mission systems and operator tasking, to an actual air-to-air weapons engagement.

On the weapons side, the production FQ-44 is being designed around four external hardpoints, allowing it to carry four AIM-120 AMRAAMs for the Air Force’s primary air-to-air mission set. Currently, the demonstration aircraft can carry two. Regardless, the company is also pursuing a much broader weapons portfolio for Fury. Executives said they have already begun integration and fit checks for 500-pound guided bombs, Small Diameter Bombs, low-cost cruise missiles — including Anduril’s Barracuda 500 offering — other air-to-air weapons, rocket pods and targeting pods. Those integrations are intended to give Fury options beyond air-to-air combat, including counter-drone, counter-cruise-missile and air-to-ground/air-surface strike missions. Anduril stressed that these are currently integration and engineering efforts rather than claims that all of those weapons have been flight-tested from Fury. The company also said additional sensors, such as a targeting pod, could be added for some of those missions.

The executives acknowledged that some of the more advanced tactical capabilities remain under development and are being explored extensively in simulation. Those efforts include areas such as sensor fusion, track discrimination and tactical engagements.

A U.S. Air Force YFQ-44A Fury aircraft, assigned to the Collaborative Combat Aircraft Experimental Operation Unit, takes off for a mission flight during an Agile Combat Employment exercise at Creech Air Force Base, Nevada, July 21, 2026. The flight was part of a broader ACE exercise designed to test the resilience, adaptability, and combat effectiveness of the semi-autonomous fleet. (U.S. Air Force photo by Staff Sgt. Kristal Munguia)
A U.S. Air Force YFQ-44A Fury takes off for a mission flight during an Agile Combat Employment exercise at Creech Air Force Base, Nevada, July 21, 2026. U.S. Air Force photo by Staff Sgt. Kristal Munguia Staff Sgt. Kristal Munguia

The ultimate objective is an aircraft that does not require a large ground-control infrastructure or a dedicated operator for every individual sortie. As previously noted, during the July exercise, Anduril says a single Air Force operator was able to launch and recover a Fury after only hours of training, while other Air Force personnel operated the aircraft’s Mission Autonomy functions.

That same exercise also demonstrated what Anduril described as “disaggregated operations,” with personnel at multiple locations able to operate the same aircraft. The concept is intended to support an Agile Combat Employment-style approach in which CCAs can be dispersed across multiple operating locations rather than relying on a single large ground footprint.

The company has since delivered a Fury aircraft to the Air Force’s EOU at Creech, making it the first CCA to be permanently delivered to the unit, according to Anduril. The service is now flying the aircraft multiple times a day with what the company said is a very limited Anduril presence.

A YFQ-44A production representative test vehicle is staged in a testing chamber at Costa Mesa, Calif. The Department of the Air Force’s has begun ground testing for the Collaborative Combat Aircraft program to validate performance and readiness for future flight testing. (Courtesy photo)
A YFQ-44A production-representative test vehicle is staged in a testing chamber at Costa Mesa, California. Courtesy photo via U.S. Air Force Master Sgt. Gustavo Castillo

Meanwhile, Anduril says assembly of Fury airframes has already begun at its Arsenal facility, with production aircraft expected to begin coming off the line early next year. The company says it has built the facility and supply chain around a potential production rate of 150 aircraft per year, although that figure is a planned capacity rather than an existing Air Force order. Anduril executives said the company has already advanced procurement of long-lead items and worked with its Tier 1, 2 and 3 suppliers to support that rate, while also examining additional production lines. They emphasized that the current Air Force pricing is based on a substantially lower annual buy than 150 aircraft, but said the Fury’s unit cost is well below $20 million at the quantities currently contemplated. The company also says the production line is designed for relatively rapid reconfiguration, allowing capacity to be shifted between products in weeks rather than the months or years associated with more traditional aircraft production facilities.

Earlier this year, the Air Force awarded contracts for the production of FQ-44A Fury and General Atomics FQ-42A Dark Merlin drones — the latter has now been formally named Vengeance. This sets the service up to operate a split initial fleet of CCAs. As you can read about here, the Air Force is now aiming to have at least 500 CCA in service by 2032, a substantial step up from earlier plans, with the USAF having previously talked about acquiring “over” 150 of these drones by the end of the decade. The 500 target will likely include upcoming increment two CCAs, as well, the requirements of which the Air Force is still working on.

For Anduril, the next major milestone should go far beyond simply putting a Fury and an F-35 in the same formation, demonstrating that a crewed fifth-generation fighter can actually command and employ the autonomous aircraft as part of a live mission.

If Anduril’s timeline holds, that testing could begin relatively soon.

Contact the author: thomas@thewarzone.com

Thomas Newdick is a staff writer at TWZ, where he covers military aviation, defense technology, weapons systems, and international security. Based in Berlin, Germany, he reports on conflicts, military modernization efforts, and emerging aerospace technologies around the world, with a particular interest in airpower and its role in contemporary warfare. His reporting is informed by deep expertise in modern and historical airpower, particularly in Europe, with a focus on military aviation, air campaigns, and aerospace developments across the continent and beyond.




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