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ILNAS-EN IEC 61215-1-1:2021 Edition 04/2021
Terrestrial photovoltaic (PV) modules - Design qualification and type approval - Part 1-1: Special requirements for testing of crystalline silicon photovoltaic (PV) modules
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Abstract

This document lays down requirements for the design qualification of terrestrial photovoltaic modules suitable for long-term operation in open-air climates. The useful service life of modules so qualified will depend on their design, their environment and the conditions under which they are operated. Test results are not construed as a quantitative prediction of module lifetime. In climates where 98th percentile operating temperatures exceed 70 °C, users are recommended to consider testing to higher temperature test conditions as described in IEC TS 63126. Users desiring qualification of PV products with lesser lifetime expectations are recommended to consider testing designed for PV in consumer electronics, as described in IEC 63163 (under development). Users wishing to gain confidence that the characteristics tested in IEC 61215 appear consistently in a manufactured product may wish to utilize IEC 62941 regarding quality systems in PV manufacturing. This document is intended to apply to all crystalline silicon terrestrial flat plate modules. This document does not apply to modules used with concentrated sunlight although it may be utilized for low concentrator modules (1 to 3 suns). For low concentration modules, all tests are performed using the irradiance, current, voltage and power levels expected at the design concentration. The object of this test sequence is to determine the electrical characteristics of the module and to show, as far as possible within reasonable constraints of cost and time, that the module is capable of withstanding prolonged exposure outdoors. Accelerated test conditions are empirically based on those necessary to reproduce selected observed field failures and are applied equally across module types. Acceleration factors may vary with product design and thus not all degradation mechanisms may manifest. Further general information on accelerated test methods including definitions of terms may be found in IEC 62506. Some long-term degradation mechanisms can only reasonably be detected via component testing, due to long times required to produce the failure and necessity of stress conditions that are expensive to produce over large areas. Component tests that have reached a sufficient level of maturity to set pass/fail criteria with high confidence are incorporated into the IEC 61215 series via addition to Table 1 in IEC 61215-1:2021. In contrast, the tests procedures described in this series, in IEC 61215-2, are performed on modules. This document defines PV technology dependent modifications to the testing procedures and requirements per IEC 61215-1:2021 and IEC 61215-2:2021.

Status

Standard - Active

Origin

Technical Committee :
CLC/TC 82 : Solar photovoltaic energy systems

Implementation

start of the vote on the project    18/10/2019   date of ratification (dor)    30/03/2021
end of the vote on the project    10/01/2020   date of anouncement (doa)    30/06/2021
start of the vote on the final project    04/12/2020   date of publication (dop)    30/12/2021
end of the vote on the final project    15/01/2021   date of withdrawal (dow)    30/03/2024


Publication Official Journal
of the Grand-Duchy of Luxembourg
21/10/2021
Reference Mémorial A N° 740

Relations

Evolutions

Relations to international standards
IEC 61215-1-1:202X 
IEC 61215-1-1:2021 
IEC 61215-1-1:201X 

International Classification for Standards (ICS codes) :

27.160 : Solar energy engineering

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