A dual bandpass filter design using strong coupling, evanescent mode and modular concept

被引:0
|
作者
Sow S.-M. [1 ]
Tan P.-K. [1 ]
Lu J. [1 ]
机构
[1] Temasek Laboratories, National University of Singapore
来源
Sow, Sek-Meng (tslsowsm@nus.edu.sg) | 1600年 / Electromagnetics Academy卷 / 113期
关键词
Structural design;
D O I
10.2528/PIERC21032507
中图分类号
学科分类号
摘要
—This paper presents a new design concept of a dual bandpass filter. Based on the strong coupling between two resonators, a dual 1-pole band-pass filter is designed and is used as the basic building block. By providing appropriate weak coupling between these building blocks, a higher-order dual bandpass filter can be realized. In addition, these building blocks can be stacked vertically and/or horizontally to construct a compact filter. In this way, by using 3D full wave EM and circuit co-simulation, the simulation time required in the design stage can be reduced. In addition, it also provides a way to post-tune each building block individually and further reduces the time required in prototype post tuning process. However, using this design approach, the band separation ratio is limited by the physically achievable coupling. For demonstration, an L-band dual 4-pole bandpass filter is designed with passband frequencies of 1.2 GHz ∼ 1.255 GHz and 1.55 GHz ∼ 1.6 GHz. To reduce the size of the filter and obtain a wide stopband bandwidth, a suitable evanescent mode cavity is used to realize the resonant structure. The measurement result shows that the insertion losses of the low passband and high passband are 1.03 dB ∼ 2.00 dB and 1.02 dB ∼ 1.75 dB, respectively; the return loss of both passbands is better than 15 dB. Furthermore, up to 5 GHz, the stopband rejection level is better than 80 dB. © 2021, Electromagnetics Academy. All rights reserved.
引用
收藏
页码:83 / 96
页数:13
相关论文
共 50 条
  • [41] Effect of external circuit susceptance upon dual-mode coupling of a bandpass filter
    Kundu, AC
    Awai, I
    IEEE MICROWAVE AND GUIDED WAVE LETTERS, 2000, 10 (11): : 457 - 459
  • [42] A Modified Dual-Mode Bandpass Filter Using Inductively Slotted Square Resonator Without Coupling Gaps
    Liu, Haiwen
    Shi, Zhiguo
    Cheng, Zhiqun
    Li, Zhengfan
    Gu, Jixing
    JOURNAL OF ACTIVE AND PASSIVE ELECTRONIC DEVICES, 2009, 4 (04): : 271 - 274
  • [43] A New Approach to Design a Microstrip Dual-Mode Balun Bandpass Filter
    Huang, Feng
    Wang, Jianpeng
    Zhu, Lei
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2016, 26 (04) : 252 - 254
  • [44] Design and realisation of star-geometry dual-mode bandpass filter
    Shen, S
    Ramer, R
    OPTICS EXPRESS, 2005, 13 (24): : 9753 - 9757
  • [45] Design of a Three-cavity Dual-mode Bandpass SIW Filter
    Liu, Shui
    Xu, Feng
    Cao, Lewei
    Zhang, Yuhua
    2019 IEEE INTERNATIONAL SYMPOSIUM ON RADIO-FREQUENCY INTEGRATION TECHNOLOGY (RFIT2019), 2019,
  • [46] Design of a Millimeter-wave Dual-band Bandpass Filter Using SIW Dual-mode Cavities
    Dong, Kaida
    Mo, Jingyan
    He, Yuhong
    Ma, Zhewang
    Yang, Xuexia
    2016 IEEE MTT-S INTERNATIONAL WIRELESS SYMPOSIUM (IWS), 2016,
  • [47] Design of a two-cavity dual-mode bandpass SIW Filter
    Cao, Lewei
    Xu, Feng
    Liu, Shui
    2019 IEEE MTT-S INTERNATIONAL MICROWAVE BIOMEDICAL CONFERENCE (IMBIOC 2019), 2019,
  • [48] Design of a Patch Dual-Mode Bandpass Filter with Second Harmonic Suppression Using Open Stubs
    Jeon, Byung-Kuk
    Nam, Hee
    Yoon, Ki-Cheol
    Jeon, Bong-Wook
    Kim, Young-Woo
    Lee, Jong-Chul
    2010 ASIA-PACIFIC MICROWAVE CONFERENCE, 2010, : 1106 - 1109
  • [49] A NOVEL COMPACT MICROSTRIP DUAL-MODE WIDEBAND BANDPASS FILTER DESIGN USING TUNING STUBS
    Gorur, Ali K.
    Karpuz, Ceyhun
    Ozek, Ahmet
    Ozdemir, Pinar O.
    Karaca, Zuhra
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2014, 56 (01) : 47 - 49
  • [50] Design of a Wideband Bandpass Filter Using Microstrip Parallel Coupled Dual-Mode Ring Resonator
    Ma, Zhewang
    Sasaki, Hideyuki
    Chen, Chun-Ping
    Anada, Tetsuo
    Kobayashi, Yoshio
    2010 ASIA-PACIFIC MICROWAVE CONFERENCE, 2010, : 21 - 24