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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Potential process design and control for solar cell lean production in future
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Potential process design and control for solar cell lean production in future

机译:未来太阳能电池精益生产的潜在工艺设计和控制

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摘要

AbstractIn this paper, the correlation between wafer quality and cell efficiency was studied to identify the key impact factors, such as effective lifetime, impurities and defects. Standard (STD, 2.94E21atoms/cm3) and lightly doped emitter (LDE, 1.08E21atoms/cm3) diffusion were investigated for different qualities wafers. For high impurities wafer, cell efficiency of STD diffusion is 0.44%_abs higher than that of LDE diffusion due to the better gettering by bulk lifetime and iron concentration measurement; for high defect wafer, cell efficiency of STD and LDE are similar; for good wafer (high lifetime, low defect and low impurities), LDE diffusion is better than STD with 0.08%_abs higher cell efficiency due to the better blue wavelength response by using IQE measurement, which should be higher if optimizing firing condition for Fill Factor improvement. Therefore, the possible wafer sorting provides opportunities to design and control different cell process for different incoming wafers to enable the best possible output in a lean production in future.]]>
机译:<![cdata [ 抽象 在本文中,研究了晶片质量与细胞效率之间的相关性,以识别关键影响因素,例如有效的寿命,杂质和缺陷。标准(STD,2.94E21ATOM / CM 3 )和轻微掺杂的发射器(LDE,1.08E21ATOMS / CM 3 )对不同品质晶片研究了扩散。对于高杂质晶片,STD扩散的电池效率为0.44%_abs,由于堆积寿命和铁浓度测量更好地吸气,高于LDE扩散的0.44%。对于高缺陷晶片,STD和LDE的细胞效率类似;对于良好的晶片(高寿命,低缺陷和低杂质),LDE扩散优于STD,由于使用IQE测量,由于使用IQE测量,由于较好的蓝色波长响应而导致的电池效率更高,如果优化填充因子的烧制条件,则应更高改进。因此,可能的晶片排序为不同的进入晶片设计和控制不同的电池处理提供了机会,以便将来能够在精益的生产中实现最佳的输出。 ]]>

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