Design of Band-Pass Microwave Filter Based on Metal Micro-Coaxial Structure

Xu-yao Zhang, Yuedong Xu, Shengying Zou, Peng Jin, Jie Lin, Shu Lin
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引用次数: 2

Abstract

With the gradual maturity of 5G technology, the structure design and performance optimization of microwave filters have become one of the important research topics in the field of RF communication. In this paper, the metal micro-coaxial structure is used to design a bandpass filter with a center frequency of about 28GHz. The structure form of short transversal line is adopted, the order is 5, and the 3dB bandwidth is about 20.3%. In-band insertion loss is greater than -1.19dB, The out-of-band suppression is less than -47dB and -30dB in the frequency band larger than 38GHz and smaller than 18GHz, respectively. The voltage standing wave ratio at the center frequency is 1.0512. The metal micro-coaxial structure provides a high isolation degree for the filter, and the insertion loss is smaller than the same type of filter, which has good engineering application value.
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基于金属微同轴结构的带通微波滤波器设计
随着5G技术的逐步成熟,微波滤波器的结构设计和性能优化已成为射频通信领域的重要研究课题之一。本文采用金属微同轴结构设计了一个中心频率约为28GHz的带通滤波器。采用短横线的结构形式,阶数为5,3dB带宽约为20.3%。带内插入损耗大于-1.19dB,带外抑制在大于38GHz和小于18GHz频段分别小于-47dB和-30dB。中心频率处的电压驻波比为1.0512。金属微同轴结构为滤波器提供了较高的隔离度,且插入损耗小于同类型滤波器,具有良好的工程应用价值。
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