首页> 外文会议>IEEE Photovoltaic Specialists Conference >Progress in the development of high-conversion-efficiency a-Si/#x03BC;c-Si tandem solar module using #x03BC;c-Si thin film with high deposition rate on Gen. 5.5 large-area glass substrate
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Progress in the development of high-conversion-efficiency a-Si/#x03BC;c-Si tandem solar module using #x03BC;c-Si thin film with high deposition rate on Gen. 5.5 large-area glass substrate

机译:高转换效率A-Si /&#X03BC的发展进展; C-Si串联太阳能模块使用μ C-Si薄膜,沉积率高,在大面积玻璃基板上具有高沉积速率。

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The technology to make high-quality, high-reliability solar modules with a high deposition rate for μc-Si thin-film is a problem for the industrialization of low-cost, high-conversion-efficiency a-Si/μc-Si tandem structure solar modules. Sanyo has solved this problem by developing an original CVD technique called Localized Plasma Confinement CVD and a new evaluation method for μc-Si thin film. A stabilized conversion efficiency of 10.0% was achieved for an a-Si/μc-Si tandem structure solar module, and a deposition rate of 2.4 nm/s for μc-Si thin-film was attained on a Gen. 5.5 full-size glass substrate. To obtain a higher conversion-efficiency a-Si/μc-Si tandem structure solar module, fundamental studies of μc-Si thin-film have been performed, and a stabilized conversion efficiency of 10.5% (Initial solar module conversion efficiency: 12.0%) has been achieved on a large-area glass substrate. Furthermore, in the study of this development, the highest stabilized conversion efficiency of 12.0% (Initial conversion-efficiency: 13.5%) was attained. Module reliability tests confirmed by IEC 61646 Ed. 2 revealed that the performance of the module is adapted. These high-performance a-Si/μc-Si tandem structure solar modules were prepared by using the knowledge of our thin-film and module technologies.
机译:该技术使高质量,高可靠性的太阳能模块具有高沉积速率的μ C-Si薄膜是低成本,高转换效率A-Si /&的一个问题#x03bc; c-si串联结构太阳能模块。通过开发称为局部等离子体监禁CVD的原始CVD技术和&#X03BC的新评估方法,Sanyo解决了这个问题.C-Si薄膜。对于A-Si /&#X03BC,实现了10.0%的稳定转化效率。C-Si串联结构太阳能模块,&#X03BC的沉积速率为2.4nm / s;达到C-Si薄膜一个5.5个全尺寸玻璃基板。获得更高的转换效率A-Si /μ C-Si串联结构太阳能模块,对&#X03BC的基本研究已经进行了,已经进行了C-Si薄膜,稳定的转化效率为10.5%(初始在大面积玻璃基板上已经实现了太阳能模块转换效率:12.0%)。此外,在该开发的研究中,最高稳定的转化效率为12.0%(初始转化效率:13.5%)。模块可靠性测试由IEC 61646 ED确认。图2显示了模块的性能进行调整。这些高性能A-Si /μ C-Si串联结构通过使用我们的薄膜和模块技术的知识来制备。

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