Prediction of 4H–SiC betavoltaic microbattery characteristics based on practical Ni-63 sources
Author:
Funder
Medtronic, United States
Publisher
Elsevier BV
Subject
Radiation
Reference31 articles.
1. Energy dependence of electron damage and displacement threshold energy in 6H silicon carbide
2. J. Blanchard, D. Henderson and A. Lal, Technical Report, U.S. Department of Energy Award No. DE-FG07-99ID13781, 2002, 1-10.
3. 4H-SiC power devices for use in power electronic motor control
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