Next-Gen Hybrid-Electric VTOL Design Unveiled

This will be the first in a series of next-generation VTOL aircraft which will feature varying degrees of electrification and an advanced autonomy system for optionally piloted flight By Joe Macey / 04 Mar 2024
Development of Hybrid-Electric VTOL Demonstrator
Follow AAMi

Sikorsky has unveiled plans to build, test and fly a hybrid-electric vertical takeoff and landing demonstrator (HEX / VTOL) with a tilt-wing configuration.

The design is the first in a series of large, next generation VTOL aircraft — ranging from more traditional helicopters to winged configurations — which will feature varying degrees of electrification, and an advanced autonomy system for optionally piloted flight.

“We never stop innovating at Sikorsky,” said Sikorsky President Paul Lemmo. “Autonomy and electrification will bring transformational change to flight safety and operational efficiency of large VTOL aircraft. Our HEX demonstrator program will provide valuable insights as we look to a future family of aircraft built to the scale and preferred configurations relevant to commercial and military customers.”

The HEX program will put a premium on greater than 500 nautical mile range at high speed, fewer mechanical systems to reduce complexity, and lower maintenance costs.

Sikorsky Innovations, the company’s prototyping group, and GE Aerospace are finalizing designs to build a hybrid-electric power systems testbed with a 600KW electric motor. The testbed is a first step to evaluate hover performance of the follow-on HEX demonstrator — a 9,000-pound maximum gross weight aircraft with 1.2MW-class turbogenerator and associated power electronics.

“Within Sikorsky’s electric pillar, we are designing electric motors, power electronics and our own vehicle management hardware and actuation,” added Igor Cherepinsky, Sikorsky Innovations Director. “HEX will integrate these components, showcase the growing maturity of our MATRIX™ autonomy suite, and the potential for maintenance-free systems. Seeing the results will lead us to more efficient overall designs.”

Posted by Joe Macey Joseph Macey is a Content Specialist at Advanced Air Mobility International, focusing on emerging aviation technologies since joining in 2022. He has particular expertise in eVTOLs, vertiports, and propulsion systems. A graduate of Falmouth University in Journalism, Joseph began his career in 2019 as a local reporter. His journalism experience sharpens both his reporting and interview skills, enabling him to deliver well-informed, authoritative insights on the latest trends in the aviation sector. Connect

Latest Articles

Falcon Aviation Orders 50 AutoFlight eVTOL Aircraft for ADNOC Support

The AutoFlight-Falcon Aviation deal includes cargo and passenger models, with the first deliveries scheduled for late 2025 to support operations for the Abu Dhabi National Oil Company

Nov 05, 2025
Joby Aviation Begins Propeller Blade Production in Dayton, Ohio

Joby Aviation has begun producing propeller blades for its electric air taxis in Dayton, expanding in-house manufacturing ahead of the company’s commercial launch

Nov 04, 2025
Most Read Articles on Advanced Air Mobility International in October 2025

We covered a number of significant developments in October 2025 on AAMI, including major advancements from Horizon, Pivotal, and Archer Aviation

Nov 03, 2025
ePlane Company & Ramco Systems Partner on eVTOL Lifecycle Management

ePlane to adopt Ramco Aviation Software for comprehensive maintenance, supply chain, and operational management of its flagship e200X air taxi fleet

Oct 31, 2025
Joby & NVIDIA Partner to Advance Autonomous Flight with IGX Thor Platform

Electric air taxi developer Joby Aviation will integrate NVIDIA’s industrial-grade IGX Thor computing platform to accelerate the development and certification of its Superpilot autonomy technology

Oct 30, 2025
Wisk Selects Liebherr-Aerospace for Gen 6 eVTOL Actuation System

Autonomous eVTOL developer Wisk Aero secures essential flight control system for its Generation 6 air taxi from Liebherr-Aerospace

Oct 29, 2025