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FprEN IEC 61730-1:2023 Edition 08/2023
Photovoltaic (PV) module safety qualification - Part 1: Requirements for construction
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Abstract

This part of IEC 61730 specifies and describes the fundamental construction requirements for photovoltaic (PV) modules in order to provide safe electrical and mechanical operation. Specific topics are provided to assess the prevention of electrical shock, fire hazards, and personal injury due to mechanical and environmental stresses. This part of IEC 61730 pertains to the particular requirements of construction. IEC 61730-2 defines the requirements for testing. Modules with modified construction shall be qualified as described in IEC TS 62915. This document lays down requirements for terrestrial PV modules suitable for long-term operation in open-air climates with 98th percentile operating temperatures of 70 °C or less. Recommendations for modules to be used at higher operating temperatures are described in IEC TS 63126. The useful service life of modules so qualified will depend on their design, their environment and the conditions under which they are operated. Therefore, test results should not be construed as a quantitative prediction of module lifetime. This document is intended to apply to all terrestrial flat plate module materials, such as crystalline silicon module types as well as thin-film modules. PV modules covered by this document are limited to a maximum DC system voltage of 1 500 V. This International Standard defines the basic requirements for various applications of PV modules, but it cannot be considered to encompass all national or regional codes. Specific requirements, e.g. for building, marine and vehicle applications, are not covered. This International Standard does not address specific requirements for products that combine a PV module with power conversion equipment, monitoring or control electronics, such as integrated inverters, converters or output disabling functions. While parts of this document may be applicable to flat plate PV modules with internally generated low-level concentration below 3 times, it was not written specifically to address these concerns. This International Standard is designed to coordinate with the test sequences in the IEC 61215 series, so that a single set of samples may be used to perform both the safety and qualification of a PV module design. Additional construction requirements outlined in relevant ISO standards, or the national or local codes which govern the installation and use of these PV modules in their intended locations, should be considered in addition to the requirements contained within this document.

Status

Final draft - Active

Origin

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

Implementation

start of the vote on the project    11/12/2020   date of ratification (dor)    19/06/2023
end of the vote on the project    05/03/2021   date of anouncement (doa)    21/11/2023
start of the vote on the final project    07/04/2023   date of publication (dop)    21/02/2024
end of the vote on the final project    19/05/2023   date of withdrawal (dow)    21/02/2024


Publication Official Journal
of the Grand-Duchy of Luxembourg
Reference

Relations

Evolutions
FprEN IEC 61730-1:2023

Relations to older standards
FprEN IEC 61730-1:2023
ILNAS-EN IEC 61730-1:2018/AC:2018-06
ILNAS-EN IEC 61730-1:2018

Relations to international standards
IEC 61730-1 ED3 
IEC 61730-1:2016/A1:202X 
IEC 61730-1 Ed.3.0 
IEC 61730-1:2023 

International Classification for Standards (ICS codes) :

27.160 : Solar energy engineering

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