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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Analytical Design of Wire-Bonded Multiconductor Transmission-Line-Based Ultra-Wideband Differential Bandpass Filters
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Analytical Design of Wire-Bonded Multiconductor Transmission-Line-Based Ultra-Wideband Differential Bandpass Filters

机译:基于线键合多导体传输线的超宽带差分带通滤波器的分析设计

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摘要

A systematic design process of ultra-wideband differential bandpass filters based on wire-bonded multiconductor transmission lines is presented. The topology is thoroughly analyzed by means of analytical design equations that provide some insights into the physical behavior of the proposed structure. Single- and double-section configurations are introduced and exact closed-form design equations are derived to design differential filters with either a Butterworth or Chebyhsev frequency response. To validate the design procedure, two differential filters are designed and fabricated with an equal-ripple fractional bandwidth (FBW) of 100% and 60% (3-dB FBW of 145% and 97%), respectively. The measured differential-mode responses show a good in-band flatness with insertion losses lower than 1 dB and with high common-mode rejection levels greater than 20 dB. Experimental results demonstrate a good agreement with theory and prove that the proposed design methodology is useful for accurate and fast ultra-wideband differential filter synthesis.
机译:提出了一种基于引线键合多导体传输线的超宽带差分带通滤波器的系统设计过程。通过分析设计方程对拓扑进行了彻底的分析,这些方程提供了对所提议结构的物理行为的一些见解。介绍了单截面和双截面配置,并推导了精确的闭式设计方程式,以设计具有巴特沃思或切比雪夫频率响应的差分滤波器。为了验证设计过程,设计并制造了两个差分滤波器,分别具有100%和60%的等波纹分数带宽(FBW)(3-dB FBW分别为145%和97%)。测得的差模响应显示出良好的带内平坦度,插入损耗低于1 dB,高共模抑制电平高于20 dB。实验结果与理论吻合良好,证明了所提出的设计方法对于准确,快速的超宽带差分滤波器合成是有用的。

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