DocumentCode :
2308401
Title :
Radiation hardened high efficiency silicon space solar cell
Author :
Garboushian, V. ; Yoon, S. ; Turner, J.
Author_Institution :
AMONIX Inc., Torrance, CA, USA
fYear :
1993
fDate :
10-14 May 1993
Firstpage :
1358
Lastpage :
1362
Abstract :
A silicon solar cell with AMO 19% Beginning of Life (BOL) efficiency is reported. The cell has demonstrated equal or better radiation resistance when compared to conventional silicon space solar cells. Conventional silicon space solar cell performance is generally ≈14% at BOL. The Radiation Hardened High Efficiency Silicon (RHHES) cell is thinned for high specific power (watts/kilogram). The RHHES space cell provides compatibility with automatic surface mounting technology. The cells can be easily combined to provide desired power levels and voltages. The RHHES space cell is more resistant to mechanical damage due to micrometeorites. Micrometeorites which impinge upon conventional cells can crack the cell which, in turn, may cause string failure. The RHHES, operating in the same environment, can continue to function with a similar crack. The RHHES cell allows for very efficient thermal management which is essential for space cells generating higher specific power levels. The cell eliminates the need for electrical insulation layers which would otherwise increase the thermal resistance for conventional space panels. The RHHES cell can be applied to a space concentrator panel system without abandoning any of the attributes discussed. The power handling capability of the RHHES cell is approximately five times more than conventional space concentrator solar cells
Keywords :
elemental semiconductors; micrometeorites; photovoltaic power systems; radiation hardening; semiconductor device testing; silicon; solar cells; space vehicle power plants; 19 percent; Si; electrical insulation layers; high efficiency; mechanical damage resistance; micrometeorites; power handling capability; radiation hardened; radiation resistance; silicon space solar cell; space concentrator panel; space concentrator solar cells; thermal management; Photovoltaic cells; Radiation hardening; Silicon; Space technology; Surface cracks; Surface resistance; Surface-mount technology; Thermal management; Thermal resistance; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference, 1993., Conference Record of the Twenty Third IEEE
Conference_Location :
Louisville, KY
Print_ISBN :
0-7803-1220-1
Type :
conf
DOI :
10.1109/PVSC.1993.346920
Filename :
346920
Link To Document :
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