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GE Aerospace Partners with NASA, BETA Technologies, and Boeing on World’s First High-Altitude Hybrid Electric Flight

(Moderate)
(Very Positive)
Tags
partnership

GE Aerospace (NYSE: GE) announced at the Farnborough International Airshow that, with NASA, BETA Technologies and Boeing, it conducted the world’s first hybrid electric flight above 30,000 feet using a Saab 340B testbed under NASA’s Electrified Powertrain Flight Demonstration (EPFD) project. The megawatt-class, multi-kilovolt hybrid electric propulsion system enabled a single flight of more than two hours in hybrid electric mode and powered the propeller while charging the battery. Partners including BAE Systems and Boeing’s Aurora Flight Sciences supplied batteries and nacelle hardware, while BETA acted as systems integrator and operated hybrid legs on the transatlantic ferry. GE Aerospace linked this milestone to a decade of hybrid electric development and broader testing under the CFM RISE technology demonstration program.

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Positive

  • First hybrid electric flight above 30,000 feet with >2-hour hybrid leg
  • Megawatt-class, multi-kilovolt system flight-tested on Saab 340B under NASA EPFD
  • RISE program testing scale ~500 test campaigns and >3,000 endurance cycles to date
  • Long-running R&D timeline milestones from 2016 ground tests to 2026 flight demo

Negative

  • None.

Market Context

Current peer data lists BA at +1.2%, providing an external aerospace reference for the announcement....
Analysis

Current peer data lists BA at +1.2%, providing an external aerospace reference for the announcement. The demonstration advances validation, while the program's non-commercial status remains a key risk factor.

Key Figures

Flight altitude: more than 30,000 feet Longest hybrid flight: more than two hours EPFD contract year: 2021 +5 more
8 metrics
Flight altitude more than 30,000 feet First high-altitude hybrid electric flight
Longest hybrid flight more than two hours Single longest flight in hybrid electric operation
EPFD contract year 2021 NASA Electrified Powertrain Flight Demonstration contract award
RISE test campaigns approximately 500 test campaigns Completed by the CFM International RISE program
RISE endurance cycles more than 3,000 endurance cycles Completed by the CFM International RISE program
Fuel-burn target more than 20% better fuel burn RISE target compared with commercial engines in service today
Joint-company ownership 50-50 CFM International ownership by GE Aerospace and Safran Aircraft Engines
Installed engine base approximately 50,000 commercial and 30,000 military aircraft engines GE Aerospace installed base

Previous Partnership Reports

1 past event · Latest: May 14 (Positive)
Same Type Pattern 1 events
Date Event Sentiment 24h Move Catalyst
May 14 Engine partnership agreement Positive +2.8% Qatar Airways agreement covered more than 400 GE9X and GEnx engines

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

The tag-specific history showed GE's prior partnership announcement aligned with a positive 2.75% 24-hour reaction.

Key Terms

hybrid electric propulsion system, megawatt-class, multi-kilovolt, nacelle
4 terms
hybrid electric propulsion system technical
"multi-kilovolt hybrid electric propulsion system developed through the NASA EPFD project"
A hybrid electric propulsion system combines an internal combustion engine or other fuel-based power source with one or more electric motors and a battery or energy-storage unit to drive a vehicle, vessel, or aircraft. It matters to investors because it can change operating costs, maintenance needs, and emissions profiles—like having both a gas engine and an electric motor in one vehicle—affecting fuel expenses, regulatory compliance, and potential market demand.
megawatt-class technical
"fully integrated megawatt-class and multi-kilovolt hybrid electric propulsion system"
An adjective used to describe power equipment, generation plants, battery systems, or other installations whose capacity is measured in megawatts (MW), meaning they can deliver or handle millions of watts of power. It signals the scale of a project or asset—like calling something “truck-sized” versus “car-sized”—and matters to investors because capacity in the megawatt range affects potential revenue, capital requirements, grid connection needs, and regulatory or permitting considerations.
multi-kilovolt technical
"fully integrated megawatt-class and multi-kilovolt hybrid electric propulsion system"
Describes electrical equipment, systems, or voltages in the range of several kilovolts—i.e., thousands of volts (1 kilovolt = 1,000 volts). Think of voltage like water pressure: multi-kilovolt systems operate at much higher “pressure,” requiring heavier insulation, stricter safety controls, and specialized design. For investors, the term signals higher engineering complexity, regulatory and safety implications, and often larger capital and maintenance needs in the products or projects involved.
nacelle technical
"a hybrid electric system that fits inside an inverted nacelle"
A nacelle is the streamlined housing that holds critical machinery — on airplanes it covers engines and related systems, and on wind turbines it contains the gearbox, generator and control equipment. Like the engine room of a ship, it protects key components from weather and makes maintenance access easier, so its design, durability and weight directly affect operating costs, downtime and performance — all important factors for investors tracking capital and revenue risks.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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FARNBOROUGH, England, July 20, 2026 (GLOBE NEWSWIRE) --

  • Hybrid electric system enabled aircraft to reach more than 30,000 feet
  • First public demonstration takes place at Farnborough International Airshow

FARNBOROUGH, England – July 20, 2026 – GE Aerospace (NYSE: GE) announced today at the Farnborough International Airshow an industry first to advance the future of flight, demonstrating the viability of more electric aircraft engine systems for aviation.

In collaboration with NASA, BETA Technologies, Inc. (NYSE: BETA) (“BETA”) and Boeing, GE Aerospace conducted the first hybrid electric flight above 30,000 feet, reaching the same altitude levels of passenger commercial aircraft. During tests, the team’s single longest flight in hybrid electric operation was more than two hours. 

The record-breaking test campaign was enabled by GE Aerospace’s fully integrated megawatt-class and multi-kilovolt hybrid electric propulsion system developed through the NASA Electrified Powertrain Flight Demonstration (EPFD) project.

H. Lawrence Culp, Jr., Chairman and CEO, GE Aerospace, said, “The aviation industry’s first high-altitude hybrid electric flight is one for the history books. GE Aerospace is grateful to NASA, BETA Technologies and Boeing for their collaborative partnership to accelerate hybrid electric technology to meet customer needs for greater efficiency, durability and range.”

The right side of the EPFD aircraft, a Saab 340B, was modified for flight tests with a hybrid electric system that fits inside an inverted nacelle, providing extra ventilation. The system includes GE Aerospace-developed motor/generators, power converters and inverters, controllers, Avio Aero* gearboxes, Dowty* propellers, Unison* heat exchangers, torque sensing, and engine harnesses, and a CT7 engine. BAE Systems provided the batteries used and Boeing subsidiary Aurora Flight Sciences supplied the complete nacelle.

Pilots from GE Aerospace and BETA Technologies supported flight tests in the U.S., where the historic milestone was achieved. BETA Technologies served as the systems integrator and BETA pilots ferried the aircraft to the UK for the airshow, operating in hybrid electric mode during each leg of the journey.

Kyle Clark, Founder and CEO of BETA, said, “This hybrid electric system improved the high-altitude performance and climb capability while creating a flying laboratory to inform all future hybrid designs. The GE Aerospace team brought rigorous design, test and operational expertise. The ground and safe flight test campaigns, capped by a flight across the North Atlantic, is the first of many important milestones for hybrid electric technology.”

Public demonstration flights are planned as part of daily Farnborough flying displays. Airshow attendees can also see the aircraft on static display before the afternoon flight schedules.

Graham Drozeski, CTO of Aurora Flight Sciences, a Boeing company, said: “This team delivered multiple first-of-a-kind advancements to successfully integrate a high-voltage electrified propulsion system into an aircraft operating at commercial altitudes. Together, we’ve taken a significant step forward in hybrid-electric technology.

Hybrid Electric Benefits

A hybrid electric engine system combines an electric powertrain with a traditional gas turbine to optimize power management during different phases of operation. Hybrid electric systems are highly compatible with different fuel types and advanced aircraft engine architectures like Open Fan.

As electric vehicles become more common on the ground, there are many unique challenges for more electric skies. Engineering and test teams addressed heat management, lower atmospheric pressures and power density using flightworthy components that meet higher safety and reliability requirements than typical test hardware. During flight tests, the electric powertrain helped successfully power the propeller and generated power to the battery.

Mohamed Ali, President and CEO, GE Aerospace Commercial Engines & Services, said, “Hybrid electric technologies are durable and efficient. By flying a hybrid electric engine system at altitudes never achieved before, we’re proving to our customers and to the industry the advanced capabilities we can bring to next-generation aircraft with ready technologies.”

Hybrid Electric Experience

GE Aerospace was first awarded the NASA EPFD contract in 2021 to demonstrate flight readiness of hybrid electric technologies for single-aisle aircraft.

Several key milestones have been achieved over the last decade for hybrid electric technology development:

  • 2016: An electric motor-driven propeller ground test;
  • 2022: The world’s first test of a megawatt-class and multi-kilovolt hybrid electric propulsion system in altitude conditions up to 45,000 feet at the NASA Electric Aircraft Testbed facility that simulated single-aisle commercial flight;
  • 2025: A strategic partnership and equity investment announced with BETA Technologies to accelerate hybrid electric aviation included plans to co-develop a hybrid electric turbogenerator for Advanced Air Mobility (AAM) and other applications.
  • 2025: Successfully demonstrating a narrowbody hybrid electric configuration with power transfer and injection in a modified high-bypass turbofan engine – no energy storage required – through the NASA HyTEC project; and
  • 2026: Ground tests of the megawatt-class hybrid electric propulsion system developed through NASA’s EPFD program, paving the way for flight tests announced today.

CFM RISE Program Testing

GE Aerospace has leveraged several NASA projects to mature technologies for more electric aircraft engines through the CFM International RISE** program. Unveiled in 2021, the RISE program is one of the aviation industry’s most comprehensive technology demonstrators with approximately 500 test campaigns and more than 3,000 endurance cycles completed to date, including tests on Open Fan, compact core, hybrid electric systems and other technologies. The RISE program prioritizes safety, durability and efficiency, targeting more than 20% better fuel burn compared to commercial engines in service today.

* Avio Aero, Dowty and Unison are GE Aerospace companies.

** Revolutionary Innovation for Sustainable Engines (RISE) is a technology demonstration program of CFM International, a 50-50 joint company between GE Aerospace and Safran Aircraft Engines. It is not a product offered for commercial sale.

###

About GE Aerospace

GE Aerospace is a global aerospace propulsion, services, and systems leader with an installed base of approximately 50,000 commercial and 30,000 military aircraft engines. With a global team of approximately 57,000 employees building on more than a century of innovation and learning, GE Aerospace is committed to inventing the future of flight, lifting people up, and bringing them home safely. Learn more about how GE Aerospace and its partners are defining flight for today, tomorrow, and the future at www.geaerospace.com.

Attachment



Chelsey Levingston
GE Aerospace
513-720-6458
chelsey.levingston@geaerospace.com

FAQ

What did GE Aerospace (NYSE: GE) announce about hybrid electric flight on July 20, 2026?

GE Aerospace announced it had flown a hybrid electric propulsion system above 30,000 feet, reaching typical commercial aircraft altitudes. According to GE Aerospace, this high-altitude test under NASA’s EPFD project included a single hybrid leg lasting more than two hours.

How high did GE Aerospace's hybrid electric test aircraft fly and for how long in hybrid mode?

The hybrid electric test aircraft flew above 30,000 feet, with one flight exceeding two hours in hybrid operation. According to GE Aerospace, the electric powertrain both powered the propeller and generated power to charge the battery during these test flights.

Which partners worked with GE Aerospace (GE) on the high-altitude hybrid electric flight?

GE Aerospace partnered with NASA, BETA Technologies, Boeing, BAE Systems and Aurora Flight Sciences on the project. According to GE Aerospace, BETA served as systems integrator, BAE supplied batteries, and Aurora, a Boeing company, provided the complete nacelle integration for the Saab 340B.

What aircraft and propulsion system were used in GE Aerospace's NASA EPFD hybrid electric tests?

The team used a modified Saab 340B with a hybrid electric system in an inverted nacelle on the right side. According to GE Aerospace, the system includes megawatt-class motor/generators, power converters, controllers, Avio Aero gearboxes, Dowty propellers and a CT7 engine.

How does GE Aerospace describe the benefits of hybrid electric engine systems for aviation?

GE Aerospace describes hybrid electric systems as combining an electric powertrain with a gas turbine to optimize power across flight phases. According to GE Aerospace, these systems are compatible with multiple fuel types and advanced architectures like Open Fan, targeting greater efficiency, durability and range.

What role does NASA's Electrified Powertrain Flight Demonstration (EPFD) project play for GE Aerospace stock (GE)?

NASA’s EPFD project supports GE Aerospace in demonstrating flight readiness of hybrid electric technologies for single-aisle aircraft. According to GE Aerospace, EPFD enabled ground and flight tests of a megawatt-class system, culminating in the first hybrid electric flight above 30,000 feet.

How is GE Aerospace’s CFM RISE program connected to its hybrid electric flight progress?

GE Aerospace uses NASA-linked projects to mature technologies within the CFM RISE program, including hybrid electric systems. According to GE Aerospace, RISE has run about 500 test campaigns and more than 3,000 endurance cycles, targeting over 20% better fuel burn than current commercial engines.