• High Power Laser and Particle Beams
  • Vol. 31, Issue 9, 93002 (2019)
Liu Qing, Lü Dalong, Sun Jiuhui, Zhou Dongfang, and Zhang Dewei
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.11884/hplpb201931.190077 Cite this Article
    Liu Qing, Lü Dalong, Sun Jiuhui, Zhou Dongfang, Zhang Dewei. In-line ports microstrip bandpass filters in box-like coupling schemes[J]. High Power Laser and Particle Beams, 2019, 31(9): 93002 Copy Citation Text show less
    References

    [1] Zhu Lei, Wu Ke. A joint field/circuit model of line-to-ring coupling structures and its application to the design of microstrip dual-mode filters and ring resonator circuits[J]. IEEE Trans Microw Theory Tech, 1999, 47(10):1938-1948.

    [2] Liu Haiwen, Zhao Yulong, Li Xiaohua, et al. Compact superconducting bandpass filter using dual-mode loop resonators[J]. IEEE Trans Appl Supercond, 2013, 23(3):1501304.

    [3] Gorur A. A novel dual-mode bandpass filter with wide stopband using the properties of microstrip open-loop resonator[J]. IEEE Microw Wireless Compon Lett, 2002, 12(10):386-388.

    [4] Feng Wenjie, Gao Xin, Che Wenquan, et al. Bandpass filter loaded with open stubs using dual-mode ring resonator[J]. IEEE Microw Wireless Compon Lett, 2015, 25(5):295-297.

    [5] Gorur A. Description of coupling between degenerate modes of a dual-mode microstrip loop resonator using a novel perturbation arrangement and its dual-mode bandpass filter applications[J]. IEEE Trans Microw Theory Tech, 2004, 52(2):671-677.

    [6] Amari S. Comments on “Description of coupling between degenerate modes of a dual-mode microstrip loop resonator” [J]. I IEEE Trans Microw Theory Tech, 2004, 52(9):2190-2192.

    [7] Kundu A C, Awai I. Control of attenuation pole frequency of a dual-mode microstrip ring resonator bandpass filter[J]. IEEE Trans Microw Theory Tech, 2001, 49(6):1113-1117.

    [8] Awida M H, Safwat A M E, El-Hennawy H. Dual-mode microstrip bandpass filter using ring of arrows resonator[J]. Electron Lett, 2005, 41(24):1335-1336.

    [9] Gorur A, Karpuz C, Akpinar M. A reduced-size dual-mode bandpass filter with capacitively loaded open-loop arms[J]. IEEE Microw Wireless Compon Lett, 2003, 13(9):385-387.

    [10] Fu Sen, Wu Bian, Chen Jia, et al. Novel second-order dual-mode dual-band filters using capacitance loaded square loop resonator[J]. IEEE Trans Microw Theory Tech, 2012, 60(3):477-483.

    [11] Hsieh L H, Chang Kai. Dual-mode quasi-elliptic-function bandpass filters using ring resonators with enhanced-coupling tuning stubs[J]. IEEE Trans Microw Theory Tech, 2002, 50(5):1340-1345.

    [12] Tang Mingchun, Shi Ting, Chen Shiyong, et al. Dual-band bandpass filter based on a single triple-mode ring resonator[J]. Electron Lett, 2016, 52(9):722-724.

    [13] Chen J X, Yum T Y, Li J L, et al. Dual-mode dual-band bandpass filter using stacked-loop structure[J]. IEEE Microw Wireless Compon Lett, 2006, 16(9):502-504.

    [14] Sun Sheng. A dual-band bandpass filter using a single dual-mode ring resonator[J]. IEEE Microw Wireless Compon Lett, 2011, 21(6):298-300.

    [15] Cameron R J, Harish A R, Radcliffe C J. Synthesis of advanced microwave filters without diagonal cross-couplings[J]. IEEE Trans Microw Theory Tech, 2003, 50(12):2862-2872.

    [16] Amari S, Tadeson G, Cihlar J, et al. Pseudo-elliptic microstrip line filters with zero-shifting properties[J]. IEEE Microw Wireless Compon Lett, 2004, 14(7):346-348.

    [17] Liao Chingku, Chi Peiling, Chang Chiyang. Microstrip realization of generalized Chebyshev filters with box-like coupling schemes[J]. IEEE Trans Microw Theory Tech, 2007, 55(1):147-153.

    [18] Hong Jiasheng, Lancaster M J. Microstrip filter for RF/microwave applications[M]. New York: John Wiley & Sons, Inc, 2001.

    [19] Levy R. Filters with single transmission zeros at real or imaginary frequencies[J].IEEE Trans Microw Theory Tech, 1976, 24(4):172-181.

    Liu Qing, Lü Dalong, Sun Jiuhui, Zhou Dongfang, Zhang Dewei. In-line ports microstrip bandpass filters in box-like coupling schemes[J]. High Power Laser and Particle Beams, 2019, 31(9): 93002
    Download Citation