IEC 62108:2007

IEC 62108:2007

December 2007
International standard Cancelled

Concentrator photovoltaic (CPV) modules and assemblies - Design qualification and type approval

Specifies the minimum requirements for the design qualification and type approval of concentrator photovoltaic modules and assemblies suitable for long-term operation in general open-air climates. The test sequence is partially based on that specified in IEC 61215. Determines the electrical, mechanical, and thermal characteristics of the CPV modules and assemblies and shows that the CPV modules and assemblies are capable of withstanding prolonged exposure in climates described in the scope.

Main informations

Collections

International IEC standards

Publication date

December 2007

Number of pages

80 p.

Reference

IEC 62108:2007

Print number

1 - 05/02/2008
Sumary
Concentrator photovoltaic (CPV) modules and assemblies - Design qualification and type approval

Specifies the minimum requirements for the design qualification and type approval of concentrator photovoltaic modules and assemblies suitable for long-term operation in general open-air climates. The test sequence is partially based on that specified in IEC 61215. Determines the electrical, mechanical, and thermal characteristics of the CPV modules and assemblies and shows that the CPV modules and assemblies are capable of withstanding prolonged exposure in climates described in the scope.
Standard replaced by (1)
IEC 62108:2016
September 2016
International standard Cancelled
Concentrator photovoltaic (CPV) modules and assemblies - Design qualification and type approval

IEC 62108:2016 specifies the minimum requirements for the design qualification and type approval of concentrator photovoltaic (CPV) modules and assemblies suitable for long-term operation in general open-air climates as defined in IEC 60721-2-1. The test sequence is partially based on that specified in IEC 61215-1. The object of this test standard is to determine the electrical, mechanical, and thermal characteristics of the CPV modules and assemblies and to show that the CPV modules and assemblies are capable of withstanding prolonged exposure in climates described in the scope. This new edition includes the following main technical changes with regard to the previous one: a) changes in outdoor exposure from 1000 h to 500 h; b) changes in current cycling during thermal cycling test; c) added dust ingress test; d) eliminated thermal cycling associated with damp heat test; e) eliminated UV exposure test.

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