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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Extraction of Frequency-Dependent Characteristic Impedance and Complex Permittivity in Single-Ended and Edge-Coupled Transmission Lines Using the Calculated Series Parasitic Effects
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Extraction of Frequency-Dependent Characteristic Impedance and Complex Permittivity in Single-Ended and Edge-Coupled Transmission Lines Using the Calculated Series Parasitic Effects

机译:利用计算的串联寄生效应提取单端和边缘耦合传输线的频率相关特性阻抗和复介电常数

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摘要

This paper presents a method to obtain the characteristic impedance (Z) and the complex permittivity (ε̂) of single-ended and edge-coupled interconnects on printed circuit board (PCB) technology. For this purpose, experimentally determined propagation constant (γ) data are used in combination with the frequency-dependent resistance (R) and inductance (L). Due to the difficulty of directly obtaining R and L from measurements, closed-form equations are used to perform the corresponding calculation. In this regard, the current distribution effects are considered within the cross section of the signal traces and the ground plane. The proposal was validated for both, single-ended and edge-coupled PCB interconnects considering three cases: standard, medium-loss, and in low-loss materials. The results show that the extracted data are in agreement with values reported in material datasheets at 4 GHz. In this regard, the method is a good alternative to characterize planar transmission lines on PCB technology within the whole frequency range where the S-parameter measurements are performed.
机译:本文提出了一种在印刷电路板(PCB)技术上获得单端和边缘耦合互连的特性阻抗(Z)和复介电常数(ε̂)的方法。为此,将实验确定的传播常数(γ)数据与频率相关的电阻(R)和电感(L)结合使用。由于难以直接从测量中获得R和L,因此使用封闭形式的方程式进行相应的计算。在这方面,在信号走线和接地平面的横截面内考虑了电流分布效应。考虑到三种情况:标准,中等损耗和低损耗材料,该建议书已针对单端和边缘耦合PCB互连进行了验证。结果表明,提取的数据与4 GHz的材料数据表中报告的值一致。在这方面,该方法是在执行S参数测量的整个频率范围内表征PCB技术上的平面传输线的良好选择。

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