首页> 外文会议> >High-efficiency, point-contact silicon solar cells for Fresnel lens concentrator modules
【24h】

High-efficiency, point-contact silicon solar cells for Fresnel lens concentrator modules

机译:菲涅耳透镜聚光器模块的高效点接触式硅太阳能电池

获取原文

摘要

Point-contact silicon solar cells have been developed for Fresnel lens concentrator modules. The cells have an area of 1.21 cm/sup 2/ on a 12/spl times/12 mm die. The design incident flux on the cell is 22.3 W/cm/sup 2/. A new cell design and process have been developed to insure a high efficiency and a large fabrication yield, and to eliminate hazardous materials and pyrophoric gases. The new process is very safe and benign to the environment. Also, a new passivation technique for the front surface has been discovered which makes the point-contact cell fully stable under steady-state concentrated sunlight. No degradation has been observed so far after more than 200 days of exposure behind Fresnel lenses providing an incident power density of 36 W/cm/sup 2/. An improved anti-reflection coating and an improved light trapping, giving an average effective number of passes of the infra-red light greater than 25, are part of the developments. The best cell shows an efficiency of 26% under 100 suns (AM1.5D, 25/spl deg/C). The typical cell efficiency is greater than 25% at 200 suns. The cells are easily solderable due to a double-level metallization and three large copper pads. The cells are now produced in large quantities in a pilot line located in a Class 100 clean room which has a capacity of 7.5 MW per year of concentrator solar cells.
机译:已经开发出用于菲涅耳透镜聚光器模块的点接触式硅太阳能电池。在12 / spl次/ 12 mm的管芯上,单元的面积为1.21 cm / sup 2 /。电池上的设计入射通量为22.3 W / cm / sup 2 /。已经开发出新的电池设计和工艺以确保高效率和大的制造良率,并消除有害物质和自燃性气体。新工艺非常安全,对环境无害。此外,还发现了一种用于前表面的新钝化技术,该技术可使点接触电池在稳态集中日光下完全稳定。在菲涅耳透镜后面提供200 W的入射功率密度(曝光功率密度为36 W / cm / sup 2 /)后,迄今未观察到降解。改进的防反射涂层和改进的光捕获功能使红外光的平均有效通过次数大于25。最好的电池在100个阳光下(AM1.5D,25 / spl deg / C)表现出26%的效率。在200个太阳下,典型的电池效率大于25%。由于采用双层金属镀层和三个大型铜焊盘,因此电池易于焊接。现在,这些电池是在位于Class 100洁净室中的中试生产线中大量生产的,该生产线每年可生产7.5 MW的聚光太阳能电池。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号