Dual-Mode Characteristics of Half-Mode SIW Rectangular Cavity and Applications to Dual-Band Filters With Widely Separated Passbands

The dual-mode characteristics of the half-mode substrate-integrated rectangular cavity (HMSIRC) are systematically analyzed for the first time and experimentally demonstrated by two planar substrate-integrated waveguide (SIW) dual-band bandpass filters (DBBPFs) with widely separated passbands. The m...

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Veröffentlicht in:IEEE transactions on microwave theory and techniques 2018-11, Vol.66 (11), p.4820-4829
Hauptverfasser: Zhou, Kang, Zhou, Chun-Xia, Wu, Wen
Format: Artikel
Sprache:eng
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Zusammenfassung:The dual-mode characteristics of the half-mode substrate-integrated rectangular cavity (HMSIRC) are systematically analyzed for the first time and experimentally demonstrated by two planar substrate-integrated waveguide (SIW) dual-band bandpass filters (DBBPFs) with widely separated passbands. The mode spectrums in an HMSIRC and their constraint relationships are comprehensively investigated first to explore the realizable frequency ratio of the second mode (TE 301 or TE 102 ) to the first one (TE 101 ). The maximum frequency ratio of 1.63 for TE 301 /TE 101 and 1.72 for TE 102 /TE 101 can be achieved considering the spacing between the second and third resonances. Subsequently, the formulas of determining the physical dimensions of the dual-mode HMSIRC are derived and validated. The factors impacting the unloaded quality factor Q u of the HMSIRC are also discussed and the square single-mode quarter-mode substrate-integrated rectangular cavity has been investigated. Two compact planar SIW DBBPFs, including a third-order direct-coupled one with frequency ratio of 1.5 based on TE 101 and TE 301 dual-mode HMSIRC, and a fourth-order cross-coupled one with frequency ratio of 1.7 based on TE 101 and TE 102 dual-mode HMSIRC, are synthesized and designed for verification.
ISSN:0018-9480
1557-9670
DOI:10.1109/TMTT.2018.2865557