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基于双模阶梯阻抗谐振器和耦合线的四频段带通滤波器设计,用于DCS/无线局域网/全球微波接入互操作性以及5G应用

Design of Quad-Band Bandpass Filter Using Dual-Mode SLRs and Coupled-Line for DCS/WLAN/WiMAX and 5G Applications.

作者信息

Tantiviwat Sugchai, Ibrahim Siti Zuraidah, Razalli Mohammad Shahrazel, Soh Ping Jack

机构信息

Faculty of Industrial Education and Technology, Rajamangala University of Technology Srivijaya, Muang District, Songkhla 90000, Thailand.

Faculty of Electronic Engineering Technology, Universiti Malaysia Perlis (UniMAP), Arau 02600, Malaysia.

出版信息

Micromachines (Basel). 2022 Apr 29;13(5):700. doi: 10.3390/mi13050700.

Abstract

A design of a microstrip quad-band BPF with flexibly controlled bandwidth is presented in this paper. Two dual-mode short-circuited SLRs with a common via-hole are proposed, which are utilized to obtain the first and second passband, while the third passband is generated by implementing the second-order half-wavelength coupled-line resonator. Another dual-mode open-circuited SLR can be operated at the fourth passband. The proposed quad-band BPF is centered at 1.80/2.45/3.50/4.90 GHz for DCS/WLAN/WiMAX and 5G applications. By appropriately choosing the lengths of the four sets of resonators, all passbands can be fully varied independently with minimal effect on other passbands. Moreover, the bandwidth of each passband can be flexibly controlled by tuning the coupling parameters. The dimension of the fabricated proposed filter is about 0.12 × 0.20 λg, indicating the compactness of the design, whereas the measurements are in good agreement with the simulated results. The measured S11 are at least 12 dB in the four passbands. The passbands S21 are approximately 0.65, 1.42, 0.78, and 1.20 dB, which exhibit low insertion loss at the passband frequency of the first, second, third, and fourth passband, respectively.

摘要

本文提出了一种具有灵活可控带宽的微带四频段带通滤波器(BPF)设计。提出了两个具有公共通孔的双模短路半波长谐振器(SLR),用于获得第一和第二通带,而第三通带则通过实现二阶半波长耦合线谐振器产生。另一个双模开路SLR可在第四通带工作。所提出的四频段BPF针对DCS/无线局域网(WLAN)/全球微波接入互操作性(WiMAX)和5G应用,中心频率分别为1.80/2.45/3.50/4.90吉赫兹。通过适当选择四组谐振器的长度,所有通带都可以完全独立变化,对其他通带的影响最小。此外,每个通带的带宽可以通过调整耦合参数来灵活控制。所制作的滤波器尺寸约为0.12×0.20λg,表明设计紧凑,而测量结果与仿真结果吻合良好。在四个通带中,测量得到的S11至少为12分贝。通带S21分别约为0.65、1.42、0.78和1.20分贝,在第一、第二、第三和第四通带的通带频率处呈现出低插入损耗。

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