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Homepage>BS Standards>33 TELECOMMUNICATIONS. AUDIO AND VIDEO ENGINEERING>33.180 Fibre optic communications>33.180.01 Fibre optic systems in general>BS EN IEC 61280-1-3:2021 Fibre optic communication subsystem test procedures General communication subsystems. Measurement of central wavelength, spectral width and additional spectral characteristics
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BS EN IEC 61280-1-3:2021 Fibre optic communication subsystem test procedures General communication subsystems. Measurement of central wavelength, spectral width and additional spectral characteristics

BS EN IEC 61280-1-3:2021

Fibre optic communication subsystem test procedures General communication subsystems. Measurement of central wavelength, spectral width and additional spectral characteristics

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Standard number:BS EN IEC 61280-1-3:2021
Pages:28
Released:2021-09-13
ISBN:978 0 539 14076 7
Status:Standard
BS EN IEC 61280-1-3:2021 Fibre Optic Communication Subsystem Test Procedures

BS EN IEC 61280-1-3:2021 Fibre Optic Communication Subsystem Test Procedures

Standard Number: BS EN IEC 61280-1-3:2021

Pages: 28

Released: 2021-09-13

ISBN: 978 0 539 14076 7

Name: Fibre optic communication subsystem test procedures General communication subsystems. Measurement of central wavelength, spectral width and additional spectral characteristics

Status: Standard

Overview

The BS EN IEC 61280-1-3:2021 standard is an essential document for professionals working in the field of fibre optic communication. This comprehensive standard provides detailed procedures for testing general communication subsystems, focusing on the measurement of central wavelength, spectral width, and additional spectral characteristics. Released on September 13, 2021, this 28-page document is a crucial resource for ensuring the accuracy and reliability of fibre optic communication systems.

Key Features

  • Central Wavelength Measurement: This standard outlines precise methods for measuring the central wavelength of fibre optic communication subsystems, ensuring optimal performance and accuracy.
  • Spectral Width Measurement: Detailed procedures for measuring the spectral width are provided, which is critical for assessing the bandwidth and overall performance of the communication system.
  • Additional Spectral Characteristics: The standard also covers the measurement of other important spectral characteristics, providing a comprehensive approach to fibre optic subsystem testing.

Why Choose BS EN IEC 61280-1-3:2021?

Adopting the BS EN IEC 61280-1-3:2021 standard ensures that your fibre optic communication systems are tested to the highest standards. This standard is designed to help you achieve the following:

  • Enhanced Accuracy: By following the detailed procedures outlined in this standard, you can achieve highly accurate measurements of central wavelength, spectral width, and other spectral characteristics.
  • Improved Reliability: Consistent and reliable testing methods help ensure the long-term performance and reliability of your fibre optic communication systems.
  • Compliance: Adhering to this internationally recognized standard helps you meet industry regulations and standards, ensuring your systems are compliant with the latest requirements.

Who Should Use This Standard?

This standard is ideal for a wide range of professionals and organizations involved in the design, testing, and maintenance of fibre optic communication systems, including:

  • Telecommunications Engineers: Ensure your communication systems are performing at their best with accurate and reliable testing methods.
  • Network Designers: Utilize the detailed procedures in this standard to design robust and efficient fibre optic networks.
  • Quality Assurance Teams: Implement consistent testing procedures to maintain high standards of quality and performance in your fibre optic systems.
  • Research and Development Teams: Leverage the comprehensive testing methods to innovate and improve fibre optic communication technologies.

Detailed Content

The BS EN IEC 61280-1-3:2021 standard is meticulously structured to provide clear and detailed guidance on the following aspects:

  • Introduction: An overview of the scope and purpose of the standard, providing context and background information.
  • Measurement Techniques: Step-by-step procedures for measuring central wavelength, spectral width, and additional spectral characteristics.
  • Equipment and Tools: Detailed descriptions of the equipment and tools required for accurate and reliable measurements.
  • Data Analysis: Guidelines for analyzing and interpreting measurement data to ensure accurate results.
  • Best Practices: Recommendations for best practices in fibre optic communication subsystem testing.

Conclusion

The BS EN IEC 61280-1-3:2021 standard is an invaluable resource for anyone involved in the field of fibre optic communication. By providing detailed procedures for measuring central wavelength, spectral width, and additional spectral characteristics, this standard helps ensure the accuracy, reliability, and compliance of your communication systems. Whether you are a telecommunications engineer, network designer, quality assurance professional, or part of a research and development team, this standard is essential for achieving the highest standards of performance and quality in your fibre optic communication systems.

DESCRIPTION

BS EN IEC 61280-1-3:2021


This standard BS EN IEC 61280-1-3:2021 Fibre optic communication subsystem test procedures is classified in these ICS categories:
  • 33.180.01 Fibre optic systems in general

This part of IEC 61280 provides definitions and measurement procedures for several wavelength and spectral width properties of an optical spectrum associated with a fibre optic communication subsystem, an optical transmitter, or other light sources used in the operation or test of communication subsystems. This document also provides definitions and measurement procedures for side-mode suppression ratio and signal-to-source spontaneous emission ratio.

The measurement is done for the purpose of system construction and/or maintenance. In the case of communication subsystem signals, the optical transmitter is typically under modulation.

NOTE Different properties can be appropriate to different spectral types, such as continuous spectra characteristics of light-emitting diodes (LEDs), as well as multilongitudinal-mode (MLM), multitransverse-mode (MTM) and single-longitudinal mode (SLM) spectra, which are characteristic of laser diodes (LDs).