Out-of-Band Multi-Notch Generation in RF Filters Through Parallelization

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Mohamed Malki;Li Yang;Talal Skaik;Yi Wang;Roberto Gómez-García
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引用次数: 0

Abstract

A simple technique for frequency-static multi-notch/transmission-zero (TZ) creation in RF filters with single- and dual-band bandpass transfer functions is presented. It is based on the direct connection of two identical inline filtering units without stopband TZs in an in-parallel configuration by means of unequal input/output transmission-line segments for each branch. Unlike in typical transversal-signal-interference and channelized filter architectures, the overall length of these connecting transmission-line segments for both branches is the same. Thus, the multi-notch/TZ generation in the whole filtering action is accomplished by differently distributing this total electrical length between the input/output transmission-line segments for the two branches. As such, enhanced selectivity in the filtering response with several embedded notches when compared to the filtering transfer function of an isolated branch can be obtained. To experimentally demonstrate the generality of this approach, two proof-of-concept filter prototypes corresponding to a 2 $/$ 3-GHz microstrip dual-band bandpass filter (BPF) and a 62-GHz waveguide BPF are built and tested.
通过并行化在射频滤波器中生成带外多陷波
本文介绍了一种在具有单带和双带带通传递函数的射频滤波器中创建频率静态多陷波/传输零点(TZ)的简单技术。该技术的基础是通过每个分支的不等输入/输出传输线段,将两个相同的无阻带 TZ 的并联滤波器单元直接连接起来。与典型的横向信号干扰和信道化滤波器结构不同,两个分支的这些连接传输线段的总长度是相同的。因此,通过在两个分支的输入/输出传输线段之间分配不同的总长度,就能在整个滤波过程中产生多陷波/TZ。因此,与孤立支路的滤波传递函数相比,内嵌多个凹槽的滤波响应的选择性会更强。为了在实验中证明这种方法的通用性,我们制作并测试了两个概念验证滤波器原型,一个是 2 美元/3 美元-GHz 的微带双频带通滤波器(BPF),另一个是 62-GHz 的波导带通滤波器(BPF)。
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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来源期刊
CiteScore
10.70
自引率
0.00%
发文量
0
审稿时长
8 weeks
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