• There are no items in your cart

EN IEC 61726:2022

Current

Current

The latest, up-to-date edition.

Cable assemblies, cables, connectors and passive microwave components - Screening attenuation measurement by the reverberation chamber method

Published date

16-09-2022

This standard describes the measurement of screening attenuation by the reverberation chamber measurement method, also called mode stirred chamber method.This standard is applicable to screening attenuation measurements of cable assemblies, cables, connectors, and passive microwave components, such as waveguides, phase shifters, diplexers/multiplexers, power dividers/combiners and etc.Modern electronic equipments have shown a demand for methods for testing screening attenuation performance of microwave components over their whole frequency range. Convenient measurement methods have existed for lower frequencies and components of regular shape. These measurement methods are described in IEC 62153 series standards. For much higher frequencies and for components of irregular shape, the reverberation chamber method should be used. Theoretically, the reverberation chamber method has no upper limit of the measurement frequency, but it is limited by the quality and sensitivity of the measurement system, and the lower limit of the measurement frequency is restricted by the size of the reverberation chamber.

Committee
CLC/TC 46X
DocumentType
Standard
PublisherName
European Committee for Standards - Electrical
Status
Current

Standards Relationship
PN-EN IEC 61726:2023-04 Identical
NF EN IEC 61726:2022 Identical
UNE-EN IEC 61726:2022 Identical
DIN EN IEC 61726:2024-04 Identical
VDE 0887-726:2024-04 Identical
OVE EN IEC 61726:2024 05 01 Identical

View more information
Sorry this product is not available in your region.

Access your standards online with a subscription

Features

  • Simple online access to standards, technical information and regulations.

  • Critical updates of standards and customisable alerts and notifications.

  • Multi-user online standards collection: secure, flexible and cost effective.