DocumentCode
798025
Title
Insertion loss of magnetostatic-surface wave transducers $transmission-line model and experiment
Author
Freire, Manuel J. ; Marqués, Ricardo ; Medina, Francisco
Author_Institution
Microwave Group, Univ. of Seville, Spain
Volume
51
Issue
10
fYear
2003
Firstpage
2126
Lastpage
2132
Abstract
In this paper, a transmission-line model is developed for the computation of the insertion loss of magnetostatic-surface wave transducers and measurements are carried out by the authors to check this model. In a first step of the analysis, closed-form expressions for the solution of the telegrapher´s equations for the two microstrip transducers are obtained. The insertion loss is then derived from this solution as a function of three transmission-line parameters, i.e., the propagation constant and the characteristic impedance of the YIG-loaded microstrip line and the mutual inductance between the two microstrips, these quantities being, in general, complex. In a second step, these transmission-line parameters are numerically computed by applying a full-wave method-of-moments technique. Thus, the theoretical results obtained are found to be in good agreement with experimental results.
Keywords
current distribution; electric impedance; inductance; magnetic microwave devices; magnetostatic surface waves; magnetostatic wave devices; method of moments; microstrip components; transducers; transmission line theory; YFe5O12; YIG; YIG-loaded microstrip line; characteristic impedance; closed-form expressions; full-wave method-of-moments technique; insertion loss; leakage; magnetostatic-surface wave transducers; microstrip transducers; mutual inductance; propagation constant; telegrapher´s equations; transmission-line model; transmission-line parameters; Closed-form solution; Insertion loss; Loss measurement; Magnetic analysis; Magnetic losses; Magnetostatic waves; Microstrip; Propagation losses; Transducers; Transmission lines;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2003.817440
Filename
1234754
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