IEC 62925-2016

Concentrator photovoltaic (CPV) modules - Thermal cycling test to differentiate increased thermal fatigue durability


IEC 62925-2016 发布历史

This document defines a test sequence that will quickly uncover CPV module failures that have been associated with field exposure to thermal cycling for many years. This document was specifically developed to relate to thermal fatigue failure of the HCPV die-attach, however, it also applies, to some extent, to all thermal fatigue related failure mechanisms for the assemblies submitted to test. IEC 62108, the CPV module qualification test already includes an accelerated thermal cycle sequence in one leg of the testing, however, the parameters of that test only represent a qualification level of exposure. This test procedure applies more stress and will provide a route for comparative testing to differentiate CPV modules with improved durability to thermal cycling and the associated mechanical stresses.

IEC 62925-2016由国际电工委员会 IX-IEC 发布于 2016-12。

IEC 62925-2016在国际标准分类中归属于: 27.160 太阳能工程。

IEC 62925-2016 发布之时,引用了标准

  • IEC 62108-2016 集中器光电(CPV)模块和组件.设计鉴定和型式认可

IEC 62925-2016的历代版本如下:

  • 2016年12月 IEC 62925-2016 聚光光伏(CPV)模组. 区分热疲劳耐久性增加的热循环试验

 

 

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标准号
IEC 62925-2016
发布日期
2016年12月
实施日期
废止日期
国际标准分类号
27.160
发布单位
IX-IEC
引用标准
IEC 62108-2016
被代替标准
IEC 82/1185/FDIS-2016
适用范围
This document defines a test sequence that will quickly uncover CPV module failures that have been associated with field exposure to thermal cycling for many years. This document was specifically developed to relate to thermal fatigue failure of the HCPV die-attach, however, it also applies, to some extent, to all thermal fatigue related failure mechanisms for the assemblies submitted to test. IEC 62108, the CPV module qualification test already includes an accelerated thermal cycle sequence in one leg of the testing, however, the parameters of that test only represent a qualification level of exposure. This test procedure applies more stress and will provide a route for comparative testing to differentiate CPV modules with improved durability to thermal cycling and the associated mechanical stresses.

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