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Simple and reliable processes for creating fully plated nickel-copper contacts

机译:简单可靠的工艺来创建全镀镍铜触点

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This paper presents the first 60-cell module results from a very simple process scheme for creating fully plated nickel-copper contacts on crystalline silicon solar cells. Standard Cz back-surface field (BSF) cells are processed in a completely analogous way to the standard process sequence up to and including rear-side screen printing. After a firing step for BSF formation, the front-grid positions are defined by picosecond pulse laser ablation and plated with nickel, copper and silver; this is followed by a short thermal anneal. Cell classification produces a very neat efficiency distribution of 19.6±0.1%. Solder and peel testing shows this approach to be competitive with standard screen-printed contacts in terms of adhesion. A batch of 60-cell modules were fabricated from the cells in a standard automated tabber-stringer system and subjected to thermal cycling and damp heat testing as part of the IEC 61215 reliability test sequence. The modules passed the test sequence without showing any signs of electrical degradation caused by, for example, copper diffusion.
机译:本文介绍了第一个60电池模块的结果,该结果来自一个非常简单的工艺方案,用于在晶体硅太阳能电池上创建完全电镀的镍-铜触点。标准Cz背面场(BSF)单元以与标准处理顺序完全相似的方式进行处理,直至并包括背面丝网印刷。在形成BSF的烧结步骤之后,通过皮秒脉冲激光烧蚀限定前格栅位置,并镀镍,铜和银。随后进行短暂的热退火。细胞分类产生非常干净的效率分布,为19.6±0.1%。焊接和剥离测试表明,这种方法在粘附性方面与标准丝网印刷触点具有竞争优势。在标准的自动tab草机系统中,由电池制造了一批60电池模块,并进行了热循环和湿热测试,这是IEC 61215可靠性测试程序的一部分。这些模块通过了测试程序,没有显示出任何因铜扩散引起的电降解迹象。

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