DocumentCode
1099265
Title
Measurement of Resistance and Impedances at High Frequencies
Author
Labus, J.W.
Author_Institution
General Electric Company, Schenectady, N.Y.
Volume
19
Issue
3
fYear
1931
fDate
3/1/1931 12:00:00 AM
Firstpage
452
Lastpage
460
Abstract
It is well known that the resistance of a conductor increases with frequency. At very high frequencies the usual method of measurement fail, especially if the unknown resistance is more than about one hundred ohms. In the following it is shown that the absolute value of the unknown impedance, when put across the end of a transmission line, is a simple function of the ratio of the currents, measured at the beginning and the end of a transmission line. This method has been tested out at a wavelength of 21.8 meters, measuring the resistance of a number of grid leaks and of a decade box. The a-c resistance was considerably higher than the labeled d-c value. At the same time, the shunted capacity across the resistors has been measured and valutes have been obtained, which agree with expectations. In general, this method lends itself to measurement of impedances of any kind; but it only gives the absolute value of the unknown impedance. However, by means of a known capacity or resistance, connected in series or in parallel with the impedance to be determined, the phase of the latter and, therefore, its real and imaginary components are found. At frequencies corresponding to wavelengths longer than 100 meters the line becomes rather long. In this case another method, as described in the second part of this paper, can be applied.
Keywords
Conductors; Current measurement; Electrical resistance measurement; Frequency measurement; Impedance measurement; Resistors; Testing; Time measurement; Transmission line measurements; Wavelength measurement;
fLanguage
English
Journal_Title
Radio Engineers, Proceedings of the Institute of
Publisher
ieee
ISSN
0731-5996
Type
jour
DOI
10.1109/JRPROC.1931.222340
Filename
1670933
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