Ronald Schrimpf
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Vanderbilt to lead $5 million Air Force center of excellence in radiation effects research on electronics
Center aims to advance the understanding of physical mechanisms responsible for radiation-induced effects on emerging technologies The Institute for Space and Defense Electronics at Vanderbilt University has been selected as the Center of Excellence in Radiation Effects by the U.S. Air Force Office of Scientific Research and the Air Force Research Lab. The $5 million, five-year program will be... Read MoreOct 29, 2021
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Vanderbilt to lead $5 million Air Force center of excellence in radiation effects research on electronics
Center aims to advance the understanding of physical mechanisms responsible for radiation-induced effects on emerging technologies The Institute for Space and Defense Electronics at Vanderbilt University has been selected as the Center of Excellence in Radiation Effects by the U.S. Air Force Office of Scientific Research and the Air Force Research Lab. The $5 million, five-year program will be... Read MoreOct 29, 2021
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Schrimpf receives IEEE Nuclear and Plasma Sciences Society Merit Award
Ronald Schrimpf has received the 2021 IEEE Nuclear and Plasma Sciences Society Merit Award for contributions to the understanding of radiation effects in semiconductor devices and integrated circuits. Read MoreOct 6, 2021
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New NSF university-industry center includes Vanderbilt space radiation effects and nanophotonics researchers
Vanderbilt engineering researchers are part of a team that will lead a new five-year Industry-University Cooperative Research Centers Program in integrated photonics for aerospace applications that is anticipated to reach $5 million in funding. Read MoreAug 25, 2021
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Graduate student lead author of study of electron particles that can zap technology
A paper first-authored by Vanderbilt graduate engineering student Michael King concludes that electronics designed to operate with ultra-low power likely will exhibit high sensitivity to electron-induced single-event upsets due to interference from solar flares, cosmic rays and the like. Read MoreJan 15, 2014