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Airbus and Singapore Demonstrate Crewed-Uncrewed Teaming with HTeaming Tech

Airbus and Singapore’s RSAF and DSTA conducted a world-first crewed-uncrewed teaming demo using HTeaming tech to control a Flexrotor drone from an H225M helicopter.

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This article is based on an official press release from Airbus.

Airbus and Singapore Execute Pioneering Crewed-Uncreumed Teaming Demonstration

In a significant leap forward for aerospace tactical operations, Airbus Helicopters, the Republic of Singapore Air Force (RSAF), and Singapore’s Defence Science and Technology Agency (DSTA) have successfully demonstrated advanced crewed-uncrewed teaming. According to an official press release from Airbus, the live flight campaign paired an RSAF H225M medium-lift helicopter with an Airbus Flexrotor Uncrewed Aerial System (UAS).

The demonstration, which took place at a Singapore airbase in January 2026, utilized Airbus’s new “HTeaming” technology. This trial marks a world-first achievement in successfully controlling a drone directly from a helicopter in flight, effectively extending the visual range and operational safety of the human crew.

We note that the foundation for this milestone was established in June 2025 at the Paris Air Show, where DSTA and Airbus Helicopters signed a collaboration agreement to explore how Manned-Unmanned Teaming (MUM-T) could enhance situational awareness and mission outcomes.

The Pioneering Flight Campaign

Simulating Combat Search and Rescue

During the January 2026 trials, the aircraft teamed up for a simulated Combat Search and Rescue (CSAR) mission designed to locate and extract a stranded pilot in a contested rainforest environment. According to the provided project data, the Flexrotor drone was deployed ahead of the crewed aircraft to locate and identify the target.

Operating several kilometers apart, with the technical capability to remain connected up to 20 kilometers away, the drone fed real-time intelligence and video directly to a handheld tablet operated by a crew member inside the H225M helicopter. The helicopter crew utilized this live data to safely navigate the environment and rendezvous with the rescuee.

The trial successfully validated MUM-T Interoperability Level 4. This level of interoperability enables the direct control and monitoring of the UAS from within the helicopter cabin, rather than relying on a ground control station.

“We were completely controlling the drone from the helicopter. For us, it’s of course unique. Today, what we performed is a world first… One of the big challenges was to keep the data link stable,” stated Victor Gerin-Roze, Head of UAS Business at Airbus Helicopters.

Technological Breakdown: HTeaming and Flexrotor

The HTeaming System

At the core of this demonstration is Airbus’s new HTeaming system. Described in the company’s release as a modular crewed-uncrewed teaming solution, it is designed to be hardware-agnostic and compatible across the entire Airbus helicopter range. The system comprises a user-friendly tablet that serves as the Human-Machine Interface on the operator’s lap, supporting software to manage the UAS, a modem, and four dedicated antennas installed on the helicopter.

This setup allows the helicopter crew to receive and process live data from the drone while retaining direct command and control, all without overloading the pilot’s primary flight workload.

Flexrotor and H225M Specifications

The Airbus Flexrotor UAS is a Group 2 small tactical Vertical Take-Off and Landing (VTOL) drone tailored for Intelligence, Surveillance, Target Acquisition, and Reconnaissance (ISTAR) missions. It features a maximum takeoff weight of 25 kg (55 lbs) and a payload capacity of 8 kg (18 lbs). The drone boasts an impressive flight endurance of 12 to 14 hours and can reach dash speeds of up to 140 km/h (85 mph).

The crewed component of the teaming exercise, the H225M, is a proven 11-tonne twin-engine medium-lift military helicopter from the Super Puma family. It is widely utilized globally for tactical transport and special operations, including search and rescue in challenging conditions.

Strategic Implications for Modern Operations

Enhancing Situational Awareness and Safety

The integration of UAS with crewed aircraft acts as a forward scout, providing real-time intelligence that extends the visual range far beyond the helicopter crew’s immediate line of sight. By sending the drone into contested or unknown environments first, the helicopter crew significantly minimizes their exposure to high-risk situations.

Because data is processed immediately in the cockpit, pilots can make real-time tactical decisions and react to threats instantly. A major technical achievement highlighted during the trial was maintaining a stable data link in a highly congested electromagnetic environment while both aircraft were flying at high speeds, in different directions, and at different altitudes.

“The successful teaming is a game-changer for modern tactical operations. This flight campaign fully illustrates the ability to exploit dual-use technologies to support secure operations,” noted Olivier Michalon, Executive Vice President of Global Business at Airbus Helicopters.

Representatives from Singapore’s defense sector echoed these sentiments. Ang Jer Meng, Director Air Systems at DSTA, emphasized that the successful flight demonstration underscores a commitment to innovation and strong industry partnerships. Furthermore, Major Lim Ryan, Staff Officer in the Air Plans Department of the RSAF, highlighted that the forward intelligence provided by the Flexrotor enhanced situational awareness, improving threat reaction and increasing mission success.

AirPro News analysis

We observe that the integration of UAS with crewed aircraft, commonly referred to as MUM-T, is rapidly becoming a defining trend in modern aerospace and defense strategies. It serves as a critical “force multiplier,” allowing human crews to leverage the advanced sensors and persistent endurance of drones while maintaining a safe standoff distance from potential threats.

Airbus’s strategy to consolidate its tactical drone portfolio, which includes the Flexrotor, Aliaca, and VSR700, under its Helicopters division appears to be a calculated move to create a unified, interoperable ecosystem for the modern battlespace. Looking ahead, Airbus and Singapore plan to continue their collaboration to explore additional operational scenarios. With Airbus studying the integration of new payloads like Starlink satellite communications on the Flexrotor and planning to make the HTeaming solution available to operators starting in 2026, the landscape of tactical aerial operations is poised for significant transformation.

Frequently Asked Questions (FAQ)

What is MUM-T?
MUM-T stands for Manned-Unmanned Teaming (also known as crewed-uncrewed teaming). It involves the synchronized employment of crewed aircraft and uncrewed aerial systems (drones) to enhance situational awareness, survivability, and mission effectiveness.

What is Interoperability Level 4?
In the context of UAS operations, Interoperability Level 4 allows the crew of a manned aircraft to directly control and monitor the drone and its payload from within their own cabin, without needing a separate ground control station.

When will Airbus’s HTeaming technology be available?
According to the provided project data, Airbus plans to make the HTeaming solution available to helicopter operators starting in 2026.

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Photo Credit: Airbus

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Defense & Military

EU Funds SHARP Project for Next-Gen Military Helicopter Engine

The EU allocated €25M to the SHARP consortium, 25 partners from 12 countries developing Europe’s next military helicopter engine by 2040.

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The European Commission has allocated approximately €25 million through the European Defence Fund to back a multinational consortium developing the propulsion architecture for Europe’s next generation of military helicopters.

Announced on June 11, 2026, at the ILA Berlin airshow, the Sovereign High-performance Architecture for Rotorcraft Propulsion (SHARP) project brings together 25 partners from 12 European countries. According to a joint press release from Safran Helicopter Engines, MTU Aero Engines, and Avio Aero, the initiative will establish the technological foundation for the European Next Generation Helicopter Engine (ENGHE), which is targeted to enter service in 2040.

Addressing an aging military rotorcraft fleet

The SHARP initiative aligns with broader European defense goals to replace a rapidly aging fleet of military aircraft under the Next Generation Rotorcraft Capability (NGRC) and European Next Generation Rotorcraft Technologies (ENGRT) programs. The current European inventory includes approximately 1,800 transport helicopters and 600 combat helicopters, which currently average 20 years of age. By the 2040s, many of these aircraft will have been in service for over 50 years.

“In light of a continuously aging European fleet of military helicopters the need is obvious: From 2040 onwards, a large proportion of these rotorcraft will have to be replaced,” said Dr. Ottmar Pfänder, Chief Program Officer at MTU Aero Engines. “We joined forces across the continent to underline the importance of this technology program. It will further reinforce European sovereignty and strengthen the European supply chain.”

The funding will be used to develop scalable technological building blocks that can be adapted to various weight classes and mission profiles required by future European armed forces.

Collaborative framework and European sovereignty

The SHARP project builds upon the foundation of the EUropean Military Rotorcraft Engine Alliance (EURA), a 50/50 joint venture established in July 2024 between Safran Helicopter Engines and MTU Aero Engines specifically to develop the ENGHE. The consortium has now expanded to include Avio Aero, broadening the industrial base tasked with designing the new powerplant.

Safran Helicopter Engines CEO Cédric Goubet stated that the funding demonstrates Europe’s commitment to self-reliance and technological sovereignty for future military platforms, thanking the European Union and participating nations for their confidence in the consortium’s capabilities.

“SHARP marks an important milestone in the journey toward Europe’s next-generation rotorcraft engine and reinforces the value of collaboration in developing sovereign, high-performance propulsion technologies,” said Riccardo Procacci, CEO of Avio Aero. “We are proud to partner with EURA on this initiative, contributing within a fully European framework while leveraging Avio Aero’s well-established expertise and know-how.”

EURA CEO Wolfgang Gärtner confirmed that the joint venture is prepared to coordinate the multinational team to provide modern technologies to European forces.

AirPro News analysis

The €25 million European Defence Fund grant represents a critical early step in aligning Europe’s fragmented defense aerospace sector behind a single rotorcraft propulsion program. By formalizing the SHARP consortium now, the European Union is actively working to prevent the development of competing, incompatible national engine programs that have historically complicated European defense procurement and increased long-term maintenance costs. We view the inclusion of Avio Aero alongside the EURA joint venture as a strong indicator that the ENGHE program is successfully consolidating the continent’s primary propulsion manufacturers ahead of the 2040 target.

Sources: Safran Group

Photo Credit: Safran Group

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Defense & Military

Boeing MQ-25A Stingray Aboard USS Nimitz at FLEETEX 250

Boeing’s MQ-25A T1 demonstrator appeared on USS Nimitz during FLEETEX 250, weeks after Navy LRIP approval.

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The Boeing Company’s MQ-25A Stingray T1 demonstrator drone appeared aboard the USS Nimitz (CVN 68) in the Atlantic Ocean on June 25, 2026, sporting special commemorative markings for the United States’ 250th anniversary. The uncrewed aircraft was photographed alongside Boeing F/A-18E Super Hornets and a Grumman C-2A Greyhound during a multinational group sail event.

The deployment provides a visual representation of the United States Navy’s future carrier air wing as the MQ-25 program transitions into its next production phase. Boeing Defense and the Navy publicly released imagery of the static display on June 29, 2026.

FLEETEX 250 and commemorative display

The T1 prototype was painted in a plain gray livery and featured “250” and “Boeing Backs America” markings. In a statement released on the social media platform X, Boeing Defense noted that the display was intended to honor the nation’s semiquincentennial and offer a glimpse of future carrier operations.

The USS Nimitz hosted the drone during Fleet Exercise (FLEETEX) 250. A Navy spokesperson told TWZ that the exercise involved 25 other warships and aircraft from 13 partner and allied nations conducting structured training events at sea. The spokesperson confirmed the presence of the Boeing-owned T1 prototype on the flight deck.

Aviation analysts at The Aviationist observed that the drone lacked the Cobham Aerial Refueling Store (ARS) pod, which is typically mounted under the left wing for refueling operations. The T1 demonstrator has never taken off from or landed on an aircraft carrier and was transported aboard the USS Nimitz for the exercise. It remains unconfirmed whether the uncrewed aircraft actively participated in any operational drills or if its presence was strictly for static display and photo opportunities.

Program milestones and carrier transitions

The appearance of the T1 demonstrator follows several recent advancements for the MQ-25 program. The Boeing-owned prototype originally flew on September 19, 2019, and previously conducted flight deck handling and remote control system demonstrations aboard the USS George H.W. Bush in December 2021.

On April 25, 2026, the first production-representative MQ-25 completed its maiden flight from Boeing’s facility at MidAmerica Airport in Illinois. The following month, the Navy officially approved the uncrewed tanker program’s transition into Low-Rate Initial Production (LRIP).

The FLEETEX 250 exercise also marked a significant operational transition for the Navy’s legacy aircraft. On June 25, 2026, the Grumman C-2A Greyhound made its final catapult launch and arrested landing from a carrier aboard the USS Nimitz. The C-2A is anticipated to be fully retired later in the year.

AirPro News analysis

The static display aboard the USS Nimitz offers a stark visual contrast between the Navy’s past and its immediate future. Placing the MQ-25A Stingray next to the retiring C-2A Greyhound highlights the physical footprint required to integrate advanced uncrewed assets into the carrier air wing. While the T1 demonstrator’s presence was largely ceremonial for the 250th anniversary, the recent approval for Low-Rate Initial Production indicates that the logistical and operational challenges of deploying uncrewed tankers at sea are moving from theoretical testing to active fleet integration. We expect the focus to shift rapidly toward deck handling and maintenance procedures for the production-representative models in the coming months.

Sources: Boeing Defense

Photo Credit: Boeing

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Defense & Military

NATO Expected to Select Saab GlobalEye to Replace AWACS Fleet

NATO is set to announce the Saab GlobalEye as its E-3A Sentry replacement at the July 2026 Ankara summit, bypassing Boeing’s E-7 Wedgetail.

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This article summarizes reporting by Reuters by Sabine Siebold and Tim Hepher.

The North Atlantic Treaty Organization (NATO) is preparing to select the Saab GlobalEye to replace its aging fleet of Boeing E-3A Sentry airborne warning and control system (AWACS) aircraft, marking a significant shift toward European defense procurement. The official announcement is expected during the upcoming NATO summit in Ankara, Turkey, scheduled for July 7 and 8, 2026.

According to reporting by Reuters, four sources familiar with the matter indicated that the alliance will pivot away from its previous intention to acquire the Boeing E-7 Wedgetail. The decision represents a major defense contract for Sweden-based Saab AB and a notable setback for The Boeing Company in the airborne early warning and control (AEW&C) market. Neither NATO nor Saab has officially commented on the pending announcement.

Transitioning from the E-3A Sentry

NATO currently operates a fleet of 14 Boeing E-3A Sentry AWACS aircraft. Based at Geilenkirchen Air Base in Germany, these aircraft have been in service since 1982 and are approaching the end of their operational lifespan. The Saab GlobalEye, which completed its first flight in 2018, utilizes a modified Bombardier Global 6000 or 6500 business jet airframe equipped with Saab’s Erieye extended-range radar system.

The Boeing E-7 Wedgetail fallout

The anticipated selection of the GlobalEye follows a series of procurement shifts regarding the Boeing E-7 Wedgetail. NATO had initially planned to purchase six E-7 aircraft to replace the E-3A Sentry fleet. The alliance abandoned this plan in 2025 after the United States Department of Defense (Pentagon) canceled its own procurement of 26 Wedgetails in favor of satellite-based surveillance networks.

U.S. Secretary of Defense Pete Hegseth indicated to Congress in May 2026 that the Pentagon is attempting to reinstate the E-7 into the budget following pressure from U.S. lawmakers. Despite these efforts, international momentum appears to be shifting toward the Swedish manufacturer. On May 27, 2026, Canadian Prime Minister Mark Carney announced that the Government of Canada had entered formal negotiations with Saab as the preferred supplier for its own AEW&C program, bypassing the Boeing platform.

AirPro News analysis

We view NATO’s expected selection of the Saab GlobalEye as a critical indicator of changing procurement dynamics within the alliance. Historically, NATO has relied heavily on U.S.-manufactured heavy surveillance platforms. The shift to a European-integrated system on a Canadian business jet airframe suggests a growing preference for diversified defense supply chains and potentially lower operating costs compared to commercial airliner-based platforms like the E-7. If confirmed at the Ankara summit, this contract will solidify Saab’s position as a primary competitor in the global AEW&C market while placing additional pressure on Boeing’s defense sector to secure international orders for the Wedgetail program.

Sources: Reuters

Photo Credit: Saab

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