Intelligent soft switching with AI support promises to reduce switching losses in power transistors by up to 95 per cent.
Unpacking the challenges with high-voltage power conversion and how SiC fits in. The pivotal advantages of SiC over traditional silicon in next-gen power converters. Rethinking circuit design for ...
The EPC2366 40 V eGaN® FET sets new benchmarks in performance, efficiency, and power density for next-generation power ...
The CPC5608 is a 5-channel, low power transistor array integrated circuit featuring extremely low static current draw from power supply in a simple 2-state logic control input. It has two state ...
Power-Amplifier (PA) and base-station manufacturers are faced with a series of similar problems. They both have a common interest in keeping base stations cool and minimizing cost. And they each have ...
Finnish company Semiqon has developed a transistor that operates with virtually zero heat dissipation. They have made silicon-based quantum processors to make future quantum computers more affordable, ...
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MIT's chip stacking breakthrough could cut energy use in power-hungry AI processes
Data doesn’t have to travel as far or waste as much energy when the memory and logic components are closer together.
It’s just an unavoidable fact: electronic components’ parameters drift with temperature. Even the most stable voltage references, op amps, crystal oscillators, etc., have non-zero temperature ...
Scientists from France’s CEA-Ines developed a 400 W micro-inverter with a power density of 1.1 kW/L and an efficiency of 97%. The device utilizes GaN 600V diodes and power transistors developed by CEA ...
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