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Belarus Debuts Sky-Truck Unmanned Helicopter at MILEX-2025

Belarus unveils 500kg payload Sky-Truck UAV for military logistics, featuring Rolls-Royce engine and EDGE Group collaboration at MILEX-2025.

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Belarus Unveils the Sky-Truck Unmanned Helicopter at MILEX-2025

At the 2025 edition of the MILEX International Exhibition of Arms and Military Equipment, the Belarusian defense industry took a significant step forward by unveiling the Sky-Truck unmanned helicopter. Developed by KB Unmanned Helicopters, this medium-lift UAV (Unmanned Aerial Vehicle) marks Belarus’s entry into the growing market of unmanned cargo transport systems. The platform was presented publicly for the first time, signaling a broader shift toward autonomous logistics in modern military operations.

The Sky-Truck is designed primarily for logistical support, capable of transporting up to 500 kilograms of payload. With its coaxial rotor architecture and compact footprint, it is built to operate in austere environments, including unprepared landing zones. The unveiling reflects Belarus’s ambitions to enhance domestic defense capabilities while also positioning itself as a player in the global UAV market.

This development aligns with international trends where militaries are increasingly investing in unmanned systems to improve supply chain efficiency and reduce personnel risk. The Sky-Truck may serve both national defense needs and potential export opportunities, especially in regions where terrain and operational conditions challenge conventional logistics.

Technical Specifications and Design Philosophy

Design and Architecture

The Sky-Truck features a coaxial rotor system with two three-blade counter-rotating rotors, each with a diameter of 12.8 meters. This design choice minimizes the aircraft’s footprint on the ground, allowing it to operate from a 30 x 30 meter unprepared landing zone. The tail boom is equipped with a downward-angled vertical stabilizer to ensure longitudinal stability during flight.

To maintain balance and avoid center-of-gravity issues, the rotors are positioned above the payload bay. The helicopter’s airframe measures 7.7 meters in length (excluding rotors), stands 4 meters tall, and has a landing gear track of 2.6 meters. This compact yet robust configuration is optimized for tactical field operations.

Powering the Sky-Truck is a Rolls-Royce 250-C30 turboshaft gas turbine engine, which runs on aviation kerosene. The engine has a designated service life of 3,000 hours. The helicopter’s dry mass is 1,100 kg, with an additional 375 kg allocated for 500 liters of fuel, bringing the total normal take-off mass to 1,700 kg. The maximum take-off mass is 2,000 kg.

“The Sky-Truck reflects a strategic shift towards autonomous logistics in Belarusian defense doctrine. Medium-lift unmanned helicopters can significantly enhance supply chain resilience in contested environments,” Dr. Elena Kovalenko, Institute of Military Technology, Minsk

Performance and Capabilities

The Sky-Truck offers a maximum speed of 140 km/h, with a cruising speed of 120 km/h. For extended missions, an economical speed of 80 km/h allows for a maximum flight endurance of up to 5 hours. The operational range is approximately 360 km, making it suitable for medium-range logistics missions in both civilian and military contexts.

The UAV is equipped with two Airbox transport containers, enabling modular and compartmentalized cargo delivery. This feature adds flexibility for transporting various types of supplies, from medical kits to ammunition and rations. The platform supports autonomous flight with GPS navigation and is expected to include basic obstacle avoidance systems.

The airframe’s designated service life is 6,000 hours, underscoring its durability and long-term operational potential. While the exact unit cost has not been disclosed, comparable platforms globally range from $500,000 to $2 million, depending on configuration and payload capacity.

Comparative Context and Partnerships

Observers noted that the Sky-Truck bears resemblance to the Air Truck unmanned helicopter presented by ADASI, a subsidiary of the UAE’s EDGE Group, at IDEX 2023 and UMEX 2024. Both platforms share a 500 kg payload capacity and similar design features, which is unsurprising given the collaboration between KB Unmanned Helicopters and EDGE.

This partnership reflects a growing trend in international defense collaboration, where smaller nations leverage strategic alliances to accelerate innovation and market entry. According to representatives at MILEX-2025, a preliminary order for 20 Sky-Truck units has already been received from an undisclosed customer, indicating early commercial interest.

Such cooperation not only enhances Belarus’s technological capabilities but also opens avenues for joint ventures and co-production agreements, particularly in the Middle East and Southeast Asia, where EDGE has a growing footprint.

Strategic Implications and Market Trends

Global Shift Toward Unmanned Logistics

Globally, militaries are increasingly adopting unmanned logistics platforms to reduce human exposure in combat zones and streamline supply chains. The United States, China, and Israel are among the countries actively developing or deploying unmanned cargo helicopters and VTOL drones for battlefield resupply.

These systems are particularly useful in environments where traditional ground convoys are vulnerable to ambushes or IEDs. By enabling autonomous resupply, they enhance operational tempo and reduce logistical bottlenecks, especially in remote or contested areas.

The Sky-Truck fits neatly into this paradigm. Its medium-lift capacity and modular design make it a practical solution for tactical logistics, humanitarian missions, and even disaster response in civilian applications.

Expert Perspectives

John Miller, a UAV industry expert from Defense Aerospace Insights, remarked, “While many countries focus on reconnaissance and strike UAVs, cargo drones like the Sky-Truck represent an important, often overlooked niche that can improve battlefield sustainability.”

Colonel (ret.) Sergei Ivanov of the Russian Defense Review emphasized the operational value: “The ability to deliver supplies autonomously to frontline units reduces exposure to enemy fire and allows for more agile operations.”

These expert opinions underscore the strategic value of unmanned cargo helicopters not just as auxiliary tools, but as core components in modern military logistics frameworks.

Belarus’s Defense Industry Ambitions

The unveiling of the Sky-Truck is consistent with Belarus’s broader objectives to modernize its defense sector and expand its export portfolio. By developing indigenous UAV platforms, Belarus aims to reduce dependency on foreign suppliers and position itself as a competitive player in the global defense market.

Participation in exhibitions such as MILEX allows Belarusian firms to showcase their capabilities to international buyers and foster bilateral defense cooperation. The Sky-Truck, as a flagship product, may serve as a test case for future UAV developments and international partnerships.

Given the geopolitical landscape and increasing demand for autonomous systems, Belarus’s investment in UAV technology could yield both strategic and economic dividends in the coming years.

Conclusion

The Sky-Truck unmanned helicopter represents a significant milestone for Belarus’s defense industry. As a medium-lift UAV tailored for logistical missions, it addresses a growing need for autonomous supply chain solutions in military operations. Its design, performance, and early commercial interest suggest that it could become a notable player in the evolving landscape of unmanned systems.

Looking ahead, the Sky-Truck may pave the way for more advanced UAV platforms from Belarus, particularly in collaboration with international partners like EDGE. As militaries worldwide continue to embrace unmanned logistics, platforms like the Sky-Truck are likely to play a central role in shaping the future of battlefield mobility and sustainability.

FAQ

What is the payload capacity of the Sky-Truck?
The Sky-Truck can carry up to 500 kg of payload, including containers and fuel.

What engine powers the Sky-Truck?
It is powered by a Rolls-Royce 250-C30 turboshaft gas turbine engine running on aviation kerosene.

What is the maximum range and flight time?
The Sky-Truck has a maximum range of 360 km and a flight endurance of up to 5 hours at economical speed.

Is the Sky-Truck available for export?
Yes, a preliminary order for 20 units has been received from an unnamed customer, indicating export potential.

How does the Sky-Truck compare to similar platforms?
It is comparable to the Air Truck by ADASI in terms of payload and design, reflecting their collaborative development efforts.

Sources:
EDR Magazine,
MILEX Official Website,
Jane’s Defence Weekly,
Defense Aerospace Insights

Photo Credit: militarnyi

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USAF Launches EPAWSS Speedline to Accelerate F-15E Modernization

The USAF establishes an EPAWSS Speedline at Warner Robins to rapidly upgrade F-15E Strike Eagles with advanced electronic warfare systems starting June 2026.

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This article is based on an official press release from the Air Force Life Cycle Management Center.

Air Force Launches EPAWSS Speedline to Accelerate F-15E Modernization

On May 26, 2026, the Air Force Life Cycle Management Center (AFLCMC) announced the establishment of a dedicated “Speedline” facility at the Warner Robins Air Logistics Complex (WR-ALC) in Georgia. This new initiative is designed to rapidly accelerate the installation of the Eagle Passive Active Warning Survivability System (EPAWSS) on the U.S. Air Force’s F-15E Strike Eagle fleet.

According to the official press release, the Speedline facility is slated to receive its first F-15E aircraft for installation in June 2026. By decoupling these critical electronic warfare upgrades from standard Programmed Depot Maintenance (PDM) schedules, the Air Force aims to field advanced defensive capabilities much faster than previously possible.

We note that this shift in maintenance strategy allows the military to upgrade jets up to five to seven years ahead of their routine maintenance cycles. This collaborative effort between the AFLCMC’s F-15 System Program Office and the WR-ALC is expected to significantly boost fleet readiness against modern electromagnetic threats.

Breaking the Maintenance Bottleneck

Operational Independence

Historically, major system upgrades for fighter aircraft have been tied to their routine depot maintenance schedules, which can create bottlenecks for fielding urgent technology. The AFLCMC’s new Speedline operates entirely independently of the standard PDM line.

This operational independence provides the F-15 System Program Office and WR-ALC the flexibility to install the EPAWSS on aircraft that are not due for routine maintenance for another five to seven years. By treating the electronic warfare upgrade as a standalone priority, the Air Force can modernize its fleet at a pace dictated by tactical necessity rather than logistical routine.

Understanding the EPAWSS Upgrade

Replacing Cold War-Era Technology

The Eagle Passive Active Warning Survivability System is a next-generation, all-digital electronic warfare suite. Based on the provided research data, it is designed to replace the legacy Tactical Electronic Warfare System (TEWS), which relies on Cold War-era analog equipment.

Developed by prime contractor BAE Systems, with Boeing serving as the prime contractor for integration, EPAWSS provides fully integrated radar warning, geolocation, situational awareness, and self-protection solutions. The system allows the aircraft to detect, identify, and defeat surface and airborne threats in highly contested, dense signal environments.

Financial and Production Milestones

The U.S. Air Force officially cleared EPAWSS for full-rate production in early 2025. Concurrently, the Air Force awarded a $615.8 million contract to Boeing to cover the installation of these systems. Shortly after this award, the first fully equipped F-15E was delivered to the 48th Fighter Wing at RAF Lakenheath in the United Kingdom, marking a major milestone in the modernization of the 4th-generation fleet.

Strategic Importance and Lethality

Expanding the F-15E’s Capabilities

The integration of EPAWSS is not merely a defensive measure; it is a comprehensive upgrade to the aircraft’s survivability and lethality. In the official AFLCMC release, military leadership emphasized the strategic necessity of the system.

“The F-15E Strike Eagle remains a cornerstone of our tactical airpower and deep strike capabilities. The integration of advanced electronic warfare suites, such as the Eagle Passive Active Warning Survivability System, ensures the F-15E will not just survive, but actively disrupt and dismantle adversary kill chains in the most highly contested, electromagnetically dense environments.”

, Lt. Col. Matthew Heil, F-15 Program Office, EPAWSS Materiel Leader

AirPro News analysis

We observe that the creation of the EPAWSS Speedline reflects a broader Department of Defense trend toward agile logistics and sustainment. By separating critical combat upgrades from time-consuming depot maintenance, the military is demonstrating a commitment to fielding new technologies to the warfighter at a much faster pace.

Furthermore, as the U.S. Air Force continues to develop and field 5th-generation fighters like the F-35 and F-22, alongside future 6th-generation platforms, maintaining the survivability of 4th-generation “workhorse” aircraft is a strategic priority. EPAWSS ensures that older airframes like the F-15E can safely and effectively operate alongside stealth fighters in modern, highly contested combat scenarios, bridging the gap between legacy platforms and future air dominance initiatives.

Frequently Asked Questions

What is the EPAWSS Speedline?

The EPAWSS Speedline is a dedicated installation facility at the Warner Robins Air Logistics Complex designed to rapidly equip F-15E Strike Eagles with the new Eagle Passive Active Warning Survivability System, independent of standard maintenance schedules.

When will the first aircraft be upgraded at the Speedline?

According to the Air Force Life Cycle Management Center, the facility is slated to receive its first F-15E aircraft for installation in June 2026.

Who are the primary contractors for EPAWSS?

BAE Systems is the prime contractor that developed the EPAWSS, while Boeing serves as the prime contractor for the system’s integration and installation on the F-15E.

Sources

Photo Credit: U.S. Air Force photo by Airman 1st Class Codie Trimble

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Final A-10 Engine Build Marks End of Davis-Monthan Maintenance Era

Davis-Monthan AFB completes last A-10 engine build as USAF extends aircraft service life through 2030, ending a 50-year maintenance mission.

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This article is based on an official press release from Air Combat Command.

On May 21, 2026, Airmen at Davis-Monthan Air Force Base in Arizona officially completed their final A-10 Thunderbolt II engine build. According to an official release from Air Combat Command, this milestone marks the end of a decades-long maintenance mission for the 355th Component Maintenance Squadron (CMS) and serves as a symbolic closing chapter for the base’s 50-year legacy with the iconic close-air-support aircraft.

While the U.S. Air-Forces recently announced a partial extension of the A-10’s operational life through 2030, the formal training and heavy maintenance pipelines, including the dedicated Davis-Monthan engine shop, are officially shutting down. As the military transitions to future platforms, the completion of this final General Electric TF34 turbofan engine represents the end of an era for the maintainers who kept the “Warthog” flying.

We at AirPro News have reviewed the official military releases and supplementary research to provide a comprehensive look at what this final build means for the U.S. Air Force, the maintainers on the ground, and the future of the A-10 fleet.

A Historic Final Build for the 355th CMS

A standard A-10 engine build is a rigorous, multi-stage operation that typically takes 30 days to complete. The process involves meticulous inspection, repair, rebuilding, and testing of the General Electric TF34 turbofan engines that power the A-10C Thunderbolt II. According to military reports, a single crew of five maintainers usually handles the entire process for a given engine.

Hands-On Participation

For this historic final build, the 355th CMS broke from tradition. Every member of the shop participated, ensuring that all personnel had the opportunity to put their hands on the final engine throughout its diagnostic runs and final inspection. The final engine test was successfully conducted in the test cell on April 30, 2026, verifying its performance and flight readiness.

The process officially concluded on May 21, 2026, when Tech. Sgt. Logan Lamb, a 355th Maintenance Group quality assurance inspector, stamped the final inspection form. Wing leadership and the 355th CMS gathered to celebrate the completion, reflecting on the gravity of their work.

“Some, if not all these engines have saved lives on the ground through close air support missions, and some have carried pilots home while the other engine was damaged. All members of the shop put eyes and hands on this engine throughout the build, testing, diagnostic runs and final inspection. Typically, only one crew of five would work on any one engine, but this engine has been touched by everyone.”

, Master Sgt. Eugene Rich III, Propulsion Flight Chief, 355th CMS, in a statement provided by Air Combat Command

The Warthog’s Legacy and Future Operations

Davis-Monthan AFB has served as the primary hub for A-10 operations and training for nearly 50 years. However, the base began divesting its A-10 fleet in February 2024, sending the first aircraft to the 309th Aerospace Maintenance and Regeneration Group, commonly known as the “Boneyard.” On April 3, 2026, the 357th Fighter Squadron at Davis-Monthan graduated its final class of A-10 pilots, permanently closing the formal training pipeline for the aircraft.

Service Extension Through 2030

Despite the closures at Davis-Monthan, the A-10 will continue to fly. On April 20, 2026, Air Force Secretary Troy E. Meink announced that the Air Force will extend the service life of the remaining A-10 fleet through 2030, reversing a previous plan to retire the aircraft by 2029. According to defense reports, this decision was heavily influenced by the A-10’s recent combat performance in Operation Epic Fury, a U.S. campaign against Iran in late March and April 2026, where the aircraft successfully struck naval vessels and provided critical close air support.

AirPro News analysis

The decision to extend the A-10’s service life through 2030 while simultaneously closing its primary heavy maintenance and training facilities presents a unique logistical scenario. The Air Force is utilizing what it calls a “fleet management strategy.” Because the Davis-Monthan engine shop and the pilot “schoolhouse” are now closed, operational squadrons at bases like Moody AFB and Whiteman AFB will be operating on borrowed time. They will have to rely entirely on existing experienced personnel, stockpiled parts, and the durability of engines like the one just completed by the 355th CMS to sustain operations until the final retirement date. This strategy underscores the military’s confidence in the robust engineering of the TF34 engines and the meticulous groundwork laid by aerospace Propulsion Airmen over the past decades.

The Unsung Heroes of Aerospace Propulsion

The longevity and survivability of the A-10 Thunderbolt II are directly tied to the expertise of aerospace propulsion Airmen. These maintainers are responsible for ensuring the aircraft remains lethal and capable of returning pilots home safely, even after taking heavy fire.

Their daily responsibilities include conducting borescope inspections to identify internal engine issues early and prevent catastrophic failures. They also manage test cell operations, running the engines in a controlled environment while monitoring critical readings from a control cab to verify performance before the engine is ever attached to an airframe.

“I think the legacy of the A-10 is going to be remembered for generations. The A-10 will be missed here in Arizona.”

, Staff Sgt. Bill Bautista, Aerospace Propulsion Craftsman, 355th CMS

Frequently Asked Questions (FAQ)

What engine does the A-10 Thunderbolt II use?

The A-10 is powered by twin General Electric TF34 turbofan engines. These engines are renowned for their durability and ability to sustain damage while still bringing pilots home safely.

Why is the A-10’s service life being extended to 2030?

Air Force Secretary Troy E. Meink announced the extension on April 20, 2026, following the aircraft’s highly successful combat performance during Operation Epic Fury in early 2026. The extension reverses previous plans to retire the fleet by 2029.

Is Davis-Monthan AFB still training A-10 pilots?

No. The 357th Fighter Squadron at Davis-Monthan graduated its final class of A-10 pilots on April 3, 2026, officially closing the formal training pipeline for the aircraft.


Sources: Air Combat Command

Photo Credit: U.S. Air Force photo by Senior Airman Christopher Ornelas Jr.

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Airbus Explores Helicopter Manufacturing in Canada for Global Export

Airbus SE is evaluating manufacturing helicopters in Canada to support federal defense contracts amid Canada’s $81B defense investment and new industrial strategy.

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This article summarizes reporting by Bloomberg and Laura Dhillon Kane. This article summarizes publicly available elements and public remarks.

According to reporting by Bloomberg, Airbus SE is evaluating the potential to manufacture helicopters in Canada for the global export market, provided the European aerospace giant secures upcoming federal procurement contracts. This strategic proposition arrives as Canada embarks on an unprecedented defense spending expansion aimed at modernizing its military and stimulating domestic manufacturing jobs.

We note that Airbus is leveraging a unique political and economic window. By pitching a “local for global” manufacturing approach, the company hopes to decentralize its production while satisfying the Canadian government’s increasingly stringent demands for domestic economic benefits in exchange for lucrative defense contracts.

Canada’s Historic Defense Spending Surge

Following years of underfunding, the Canadian government has recently injected an $81.1 billion multi-year investment into national defense, according to comprehensive industry research. Under the administration of Prime Minister Mark Carney, Canada officially reached the 2% NATO spending benchmark in March 2026 and has committed to escalating defense expenditures to 5% of GDP by 2035.

The 2026 Defence Industrial Strategy

A major catalyst for Airbus’s proposal is the Canadian government’s first-ever Defence Industrial Strategy (DIS), launched in February 2026. Research reports indicate that the DIS introduced a strict “Build-Partner-Buy” framework designed to maximize domestic economic activity. The strategy ambitiously aims to direct 70% of defense contracts to Canadian firms, create 125,000 jobs, and boost defense exports by 50%.

To win contracts under this new framework, foreign vendors are required to provide sustainable domestic economic activity and transfer intellectual property. Furthermore, Canada is actively seeking to diversify its defense procurement to reduce its historical reliance on U.S. suppliers, pivoting toward European partnerships and joining the EU’s €150 billion Security Action for Europe (SAFE) fund.

Airbus’s “Local for Global” Pitch

Airbus is no stranger to the Canadian aerospace sector, having operated in the country for over 40 years. According to industry data, the company currently employs over 5,300 people in Canada. Its helicopter division, based in Fort Erie, Ontario, is already a recognized center of excellence for composite manufacturing, shipping approximately 34,000 parts globally each year to support Airbus’s worldwide supply chain.

Targeting Key Government Contracts

Airbus is actively pursuing three major helicopter procurement projects in Canada: fleet replacements for the Canadian Armed Forces, the Canadian Coast Guard, and the Royal Canadian Mounted Police (RCMP). To bolster its position, Transport Canada officially certified the Airbus H175 helicopter in February 2026, a super-medium aircraft tailored for search and rescue and defense missions in harsh environments. Additionally, Airbus is currently delivering 19 H135 helicopters to the Royal Canadian Air Force for the Future Aircrew Training (FAcT) program.

Airbus executives have made it clear that winning these new contracts would justify expanding their Canadian manufacturing base to assemble complete helicopters for the global market.

“Clearly, if Airbus helicopters are selected for any of the big upcoming campaigns and there is an industrial project which is tied to this contract, it’s an opportunity to export what would be manufactured here to the worldwide market.”

, Olivier Michalon, Executive Vice President of Global Business, Airbus Helicopters (via industry research reports)

“We see that the H175 is very well positioned for several of those ambitions… We really see that as an aircraft for Canada, but… it would also be a helicopter from Canada.”

, Bart Reijnen, CEO of Airbus Helicopters North America

Balancing Economic Demands with Aerospace Realities

While Airbus is willing to expand its manufacturing footprint, company leadership has cautioned against overly transactional government demands. Michalon noted that while Airbus can offer research, development, and local procurement, there are practical limits to quid-pro-quo arrangements in aerospace manufacturing.

“If you ask us, ‘Can you bring a car plant in exchange for us selecting [an Airbus helicopter]?’ the answer is ‘Probably not, no.'”

, Olivier Michalon, Executive Vice President of Global Business, Airbus Helicopters

AirPro News analysis

We observe that Canada’s deliberate pivot toward European defense partnerships represents a significant geopolitical shift. Historically, over 90% of Canada’s military helicopters and 100% of its fighter aircraft have been sourced from the United States. While diversifying procurement builds sovereign capacity and integrates Canada into European supply chains, defense experts suggest it could introduce interoperability friction with U.S. forces, particularly concerning joint North American Aerospace Defense Command (NORAD) operations.

Furthermore, establishing a Canadian export hub would provide Airbus with much-needed supply chain redundancy. By decentralizing production from its primary plants in France and Germany, Airbus can better insulate itself from European supply chain bottlenecks. Canada’s 2025 entry into the NATO Next Generation Rotorcraft Capability (NGRC) initiative also positions the country as a long-term collaborator alongside European nations to manage the rising development costs of future military rotorcraft.

Frequently Asked Questions (FAQ)

Why is Airbus considering building helicopters in Canada?

According to Bloomberg reporting, Airbus is exploring Canadian manufacturing for global export as a strategic incentive to win upcoming federal procurement contracts for the Canadian Armed Forces, Coast Guard, and RCMP.

What is Canada’s current defense spending target?

Under Prime Prime Minister Mark Carney, Canada officially hit the 2% NATO spending benchmark in March 2026 and has committed to reaching 5% of GDP by 2035, backed by an $81.1 billion multi-year investment.

What is the Defence Industrial Strategy (DIS)?

Launched in February 2026, the DIS is a Canadian government framework aiming to direct 70% of defense contracts to domestic firms, create 125,000 jobs, and boost defense exports by 50% by requiring foreign vendors to invest locally.


Sources:
Bloomberg
Provided Industry Research Report

Photo Credit: Airbus

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