Design of Millimeter-Wave On-Chip Bandpass Filters by Integrating the Lumped and Distributed Parameters

Wenauan Che, Guangxu Shen
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引用次数: 1

Abstract

In this paper, the design method of millimeter-wave (mm-wave) on-chip bandpass filters is proposed by integrating the lumped and distributed parameters. As for the lumped part, a quasi-lumped resonator is designed by combining the interdigital capacitor and microstrip section inductor on both sides. Therefore, the employed resonator is inherently compact. As for the distributed part, the mutual coupling is introduced between the quasi-lumped resonators, indicating the proposed bandpass filter is not a simply lumped filter. In particular, the mutual coupling is a mixed electric and magnetic coupling, and two close-to-passband transmission zeroes (TZs) are accordingly generated with the proposed on-chip filter. For demonstration, a 28-GHz second-order BPF is designed and fabricated. The measured results indicate good features of low insertion loss of only 0.98 dB, high selectivity, and wide stopband suppression.
集成集总参数和分布参数的毫米波片上带通滤波器设计
本文提出了集成集总参数和分布参数的毫米波片上带通滤波器的设计方法。集总部分采用双侧数字间电容和微带截面电感相结合的方式设计了准集总谐振腔。因此,所采用的谐振器本质上是紧凑的。在分布部分,引入了准集总谐振器之间的相互耦合,表明所提出的带通滤波器不是简单的集总滤波器。特别地,互耦是一种混合的电耦合和磁耦合,并且使用所提出的片上滤波器相应地产生两个近通带传输零点(TZs)。为了演示,设计并制作了一个28 ghz二阶BPF。测量结果表明,该器件具有低插入损耗(0.98 dB)、高选择性和宽阻带抑制等特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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