IEC 62562:2010

IEC 62562:2010

February 2010
International standard Current

Cavity resonator method to measure the complex permittivity of low-loss dielectric plates

IEC 62562:2010 describes a measurement method of dielectric properties in the planar direction of dielectric plate at microwave frequency, called a cavity resonator method. It has been created in order to develop new materials and to design microwave active and passive devices for which standardization of measurement methods of material properties is more and more important. This first edition cancels and replaces the PAS published in 2008. This bilingual version, published in 2010-05, corresponds to the English version.This publication contains colours which are considered to be useful for the correct understanding of its contents.

Main informations

Collections

International IEC standards

Publication date

February 2010

Number of pages

20 p.

Reference

IEC 62562:2010

Print number

1 - 04/03/2010
Sumary
Cavity resonator method to measure the complex permittivity of low-loss dielectric plates

IEC 62562:2010 describes a measurement method of dielectric properties in the planar direction of dielectric plate at microwave frequency, called a cavity resonator method. It has been created in order to develop new materials and to design microwave active and passive devices for which standardization of measurement methods of material properties is more and more important. This first edition cancels and replaces the PAS published in 2008. This bilingual version, published in 2010-05, corresponds to the English version.

This publication contains colours which are considered to be useful for the correct understanding of its contents.
Replaced standards (1)
IEC PAS 62562:2008
January 2008
Publicly available specification Cancelled
Cavity resonator method to measure the complex permittivity of low-loss dielectric plates

Describes the measurement method of dielectric properties in the planer direction of dielectric plate at microwave frequency in order to develop new materials and to design microwave active and passive devices. This method is called a cavity resonator method.

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