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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Novel Absorptive Balanced Bandpass Filters Using Resistive Loaded Transmission Lines
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Novel Absorptive Balanced Bandpass Filters Using Resistive Loaded Transmission Lines

机译:新型吸收平衡带通滤波器使用电阻载输送线路

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摘要

This paper reports on design of novel balanced bandpass filters (BPFs) using quarter-wavelength stub resonators. For the design purposes, differential-mode (DM) and commonmode (CM) half-equivalent circuits are established and analyzed carefully. In this paper, CM noise is introduced into the filter and dissipated on the resistors on periodic bands. First, a balanced BPF topology based on conventional quarter-wavelength stub filter is presented. By symmetrically introducing series matching resistors to the ground at the center of the stub, CM noise can be rejected either reflectively or reflectionlessly without affecting DM performance. The harmonic property of stubs provides periodic CM suppressing response as long as the resistor has no serious parasitic reactance. By doing so, CM noise can be suppressed under a certain level at all frequencies. However, the harmonic property also leads to some spurious passbands. This defect can be avoided by an improved filter topology with two additional capacitors. To reserve the CM feature, the corresponding DM and CM half equivalent circuits are developed as well. The proposed layouts are fabricated on a two-layer printed circuit board. The resulting experimental circuits exhibit the expected electrical performance, forming balanced BPFs with CM noise suppression level over 12 dB at all frequencies, and show an agreement with the simulated results.
机译:本文使用四分之一波长谐振器的新型平衡带通滤波器(BPFS)的设计报告。对于设计目的,确定并仔细地分析差分模式(DM)和共轨(CM)半同电路。在本文中,将CM噪声引入过滤器并在周期性带上的电阻上散发。首先,提出了一种基于传统四分之一波长滤波器的平衡BPF拓扑。通过对称地将串联匹配电阻对在存根中心的地面上,可以反射或反射地拒绝CM噪声而不会影响DM性能。由于电阻器没有严重的寄生电抗,短截线的谐波特性提供周期CM抑制响应。通过这样做,可以在所有频率的特定级别下抑制CM噪声。然而,谐波财产也会导致一些虚假通带。通过具有两个附加电容器的改进的过滤器拓扑可以避免这种缺陷。为了保留CM功能,也可以开发相应的DM和CM ALF等效电路。所提出的布局在双层印刷电路板上制造。所得到的实验电路表现出预期的电气性能,在所有频率下形成具有CM噪声抑制水平的平衡BPF,并显示与模拟结果的协议。

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