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A Comprehensive Technique to Determine the Broadband Physically Consistent Material Characteristics of Microstrip Lines

机译:确定微带线宽带物理一致性材料特性的综合技术

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This paper describes a method to extract the relative complex dielectric permittivity from propagation coefficient measurements on microstrip lines. The material characteristics of microstrip lines fabricated on two different types of substrates commonly used in microwave circuit and printed circuit boards are investigated. The mechanisms that cause the effective permittivity of microstrip lines to be dispersive are explored. The technique includes creating closed-form effective permittivity equations to relate the effective permittivity of the microstrip lines to the real part of the dielectric permittivity of the substrate. Curve-fitting methods are used to create causal dielectric material models that relate the imaginary part of the dielectric permittivity to its real part. The methods developed in this paper can be used to characterize low-loss dielectric materials whose polarization is dominantly dipolar within the microwave frequency range in high-speed packaging applications.
机译:本文介绍了一种从微带线上的传播系数测量值中提取相对复介电常数的方法。研究了在微波电路和印刷电路板上常用的两种不同类型的基板上制造的微带线的材料特性。探索了使微带线的有效介电常数分散的机理。该技术包括创建闭合形式的有效介电常数方程,以使微带线的有效介电常数与衬底的介电常数的实部相关。曲线拟合方法用于创建因果介电材料模型,该模型将介电常数的虚部与实部相关。本文开发的方法可用于表征在高速包装应用中在微波频率范围内极化主要为偶极极化的低损耗电介质材料。

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