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Homepage>BS Standards>31 ELECTRONICS>31.180 Printed circuits and boards>BS EN IEC 62496-2-5:2022 Optical circuit boards. Basic test and measurement procedures Flexibility test for flexible opto-electric circuits
immediate downloadReleased: 2023-01-26
BS EN IEC 62496-2-5:2022 Optical circuit boards. Basic test and measurement procedures Flexibility test for flexible opto-electric circuits

BS EN IEC 62496-2-5:2022

Optical circuit boards. Basic test and measurement procedures Flexibility test for flexible opto-electric circuits

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Standard number:BS EN IEC 62496-2-5:2022
Pages:28
Released:2023-01-26
ISBN:978 0 580 99557 6
Status:Standard

BS EN IEC 62496-2-5:2022 Optical Circuit Boards - Basic Test and Measurement Procedures Flexibility Test for Flexible Opto-Electric Circuits

Introducing the BS EN IEC 62496-2-5:2022, a comprehensive guide to the basic test and measurement procedures for the flexibility of flexible opto-electric circuits. This standard is a must-have for professionals in the field of optical circuit board design and manufacturing. It provides a clear and concise methodology for testing the flexibility of opto-electric circuits, ensuring the highest quality and performance of your products.

Released on January 26, 2023, this standard is the latest in the series, reflecting the most recent advancements and innovations in the field. With a total of 28 pages, it offers a thorough exploration of the subject, making it an invaluable resource for both beginners and seasoned professionals.

Key Features

The BS EN IEC 62496-2-5:2022 standard is packed with essential features that make it a standout in the industry. Here are some of the key features:

  • Comprehensive Coverage: The standard covers all aspects of flexibility testing for flexible opto-electric circuits, providing a complete understanding of the process.
  • Up-to-Date Information: As a 2023 release, this standard includes the latest industry trends and technological advancements, ensuring you stay ahead of the curve.
  • Easy to Understand: The standard is written in clear, concise language, making it easy to understand even for those new to the field.
  • Highly Detailed: With 28 pages of content, this standard offers a deep dive into the subject, providing all the information you need in one place.

Why Choose BS EN IEC 62496-2-5:2022?

Choosing the BS EN IEC 62496-2-5:2022 standard means choosing a commitment to quality and excellence. This standard is recognized and respected worldwide, making it a trusted resource for professionals in the field. Whether you're a manufacturer, a designer, or a quality control specialist, this standard will provide you with the knowledge and tools you need to ensure the flexibility and durability of your opto-electric circuits.

Moreover, the standard comes with an ISBN number 978 0 580 99557 6, ensuring its authenticity and credibility. It's not just a standard; it's a testament to your dedication to delivering the best in the industry.

Conclusion

In a rapidly evolving field like opto-electric circuit design and manufacturing, staying updated with the latest standards is crucial. The BS EN IEC 62496-2-5:2022 standard offers a comprehensive, up-to-date guide to flexibility testing for flexible opto-electric circuits, making it an essential resource for professionals in the field. Don't compromise on quality. Choose the BS EN IEC 62496-2-5:2022 standard today.

DESCRIPTION

BS EN IEC 62496-2-5:2022


This standard BS EN IEC 62496-2-5:2022 Optical circuit boards. Basic test and measurement procedures is classified in these ICS categories:
  • 31.180 Printed circuits and boards
  • 33.180.01 Fibre optic systems in general
This part of IEC 62496-2 defines a test method for folding flexibility inspection of flexible opto-electric circuits with a MIT folding endurance tester and presents a guideline for a step stress test method for finding the predetermined minimum mechanical folding radii below which the flexible opto-electric circuits can be damaged by intended folding distortion. Here, test samples are used instead of products for the flexibility test of their flexible opto-electric circuits, and the test samples have the same layer structure as the products.