用传输线模型建立等效电路模型,用于设计印刷电路板上形成的滤波器

Keisuke Matsumoto, Y. Toyota, K. Iokibe, R. Koga
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引用次数: 5

摘要

在印刷电路板(pcb)返回面上形成的狭缝图案就像一个无源元件,而缺陷接地结构(DGS)就是其中之一。在本文中,我们提出了一个等效电路模型与传输线模型用于具有滤波器特性的DGS。DGS的特性很容易随狭缝模式的变化而变化。因此,DGS有望用于各种应用,如差分信号系统中的共模滤波器。然而,由于设计方法尚未开发,我们需要建立一种狭缝图案的设计方法。一些等效电路模型已经被使用,但是由集总元件组成的模型需要全波模拟。此外,集总元素的值与物理参数无关。因此,对于设计滤波器是没有用处的。相比之下,由于传输线模型与物理参数有关,因此本文提出的等效电路模型将对设计性能最佳且适合pcb尺寸减小的滤波器有很大贡献。结果,将全波模拟器和电路模拟器计算的传输特性与所提出的等效电路模型进行比较,电路模拟器计算的第一阻带宽度与全波模拟器计算的第一阻带宽度基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of equivalent circuit model with transmission line model for designing filters formed on printed circuit boards
The slit pattern formed on the return plane of printed circuit boards (PCBs) acts like a passive element and a defected ground structure (DGS) is one of them. In this paper, we propose an equivalent circuit model with a transmission line model for use in DGS with a filter characteristics. The characteristics of DGS are easily varied with the slit pattern. Thus, DGS is expected to be used for various applications such as a common-mode filter in differential signaling systems. Since a design method has yet to be developed, however, we need to establish a design method for the slit pattern. Some equivalent circuit models have been used, but the models that consist of lumped elements require a full-wave simulation. In addition, the values of the lumped elements do not relate to the physical parameters. Therefore it is not useful for designing filters. In contrast, the equivalent circuit model we propose in this paper will have a great contribution to designing filters with optimum performances and fit for size reduction on PCBs because the transmission line model relates to the physical parameters. As a result, by comparing the transmission characteristics calculated with both a full-wave simulator and a circuit simulator with the proposed equivalent circuit model, the first stop-band width calculated by using the circuit simulator was in agreement with the full-wave simulator.
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