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Homepage>BS Standards>29 ELECTRICAL ENGINEERING>29.080 Insulation>29.080.10 Insulators>BS EN IEC 62772:2023 Composite hollow core station post insulators with a.c. voltage greater than 1 000 V and d.c. voltage greater than 1 500 V. Definitions, test methods and acceptance criteria
immediate downloadReleased: 2024-01-08
BS EN IEC 62772:2023 Composite hollow core station post insulators with a.c. voltage greater than 1 000 V and d.c. voltage greater than 1 500 V. Definitions, test methods and acceptance criteria

BS EN IEC 62772:2023

Composite hollow core station post insulators with a.c. voltage greater than 1 000 V and d.c. voltage greater than 1 500 V. Definitions, test methods and acceptance criteria

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Standard number:BS EN IEC 62772:2023
Pages:36
Released:2024-01-08
ISBN:978 0 539 03737 1
Status:Standard
BS EN IEC 62772:2023 Composite Hollow Core Station Post Insulators

BS EN IEC 62772:2023 Composite Hollow Core Station Post Insulators

Standard Number: BS EN IEC 62772:2023

Pages: 36

Released: 2024-01-08

ISBN: 978 0 539 03737 1

Status: Standard

Overview

Introducing the BS EN IEC 62772:2023, the definitive standard for Composite Hollow Core Station Post Insulators designed for use with alternating current (a.c.) voltages greater than 1,000 V and direct current (d.c.) voltages greater than 1,500 V. This comprehensive document provides essential definitions, test methods, and acceptance criteria to ensure the highest quality and performance of these critical components in electrical systems.

Why Choose BS EN IEC 62772:2023?

In the ever-evolving world of electrical engineering, ensuring the reliability and safety of your components is paramount. The BS EN IEC 62772:2023 standard is meticulously crafted to meet the rigorous demands of modern electrical systems. Here’s why this standard is indispensable:

  • Comprehensive Coverage: Spanning 36 pages, this standard covers all aspects of composite hollow core station post insulators, from definitions to test methods and acceptance criteria.
  • Up-to-Date Information: Released on January 8, 2024, this standard reflects the latest advancements and best practices in the field.
  • Global Relevance: As an internationally recognized standard, BS EN IEC 62772:2023 ensures your products meet global benchmarks for quality and performance.

Key Features

The BS EN IEC 62772:2023 standard is packed with features designed to help you achieve excellence in your electrical systems:

  • Detailed Definitions: Clear and precise definitions of terms related to composite hollow core station post insulators, ensuring a common understanding across the industry.
  • Rigorous Test Methods: Comprehensive test methods to evaluate the performance and reliability of insulators under various conditions, ensuring they meet the highest standards.
  • Acceptance Criteria: Well-defined acceptance criteria to help you determine the suitability of insulators for your specific applications.

Applications

The BS EN IEC 62772:2023 standard is essential for a wide range of applications, including:

  • Power Transmission: Ensuring the reliability and safety of insulators in high-voltage power transmission systems.
  • Substations: Providing guidelines for the use of insulators in electrical substations, where they play a critical role in maintaining system integrity.
  • Renewable Energy: Supporting the integration of renewable energy sources by ensuring the performance of insulators in diverse environmental conditions.

Benefits

Adopting the BS EN IEC 62772:2023 standard offers numerous benefits, including:

  • Enhanced Safety: By adhering to this standard, you can significantly reduce the risk of electrical failures and accidents.
  • Improved Performance: The rigorous test methods and acceptance criteria ensure that your insulators perform optimally under various conditions.
  • Regulatory Compliance: Meeting this internationally recognized standard helps you comply with regulatory requirements and industry best practices.
  • Market Competitiveness: Demonstrating compliance with BS EN IEC 62772:2023 can enhance your reputation and competitiveness in the global market.

Conclusion

In conclusion, the BS EN IEC 62772:2023 standard is an invaluable resource for anyone involved in the design, manufacture, or application of composite hollow core station post insulators. With its comprehensive coverage, up-to-date information, and rigorous test methods, this standard ensures that your insulators meet the highest standards of quality and performance.

Don’t compromise on safety and reliability. Invest in the BS EN IEC 62772:2023 standard and ensure your electrical systems are built to last.

DESCRIPTION

BS EN IEC 62772:2023


This standard BS EN IEC 62772:2023 Composite hollow core station post insulators with a.c. voltage greater than 1 000 V and d.c. voltage greater than 1 500 V. Definitions, test methods and acceptance criteria is classified in these ICS categories:
  • 29.080.10 Insulators
This International Standard applies to composite hollow core station post insulators consisting of a load-bearing insulating tube (core) made of resin impregnated fibres, insulating filler material (solid, liquid, gaseous - pressurized or unpressurized), a housing (outside the insulating tube) made of polymeric material (for example silicone or ethylene-propylene) and fixing devices at the ends of the insulating tube. Composite hollow core station post insulators as defined in this standard are intended for general use in substations in both, outdoor and indoor environments, operating with a rated AC voltage greater than 1 000 V a.c. and a frequency not greater than 100 Hz or for use in direct current systems with a rated voltage greater than 1 500 V.d.c. The object of this standard is: to define the terms used; to prescribe test methods; to prescribe acceptance criteria. All the tests in this standard, apart from the thermal-mechanical test, are performed at normal ambient temperature. This standard does not prescribe tests that are characteristic of the apparatus of which the composite hollow core station post insulator ultimately may form a part (e.g. disconnector switch, reactor support, HVDC valves).