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    Please use this identifier to cite or link to this item: http://163.15.40.127/ir/handle/987654321/1615


    Title: A Modified Dual-Mode Ultra-Wideband Band-Pass Filter Fabricated on Ultra Thin Liquid Crystal Polymer Substrate
    Authors: Yang, Ru-Yuan
    Lin, Yueh-Ling
    Hung, Cheng-Yuan
    洪政源
    (東方技術學院電子與資訊系)
    Contributors: 東方技術學院電子與資訊系
    Date: 2010-07
    Issue Date: 2014-03-31 10:32:23 (UTC+8)
    Abstract: This paper presents a dual-mode ultra-wideband bandpass filter with two transmission zeros and a low insertion-loss on ultra thin (100 μm) liquid crystal polymer (LCP) substrate. The UWB BPF mainly comprises one wavelength (λg) square ring resonator with two orthogonally separated I/O ports that are direct-taped to feed electromagnetic (EM) energy. By tuning the sizes of apertures of the ring-like perturbation element attached at the corner of the ring resonator, the even and the mode EM energies are excited to produce a wideband performance. Additionally, a pair of transmission zeros are generated to improve the selectivity of the proposed BPF. The designed BPF was fabricated on a 100 μm thick LCP substrate and measured by using probe and vector network analyzer. Measurement results show that the fabricated filter exhibits an ultra wide passband from 3 GHz to 5.08 GHz and a low insertion loss of 1.6 dB over the passband. Good agreement between simulation and measurement results is presented.
    Relation: Journal of Electromagnetic Waves and Applications, , Vol.24 no.10, pp.1397-1404
    J. of Electromagn. Waves and Appl.
    Appears in Collections:[Department of Electronics Engineering and Computer Science] journal

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