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Main page>BSI Standards >33 TELECOMMUNICATIONS. AUDIO AND VIDEO ENGINEERING>33.180 Fibre optic communications>33.180.10 Fibres and cables>BS EN IEC 60794-1-117:2026 Optical fibre cables Generic specification. Basic optical cable test procedures. Mechanical tests methods. Bending stiffness, method E17
immediate downloadReleased: 2026-07-07
BS EN IEC 60794-1-117:2026 Optical fibre cables Generic specification. Basic optical cable test procedures. Mechanical tests methods. Bending stiffness, method E17

BS EN IEC 60794-1-117:2026

Optical fibre cables Generic specification. Basic optical cable test procedures. Mechanical tests methods. Bending stiffness, method E17

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Standard number:BS EN IEC 60794-1-117:2026
Pages:18
Released:2026-07-07
ISBN:978 0 539 30535 7
Status:Standard
DESCRIPTION

BS EN IEC 60794-1-117:2026


This standard BS EN IEC 60794-1-117:2026 Optical fibre cables is classified in these ICS categories:
  • 33.180.10 Fibres and cables

BS EN IEC 60794-1-117:2026 Optical Fibre Cables Standard

BS EN IEC 60794-1-117:2026 Optical Fibre Cables Generic Specification

Welcome to the comprehensive guide on the BS EN IEC 60794-1-117:2026 standard, a pivotal document for professionals in the field of optical fibre cables. This standard is an essential resource for understanding the basic optical cable test procedures, specifically focusing on mechanical test methods and bending stiffness, known as method E17.

Overview

The BS EN IEC 60794-1-117:2026 standard is a crucial document for anyone involved in the design, testing, and implementation of optical fibre cables. Released on July 7, 2026, this standard provides a detailed framework for conducting mechanical tests on optical cables, ensuring they meet the necessary quality and performance criteria.

Key Features

  • Standard Number: BS EN IEC 60794-1-117:2026
  • Pages: 18
  • ISBN: 978 0 539 30535 7
  • Status: Standard

Detailed Description

This standard is part of a series that provides generic specifications for optical fibre cables. It focuses on the basic optical cable test procedures, with a particular emphasis on mechanical test methods. The method E17, which is the core of this document, addresses the bending stiffness of optical cables. This is a critical parameter that affects the performance and durability of optical fibre installations.

The document spans 18 pages, offering a thorough exploration of the methodologies and criteria for testing bending stiffness. This ensures that optical cables can withstand the mechanical stresses they encounter during installation and operation, thereby maintaining their integrity and performance over time.

Importance of Bending Stiffness

Bending stiffness is a vital characteristic of optical fibre cables. It determines how well a cable can resist bending forces, which is crucial for maintaining signal integrity and preventing damage during installation. The method E17 outlined in this standard provides a systematic approach to measuring and evaluating this property, ensuring that cables meet the required standards for performance and reliability.

Who Should Use This Standard?

This standard is indispensable for:

  • Engineers and designers involved in the development of optical fibre cables.
  • Quality assurance professionals responsible for testing and certifying cable performance.
  • Installation technicians who need to understand the mechanical properties of the cables they work with.
  • Manufacturers seeking to ensure their products meet international standards.

Benefits of Compliance

Adhering to the BS EN IEC 60794-1-117:2026 standard ensures that optical fibre cables are tested to the highest international benchmarks. This compliance guarantees:

  • Enhanced reliability and performance of optical fibre installations.
  • Reduced risk of cable failure due to mechanical stress.
  • Increased customer confidence in the quality of the product.
  • Alignment with global standards, facilitating international trade and cooperation.

Conclusion

The BS EN IEC 60794-1-117:2026 standard is an essential tool for anyone involved in the optical fibre cable industry. By providing a clear and detailed methodology for testing bending stiffness, it helps ensure that cables are robust, reliable, and ready to meet the demands of modern communication networks. Whether you are a manufacturer, engineer, or technician, this standard is a valuable resource for ensuring the quality and performance of your optical fibre products.