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Automobile
GaN4EmoBiL showcases 800-volt bidirectional DC charger
As part of the GaN4EmoBiL project, Fraunhofer IAF and Ambibox have developed a power electronic module based on gallium nitride for bidirectional DC charging systems with 800 volts. A demonstrator will be presented next week at the PCIM trade fair in Nuremberg.
Image: Fraunhofer IAF
By Florian Treiss
03.06.2026 - 16:00
Fraunhofer
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The Fraunhofer Institute for Applied Solid State Physics (IAF) has unveiled a groundbreaking advancement in electric vehicle (EV) power electronics with the development of a gallium nitride (GaN)-based power electronics module tailored for 800 V bidirectional direct current (DC) charging systems. This innovative module, realized within the GaN4EmoBiL project—an initiative funded by the German Fede
2026-06-03
www.eurekalert.org
2026-06-03
EurekAlert!
NEWS RELEASE 3-JUN-2026
GaN power electronics for bidirectional, single-phase DC electric vehicle charging
Fraunhofer IAF presents innovations at PCIM 2026
Reports and Proceedings
FRAUNHOFER INSTITUTE FOR APPLIED SOLID STATE PHYSICS
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IMAGE:
DEMONSTRATOR OF A BIDIRECTIONAL SINGLE-PHASE 3-KW DC CHARGER WITH GAN POWER ELECTRONICS. RESE
2026-06-03
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2026-06-03
Mirage News
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03 JUN 2026 10:08 PM AEST
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GaN Tech Boosts Bidirectional EV Charging
Fraunhofer Institute for Applied Solid State Physics
Researchers at the Fraunhofer Institute for Applied Solid State Physics IAF have developed a gallium nitride-(GaN-)based power electronics module for 800 V bidirectional direct current (DC) charging systems. The module is part of the GaN4EmoBiL project ("GaN Power
2026-06-03
www.eurekalert.org
2026-06-03
EurekAlert!
Power module with 1200-V-class GaN transistors (IMAGE)
FRAUNHOFER INSTITUTE FOR APPLIED SOLID STATE PHYSICS
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CAPTION
Close-up of the power module developed and manufactured at Fraunhofer IAF, featuring 1200-V-class GaN transistors on an insulating substrate for use in bidirectional DC charging systems
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© Fraunhofer IAF
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JP Morgan raises ASML estimates as chipmaker signals it can supply far more EUV tools than previously guided
Published: 16:10 03 Jun 2026 BST
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2026-06-03
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As electricity takes over from fossil fuels in an expanding range of uses, engineers designing systems need switches and power converters capable of handling both elevated source voltages and more severe short-circuit and overvoltage events. Wide-bandgap semiconductors like gallium nitride (GaN) draw significant attention from device designers because their superior breakdown strength and higher t
2026-06-03
semiengineering.com
2026-06-03
Semiconductor Engineering
New research points to safer devices with less loss at low voltages, but problems remain for high-voltage industrial applications.
As electrical power displaces fossil fuels in more applications, system designers need switches and power converters that can handle both higher source voltages and more demanding short circuit and overvoltage spikes.
Wide-gap semiconductors, such as gallium nitride
2026-06-03
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2026-06-03
Katherine Derbyshire
New research points to safer devices with less loss at low voltages, but problems remai...
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If you depend on multiple devices throughout the day – a smartphone to stay connected, earbuds for music, a tablet for on-the-go productivity – but don’t like carrying a separate charger for each, a multiport charger can be a smart investment. These let you power multiple gadgets at the same time, and picking one up today is easier than ever.
Right now, you can grab the 100W, 3-port Anker Prime C
2026-06-02
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