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Research Article

Design of a compact quint-band bandpass filter using a symmetric dual-mode λ/4 resonator and a pair of inverted F-shaped resonators

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Pages 2289-2304 | Received 29 Oct 2021, Accepted 20 Apr 2022, Published online: 23 May 2022

References

  • Chen FC, Chu QX. Design of compact tri-band bandpass filters using assembled resonators. IEEE Trans Microw Theory Techn. 2009;57(1):165–171. doi:10.1109/TMTT.2008.2008963
  • Chen BJ, Shen TM, Wu RB. Design of tri-band filters with improved band allocation. IEEE Trans Microw Theory Techn. 2009; 57:1790- 1797.
  • Chen XP, Wu K, Li ZL. Dual-band and triple-band substrate integrated waveguide filters with chebyshev and quasi-elliptic responses. IEEE Trans Microw Theory Techn. 2007;55(12):2569–2578.
  • Wu HW, Chen GS, Chen YW. New compact triple-passband bandpass filter using multipath-embedded stepped impedance resonators. IEEE Microw Wireless Compon Lett. 2014;24:158–160.
  • Yan TF, Tang XH, Wang JF. A novel quad-band bandpass filter using short stub loaded E-shaped resonators. IEEE Microw Wireless Compon Lett. 2015;25:508–510.
  • Zhang S, Zhu L. Synthesis design of dual-band bandpass filters with λ/4 stepped-impedance resonators. IEEE Trans Microw Theory Techn. 2013;61:1812–1819.
  • Sun SJ, Su T, Deng K, et al. Shorted-ended stepped-impedance dual-resonance resonator and its application to bandpass filters. IEEE Trans Microw Theory Techn. 2013;61(9):3209–3215.
  • Hsu KW, Tu WH. Sharp-rejection quad-band bandpass filter using meandering structure. Electron Lett. 2012;48(15):935–937.
  • Ren B, Ma Z, Liu H, et al. Miniature dual-band bandpass filter using modified quarter-wavelength SIRs with controllable passbands. Electron Lett. 2019;55(1):38–40.
  • Lee CH, Hsu CIG, Jhuang HK. Design of a new tri-band microstrip BPF using combined quarter-wavelength SIRs. IEEE Microw Wireless Compon Lett. 2006;16(11):594–596.
  • Chen WY, Weng MH, Chang SJ. A new tri-band bandpass filter based on stub-loaded step-impedance resonator. IEEE Microw Wireless Compon Lett. 2012;22(4):179–181.
  • Kumar N, Singh YK. Compact tri-band bandpass filter using three stub-loaded open-loop resonator with wide stopband and improved bandwidth response. Electron Lett. 2014;50(25):1950–1952.
  • Xu J, Ji YX, Miao C, et al. Compact single-/dual-wideband BPF using stubs loaded SIR (SsLSIR). IEEE Microw Wireless Compon Lett. 2013;23(7):338–340.
  • Xu J, Wu W, Miao C. Compact microstrip dual-/tri-/quad-band bandpass filter using open stubs loaded shorted stepped-impedance resonator. IEEE Trans Microw Theory Techn. 2013;61(9):3187–3199.
  • Liu H, Ren B, Guan X, et al. Quad-band high-temperature superconducting bandpass filter using quadruple-mode squarering loaded resonator. IEEE Trans Microw Theory Techn. 2014;62(12):2931–2941.
  • Wu JY, Tu WH. Design of quad-band bandpass filter with multiple transmission zeros. Electron Lett. 2011;47(8):502–503.
  • Sun S. A dual-band bandpass filter using a single dual-mode ring resonator. IEEE Microw Wireless Compon Lett. 2011;21(6):298–300.
  • Shi J, Lin L, Chen JX, et al. Dual-band bandpass filter with wide stopband using one stepped-impedance ring resonator with shorted stubs. IEEE Microw Wireless Compon Lett. 2014;24(7):442–444.
  • Luo S, Zhu L, Sun S. Compact dual-mode triple-band bandpass filters using three pairs of degenerate modes in a ring resonator. IEEE Trans Microw Theory Techn. 2011;59(5):1222–1229.
  • Tu WH, Hsu KW. Design of sext-band bandpass filter and sextaplexer using semilumped resonators for system in a package. IEEE Trans Compon Packag Manuf Technol. 2015;5(2):265–273.
  • Li YC, Wong H, Xue Q. Dual-mode dual-band filter based on a stub-loaded patch resonator. IEEE Microw Wireless Compon Lett. 2011;21(10):525–527.
  • Xu J, Wu W, Miao C. Compact and sharp skirts microstrip dual-mode dual-band bandpass filter using a single quadruple-mode resonator. IEEE Trans Microw Theory Techn. 2013;61(3):1104–1113.
  • Liu H, Ren B, Guan X, et al. Compact dual-band bandpass filter using quadruple-mode square ring loaded resonator (SRLR). IEEE Microw Wireless Compon Lett. 2013;23(4):181–183.
  • Gao L, Zhang XY. High-selectivity dual-band bandpass filter using a quad-mode resonator with source-load coupling. IEEE Microw Wireless Compon Lett. 2013;23(9):474–476.
  • Xu J, Miao C, Cui L, et al. Compact high isolation quad-band bandpass filter using quad-mode resonator. Electron Lett. 2012;48:28–30.
  • Ren B, Liu H, Ma Z, et al. Compact dual-band differential bandpass filter using quadruple-mode stepped-impedance square ring loaded resonators. IEEE Access. 2018;6:21850–21858.
  • Hsu KW, Tu WH. Design of a novel four-band microstrip bandpass filter using double-layered substrate. IEEE MTT-S Int Microw Symp Dig. 2009: 1041–1044.
  • Wei F, Huang QL, Li WT, et al. A compact quad-band bandpass filter using novel stub loaded SIR structure. Microw Opt Technol Lett. 2014;56(3):538–542.
  • Wei F, Qin PY, Guo YJ, et al. Design of multi-band bandpass filters based on stub loaded stepped-impedance resonator with defected microstrip structure. IET Microw Antennas Propag. 2016;10(2):230–236.
  • Chen CF. Design of a compact microstrip quint-band filter based on the tri-mode stub-loaded stepped-impedance resonators. IEEE Microw Wireless Compon Lett. 2012;22(7):357–359.
  • Hsu KW, Lin JH, Tu WH. Compact sext-band bandpass filter with sharp rejection response. IEEE Microw Wireless Compon Lett. 2014;24(9):593–595.
  • Xu J, Wu W, Wei G. Compact multi-band bandpass filters with mixed electric and magnetic coupling using multiple-mode resonator. IEEE Trans Microw Theory Techn. 2015;63(12):3909–3919.

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