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Articles

Small Dual Narrowband BPF with Ultra-Rejection Band Using Grounded Stepped-Impedance Resonator

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References

  • R. T. Hammed, “Miniaturized high-order ultra-wideband bandpass filters with multiple band rejection notches,” Electromagnetics, Vol. 35, no. 8, pp. 538–549, Nov. 2015.
  • H. Shaman, S. Almorqi, and A. Alamoudi, “Ultra-wideband (UWB) bandpass filter with cascaded lowpass filter on multilayer liquid-crystal polymer (LCP) substrate,” Inst. Electron Telecomm. Eng., Vol. 62, no. 1, pp. 63–67, 2016.
  • M. Zhou, X. Tang, and F. Xiao, “Compact dual band transversal bandpass filter with multiple transmission zeros and controllable bandwidths,” IEEE Microw. Wirl. Compon. Lett, Vol. 19, no. 6, pp. 347–349, June 2009.
  • E. S. Ahmad, “Design of L1/L2 GPS BPF using closed-loop rectangular ring resonator,” Inst. Electron. Telecomm. Eng, 1–6, Jun. 2019. doi: 10.1080/03772063.2019.1567273.
  • R. T. Hammed, and Z. M. Abdul-Jabbar, “Multilayered stepped impedance loaded-resonator for compact dual-band rejection filter design,” Electromagnetics, Vol. 37, no. 8, pp. 493–499, Nov. 2017.
  • F. Guan, X. Sun, W. Xue, and J. Zhang, “Design of a tunable dual-band filter using step-impedance resonators with wide stopband,” in IEEE Glo. Sym. on Mill. Waves. Conf, Nanjing, China, April 2008.
  • G. Wu, L. Yang, and Q. Xu, “Miniaturised dual-band filter with high selectivity using split ring scheme,” Electron. Lett., Vol. 51, no. 7, pp. 570–572, April 2015.
  • S. Lee, J. Park, and Y. Lee, “Dual-band planar filter with very narrow bandwidths based on a single section coupled line,” Microwave and Optical Techn. Lett., Vol. 57, no. 9, pp. 2083–2085, 2015.
  • M. Sánchez-Soriano, and R. Gómez-García, “Sharp-rejection wide-band dual-band bandpass planar filters with broadly-separated passbands,” IEEE Microw. Wirel. Compon. Lett, Vol. 25, no. 2, pp. 97–99, Feb. 2015.
  • Q. Kewel, and W. Bin, “Novel miniaturized dual-band bandpass filter with high suppression using low-temperature co-fired ceramic technology,” Electromagnetics, Vol. 33, pp. 543–549, 2013.
  • R. T. Hammed, “Miniaturized dual-band bandpass filter using e-shape microstrip structure,” AEÜ Int J Electron Commun., Vol. 69, no. 11, pp. 1667–1671, Nov. 2015.
  • C.-W. Chen, Z. He, X. Wei, W. Tang, and Y. Shi, “Compact dual-band bandpass filter using quarter-wave stepped-impedance resonators,” Electromagnetics, Vol. 35, pp. 138–143, Jan. 2015.
  • H. Zhang, s. W. kang, and W. Wu, “Miniaturized dual-band SIW filters using e-shaped slotlines with controllable center frequencies,” IEEE Microw. and Wirel. Compon. Lett., Vol. 28, no. 4, pp. 311–314, March 2018.
  • Y. Cheng, H. Peng, and Y. Chaing, “Design of tunable dual-band filter with multiple types of resonators,” in IEEE European Microwave Conference (EuMC), Paris, France, Sept. 2015.
  • A. Gorur, C. Karpuz, and A. Gorur, “Design of dual-mode dual-band bandpass filter with independently tunable bandwidths and reconfigurable filtering characteristics,” in IEEE MTT-S International Microwave Symposium (IMS), Honololu, HI, USA, Oct. 2017.
  • A. Bage, S. Das, and L. Murmu, “Quad band waveguide bandpass filter using slot ring and complementary split ring resonators,” Institution of Electron. Telecomm. Eng, Vol. 64, no. 4, pp. 553–558, Jun. 2018.
  • J. Kuo, and H. Lin, “Dual-band bandpass filter with improved performance in extended upper rejection band,” IEEE Transactions on Microw. Theo. and Techniq., Vol. 57, no. 4, pp. 824–829, 2009.
  • H. Abasi, and A. R. Hazeri, “Compact microstrip dual-narrowband bandpass filter with wider rejection band,” Electromagnetics, Vol. 38, no. 6, pp. 390–401, Jul. 2018.
  • M. Makimoto, and S. Yamashita. Microwave Resonators and Filters for Wireless Communication. Berlin: Springer, 2001.
  • J. S. Hong, and M. J. Lancaster. Microstrip Filters for RF/Microwave Applications. New York: Wiley, 2001.
  • R. T. Hammed, and D. Mirshekar-Syahkal, “Miniaturized high-order UWB bandpass filter using third-order e-shape microstrip structure,” in IEEE MTT-S International Microwave Symposium Digets, Monteal, Canada, June 2012.
  • Advanced Design System (ADS). 2014. Palo, Alto, CA, USA, Agilent Technologies. 2014.

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