• DocumentCode
    61579
  • Title

    Electric Coupling Structure of Substrate Integrated Waveguide (SIW) for the Application of 140-GHz Bandpass Filter on LTCC

  • Author

    Sai Wai Wong ; Kai Wang ; Zhi-Ning Chen ; Qing-Xin Chu

  • Author_Institution
    Sch. of Electron. & Inf. Eng., South China Univ. of Technol., Guangzhou, China
  • Volume
    4
  • Issue
    2
  • fYear
    2014
  • fDate
    Feb. 2014
  • Firstpage
    316
  • Lastpage
    322
  • Abstract
    Millimeter-wave (mmW) bandpass filters (BPFs) using substrate integrated waveguide (SIW) are proposed in this paper. The propagation constants of two different types of electromagnetic bandgap (EBG) units are discussed and compared for their passbands and stopbands performance. In among, the slotted-SIW unit shows a very good lower and upper-stopband performance. The mmW BPF with three cascaded uniform slotted-SIW-based EBG units is constructed and designed at 40-GHz. This EBG filter exhibits good out-of-band performance. To further improve the in-band performance, a third-order mmW BPF with nonuniformly cascaded slotted-SIW unit is designed at 140 GHz. The filter is investigated with the theory of electric coupling mechanism. The extracted coupling coefficient (K) and quality factor (Q) are used to determine the filter circuit dimensions. To prove the validity, the two proposed structures are fabricated in a single-circuit layer using low temperature co-fired ceramic technology and measured at 40 and 140 GHz, respectively. The measured results are in good agreement with the simulated results in such high frequency. The measured insertion losses at 40 GHz and 140 GHz are 0.72 and 1.913 dB, respectively.
  • Keywords
    Q-factor; band-pass filters; ceramic packaging; millimetre wave filters; photonic band gap; substrate integrated waveguides; EBG filter; LTCC; SIW; bandpass filter; coupling coefficient; electric coupling structure; electromagnetic bandgap unit; filter circuit dimensions; frequency 140 GHz; frequency 40 GHz; loss 0.72 dB; loss 1.913 dB; low temperature co-fired ceramic technology; millimeter-wave filters; propagation constants; quality factor; substrate integrated waveguide; third order mmW BPF; Band-pass filters; Cavity resonators; Couplings; Frequency measurement; Metamaterials; Passband; Periodic structures; 140 GHz; bandpass filter (BPF); electromagnetic bandgap (EBG); low temperature co-fired ceramic (LTCC); millimeter-wave (mmW); substrate integrated waveguide (SIW);
  • fLanguage
    English
  • Journal_Title
    Components, Packaging and Manufacturing Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    2156-3950
  • Type

    jour

  • DOI
    10.1109/TCPMT.2013.2285388
  • Filename
    6644267