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Wire bonding as a cell interconnection technique for polycrystalline silicon thin-film solar cells on glass

机译:引线键合作为玻璃上多晶硅薄膜太阳能电池的电池互连技术

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摘要

The interconnection of solar cells is a critical part of photovoltaic module fabrication. In this paper, a high-yield, low-cost method for interconnecting polycrystalline silicon thin-film solar cells on glass is presented. The method consists of forming adjacent, electrically isolated groves across the cells using laser scribing, and then forming wire bonds over each laser scribe, resulting in series interconnection of the individual solar cells. Wire bonds are also used to connect the first and last solar cell in the string to external (tabbing) leads, forming a mini-module. A layer of white paint is then applied, which acts as both an encapsulation layer and an additional back surface reflector. Using this method, an 8.3% efficient mini-module has been fabricated. By exploiting recent developments in wire bonding technology, it appears that this process can be automated and will be capable of forming solar cell interconnections on large-area modules within relatively short processing times (approx 10min for 1 m~2 module).
机译:太阳能电池的互连是光伏模块制造的关键部分。本文提出了一种在玻璃上互连多晶硅薄膜太阳能电池的高产量,低成本方法。该方法包括使用激光划片在电池上形成相邻的,电隔离的凹槽,然后在每个激光划线上形成引线键合,从而导致各个太阳能电池的串联互连。引线键合还用于将串中的第一个和最后一个太阳能电池连接到外部(接线)引线,从而形成一个微型模块。然后涂上一层白色涂料,既充当封装层又充当附加的背面反射器。使用此方法,已制造出8.3%效率的微型模块。通过利用引线键合技术的最新发展,该过程似乎可以实现自动化,并且能够在相对较短的处理时间(1 m〜2个模块约10分钟)内在大面积模块上形成太阳能电池互连。

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