DocumentCode
1334441
Title
Mode conversion and design consideration of integrated nonradiative dielectric (NRD) components and discontinuities
Author
Boone, François ; Wu, Ke
Author_Institution
Dept. de Genie Electr., Ecole Polytech. de Montreal, Que., Canada
Volume
48
Issue
4
fYear
2000
fDate
4/1/2000 12:00:00 AM
Firstpage
482
Lastpage
492
Abstract
In this paper, a class of nonradiative dielectric (NRD)-guide discontinuities is studied toward the establishment of design rules of NRD-guide circuits and components for millimeter-wave applications. A mode-matching technique with a multimodal transverse resonance condition is formulated to derive a generalized scattering matrix that allows accounting for effects of higher order modes and intermode coupling. Transmission properties of an NRD structure featuring a multilayered dielectric in cross section are presented. Mode conversion and power transfer among principal NRD-guide modes are, in particular, characterized for design consideration of NRD-guide components and circuits. New sets of easy-to-use design curves are introduced, thereby allowing practitioners to choose appropriate dielectric materials and NRD-guide topologies. Equivalent-circuit models are extracted from the generalized S-matrix for some basic and practically useful discontinuities involved in the design of almost every NRD-guide component, which include open ends, junctions, steps, and gaps. Calculated results of the selected structures are found to be in a good agreement with measurements. Dispersion diagrams of periodic NRD structures are also given in this paper
Keywords
S-matrix theory; equivalent circuits; mode matching; nonradiative dielectric waveguides; waveguide components; waveguide discontinuities; waveguide theory; design; dispersion diagram; equivalent circuit model; generalized scattering matrix; integrated NRD-guide component; millimeter-wave circuit; mode conversion; mode coupling; mode matching; multilayered dielectric; multimodal transverse resonance; nonradiative dielectric guide discontinuity; periodic structure; power transfer; Circuit synthesis; Coupling circuits; Dielectric losses; Millimeter wave circuits; Millimeter wave integrated circuits; Millimeter wave technology; Propagation losses; Resonance; Scattering; Waveguide discontinuities;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.842018
Filename
842018
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