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High-Efficiency Multi-Cell TPV Module Fabrication and Performance

机译:高效多电池TPV模块的制造和性能

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Sarnoff Corporation has developed thermophotovoltaic (TPV) modules using either Sarnoff grown and processed InGaAsSb/GaSb TPV cells or cells fabricated by our co-workers. The TPV module fabrication includes substrate design, fabrication and module assembly. The substrate comprises an A1N base plate and Al_2O_3 septa. The septa separate the cells and support metal layers to electrically connect the bottom of a cell to the top of the adjacent septum. A welded gold ribbon connects the septum to the topside of the adjacent cell. The detailed structure of the substrate, as well as the module assembly process, is discussed. TPV modules of 1 cm x 1 cm area with two 1 cm x 0.5 cm cells and 2 cm x 2 cm area with eight cells are fabricated routinely. Alternative approaches to the A1_2O_3/A1N substrate and ribbon connection have been explored for low-cost, large-scale production. Silicon based substrates show promising results. KOH wet etching of silicon produces septa with straight walls having perfect 90-degree angles at the bottom without fillets. Plated gold forming an "air bridge" to connect the cell busbar and septum has the potential to replace the welded ribbon. Packaging p-on-n and n-on-p cells alternatively can drastically reduce the complexity of the module structure by facilitating all connections on a planar surface without septa. Sarnoff module technology, when combined with Sarnoff TPV-cell technology and spectral-control technologies from other organizations, has led to TPV power-conversion efficiencies exceeding 17 %.
机译:萨诺夫公司已经开发出了使用萨诺夫生长和加工过的InGaAsSb / GaSb TPV电池或由我们的同事制造的电池的热光伏(TPV)模块。 TPV模块的制造包括基板设计,制造和模块组装。衬底包括AlN基板和Al_2O_3隔垫。隔垫将电池和支撑金属层分开,以将电池的底部电连接到相邻隔垫的顶部。一条焊接的金带将隔垫连接到相邻细胞的顶侧。讨论了基板的详细结构以及模块组装过程。常规制造1厘米x 1厘米面积,两个1厘米x 0.5厘米电池和2厘米x 2厘米面积,八个电池的TPV模块。为了低成本,大规模生产,已经探索了Al 2 O 3 / AlN衬底和带状连接的替代方法。硅基基材显示出令人鼓舞的结果。硅的KOH湿法刻蚀产生的隔板具有直壁,该直壁在底部具有完美的90度角且没有圆角。镀金形成了连接电池母线和隔垫的“气桥”,有可能取代焊接带。封装p-on-n和n-on-p电池可以通过促进平面上没有隔片的所有连接来极大地降低模块结构的复杂性。 Sarnoff模块技术与Sarnoff TPV电池技术和其他组织的频谱控制技术结合使用时,已使TPV功率转换效率超过17%。

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