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Lux: future use of wide bandgap materials in power electronics will reduce EV cost

Green Car Congress

Using wide bandgap (WBG) materials such as silicon carbide (SiC) and gallium nitride (GaN)s for power electronics can improve efficiency and thereby reduce the high cost of battery packs, according to a new report from Lux Research. However, for plug-in electric vehicles (PHEVs), the threshold power savings needs to be a higher 5%.

Power 218
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US DOE Selects 43 Projects for $92M in ARPA-E Funding; 3 on Automotive Power Electronics

Green Car Congress

The awards in this tranche focus on power electronics, grid-scale energy storage, and building efficiency; of the 43, three are categorized specifically for the automotive market—power electronics projects led by HRL Laboratories, LLC; Arkansas Power Electronics International, Inc.; and Case Western Reserve University.

Power 225
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DOE awards $45M to 38 advanced transportation technology projects; $3M from the Army

Green Car Congress

Through the Advanced Vehicle Power Technology Alliance between the Energy Department and the Department of the Army, the Army is contributing an additional $3 million in co-funding to support projects focused on lightweighting and propulsion materials, batteries, fuels, and lubricants. University of Michigan. The Ohio State University.