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Research Article

Constant absolute bandwidth third-order tunable bandpass filter with reconfigurable bandwidth using single λ/2 resonator

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Pages 940-963 | Received 06 Apr 2021, Accepted 17 Oct 2021, Published online: 31 Oct 2021

References

  • Tu WH, Chang K. Compact second harmonic-suppressed bandstop and bandpass filters using open stubs. IEEE Trans Microw Theory Tech. 2006;54(6):2497–2502.
  • Chen CF, Lin CY, Weng JH, et al. Compact microstrip broadband filter using multimode stub-loaded resonator. Electron Lett. 2013;49(8):545–546.
  • Cai C, Wang J, Zhu L, et al. A new approach to design microstrip wideband balun bandpass filter. IEEE Microw Wirel Compon Lett. 2016;26(2):116–118.
  • Gao X, Feng W, Che W. Compact ultra-wideband bandpass filter with improved upper stopband using open/shorted stubs. IEEE Microw Wirel Compon Lett. 2017;27(2):123–125.
  • Zhang T, Bao J, Cai Z, et al. A c-band compact wideband bandpass filter with high selectivity and improved return loss. IEEE Microw Wirel Compon Lett. 2018;28(9):777–779.
  • Cheon SJ, Lim SP, Park JY. 3-to 5-ghz ultra-compact bandpass filter with independent transmission zeros using pcb embedding passive technology. IEEE Trans Compon Packaging Manuf Technol. 2012;2(7):1064–1069.
  • Wu QS, Zhu L. Short-ended coupled-line impedance transformers with ultrahigh transforming ratio and bandpass selectivity suitable for large load impedances. IEEE Trans Compon Packaging Manuf Technol. 2016;6(5):767–774.
  • Worapishet A, Srisathit K, Surakampontorn W. Stepped-impedance coupled resonators for implementation of parallel coupled microstrip filters with spurious band suppression. IEEE Trans Microw Theory Tech. 2012;60(6):1540–1548.
  • Tsai HJ, Chen NW, Jeng SK. Reconfigurable bandpass filter with separately relocatable passband edge. IEEE Microw Wirel Compon Lett. 2012;22(11):559–561.
  • Lim T, Anand A, Chen J, et al. Design method for tunable planar bandpass filters with single-bias control and wide tunable frequency range. IEEE Trans Circuits Syst II Express Briefs IEEE. 2020: 68(1): 221-225.
  • Peccarelli N, Fulton C. Adaptive nonlinear equalization of a tunable bandpass filter. IEEE Microw Wirel Compon Lett. 2019;29(2):149–151.
  • Ma Y, Feng W, Che W, et al. Low-loss tunable tri-pole band-pass filter using crossed resonator. J Electromag Waves Appl. 2016;30(2):251–258.
  • Xiang Q, Feng Q, Huang X, et al. Electrical tunable microstrip lc bandpass filters with constant bandwidth. IEEE Trans Microw Theory Tech. 2013;61(3):1124–1130.
  • Lin F, Rais-Zadeh M. Continuously tunable 0.55–1.9-ghz bandpass filter with a constant bandwidth using switchable varactor-tuned resonators. IEEE Trans Microw Theory Tech. 2016;65(3):792–803.
  • Jia D, Feng Q, Huang X, et al. Tunable 3-pole bandpass filter with constant absolute bandwidth and¿ 60 db rejection at desired location of stopband. J Electromag Waves Appl. 2015;29(4):502–513.
  • El-Tanani MA, Rebeiz GM. Corrugated microstrip coupled lines for constant absolute bandwidth tunable filters. IEEE Trans Microw Theory Tech. 2010;58(4):956–963.
  • Athukorala L, Budimir D. Open-loop tunable resonators and filters with constant bandwidth. IET Microw Antennas p. 2012;6(7):800–806.
  • Zhao Z, Chen J, Yang L, et al. Three-pole tunable filters with constant bandwidth using mixed combline and split-ring resonators. IEEE Microw Wirel Compon Lett. 2014;24(10):671–673.
  • Chiou YC, Rebeiz GM. A tunable three-pole 1.5–2.2-ghz bandpass filter with bandwidth and transmission zero control. IEEE Trans Microw Theory Tech. 2011;59(11):2872–2878.
  • Chiou YC, Rebeiz GM. A quasi elliptic function 1.75–2.25 GHz 3-pole bandpass filter with bandwidth control. IEEE Trans Microw Theory Tech. 2012;60(2):244–249.
  • Ni J, Hong J. Varactor-tuned microstrip bandpass filters with different passband characteristics. IET Microw Antennas P. 2013;8(6):415–422.
  • Schuster C, Wiens A, Schmidt F, et al. Performance analysis of reconfigurable bandpass filters with continuously tunable center frequency and bandwidth. IEEE Trans Microw Theory Tech. 2017;65(11):4572–4583.
  • Chen ZH, Chu QX. Wideband fully tunable bandpass filter based on flexibly multi-mode tuning. IEEE Microw Wirel Compon Lett. 2016;26(10):789–791.
  • Mao JR, Choi WW, Tam KW, et al. Tunable bandpass filter design based on external quality factor tuning and multiple mode resonators for wideband applications. IEEE Trans Microw Theory Tech. 2013;61(7):2574–2584.
  • Zhu H, Abbosh A. Compact tunable bandpass filter with wide tuning range of centre frequency and bandwidth using coupled lines and short-ended stubs. IET Microw Antennas P. 2016;10(8):863–870.
  • Pozar DM. Microwave engineering. Hoboken: John Wiley & Sons; 2011.
  • Matthaei GL, Young L, Jones EMT. Microwave filters, impedance-matching networks, and coupling structures. Mountain View, CA: Artech House; 1980.
  • Hong JS. Microstrip filters for rf/microwave applications. Hoboken, NJ: John Wiley & Sons; 2011.
  • Cameron RJ, Kudsia CM, Mansour RR. Microwave filters for communication systems: fundamentals, design, and applications. Hoboken: John Wiley & Sons; 2018.
  • Atia A, Williams A, Newcomb R. Narrow-band multiple-coupled cavity synthesis. IEEE Trans Circuits Syst. 1974;21(5):649–655.
  • Cameron RJ. General coupling matrix synthesis methods for Chebyshev filtering functions. IEEE Trans Microw Theory Tech. 1999;47(4):433–442.
  • Liao CK, Chi PL, Chang CY. Microstrip realization of generalized Chebyshev filters with box-like coupling schemes. IEEE Trans Microw Theory Tech. 2007;55(1):147–153.

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