ASTM D7449 D7449M-2014 red 3358 Standard Test Method for Measuring Relative Complex Permittivity and Relative Magnetic Permeability of Solid Materials at Microwave Frequencies Usin.pdf
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1、Designation: D7449/D7449M 081D7449/D7449M 14Standard Test Method forMeasuring Relative Complex Permittivity and RelativeMagnetic Permeability of Solid Materials at MicrowaveFrequencies Using Coaxial Air Line1This standard is issued under the fixed designation D7449/D7449M; the number immediately fol
2、lowing the designation indicates theyear of original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of lastreapproval. A superscript epsilon () indicates an editorial change since the last revision or reapproval.1 NOTEEquation 5 was editor
3、ially updated in March 2012.1. Scope Scope*1.1 This test method covers a procedure for determining relative complex permittivity (relative dielectric constant and loss) andrelative magnetic permeability of isotropic, reciprocal (non-gyromagnetic) solid materials. If the material is nonmagnetic, it i
4、sacceptable to use this procedure to measure permittivity only.1.2 This measurement method is valid over a frequency range of approximately 1 MHz to over 20 GHz. 20 GHz. These limitsare not exact and depend on the size of the specimen, the size of coaxial air line used as a specimen holder, and on t
5、he applicablefrequency range of the network analyzer used to make measurements. The practical lower and upper frequencies are limited byspecimen dimension requirements (large, thick specimens at low frequencies and small specimens at high frequencies). size ofspecimen dimension is limited by test fr
6、equency, intrinsic specimen electromagnetism properties, and the request of algorithm. Fora given air line size, the upper frequency is also limited by the onset of higher order modes that invalidate the dominant-modetransmission line model and the lower frequency is limited by the smallest measurab
7、le phase shift through a specimen. Being anon-resonant method, the selection of any number of discrete measurement frequencies in a measurement band would be suitable.The coaxial fixture is preferred over rectangular waveguide fixtures when broadband data are desired with a single sample or whenonly
8、 small sample volumes are available, particularly for lower frequency measurements1.3 The values stated in either SI units or of in inch-pound units are to be regarded separately as standard. The values statedin each system mayare not benecessarily exact equivalents; therefore,therefore each system
9、shall be used independently of theother. Combining values from the two systems may is likely to result in non-conformance non conformance with the standard. Theequations shown here assume an e+jt harmonic time convention.1.4 This standard does not purport to address all of the safety concerns, if an
10、y, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D1711 Terminology Relating to Electrical Insulation3.
11、 Terminology3.1 For definitions of terms used in this test method, refer to Terminology D1711.3.2 Definitions:3.2.1 relative complex permittivity (relative complex dielectric constant), r*, nthe proportionality factor that relates the electricfield to the electric flux density, and which depends on
12、intrinsic material properties such as molecular polarizability, chargemobility, etc.:and so forth:1 This test method is under the jurisdiction of ASTM Committee D09 on Electrical and Electronic Insulating Materials and is the direct responsibility of SubcommitteeD09.12 on Electrical Tests.Current ed
13、ition approved Nov. 15, 2008Nov. 1, 2014. Published December 2008December 2014. DOI: 10.1520/D7449_D7449M-08E01. Originally approved in 2008. Lastprevious edition approved in 2008 as D7449/D7449M 081. DOI: 10.1520/D7449_D7449M-14.2 For referencedASTM standards, visit theASTM website, www.astm.org, o
14、r contactASTM Customer Service at serviceastm.org. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes ha
15、ve been made to the previous version. Becauseit may not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official do
16、cument.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1r*5r 2jr”5 DW0EW(1)where:0 = permittivity of free spaceDW = electric flux density vector, andEW = electric field v
17、ector.3.2.1.1 DiscussionIn common usage the word “relative” is frequently dropped. The real part of complex relative permittivity (r) is often referred toas simply relative permittivity, permittivity, or dielectric constant. The imaginary part of complex relative permittivity (r”) is oftenreferred t
18、o as the loss factor. In anisotropic media, permittivity is described by a three dimensional tensor. For the purposes of thistest method, the media is considered to be isotropic, and therefore permittivity is a single complex number at each frequency.3.2.2 relative complex permeability, r*, nthe pro
19、portionality factor that relates the magnetic flux density to the magnetic field,and which depends on intrinsic material properties such as magnetic moment, domain magnetization, etc.:and so forth:r*5r 2jr”5 BW0HW(2)where:0 = permeability of free spaceBW = magnetic flux density vector, andHW = magne
20、tic field vector.3.2.2.1 DiscussionIn common usage the word “relative” is frequently dropped. The real part of complex relative permeability (r) is often referredto as relative permeability or simply permeability. The imaginary part of complex relative permeability (r”) is often referred to asthe ma
21、gnetic loss factor. In anisotropic media, permeability is described by a three dimensional tensor. For the purposes of thistest method, the media is considered to be isotropic, and therefore permeability is a single complex number at each frequency.3.3 Definitions of Terms Specific to This Standard:
22、3.3.1 A list of symbols specific to this test method is given in Annex A1.3.3.2 calibration, na procedure for connecting characterized standard devices to the test ports of a network analyzer tocharacterize the measurement systems systematic errors. The effects of the systematic errors are then math
23、ematically removedfrom the indicated measurements. The calibration also establishes the mathematical reference plane for the measurement test ports.3.3.2.1 DiscussionModern network analyzers have this capability built in. There are a variety of calibration kits that can be used depending on thetype
24、of test port. The models used to predict the measurement response of the calibration devices depends on the type of calibrationkit. Most calibration kits come with media that can be used to load the definitions of the calibration devices into the networkanalyzer. Calibration kit definitions loaded i
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