BS EN IEC 61280-1-4:2023
Fibre optic communication subsystem test procedures General communication subsystems. Light source encircled flux measurement method
Standard number: | BS EN IEC 61280-1-4:2023 |
Pages: | 34 |
Released: | 2023-03-02 |
ISBN: | 978 0 539 17938 5 |
Status: | Standard |
BS EN IEC 61280-1-4:2023 Fibre Optic Communication Subsystem Test Procedures - General Communication Subsystems. Light Source Encircled Flux Measurement Method
Introducing the BS EN IEC 61280-1-4:2023, a comprehensive guide to fibre optic communication subsystem test procedures. This standard is a must-have for professionals in the field of fibre optic communication, providing a detailed methodology for light source encircled flux measurement. With its release in 2023, it represents the most up-to-date and relevant information in the industry.
Key Features
The BS EN IEC 61280-1-4:2023 standard spans a total of 34 pages, each packed with valuable information and guidelines. It is meticulously organized and easy to navigate, making it a user-friendly resource for both seasoned professionals and those new to the field.
One of the key features of this standard is its focus on light source encircled flux measurement methods. This is a critical aspect of fibre optic communication subsystems, and this standard provides a thorough and detailed approach to it. With this standard in hand, you can ensure that your systems are operating at their best and that you are utilizing the most effective and efficient methods available.
Relevance and Application
The BS EN IEC 61280-1-4:2023 standard is applicable to a wide range of scenarios and settings. Whether you are working in a large-scale industrial setting, a small tech startup, or even in academic research, this standard can provide invaluable guidance. It is designed to be universally applicable, making it a versatile and essential tool for anyone working with fibre optic communication subsystems.
Quality and Credibility
As a product of the International Electrotechnical Commission (IEC), the BS EN IEC 61280-1-4:2023 standard carries with it a high level of credibility and authority. The IEC is a leading global organization that develops and publishes international standards for all electrical, electronic and related technologies. This standard is a testament to their commitment to quality and excellence.
The standard is also recognized and endorsed by the British Standards Institution (BSI), further enhancing its credibility and reliability. With the ISBN 978 0 539 17938 5, you can be assured of its authenticity and quality.
Conclusion
In the fast-paced and ever-evolving field of fibre optic communication, staying up-to-date with the latest standards and best practices is crucial. The BS EN IEC 61280-1-4:2023 standard provides a comprehensive and detailed guide to fibre optic communication subsystem test procedures, making it an indispensable resource for professionals in the field.
Don't miss out on this opportunity to enhance your knowledge and skills. Invest in the BS EN IEC 61280-1-4:2023 standard today and take your fibre optic communication subsystems to the next level.
BS EN IEC 61280-1-4:2023
This standard BS EN IEC 61280-1-4:2023 Fibre optic communication subsystem test procedures is classified in these ICS categories:
- 33.180.01 Fibre optic systems in general
IEC 61280-1-4:2023 establishes the characterization process of the encircled flux measurement method of light sources intended to be used with multimode fibre. This document sets forth a procedure for the collection of two-dimensional fibre optic nearfield greyscale data and subsequent reduction to one-dimensional data expressed as a set of three sampled parametric functions of radius from the fibre’s optical centre. Estimation of the fibre core diameter is not an objective of this document. This third edition cancels and replaces the second edition published in 2009. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: - improvement of calibration procedure and calibration traceability; - improvement of fibre shaker description and requirements; - addition of pulsed light sources; - removal of a poorly traceable calibration process using a micro positioner.