2017
DOI: 10.1051/e3sconf/20171603005
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Space Solar Cells – 3G30 and Next Generation Radiation Hard Products

Abstract: The 3G30-Advanced, AZUR SPACE's latest qualified solar cell product, provides highest end-of-life efficiencies in space. The cell reaches 27.8% at a fluence of 5 E14 cm -2 and 26.5% at a fluence of 1 E15 cm -2 1 MeV electrons. The cell mass can be reduced to a minimum by substrate thinning, the cell cost can be reduced by implementation of large area configurations and even higher radiation hardness can be achieved by using AZUR's proprietary 3G30-1E16+ design. Various configurations are currently in productio… Show more

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Cited by 41 publications
(33 citation statements)
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“…The literature on multiple-junction cells is extremely rich and includes pseudomorphic and metamorphic structures based on III-V multilayers of different compositions deposited on Ge, Si, or GaAs (e.g., [11][12][13][14]). State-of-the-art high-efficiency III-V solar cells use a triple-junction structure that consists of a Ge bottom subcell formed on a Ge substrate, a GaInAs middle subcell, and a GaInP top subcell.…”
Section: Brief History Of Solar Cell Technologymentioning
confidence: 99%
“…The literature on multiple-junction cells is extremely rich and includes pseudomorphic and metamorphic structures based on III-V multilayers of different compositions deposited on Ge, Si, or GaAs (e.g., [11][12][13][14]). State-of-the-art high-efficiency III-V solar cells use a triple-junction structure that consists of a Ge bottom subcell formed on a Ge substrate, a GaInAs middle subcell, and a GaInP top subcell.…”
Section: Brief History Of Solar Cell Technologymentioning
confidence: 99%
“…Four-junction cells are being developed as the next generation product for space applications to replace today's triple-junction cells where Ga 0.49 In 0.51 P (1.9 eV) and Ga 0.99 In 0.01 As (1.4 eV) are grown on Ge (0.7 eV) [1][2][3]. The triple-junction cells are well developed and e.g.…”
Section: Introductionmentioning
confidence: 99%
“…The triple-junction cells are well developed and e.g. the 3G30 product provided by AZUR SPACE reaches 29.5% begin-of-life and 26.5% conversion efficiency under end-of-life conditions (1*10 15 e -/cm 2 1 MeV electron irradiation) [4]. Slightly lower end-of-life results are achieved by Spectrolab [5] and SolAero [6].…”
Section: Introductionmentioning
confidence: 99%
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