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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.160 Solar energy engineering>BS EN IEC 62108:2022 Concentrator photovoltaic (CPV) modules and assemblies. Design qualification and type approval
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BS EN IEC 62108:2022 Concentrator photovoltaic (CPV) modules and assemblies. Design qualification and type approval

BS EN IEC 62108:2022

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

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Standard number:BS EN IEC 62108:2022
Pages:114
Released:2022-08-26
ISBN:978 0 539 03020 4
Status:Standard
BS EN IEC 62108:2022 Concentrator Photovoltaic (CPV) Modules and Assemblies

BS EN IEC 62108:2022 Concentrator Photovoltaic (CPV) Modules and Assemblies

Design Qualification and Type Approval

Standard Number: BS EN IEC 62108:2022

Pages: 114

Released: 2022-08-26

ISBN: 978 0 539 03020 4

Status: Standard

Overview

The BS EN IEC 62108:2022 standard is a comprehensive guideline for the design qualification and type approval of Concentrator Photovoltaic (CPV) modules and assemblies. This standard is essential for manufacturers, engineers, and quality assurance professionals who are involved in the development and deployment of CPV systems. Released on August 26, 2022, and spanning 114 pages, this document provides detailed criteria and testing methods to ensure the reliability and performance of CPV modules.

Why Choose BS EN IEC 62108:2022?

Concentrator Photovoltaic (CPV) technology is a cutting-edge approach to solar energy generation, offering higher efficiency compared to traditional photovoltaic systems. The BS EN IEC 62108:2022 standard is designed to ensure that CPV modules and assemblies meet rigorous quality and performance benchmarks. By adhering to this standard, manufacturers can guarantee that their products are reliable, durable, and capable of delivering optimal performance under various environmental conditions.

Key Features

  • Comprehensive Testing Methods: The standard outlines a series of tests that CPV modules must undergo to ensure their durability and performance. These tests include thermal cycling, humidity freeze, and mechanical load tests, among others.
  • Design Qualification: Detailed criteria for the design qualification of CPV modules are provided, ensuring that the modules are designed to withstand real-world conditions.
  • Type Approval: The standard includes guidelines for type approval, which is crucial for certifying that CPV modules meet the necessary performance and safety standards.
  • Environmental Considerations: The standard takes into account various environmental factors such as temperature, humidity, and UV exposure, ensuring that CPV modules are robust and reliable in different climates.
  • Quality Assurance: By following the BS EN IEC 62108:2022 standard, manufacturers can implement stringent quality assurance processes, leading to higher customer satisfaction and reduced product failures.

Who Should Use This Standard?

The BS EN IEC 62108:2022 standard is indispensable for a wide range of professionals in the solar energy industry, including:

  • Manufacturers: Ensure that your CPV modules meet the highest quality and performance standards.
  • Engineers: Design and develop CPV systems that are reliable and efficient.
  • Quality Assurance Professionals: Implement rigorous testing and quality control processes to guarantee product reliability.
  • Regulatory Bodies: Use the standard as a benchmark for certifying CPV modules and assemblies.

Benefits of Compliance

Adhering to the BS EN IEC 62108:2022 standard offers numerous benefits, including:

  • Enhanced Reliability: Products that meet this standard are more likely to perform reliably over their expected lifespan.
  • Market Acceptance: Compliance with international standards can facilitate market entry and acceptance, both locally and globally.
  • Customer Confidence: Demonstrating adherence to rigorous standards can boost customer confidence in your products.
  • Reduced Risk: By following established guidelines, manufacturers can minimize the risk of product failures and associated costs.

Conclusion

The BS EN IEC 62108:2022 standard is a vital resource for anyone involved in the design, manufacture, and quality assurance of Concentrator Photovoltaic (CPV) modules and assemblies. With its comprehensive guidelines and rigorous testing methods, this standard ensures that CPV products are reliable, durable, and capable of delivering high performance in various environmental conditions. By adhering to this standard, manufacturers can enhance product quality, gain market acceptance, and build customer confidence.

DESCRIPTION

BS EN IEC 62108:2022


This standard BS EN IEC 62108:2022 Concentrator photovoltaic (CPV) modules and assemblies. Design qualification and type approval is classified in these ICS categories:
  • 27.160 Solar energy engineering
This International Standard 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 for the design qualification and type approval of flat-plate terrestrial crystalline silicon PV modules. However, some changes have been made to account for the special features of CPV receivers and modules, particularly with regard to the separation of on-site and in-lab tests, effects of tracking alignment, high current density, and rapid temperature changes, which have resulted in the formulation of some new test procedures or new requirements. The object of this test standard is to determine the electrical, mechanical, and thermal characteristics of the CPV modules and assemblies and to show, as far as possible within reasonable constraints of cost and time, that the CPV modules and assemblies are capable of withstanding prolonged exposure in climates described in the scope. The actual life of CPV modules and assemblies so qualified will depend on their design, production, environment, and the conditions under which they are operated. This standard shall be used in conjunction with the retest guidelines described in Annex B.