1944Journal of Applied PhysicsRequires access

Single- and Double-Stub Impedance Matching

Alexander H. Wing, J. C. Eisenstein

Open publisher page 8 citations

Abstract

Single- and double-stub impedance matching on transmission-line feeders are described. Formulae determining the position and the length of a single matching stub for any load impedance or any observed standing-wave voltage distribution are derived, neglecting losses in the matching sections. Conditions for minimum length of stub and minimum distance between load and stub are specified. For the double-stub arrangement, expressions for the lengths of and distance between stubs are derived for any possible combination of load and distance between stubs. A double-stub tuner with any fixed distance between stubs cannot match all loads to the feeder, and the limits are specified. The optimum location on the feeder of the double-stub tuner is discussed. A graphical method employing a circle diagram for computing the lengths and position of the stubs is explained. The graphical determination of the stub lengths of the double-stub tuner is facilitated by auxiliary circular loci which also indicate the range of admittances over which an impedance match may be effected.

About this research paper

What this paper is about

Single- and double-stub impedance matching on transmission-line feeders are described. Formulae determining the position and the length of a single matching stub for any load impedance or any observed standing-wave voltage distribution are derived, neglecting losses in the matching sections. Conditions for minimum length of stub and minimum distance between load and stub are specified. For the double-stub arrangement, expressions for the lengths of and distance between stubs are derived for any possible combination of load and distance between stubs. A double-stub tuner with any fixed distance between stubs cannot match all loads to the feeder, and the limits are specified. The optimum location on the feeder of the double-stub tuner is discussed. A graphical method employing a circle diagram for computing the lengths and position of the stubs is explained. The graphical determination of the stub lengths of the double-stub tuner is facilitated by auxiliary circular loci which also indicate the range of admittances over which an impedance match may be effected.

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Single- and double-stub impedance matching on transmission-line feeders are described. Formulae determining the position and the length of a single matching stub for any load impedance or any observed standing-wave voltage distribution are derived, neglecting losses in the matching sections. Conditions for minimum length of stub and minimum distance between load and stub are specified. For the double-stub arrangement, expressions for the lengths of and distance between stubs are derived for any possible combination of load and distance between stubs. A double-stub tuner with any fixed distance between stubs cannot match all loads to the feeder, and the limits are specified. The optimum location on the feeder of the double-stub tuner is discussed. A graphical method employing a circle diagram for computing the lengths and position of the stubs is explained. The graphical determination of the stub lengths of the double-stub tuner is facilitated by auxiliary circular loci which also indicate the range of admittances over which an impedance match may be effected.

Key concepts: Stub (electronics), Tuner, Electrical impedance, Impedance matching, Physics, Acoustics, Electronic engineering, Electrical engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Single- and Double-Stub Impedance Matching — Research Paper | ScholarLens