高效太阳能电池焊接工艺的评价

P. Gierth, L. Rebenklau, Alexander Michaelis
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引用次数: 15

摘要

太阳能电池必须在太阳能模块中相互连接。在过去的几年里,新的低应力连接技术得到了发展,如选择性焊接。工业上最常用的选择性焊接技术是感应焊接、接触焊接、激光焊接和光点焊接。这项工作的目的是评估通过使用选择性焊接技术产生的焊点的特性。因此进行了粘合强度测试、电气特性和x射线分析。在该工艺中,使用了一种正面金属化,一种snag焊料和一种snpbag焊料。表征方法将在点灯焊接技术上进行演示。此外,还将论证和讨论焊点质量对整个太阳能电池电阻的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of soldering processes for high efficiency solar cells
Solar cells have to be connected electrically to each other in a solar module. During the last years, new connection techniques with low stress have been developed, such as selective soldering. The industrially most frequently used selective soldering techniques are induction soldering, contact soldering, laser soldering and spot light soldering. The aim of this work is to evaluate the characteristics of solder joints, which are produced by the use of selective soldering techniques. Therefore adhesive strength tests, electrical characterizations and x-ray analyses have been performed. In this process one front-side metallization, a SnAg-solder and a SnPbAg-solder were used. The characterization method will be demonstrated on the spot light soldering technique. In addition the influence of the solder joint quality on the resistance of the whole solar cell will be demonstrated and discussed.
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