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タイトルElectrical Devices and Circuits for Low Temperature Space Applications
本文(外部サイト)http://hdl.handle.net/2060/20040001034
著者(英)Overton, E.; Patterson, R. L.; Gerber, S.; Hammond, A.; Dickman, J. E.; Elbuluk, M.
著者所属(英)NASA Glenn Research Center
発行日2003-10-01
言語eng
内容記述The environmental temperature in many NASA missions, such as deep space probes and outer planetary exploration, is significantly below the range for which conventional commercial-off-the-shelf electronics is designed. Presently, spacecraft operating in the cold environment of such deep space missions carry a large number of radioisotope or other heating units in order to maintain the surrounding temperature of the on-board electronics at approximately 20 C. Electronic devices and circuits capable of operation at cryogenic temperatures will not only tolerate the harsh environment of deep space but also will reduce system size and weight by eliminating or reducing the heating units and their associate structures; thereby reducing system development cost as well as launch costs. In addition, power electronic circuits designed for operation at low temperatures are expected to result in more efficient systems than those at room temperature. This improvement results from better behavior in the electrical and thermal properties of some semiconductor and dielectric materials at low temperatures. An on-going research and development program on low temperature electronics at the NASA Glenn Research Center focuses on the development of efficient electrical systems and circuits capable of surviving and exploiting the advantages of low temperature environments. An overview of the program will be presented in this paper. A description of the low temperature test facilities along with selected data obtained from in-house component testing will also be discussed. On-going research activities that are being performed in collaboration with various organizations will also be presented.
NASA分類Electronics and Electrical Engineering
レポートNONAS 1.15:212600
NASA/TM-2003-212600
E-14159
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/63900


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