首页> 外国专利> METHOD OF FABRICATING A SOLAR MODULE WITH STRUCTURED AND INTEGRATED SERIES-CONNECTED THIN-FILM SOLAR CELLS AS A SUBSTRATE CELL TYPE, A SUPERSTRATE CELL TYPE AND A SOLAR MODULE THEREOF.

METHOD OF FABRICATING A SOLAR MODULE WITH STRUCTURED AND INTEGRATED SERIES-CONNECTED THIN-FILM SOLAR CELLS AS A SUBSTRATE CELL TYPE, A SUPERSTRATE CELL TYPE AND A SOLAR MODULE THEREOF.

机译:用结构化和整体串联的薄膜太阳能电池制造太阳能电池模块的方法,该太阳能电池作为基质电池类型,超固态电池类型及其太阳能电池模块。

摘要

Known methods of producing large-surface integrated thin-film solar modules with an amorphous, poly- or microcrystalline absorber layer always comprise division and conversion structuring processes which can cause instabilities in the structuring and which are relatively expensive. According to the inventive method which can be used to fabricate substrate solar cells (116) and superstrate solar cells, the mask (100) which is used provides for structuring itself during the deposition of layers for the tear electrode (106) and the absorber layer (11) through its geometrical form. The use of a mask (110) which can be reused as an independent element after use in this method allows for a relatively free range of possible geometric forms. This also makes possible applications inside and outside of buildings, including in the area of a window, from an esthetic and informal point of view. These types of application are also supported by the possibility of a structural connection between the solar modules produced according to the inventive method and light-collecting concentrator modules, in order considerably to increase their average and total energy conversion efficiency.
机译:生产具有非晶态,多晶或微晶吸收层的大表面集成薄膜太阳能模块的已知方法总是包括划分和转化结构化过程,这会导致结构不稳定性并且相对昂贵。根据可用于制造衬底太阳能电池(116)和上层太阳能电池的本发明方法,所使用的掩模(100)在沉积用于撕裂电极(106)和吸收层的层期间提供了自身的结构化(11)通过其几何形式。掩模(110)的使用可以在该方法中使用后作为独立的元件再利用,从而允许相对自由范围的可能的几何形状。从美观和非正式的角度来看,这也使建筑物内部和外部(包括窗户区域)的应用成为可能。这些类型的应用还受到根据本发明方法生产的太阳能模块与聚光集中器模块之间结构连接的可能性的支持,以便显着提高其平均和总能量转换效率。

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