Microstrip Bandpass Filter with mixed Couplings and Resonators Located at Different Levels

A. Zakharov, S. Rozenko, S. Litvintsev, L. Pinchuk
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Abstract

This article discusses the new principle of placing second-order bandpass filters (BPFs) with mixed couplings when they are connected in cascade. This principle consists in arranging second-order BPFs at different levels, which lids in multilevel coupling structure. This placement of second-order BPFs minimizes the parasitic interaction between non-adjacent resonators in microstrip filters, which reduces distortion of frequency responses. This placement principle is used to create of two microstrip fourth-order BPFs, obtained by cascading two second-order BPFs with stepped-impedance resonators (SIRs) and mixed couplings. Two mixed couplings lead to two transmission zeros fz1, fz2. The possibility of moving fz1, fz2 with respect to centre frequency f0 and the problem of obtaining the minimum interval between fz1, fz2 and f0 are studied. The measured and simulated responses of microstrip fourth-order BPFs are presented.
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微带带通滤波器的混合耦合和谐振器位于不同的水平
本文讨论了当二阶带通滤波器级联连接时放置混合耦合的新原理。该原理包括在不同的层次上安排二阶bpf,形成多级耦合结构。这种二阶bpf的放置最大限度地减少了微带滤波器中非相邻谐振器之间的寄生相互作用,从而减少了频率响应的失真。利用这一放置原理创建了两个微带四阶bpf,该微带四阶bpf是由两个二阶bpf与阶跃阻抗谐振器(SIRs)和混合耦合级联得到的。两个混合耦合导致两个传输零点fz1, fz2。研究了fz1、fz2相对于中心频率f0移动的可能性,以及fz1、fz2与f0之间的最小间隔问题。给出了微带四阶bpf的实测响应和仿真响应。
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