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The plane is to be sold as an experimental kit aircraft that requires only a private pilot license. [15] In October 2020 with a $60 million investment in Joby Aviation, a business building an electric vertical takeoff and landing (eVTOL) aircraft intended to provide air cab service, Delta joined the list of airlines funding EV technology startups.
Electric Aircraft Corporation ElectraFlyer Trike: United States: Motor glider: Battery: Private: 2007: Production: Ultralight. First commercial offering of an electric aircraft. [28] [29] [citation needed] Electric Aircraft Corporation ElectraFlyer-C: United States: Motor glider: Battery: Private: 2008: Production: Converted Monnett Moni motor ...
Atmosphere-breathing electric propulsion, or air-breathing electric propulsion, shortly ABEP, [1] is a propulsion technology for spacecraft, which could allow thrust generation in low orbits without the need of on-board propellant, by using residual gases in the atmosphere as propellant. Atmosphere-breathing electric propulsion could make a new ...
Spacecraft with electric propulsion Spacecraft name Launch date End of life Thruster type No. Model Propellant Spacecraft customer Thruster prime Comment Program 661A Flight A: 18 Dec 1962: 18 Dec 1962: Ion engine: 1: Cesium: USAF: EOS (Electro-Optical Systems, Inc.) Suborbital, no operation of on-board ion engine Kosmos 21: 11 Nov 1963: 11 Nov ...
The e-Genius follows a line of airplanes with alternative propulsion systems, which have been developed at the Institute of Aircraft Design under the leadership of Professor Rudolf Voit-Nitschmann: the solar-motor glider Icaré II (1996) and the predecessor of the e-Genius, the motor glider with a fuel cell propulsion system – Hydrogenius (2006).
An electric propulsion system also includes a power inverter, while fuel engines have a fuel system themselves. The 750 shp (560 kW) experimental magniX magni500 electric motor weighs 297 lb (135 kg), [ 136 ] while the 729 hp (544 kW) certified Pratt & Whitney Canada PT6 A-114 weighs 297 lb (135 kg), [ 137 ] both powering the Cessna 208 Caravan .
It is therefore advantageous to use an electric propulsion system such as a PPT to generate high interplanetary speeds in the range 20–70 km/s. NASA's research PPT (flown in 2000) achieved an exhaust velocity of 13,700 m/s, generated a thrust of 860 μN, and consumed 70 W of electrical power.
Beamed propulsion in the form of a laser can send power to a photovoltaic panel for Laser electric propulsion. In this system, if a high intensity is incident on the solar array, careful design of the panels is necessary to avoid a fall-off in conversion efficiency due to heating effects.