1 Megawatt Turbogenerator
GE Aerospace
Cincinnati, OH
609-410-5762
www.geaerospace.com

Sikorsky, a Lockheed Martin company, is producing a Hybrid-Electric Demonstrator (HEX), a fully-autonomous hybrid-electric vertical-take-off-and-landing (eVTOL) prototype. With a maximum gross weight of more than 7,000-pounds, the uncrewed aircraft will serve as a flying testbed to evaluate large aircraft design, novel propulsion systems and control architectures for sustained hover, and ranges greater than 500 nautical miles.
“As Sikorsky celebrates 100 years of flight innovations, it’s fitting to highlight our continued commitment to safe and sustainable transformative flight,” said Paul Lemmo, Sikorsky President. “Sikorsky’s HEX aircraft will provide critical insights into the possibilities of electric systems in VTOL aircraft. Ultimately, we want to show the potential of large, advanced air mobility vehicles to perform utility missions for the U.S. military and transport passengers between cities.”
For the HEX project, GE Aerospace will offer a CT7 turboshaft engine combined with 1 megawatt (MW)-class generator and associated power electronics, building on hybrid electric propulsion systems being developed by GE Aerospace for both NASA and the U.S. Army.
“Bringing innovative technology is a top priority for GE Aerospace,” said Amy Gowder, President and CEO of Defense and Systems at GE Aerospace. “We are committed to developing hybrid electric propulsion systems that save fuel and optimize performance for the military and commercial applications.”
The Sikorsky Innovations rapid prototyping group will lead the HEX program. Led by its director, Igor Cherepinsky, the Innovations team will design, build and integrate the HEX airframe and electric motors with the company’s MATRIX™ autonomy flight control system.
Depending on insights learned from the flight test program, and assessment of customer applications, the HEX program could lead to a family of eVTOL vehicles scaled to carry passengers and payload for both military and commercial applications.
Sikorsky’s MATRIX™ autonomy system will control flight aboard the HEX aircraft. Developed and tested extensively over the past decade, the software, hardware and sensors that comprise the MATRIX system have demonstrated high flight reliability in low-altitude and obstacle-rich scenarios. During the U.S. Army’s Project Convergence 2022 exercise, a MATRIX-controlled Black Hawk helicopter without pilots or crew on board demonstrated optionally piloted resupply missions.
For more information, visit here .
Top Stories
INSIDERAerospace
Air Force Completes First Magnetic Navigation Flight on C-17 - Mobility...
Technology ReportEnergy
Mazda’s Revived Rotary Engine Starts Production - Mobility Engineering...
INSIDERDefense
Army Launches M1E3 Tank Development, Cancels M1 Abrams Upgrade Program -...
INSIDERAerospace
Air Force Awards JetZero $235 Million to Develop Blended Wing Body Demonstrator...
INSIDERCommunications
Air Force to Buy Archer eVTOL Under New Contracts - Mobility Engineering...
INSIDERDefense
DoD's First Electric Aircraft Charging Station is a BETA Supercharger -...
Webcasts
Software
Leveraging Electronics Digital Twins on AWS to Accelerate...
Defense
Choosing a Silicone for Operation in Harsh Thermal Environments
Sensors/Data Acquisition
A Guide to Unlocking Precision and Efficiency with 3D Scanning...
Electronics & Computers
Introduction to the Integration of Electronics Switching and...
Energy
Miniaturized Solutions for Battery Development