NEX Power, a pioneering developer based in the UK, specializes in cutting-edge low- and zero-emission propulsion and power generation technologies that are set to revolutionize unmanned aviation and facilitate the transition to lasting flight.
Our goal is to engineer zero-carbon hybrid propulsion systems that substantially enhance the functionality of UAVs (unmanned aerial vehicles) beyond the limitations of conventional electric systems, paving the way for innovative applications such as UAM (urban air mobility) and heavy-lift cargo drones.
innovative Core Technology
Through groundbreaking research, we have cultivated deep expertise in micro gas turbines (MGT) and advanced turbomachinery. Our core technology provides compact, lightweight propulsion solutions with remarkable power-to-weight ratios and minimized carbon emissions.

Hybrid Aviation Generators
Eco-pleasant generators for hybrid UAV power

Our product lineup includes:
- 2kW GenSet: Compact and lightweight, perfect for smaller hybrid-electric UAV applications.
- 15kW GenSet: A versatile option for medium-sized UAS that require reliable and efficient power generation.
- 40kW GenSet: A high-capacity turbo generator designed for larger hybrid-electric aircraft, including UAM and heavy-lift platforms.
More information: Eco-friendly generators for hybrid UAV power
Micro Turbojet Engines
High-performance and ultra-efficient propulsion systems
our advanced Micro Turbojets offer outstanding propulsion performance and reliability, making them suitable for a diverse array of small UAV applications.these high-precision systems exemplify the pinnacle of micro propulsion technology. Options include:
- 300N Turbojet: A compact powerhouse delivering optimal thrust-to-weight performance for smaller UAVs.
- 600N Turbojet: Balances power and efficiency, making it ideal for a wide range of unmanned aviation needs.
- 800N Turbojet: A high-thrust option for larger aircraft, providing extraordinary performance and reliability.
- Turboprop Configuration: Designed for applications that require enhanced fuel efficiency and versatility,merging turbojet power with propeller-driven propulsion.
More information: High-performance propulsion systems
Hybrid Propulsion Solutions
Integrated gas turbine and electric propulsion for superior range and efficiency
We focus on the integration of micro gas turbines with electric propulsion, resulting in groundbreaking hybrid propulsion systems that lower emissions and enhance fuel efficiency for platforms like UAM aircraft and cargo drones.
Our team crafts tailored solutions that seamlessly merge the efficiency of our advanced micro gas turbines with the adaptability of electric power, offering a revolutionary approach that provides unmatched advantages, including extended range, reduced fuel consumption, and significantly lower emissions compared to traditional systems.
By combining innovative engineering with state-of-the-art energy storage and management, we can customize our Hybrid propulsion Solutions to meet the specific needs of the drone industry, propelling the future of hybrid-electric propulsion.
More information: Integrated gas turbine and electric propulsion solutions
Potential Applications
Logistics and Cargo Delivery
Our range-extending technologies enable hybrid-electric drones to travel further and carry heavier loads than their battery-only counterparts, making them perfect for last-mile delivery, long-distance logistics, and supplying essential goods to remote or disaster-stricken areas.
Urban Air Mobility and Passenger Drones
hybrid-electric systems are ideally suited for next-generation UAM platforms and eVTOL passenger drones. These aircraft can facilitate eco-friendly commuting, alleviating road congestion while enhancing connectivity to isolated communities.
Inspection, Surveying, and Monitoring
Drones equipped with hybrid powertrains can cover larger areas and greater distances in a single flight, significantly boosting productivity and cost-effectiveness for commercial and industrial applications involving inspection, surveying, and mapping.


