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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Differential Transmission Lines Loaded With Magnetic LC Resonators and Application in Common Mode Suppression
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Differential Transmission Lines Loaded With Magnetic LC Resonators and Application in Common Mode Suppression

机译:磁LC谐振器负载的差分传输线及其在共模抑制中的应用

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摘要

This paper presents the analysis of magnetic LC (MLC) resonators loaded with differential microstrip transmission lines. The analysis is based on an equivalent circuit model describing the electromagnetic behavior of the MLC resonators. It is shown that a pair of microstrip lines loaded with MLC resonators exhibit a dual-mode bandstop response in the common mode of operation, while being transparent to the differential signals. This characteristic can be used in the design of differential transmission lines with wideband common mode suppression. Circuit models together with Bloch theorem are applied for the systematic design, where the dispersion analysis helps to estimate the maximum achievable common-mode rejection bandwidth. A systematic design procedure is developed for designing differential transmission lines using this method. The theoretical analysis is validated by designing and measuring a balanced transmission line using three cascaded MLC-based cells. The measurements exhibit more than 40-dB common-mode signal suppression for a fractional bandwidth of 32% around 1.3 GHz, whereas the fraction bandwidth for 20-dB suppression level is 57.5%. The fabricated prototype has a compact size of 0.09 lambda(g) x 0.37 lambda(g), where lambda(g) is the guided wavelength at 1.3 GHz. A detailed comparison between the designed MLC-based differential transmission line and the state-of-the-art designs shows a superior performance of the MLC-based transmission lines in terms of size, fabrication simplicity, and the common-mode rejection level.
机译:本文介绍了装有差分微带传输线的磁性LC(MLC)谐振器的分析。该分析基于描述MLC谐振器的电磁行为的等效电路模型。结果表明,装有MLC谐振器的一对微带线在共模工作模式下表现出双模带阻响应,同时对差分信号透明。该特性可用于具有宽带共模抑制功能的差分传输线的设计。电路模型与Bloch定理一起用于系统设计,其中色散分析有助于估计最大可实现的共模抑制带宽。开发了一种系统设计程序,用于使用此方法设计差分传输线。通过使用三个基于MLC的级联电池设计和测量平衡的传输线,可以验证理论分析的有效性。对于1.3 GHz左右的32%的分频带宽,测量结果显示出超过40 dB的共模信号抑制,而20 dB抑制水平的分频带宽为57.5%。所制造的原型的紧凑尺寸为0.09 lambda(g)x 0.37 lambda(g),其中lambda(g)是1.3 GHz时的引导波长。在设计的基于MLC的差分传输线和最新设计之间的详细比较表明,基于MLC的传输线在尺寸,制造简便性和共模抑制水平方面均具有出色的性能。

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