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III-V MULTIJUNCTION SOLAR CELLS - FROM CURRENT SPACE AND TERRESTRIAL PRODUCTS TO MODERN CELL ARCHITECTURES

机译:III-V多结太阳能电池 - 从当前空间和地面产品到现代细胞架构

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The standard Ga_(0.5)In_(0.5)P/Ga_(0.99)In_(0.01)As/Ge triple-junction (3J) solar cell is reaching its practical average efficiency limit of 30% for AM0 and 40% under concentration (xAM1.5d) as can be observed for AZUR's latest products for space application (3G30) and CPV (4C40). In addition, AZUR SPACE has developed dense array modules (ADAM) for dish concentrator application. Regarding modern cell architectures, recent progress by Fraunhofer ISE and AZUR SPACE is reported, including improved GaInNAs subcells for lattice-matched 4J and 6J solar cells, 3J MQW cells reaching 30% AM0 efficiency, continuous work on upright metamorphic 3J cells as well as processing of inverted cell structures. The paper gives a brief overview on these and other new concepts such as inverted metamorphic 3J and 4J cells and multi-junction solar cells based on semiconductor bonding.
机译:标准GA_(0.5)IN_(0.5)P / GA_(0.99)IN_(0.01)AS / GE Triple-Alnction(3J)太阳能电池在浓度下达到其实际平均效率限制为30%,浓度为40%(XAM1 .5D)可以观察到Azur的空间应用程序(3G30)和CPV(4C40)的最新产品。此外,Azur Space已经开发了用于盘子浓缩器应用的致密阵列模块(ADAM)。关于现代细胞架构,报告了Fraunhofer ISE和Azur空间的最新进展,包括改进的晶格匹配的4J和6J太阳能电池的增长子单元,3J MQW电池达到30%的AM0效率,在直立的变质3J细胞上连续工作以及加工倒置细胞结构。本文简要概述了这些和其他新概念,例如基于半导体键合的反相变质3J和4J细胞和多结太阳能电池。

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