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Analysis and Design of a New Self-Packaged Wideband Balun Bandpass Filter With the Functionality of Impedance Transformation

机译:一种具有阻抗变换功能的新型自封装宽带巴伦带通滤波器的分析与设计

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摘要

In this paper, a new self-packaged wideband balun with the high selective bandpass filtering response and impedance transformation characteristic is presented. By virtue of circuit transformations, corresponding two-port equivalent circuit with asymmetrical port impedances is put forward. The analysis results of this two-port network exhibit that the proposed new design is able to achieve a quasi-elliptic equal-ripple response with three transmission poles and four transmission zeros. In addition, the frequency response can be directly determined according to the desired design specifications of impedance transformation ratio k, ripple fractional bandwidth (FBW), and in-band return loss RL. For validation purposes, a demonstrated wideband balun bandpass filter (BPF) working at 2.0 GHz with 50-100-Omega impedance transformation has been implemented by utilizing the multilayer liquid-crystal polymer (LCP) bonded printed circuit board (PCB) lamination technology. Theoretical, simulated, and measured results are recorded in good agreement, well verifying the design method.
机译:该文提出了一种具有高选择性带通滤波响应和阻抗变换特性的新型自封装宽带巴伦。通过电路变换,提出了相应的具有非对称端口阻抗的双端口等效电路。该双端口网络的分析结果表明,所提出的新设计能够实现具有三个传输极和四个传输零点的准椭圆等纹波响应。此外,还可以根据所需的阻抗转换比k、纹波分数带宽(FBW)和带内回波损耗RL等设计规格直接确定频率响应。出于验证目的,利用多层液晶聚合物 (LCP) 键合印刷电路板 (PCB) 层压技术,实现了工作频率为 2.0 GHz 且阻抗变换为 50-100 Omega 的宽带巴伦带通滤波器 (BPF)。理论、仿真和实测结果一致,较好地验证了设计方法。

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