284
Views
3
CrossRef citations to date
0
Altmetric
Research Article

A reconfigurable dual-band bandpass filter using memristive switches

, , &
Pages 115-130 | Received 05 Jan 2021, Accepted 17 Jul 2021, Published online: 26 Jul 2021

References

  • Pradhan B, Gupta B. Ka-band tunable filter using metamaterials and RF MEMS varactors. J Microelectromech Syst. 2015 Oct;24(5):1453–1461.
  • Pelliccia L, Cacciamani F, Farinelli P, et al. High-Q tunable waveguide filters using Ωic RF MEMS switches. IEEE Trans Microw Theory. 2015 Oct;63(10):3381–3390.
  • Fouladi S, Huang F, Yan WD, et al. High-Q narrowband tunable combine bandpass filters using MEMS capacitor banks and piezomotors. IEEE Trans Microw Theory. 2013 Jan;61(1):393–402.
  • Kalkur TS, Mansour A. Tunable and switchable resonators and filters based on ferroelectric BST thin films for wireless communications. International Symposium on Joint IEEE International Symposium on the Applications of Ferroelectric. 2015: Singapore; p. 5–8.
  • Jiang H, Lacroxi B, Choi K, et al. Ka- and U-band tunable bandpass filters using ferroelectric capacitors. IEEE Trans Microw Theory. 2011 Dec;59(12):3068–3075.
  • Scarbrough D, Psychogiou D, Peroulis D, et al. Low-loss, broadly-tunable cavity filter operating at UHF frequencies. 2015 IEEE MTT-S International Microwave Symposium. 2015: Phoenix; p. 1–4.
  • Liu B, Wei F, Shi X. Reconfigurable bandpass filter based onnet-type stepped-impedance resonator. Electron Lett. 2010 Feb;46(22):1506–1507.
  • Xiang Q, Feng Q, Huang X, et al. A 2.285–3.195 GHz electrical tunable bandstop filter with constant absolute bandwidth. 2014 IEEE International Wireless Symposium (IWS). 2014: Xian; p. 1–4.
  • Cho YH, Rebeiz GM. Tunable 4-pole noncontiguous 0.7–2.1-GHz bandpass filters based on dual zero-value couplings. IEEE Trans Microw Theory. 2015 May;63(5):1579–1586.
  • Yang T, Rebeiz GM. Tunable 1.25–2.1-GHz 4-pole bandpass filter with intrinsic transmission zero tuning. IEEE Trans Microw Theory. 2015 May;63(5):1569–1578.
  • Huang X, Zhu L, Feng Q, et al. Tunable bandpass filter with independently controllable dual passbands. IEEE Trans Microw Theory. 2013 Sep;61(9):3200–3208.
  • Li Y, Li W, Ye Q. A reconfigurable triple-notch-band antenna integrated with defected microstrip structure band-stop filter for ultra-wideband cognitive radio applications. Int J Antennas Propagat. 2013.
  • Wu X, Li Y, Liu X. High-order dual-port quasi-absorptive microstrip coupled line bandpass filters. IEEE Trans Microw Theory. 2020 Apr;68(4):1462–1475.
  • Wainstein N, Kvantinsky S. An RF memristor model and memristive single-pole double-throw switches. IEEE International Symposium on Circuits and Systems (ISCAS). 2017: Baltimore; p. 1–4.
  • Potrebić M, Tošić D, Biolek D. Memristors, memristive devices and systems. Cham: Springer; 2017. Chapter 7, RF/microwave applications of memristors; p. 159–185.
  • Wang L, Yuan MQ, Xiao T, et al. Broadband electromagnetic radiation modulated by dual memristors. IEEE Antennas Wirel Propag Lett. 2011 Jun;10:623–626.
  • Xu KD, Zhang YH, Wang L, et al. Two memristor SPICE models and their applications in microwave devices. IEEE T Nanotechnol. 2014 May;13(3):607–616.
  • Marković I, Potrebić M, Tošić D. Memristor state transition in reconfigurable microwave filter. The 30th International Conference on Microelectronics; 2017, Nis; p. 71–74.
  • Potrebić M, Tošić D, Biolek D. Reconfigurable microwave filters using memristors. Int J Circ Theory Appl. 2018;46:113–121.
  • Potrebić M, Tošić D, Plazinić A. Reconfigurable multilayer dual-mode bandpass filter based on memristive switch. AEU Int J Electron Commun. 2018 Oct;97(10):290–298.
  • Pi S, Ghadiri-Sadrabadi M, Bardin J, et al. Nanoscale memristive radio frequency switches. Nat Commun. 2015;7519(6):1–9.
  • 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. 2017 Nov;65(11):4572–4583.
  • El-Tanani MA, Rebeiz GM. A two-pole two-zero tunable filter with improved linearity. IEEE Trans Microw Theory. 2009 Apr;57(4):830–839.
  • Zhang XY, Chen JX, Xue Q, et al. Dual-band bandpass filter using stub-loaded resonators. IEEE Microw Wirel Co. 2007 Aug;17(8):583–585.
  • You B, Chen L, Liang Y, et al. A high-selectivity tunable dual-band bandpass filter using stub-loaded stepped-impedance resonators. IEEE Microw Wirel Co. 2014 Nov;24(11):736–738.
  • Zhang XY, Xue Q. High-selectivity tunable bandpass filters with harmonic suppression. IEEE Trans Microw Theory. 2010 Apr;58(4):964–969.
  • Hong JS, Shaman H, Chun YH. Dual-mode microstrip open loop resonators and filters. IEEE Trans Microw Theory. 2007 Aug;55(8):1764–1770.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.