Defense & Military
Boeing MQ-28 Ghost Bat Completes First International Flights in U.S. Airspace
Boeing’s MQ-28 Ghost Bat completed its first international flights at the U.S. Navy’s Point Mugu Sea Range, demonstrating autonomous capabilities and allied deployment.

This article is based on an official press release from Boeing.
Boeing MQ-28 Ghost Bat Completes First International Flights in U.S. Airspace
On May 27, 2026, Boeing announced a significant milestone for its uncrewed aviation portfolio. According to an official company press release, the MQ-28 Ghost Bat successfully completed its first international flights in allied airspace. The autonomous combat aircraft, originally developed in Australia, conducted three operational flight tests over the Pacific Ocean at the U.S. Navy’s Point Mugu Sea Range in Southern California.
We at AirPro News recognize this deployment as a critical step in demonstrating the platform’s maturity. The primary objectives of these sorties, as outlined by Boeing, were to validate the aircraft’s autonomous systems, showcase its rapid deployment capabilities, and prove that the uncrewed system can sustain operations seamlessly from an allied military facility outside of its home country.
Operational Milestones at Point Mugu
The recent flight tests at the Point Mugu Sea Range, located at U.S. Naval Base Ventura County, represent a major logistical and operational achievement for the MQ-28 program. By successfully executing three operational sorties in U.S. airspace, Boeing has demonstrated the platform’s ability to integrate into existing allied infrastructure.
Regulatory and Safety Compliance
Operating an autonomous military aircraft in foreign airspace requires stringent oversight. Boeing stated in its release that the company coordinated closely with local authorities to operate under all required airspace, range safety, and Regulations approvals. The Point Mugu Sea Range was selected as a location well-suited for uncrewed aircraft testing, minimizing operational risks while providing a realistic environment for maritime and coastal flight profiles.
The “Loyal Wingman” Concept and Capabilities
The MQ-28 Ghost Bat is being developed by Boeing Defence Australia in partnership with the Royal Australian Air Force (RAAF). According to Boeing, it holds the distinction of being the first Military-Aircraft designed and built in Australia in more than 50 years. The aircraft is categorized as a Collaborative Combat Aircraft (CCA), designed to act as a “loyal wingman.” It utilizes AI to fly alongside and support crewed combat aircraft, such as the F-35, F/A-18F Super Hornet, and E-7A Wedgetail, providing additional combat mass, surveillance, and survivability in contested environments.
This international deployment follows a major combat milestone achieved in December 2025, when the MQ-28 successfully fired an AIM-120 Advanced Medium-Range Air-to-Air Missile (AMRAAM) at a target drone over the Woomera Test Range in Australia. That test, detailed in Boeing’s historical program data, proved the aircraft’s ability to operate within a networked combat architecture.
Aircraft Specifications
To provide context on the aircraft’s physical and performance capabilities, Boeing lists the following specifications for the MQ-28:
- Length: 38 feet (11.7 meters)
- Wingspan: 24 feet (7.3 meters)
- Range: 2,000+ nautical miles
- Speed: Fighter-compatible speeds (up to Mach 0.9)
Furthermore, Boeing notes that the aircraft features an open-system architecture and a modular design, allowing for the quick swap-out of payloads via a “missionized” nose. The Manufacturers projects that the MQ-28 will offer these capabilities at one-tenth of the cost of a traditional crewed platform.
Strategic Implications and U.S. Interest
Boeing has explicitly stated that these U.S.-based tests are intended to showcase the aircraft’s maturity to potential international customers. The successful deployment signals growing global interest in affordable, uncrewed autonomous combat mass.
In the company’s press release, Glen Ferguson, Boeing’s MQ-28 Global Program Director, highlighted the strategic intent behind the California flights:
“The activity at Point Mugu is part of Boeing’s ongoing flight test program to mature the MQ-28 and demonstrate operations from allied locations.”
Ferguson further noted the importance of the testing location for the program’s future:
“MQ-28 is using this location to further prove the maturity of the program and inform future exportability.”
AirPro News analysis
The choice of a U.S. Navy base for these tests is highly notable and speaks to broader geopolitical defense strategies. The U.S. Navy is currently developing its own carrier-based Collaborative Combat Aircraft (CCA) program. We note that the groundwork for this deployment has been quietly in motion for months. In December 2025, U.S. Secretary of Defense Pete Hegseth visited Naval Air Station Point Mugu. In a video released by the Pentagon following that visit, an MQ-28 was clearly visible in the background, sparking early industry speculation about the U.S. military’s direct interest in the platform.
Additionally, the U.S. Navy previously deployed a test and evaluation squadron to Australia to work directly on the MQ-28 program and share skills. Operating from a U.S. facility now proves the MQ-28’s ability to integrate into allied infrastructure, a crucial selling point for coalition forces looking to share technology, tactics, and operational bases in the Indo-Pacific region.
Frequently Asked Questions (FAQ)
What is the Boeing MQ-28 Ghost Bat?
The MQ-28 Ghost Bat is an autonomous, uncrewed Collaborative Combat Aircraft (CCA) developed by Boeing Defence Australia and the Royal Australian Air Force. It is designed to use AI to fly alongside and support crewed fighter jets.
Where did the MQ-28 complete its first international flights?
According to Boeing, the aircraft completed three operational sorties over the Pacific Ocean at the U.S. Navy’s Point Mugu Sea Range in Southern California.
Why is this deployment significant?
The flights demonstrate the aircraft’s ability to rapidly deploy and operate seamlessly from an allied military facility, proving its maturity and boosting its potential for international export.
Sources: Boeing
Photo Credit: Boeing
Defense & Military
Canada Awards Volatus Aerospace C$25M Tactical ISR Drone Contract
Canada awarded Volatus Aerospace a 5-year, C$25M contract for up to 5,000 tactical ISR UAS under the Defence Drone Initiative.

On September 10, 2026, the Government of Canada awarded Volatus Aerospace Inc. a five-year contract to supply up to 5,000 Low-Cost Tactical Intelligence, Surveillance and Reconnaissance (ISR) Uncrewed Aircraft Systems (UAS) for the Canadian Armed Forces (CAF). The agreement establishes a procurement pathway valued at up to C$25 million, marking the company’s first direct contract conversion under the national Defence Drone Initiative (DDI).
In a press release issued by the Mirabel, Québec-based company, Volatus confirmed an initial order of 100 tactical ISR systems. The contract includes options for the Canadian government to acquire up to 4,900 additional units over the five-year term to support land forces operations.
Procurement framework and financial details
The contract operates under a government procurement framework that establishes a maximum price of C$5,000 per system. While the total procurement envelope is capped at C$25 million, Volatus Aerospace noted that its specific contracted pricing remains commercially confidential.
The agreement covers an end-to-end solution for the Canadian Armed Forces. Beyond the delivery of the aircraft, the contract includes payloads, ground control stations, data links, training, and sustainment services.
Volatus Aerospace Chief Executive Officer Glen Lynch stated that the contract validates the company’s integrated model, which extends beyond hardware delivery to include technical support and payload integration.
“Canada is seeking sovereign, secure and supportable defence technologies that can be fielded efficiently and scaled as operational requirements evolve,” Lynch said.
Defence Drone Initiative integration
The September 10 award follows a September 3, 2026, announcement that Volatus Aerospace had qualified across all five work streams of the Government of Canada’s DDI Marketplace. This pre-qualification established the company as an eligible supplier for future uncrewed and autonomous systems for both the CAF and the Canadian Coast Guard.
This contract represents the first Request for Proposal issued under Stream 1 of the DDI program, which covers uncrewed and autonomous systems as well as counter-UAS technologies.
AirPro News analysis
We view this contract as a critical milestone for Volatus Aerospace in transitioning from a qualified vendor to an active supplier for the Canadian military. Securing the first Stream 1 contract under the DDI Marketplace positions the company favorably for future domestic defense procurements. The structure of the contract, heavily weighted toward options rather than firm initial orders, indicates that the Canadian Armed Forces will likely evaluate the initial 100 systems in operational environments before committing to the full 5,000-unit ceiling.
Photo Credit: Volatus Aerospace
Defense & Military
USCG Inducts First HC-130J Super Hercules at Sacramento
The U.S. Coast Guard inducted its first HC-130J Super Hercules at Air Station Sacramento on September 10, 2026.

The U.S. Coast Guard (USCG) officially inducted its first Lockheed Martin HC-130J Super Hercules at Air Station Sacramento on September 10, 2026, marking a significant capability upgrade for maritime patrol and interdiction missions on the West Coast.
The delivery of aircraft tail number CGNR-2018 initiates the station’s transition away from the legacy Alenia C-27J Spartan. According to a Coast Guard press release, the new platform will enhance heavy air transport and intelligence, surveillance, and reconnaissance (ISR) operations across the Pacific region.
Fleet modernization and capabilities
The HC-130J Super Hercules provides a substantial performance increase over the outgoing C-27J fleet. The aircraft operates with a cruise speed of 320 knots and a range of 4,900 nautical miles. Its endurance exceeds 20 hours, allowing for extended maritime patrols and prolonged on-scene loiter times during search and rescue or law enforcement missions.
L3Harris Technologies completed final delivery activities and missionization for this specific aircraft in Waco, Texas, in February 2026. The integration process equips the airframe with specialized sensor suites and communication arrays required for Coast Guard operations. CGNR-2018 is the 18th fully missionized Super Hercules to enter the active Coast Guard fleet.
Vice Adm. Joseph Buzzella, Commander of U.S. Coast Guard Pacific Area, attended the induction ceremony at McClellan Park, California. He described the delivery as a monumental step forward for Air Station Sacramento and the future of Coast Guard aviation.
Strategic expansion and funding
The Coast Guard is utilizing a portion of a $1.142 billion investment from fiscal year 2025 budget reconciliation funding allocated for fixed-wing aircraft. This capital is driving the expansion of HC-130J operations to two additional air stations, including the Sacramento facility.
Prior to this expansion, the service operated the HC-130J out of three primary locations: Elizabeth City, North Carolina; Kodiak, Alaska; and Barbers Point, Hawaii. A second HC-130J designated for Sacramento is currently undergoing missionization at the L3Harris facility in Texas and is anticipated for delivery in the spring of 2027.
Buzzella noted the operational focus of the new fleet during the ceremony. He stated the aircraft will be critical to detecting and interdicting migrant and narcotics flows through the maritime approaches to the United States.
AirPro News analysis
We view the transition from the C-27J Spartan to the HC-130J Super Hercules at Air Station Sacramento as a logical consolidation of the Coast Guard’s fixed-wing logistics and patrol architecture. The C-27J presented unique supply chain and maintenance variables after the Coast Guard inherited the fleet from the U.S. Air Force. Standardizing around the HC-130J provides the service with greater payload capacity, extended loiter times for ISR missions, and a more streamlined maintenance program across its Pacific and Atlantic operations. The $1.142 billion fiscal 2025 funding injection indicates strong legislative backing for this fleet homogenization strategy.
Sources: U.S. Coast Guard
Photo Credit: U.S. Coast Guard
Defense & Military
Hermeus Unveils Ramjet-X Air-Launched High-Mach Test Vehicle
Hermeus introduced Ramjet-X on Sept 9, 2026, an air-launched test vehicle for high-Mach flight testing, backed by a $219M DIU contract.

Hermeus unveiled Ramjet-X on September 9, 2026, introducing an expendable, air-launched test vehicle designed to lower the cost of high-Mach flight testing. The system will be deployed from the company’s reusable Quarterhorse Commercial-Aircraft, eliminating the need for traditional rocket boosters to reach ignition speeds.
In a press release issued on September 9, 2026, the venture-backed defense aviation company detailed its plans to offer “Flight Test as a Service” (FTaaS). By utilizing the Quarterhorse as a reusable first stage, Hermeus aims to provide a scalable platform for testing payloads, sensors, and materials in sustained high-Mach environments. Integrated vehicle testing for Ramjet-X is scheduled to begin in 2027.
Architecture and testing strategy
Ramjet engines require significant initial speed to ignite and operate effectively. Historically, this has necessitated the use of expensive, expendable rocket boosters for each test flight. Hermeus is bypassing this requirement by using its Quarterhorse aircraft to carry and launch Ramjet-X at high speeds and altitudes.
According to reporting by Aviation Week, the Quarterhorse program is advancing through a series of iterative vehicles, including the Mk 2.1, Mk 2.2, and Mk 2.3 variants. The Mk 2.1 recently demonstrated the ability to release a missile-like store during flight, validating the air-launch concept required for Ramjet-X. The follow-on Mk 2.2 is expected to reach speeds of Mach 2 or greater.
“High-speed flight testing is extremely expensive, and you don’t get many shots at it,” Hermeus Chief Executive Officer Zach Shore stated in the press release. “Ramjet-X gives us a way to put new systems into sustained high-Mach environments without building an expensive one-off test program every time.”
Corporate expansion and defense contracts
The Ramjet-X announcement follows a period of significant growth for Hermeus. Earlier in 2026, the company achieved a post-money valuation of $1 billion and relocated its headquarters from Georgia to El Segundo, California, according to Axios. High-temperature structures for Ramjet-X are currently in development at the new El Segundo facility, while ramjet engine testing is underway at the Hermeus HEAT facility in Jacksonville, Florida.
The company’s high-speed testing initiatives are supported by the United States Department of Defense. On May 28, 2026, Hermeus received a $159 million Contracts extension from the Defense Innovation Unit (DIU), bringing the total ceiling value of the award to $219 million. This funding supports the development of a high-speed, uncrewed testbed aircraft.
Shore noted in the company statement that combining speed, sustained flight, and scalability into a single system lowers the barriers to gathering data in extreme conditions. This architecture is intended to accelerate development timelines for both Hermeus and its commercial and government customers.
AirPro News analysis
We view the Ramjet-X program as a pragmatic stepping stone in Hermeus’ broader ambition to field operational hypersonic aircraft. By decoupling the high-Mach testbed from the launch vehicle, the company is adopting a modular approach that mitigates the financial risks associated with expendable rocket boosters. If the 2027 integrated flight tests are successful, the FTaaS model could disrupt the current high-speed testing market, which is currently bottlenecked by limited infrastructure and high per-flight costs. The recent $219 million DIU contract ceiling indicates strong institutional interest in expanding domestic high-Mach testing capacity.
Sources: Hermeus
Photo Credit: Hermeus
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