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Front-side metallization by parallel dispensing technology

机译:通过并行点胶技术进行正面金属化

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Parallel dispensing technology as an alternative front-side metallization process for silicon solar cells offers the possibility of increasing cell conversion efficiency by 2% rel. by the use of commercial silver pastes designed for screen-printing technology. This efficiency gain is achieved through a significantly reduced finger width, and hence reduced shading losses, in combination with substantially improved finger homogeneities and high aspect ratios that guarantee sufficient grid conductivity at reduced paste lay-down. In this paper Fraunhofer ISE's development of a parallel dispensing unit that is integrated into an industrial, inline-feasible platform made by ASYS is discussed. A possible industrial application of the dispensing technology is supported by latest results from pilot processing as well as by basic economic considerations.
机译:并行分配技术作为硅太阳能电池的替代性正面金属化工艺,可将电池转换效率提高2%rel。通过使用为丝网印刷技术设计的商业银浆。通过显着减小手指的宽度并因此减少阴影损失,同时充分改善手指的均质性和高纵横比(可确保在减少焊膏沉积的情况下确保足够的网格导电性),可以实现这种效率增益。本文讨论了Fraunhofer ISE对并行分配单元的开发,该单元已集成到ASYS生产的工业上可行的平台中。试点处理的最新结果以及基本的经济考虑因素支持了点胶技术的可能的工业应用。

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