Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment

Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment
Title Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment PDF eBook
Author John J. Smithrick
Publisher
Pages 20
Release 1971
Genre Cadmium sulfide photoconductive cells
ISBN

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Thin-film Cu2S-CdS solar cells, loaded at various fixed values of load resistance, were thermally cycled for 1429 cycles in a simulated space environment. Cell performance was measured under controlled conditions in air before and after thermal cycling. These data were used to determine the effect of load voltage on cell performance. The performance of the cells was relatively independent of load voltage up to about 0.39 volt. This appears to be a threshold voltage, beyond which there was a significant loss in cell performance. Fortunately, this threshold voltage appears to be sufficiently higher than the maximum power voltage of 0.33 volt so that it can be avoided in most applications.

Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment

Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment
Title Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment PDF eBook
Author John J. Smithrick
Publisher
Pages 11
Release 1971
Genre Cadmium sulfide photoconductive cells
ISBN

Download Effect of Load Voltage on Thin-film Cuprous Sulfide - Cadmium Sulfide Solar Cells Thermally Cycled in a Simulated Space Environment Book in PDF, Epub and Kindle

Thin-film Cu2S-CdS solar cells, loaded at various fixed values of load resistance, were thermally cycled for 1429 cycles in a simulated space environment. Cell performance was measured under controlled conditions in air before and after thermal cycling. These data were used to determine the effect of load voltage on cell performance. The performance of the cells was relatively independent of load voltage up to about 0.39 volt. This appears to be a threshold voltage, beyond which there was a significant loss in cell performance. Fortunately, this threshold voltage appears to be sufficiently higher than the maximum power voltage of 0.33 volt so that it can be avoided in most applications.

NASA Technical Note

NASA Technical Note
Title NASA Technical Note PDF eBook
Author
Publisher
Pages 520
Release 1971
Genre
ISBN

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Effects of Simulated Space Environment on Full-, Half-, and Quarter-size Cadmium Sulfide Thin-film Solar Cells

Effects of Simulated Space Environment on Full-, Half-, and Quarter-size Cadmium Sulfide Thin-film Solar Cells
Title Effects of Simulated Space Environment on Full-, Half-, and Quarter-size Cadmium Sulfide Thin-film Solar Cells PDF eBook
Author Anthony F. Ratajczak
Publisher
Pages 22
Release 1969
Genre
ISBN

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Monthly Catalog of United States Government Publications

Monthly Catalog of United States Government Publications
Title Monthly Catalog of United States Government Publications PDF eBook
Author United States. Superintendent of Documents
Publisher
Pages 1194
Release 1972
Genre Government publications
ISBN

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February issue includes Appendix entitled Directory of United States Government periodicals and subscription publications; September issue includes List of depository libraries; June and December issues include semiannual index.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 1070
Release 1972
Genre Aeronautics
ISBN

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Monthly Catalog of United States Government Publications

Monthly Catalog of United States Government Publications
Title Monthly Catalog of United States Government Publications PDF eBook
Author
Publisher
Pages 1388
Release
Genre Government publications
ISBN

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