Updated
Updated · Aviation Week · Jul 20
GE Aerospace Flies Hybrid-Electric Saab 340B Above 30,000 Ft, Advancing Megawatt Propulsion
Updated
Updated · Aviation Week · Jul 20

GE Aerospace Flies Hybrid-Electric Saab 340B Above 30,000 Ft, Advancing Megawatt Propulsion

3 articles · Updated · Aviation Week · Jul 20

Summary

  • May 20 marked the first hybrid-electric flight above 30,000 ft for GE Aerospace’s modified Saab 340B, a commercial-altitude milestone for megawatt-class electric propulsion.
  • The testbed pairs a hybrid-electric engine in the right nacelle with a standard GE CT7 turboprop on the left, and GE said the system motored and generated at full power while sustaining altitude for two hours.
  • Beta Technologies integrated the system and ferried the aircraft from New York to Farnborough via Canada, Greenland, Iceland and Scotland, using hybrid-electric mode on every leg.
  • NASA’s Electrified Powertrain Flight Demonstration program, with Boeing and Beta, underpinned the effort after 2022 ground tests simulated operations at 45,000 ft.
  • GE said the flight data will guide future hybrid systems and feed into its RISE/Open Fan work with Safran, helping define battery, thermal-management and power needs for larger aircraft.

Insights

How will GE's breakthrough solve the biggest obstacle for electric flight: the weight of batteries?
GE's engine works at 30,000 feet, but when will passengers actually fly on these hybrid planes?
With SAF available now, is hybrid-electric tech the fastest path to decarbonizing aviation?

GE and NASA Achieve First 30,000-Foot Hybrid-Electric Flight: A Milestone in Sustainable Commercial Aviation

Overview

On July 20, 2026, the aviation industry reached a major milestone with the first high-altitude hybrid-electric flight, soaring above 30,000 feet. This achievement, celebrated by GE Aerospace’s CEO as historic, marks a significant leap in sustainable aviation technology. The flight was made possible through a collaborative effort, with Beta Technologies playing a key role. It showcased a megawatt-class hybrid-electric propulsion powertrain developed by GE Aerospace, which combines advanced electric motors, a gas turbine, and energy storage. The successful demonstration at commercial altitudes proves the viability of hybrid-electric systems for everyday aircraft, paving the way for greener air travel.

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