High‐selectivity wideband four‐way filtering power divider with input absorptive feature

IF 1.8 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC International Journal of Circuit Theory and Applications Pub Date : 2024-08-07 DOI:10.1002/cta.4227
Siran Zhang, Hongmei Liu, Zhongbao Wang, Shaojun Fang
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Abstract

In the paper, a high‐selectivity wideband four‐way filtering power divider with input absorptive feature is presented. It consists of two parallel‐coupled lines (CLs), two three‐coupled lines (TCLs), two open‐ended stepped branches, one absorptive branch, and two isolation resistors. The wideband filtering response is achieved by cascading the TCLs and CLs. While high selectivity is obtained by loading the open‐ended stepped branch, where two extra transmission zeros are generated. In addition, wide absorptive bandwidth with good isolations between adjacent output ports are realized by combining the absorptive branch with the isolation resistors. Equations are derived by using the two‐parity mode analysis, and main parameters are investigated in detail. For validation, a prototype was designed and fabricated. Test results show that the 3‐dB FBW can reach 87% with a 10‐dB input absorptive FBW of 200%. Besides, for the output ports with 10‐dB return loss and 10‐dB isolation, the FBWs are 94% and 91.5%, respectively. It also features high frequency selectivity and low insertion loss.
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带输入吸收功能的高选择性宽带四路滤波功率分压器
本文介绍了一种具有输入吸收特性的高选择性宽带四路滤波功率分压器。它由两条平行耦合线(CL)、两条三耦合线(TCL)、两条开口阶梯支路、一条吸收支路和两个隔离电阻组成。宽带滤波响应是通过级联 TCL 和 CL 实现的。而高选择性则是通过加载开放式阶梯分支来实现的,在该分支上会产生两个额外的传输零点。此外,通过将吸收支路与隔离电阻器相结合,还可实现较宽的吸收带宽以及相邻输出端口之间的良好隔离。利用双偶模式分析推导出方程,并详细研究了主要参数。为进行验证,设计并制造了一个原型。测试结果表明,在 10 分贝输入吸收 FBW 为 200% 的情况下,3 分贝 FBW 可达到 87%。此外,对于具有 10 分贝回波损耗和 10 分贝隔离度的输出端口,FBW 分别为 94% 和 91.5%。它还具有高频率选择性和低插入损耗的特点。
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来源期刊
International Journal of Circuit Theory and Applications
International Journal of Circuit Theory and Applications 工程技术-工程:电子与电气
CiteScore
3.60
自引率
34.80%
发文量
277
审稿时长
4.5 months
期刊介绍: The scope of the Journal comprises all aspects of the theory and design of analog and digital circuits together with the application of the ideas and techniques of circuit theory in other fields of science and engineering. Examples of the areas covered include: Fundamental Circuit Theory together with its mathematical and computational aspects; Circuit modeling of devices; Synthesis and design of filters and active circuits; Neural networks; Nonlinear and chaotic circuits; Signal processing and VLSI; Distributed, switched and digital circuits; Power electronics; Solid state devices. Contributions to CAD and simulation are welcome.
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