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Multi-Band Differential Bandpass Filters with Quasi-Elliptic-Type Passbands and Multi-Transmission Zero Common-Mode Suppression

机译:具有准椭圆型通带和多传输零共模抑制的多带差分带通滤波器

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In this paper, the RF design of differential quasielliptic-type dual-and tri-band bandpass filters (BPFs) is reported. They are based on series-cascaded multi-resonant cells that result in: i) quasi-elliptic-type passbands in the differential-mode of operation that are shaped by 3N poles and 3N-1 transmission zeros (TZs)-N is the number of bands-and ii) high common mode (CM) suppression through multi-TZ generation-5N-1 in total-and resistively-loaded poles. Coupling-routing diagrams that facilitate the RF design of these type of filters with standard coupled-resonator synthesis are presented. For proof-of-concept demonstration purposes, a dual-band microstrip prototype was manufactured and measured with the following RF performance characteristics: passbands centered at 2.53 and 3.49 GHz, fractional bandwidths of 13 and 12%, and minimum in-band insertion loss levels of 1.27 and 1.43 dB, respectively. Moreover, the CM is suppressed by >52 and >38 dB at the center of the bands.
机译:本文报道了差分准椭圆型双带和三带通滤波器(BPF)的射频设计。它们基于串联级联的多谐振单元,从而导致:i)差分工作模式下的准椭圆型通带,由3N个极点和3N-1个传输零点(TZs)整形-N是个数-ii)通过在总负载和电阻负载极中生成5N-1的多TZ产生高共模(CM)抑制。给出了利用标准耦合谐振器合成促进这些类型滤波器的RF设计的耦合路由图。为了进行概念验证,制造了具有以下射频性能特征的双频带微带原型,并对其进行了测量:以2.53和3.49 GHz为中心的通带,13%和12%的分数带宽以及最小的带内插入损耗水平分别为1.27和1.43 dB。此外,在频带中心,CM被抑制为> 52 dB和> 38 dB。

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