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1)  microcrystalline silicon solar cells
微晶硅太阳电池
1.
Study of microcrystalline silicon solar cells fabricated by very high frequency plasma-enhanced chemical vapor deposition;
甚高频等离子体增强化学气相沉积制备微晶硅太阳电池的研究
2.
A phenomenon was found in the high rate deposition process of microcrystalline silicon solar cells by very-high- frequency plasma-enhanced chemical vapor deposition(VHF-PECVD).
3%的单结微晶硅太阳电池
2)  microcrystalline silicon thin film solar cells
微晶硅薄膜太阳电池
1.
Investigation of improved conversion efficiency of microcrystalline silicon thin film solar cells;
提高微晶硅薄膜太阳电池效率的研究
2.
The structure of microcrystalline silicon thin film solar cells prepared by very high frequency plasma enhanced chemical vapor deposition,is studied.
对甚高频等离子体增强化学气相沉积技术制备的微晶硅薄膜太阳电池进行了研究。
3)  microcrystalline silicon solar cells
微晶硅薄膜太阳电池
1.
Series of microcrystalline silicon solar cells were fabricated by very high frequency plasma enhanced chemical vapor deposition at different silane concentrations,discharge powers and total flow rate.
本文主要采用甚高频等离子体增强化学气相沉积技术制备了不同硅烷浓度、辉光功率和反应气体流量的单结微晶硅薄膜太阳电池。
2.
N-type phosphors doping layer as the window layer of microcrystalline silicon solar cells has been fabricated using conversional radio frequency plasma enhanced chemical vapor deposition.
采用常规的射频等离子体增强化学气相沉积技术制备了可以用于微晶硅薄膜太阳电池的n型的掺杂窗口层材料。
4)  microcrystalline silicon-germanium solar cells (μc-SiGe solar cells)
微晶硅锗太阳能电池
5)  silicon solar cell
晶体硅太阳电池
1.
Based on the equation of silicon solar cell current intensity, the theoretic expression of silicon solar cell load resistance at maximum power point is deduced.
从实际的晶体硅太阳电池电路基本方程出发,推导出晶体硅太阳电池最大功率下负载的函数表达。
6)  Crystalline Si solar cells
晶体硅太阳电池
1.
Comparison of TiO 2 anti reflection coating (ARC) and SiN ARC were carried out by multi coating theory and numerical calculation, including their impact to performances of crystalline Si solar cells.
采用多层膜的反射理论及数值计算对比了TiO2 和SiN减反射膜用于晶体硅太阳电池对其性能的影响 ,给出了优化设计的结果 ,SiN膜的减反射膜的综合效果更优 。
补充资料:多晶硅太阳电池

多晶硅太阳电池的性能基本与单晶硅太阳电池相同,目前国外多晶硅太阳电池大部分是10cm×10cm的方片。工业化生产的多晶硅太阳电池的典型特性参数如下:

isc=2950ma,voc=584mv,填充因子ff=0.72,转换效率η=12.4%(测试条件:am1.5,1000w/m2,25℃)。

多晶硅太阳电池的其它特性与单晶硅太阳电池类似,如温度特性、太阳电池性能随入射光强的变化等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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