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Homepage>BS Standards>33 TELECOMMUNICATIONS. AUDIO AND VIDEO ENGINEERING>33.180 Fibre optic communications>33.180.20 Fibre optic interconnecting devices>BS EN IEC 61300-3-35:2022 Fibre optic interconnecting devices and passive components. Basic test and measurement procedures Examinations and measurements. Visual inspection of fibre optic connectors and fibre-stub transceivers
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BS EN IEC 61300-3-35:2022 Fibre optic interconnecting devices and passive components. Basic test and measurement procedures Examinations and measurements. Visual inspection of fibre optic connectors and fibre-stub transceivers

BS EN IEC 61300-3-35:2022

Fibre optic interconnecting devices and passive components. Basic test and measurement procedures Examinations and measurements. Visual inspection of fibre optic connectors and fibre-stub transceivers

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Standard number:BS EN IEC 61300-3-35:2022
Pages:32
Released:2022-11-10
ISBN:978 0 539 03188 1
Status:Standard
BS EN IEC 61300-3-35:2022 Fibre Optic Interconnecting Devices and Passive Components

BS EN IEC 61300-3-35:2022 Fibre Optic Interconnecting Devices and Passive Components

Standard Number: BS EN IEC 61300-3-35:2022

Pages: 32

Released: 2022-11-10

ISBN: 978 0 539 03188 1

Name: Fibre optic interconnecting devices and passive components. Basic test and measurement procedures Examinations and measurements. Visual inspection of fibre optic connectors and fibre-stub transceivers

Status: Standard

Overview

The BS EN IEC 61300-3-35:2022 standard is an essential document for professionals working with fibre optic interconnecting devices and passive components. This comprehensive standard outlines the basic test and measurement procedures necessary for the visual inspection of fibre optic connectors and fibre-stub transceivers. Released on November 10, 2022, this 32-page document is a must-have for ensuring the highest quality and reliability in fibre optic systems.

Key Features

  • Comprehensive Guidelines: Provides detailed procedures for the visual inspection of fibre optic connectors and fibre-stub transceivers, ensuring that all components meet the highest standards of quality and performance.
  • Up-to-Date Information: Released in 2022, this standard includes the latest advancements and best practices in the field of fibre optics.
  • Internationally Recognized: As part of the IEC 61300 series, this standard is recognized and respected worldwide, making it a valuable resource for global operations.
  • Easy to Understand: Written in clear, concise language, this standard is accessible to both seasoned professionals and newcomers to the field.

Why You Need This Standard

In the rapidly evolving field of fibre optics, maintaining the highest standards of quality and reliability is crucial. The BS EN IEC 61300-3-35:2022 standard provides the essential guidelines and procedures needed to ensure that your fibre optic connectors and fibre-stub transceivers are performing at their best. By adhering to these standards, you can:

  • Ensure Quality: Regular visual inspections help identify and address potential issues before they become major problems, ensuring the highest quality of your fibre optic systems.
  • Improve Reliability: By following the procedures outlined in this standard, you can enhance the reliability and longevity of your fibre optic components.
  • Stay Competitive: Adhering to internationally recognized standards demonstrates your commitment to quality and can give you a competitive edge in the marketplace.

Detailed Content

This 32-page standard is packed with valuable information, including:

  • Introduction: An overview of the importance of visual inspection in maintaining the quality and reliability of fibre optic systems.
  • Scope: A detailed description of the types of fibre optic connectors and fibre-stub transceivers covered by this standard.
  • Inspection Procedures: Step-by-step guidelines for conducting visual inspections, including the tools and techniques required.
  • Acceptance Criteria: Clear criteria for determining whether a component meets the required standards of quality and performance.
  • Documentation: Guidelines for recording and reporting inspection results, ensuring that all inspections are thoroughly documented.

Who Should Use This Standard?

The BS EN IEC 61300-3-35:2022 standard is an invaluable resource for a wide range of professionals, including:

  • Fibre Optic Technicians: Ensure that all components meet the highest standards of quality and performance.
  • Quality Assurance Professionals: Conduct thorough inspections and maintain detailed records to ensure compliance with industry standards.
  • Engineers: Design and implement fibre optic systems that meet the latest standards and best practices.
  • Manufacturers: Produce high-quality fibre optic components that meet the stringent requirements of this standard.

Conclusion

The BS EN IEC 61300-3-35:2022 standard is an essential tool for anyone involved in the design, production, and maintenance of fibre optic systems. By providing comprehensive guidelines for the visual inspection of fibre optic connectors and fibre-stub transceivers, this standard helps ensure the highest levels of quality and reliability. Whether you are a technician, engineer, quality assurance professional, or manufacturer, this standard is a valuable resource that can help you achieve excellence in your work.

DESCRIPTION

BS EN IEC 61300-3-35:2022


This standard BS EN IEC 61300-3-35:2022 Fibre optic interconnecting devices and passive components. Basic test and measurement procedures is classified in these ICS categories:
  • 33.180.20 Fibre optic interconnecting devices
IEC 61300-3-35:2022 is concerned with the observation and classification of debris, scratches and defects. The inspection requirements are based on IEC TR 62627-05. Advice for cleaning of contamination from fibres/ferrule is found in IEC TR 62627-01 and a recommendation is given in Annex D. IEC TR 62572-4 provides the cleaning method for a stub for optical transceivers. Visual inspection is in addition to, and does not replace measurement of performance parameters such as attenuation and return loss, or end face parameters. The dimensions specified are chosen such that they can be easily estimated. Not only the zones A and B on the fibre are inspected for defects and scratches but the whole contact area (where the two fibres/ferrules meet when mated) needs to be inspected for contamination (this is up to 250 µm diameter for cylindrical ferrules and the whole ferrule surface for rectangular ferrules).The objectives of this document are the following: - specify the minimum criteria for a microscope to be compliant to this document; - specify the procedure and criteria for inspecting fibre-optic end faces for cleanliness to determine if the end faces are fit for use. All connector optical interfaces (IEC 61755 series and IEC 63267 series) are based on physical contact between fibre cores; - provide quantitative criteria for the analysis of end face images. This third edition cancels and replaces the second edition published in 2015. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: - adding of a statement that visual inspection is not a substitute for optical qualification such as attenuation and return loss measurement; - adding of some terms and definitions; - adding requirements for SM 35 dB connectors; - adding of a sentence in Clause 5 concerning the susceptibility of the methods to system variability and variability within systems from same supplier; - removal of inspection requirements for zones C and D; - insertion of a generic cleanliness specification for whole rectangular ferrule and 250 µm area around every fibre; - adding a cleaning recommendation for rectangular and cylindrical ferrules; - outer edge of inspection zone B has changed from 115 µm to 110 µm to meet manufacturing tolerances of fixture for microscopes; - change that defects that are partly in core are only to be judged for the part they are in the core. The remainder of the defect is considered to be located in the cladding. - adding a statement that a connector cannot be rejected by just failing visual inspection. Meeting the specified optical performance determines the use of this connector.