• DocumentCode
    1474866
  • Title

    Transverse resonance, standing wave, and resonator formulations of the ridge waveguide eigenvalue problem and its application to the design of E-plane finned waveguide filters

  • Author

    Bornemann, Jeans ; Arndt, Fritz

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Victoria Univ., BC, Canada
  • Volume
    38
  • Issue
    8
  • fYear
    1990
  • Firstpage
    1104
  • Lastpage
    1113
  • Abstract
    An accurate computer-aided design of compact, low-cost, low-insertion-loss evanescent-mode waveguide bandpass filters with bilateral metallic E-plane fins is presented. The rigorous field distribution of the ridge waveguide eigenmodes is applied to the design. The design theory takes into account the influences of both the finite fin thickness and the higher-order mode interaction at all discontinuities. The numerical advantage of the transverse resonance method for solving the related cross-sectional eigenvalue problem is demonstrated for the design of quasi-high-pass and bandpass filters of different ridge gap widths and is compared with the classical standing wave and resonator mode-matching techniques. Computer-optimized design data are given for filters with passbands in X-band (8-12 GHz) and E-band (60-90 GHz), which achieve high skirt selectivity and wide stopband. The theory is verified by measurements.<>
  • Keywords
    band-pass filters; circuit CAD; eigenvalues and eigenfunctions; microwave filters; resonators; waveguide components; 60 to 90 GHz; 8 to 12 GHz; E-band; E-plane finned waveguide filters; X-band; bandpass filters; computer-aided design; eigenvalue problem; evanescent-mode waveguide bandpass filters; finite fin thickness; higher-order mode interaction; resonator formulations; ridge gap widths; ridge waveguide; rigorous field distribution; skirt selectivity; standing wave; stopband; transverse resonance method; Application software; Band pass filters; Distributed computing; Eigenvalues and eigenfunctions; Low pass filters; Microwave filters; Resonance; Resonator filters; Waveguide discontinuities; Waveguide theory;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/22.57337
  • Filename
    57337