A Proposed Uniaxial Anisotropic Dielectric Measurement Technique

J. Rautio
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引用次数: 11

Abstract

The popular printed circuit board (PCB) material, FR4 is composed of a glass fiber weave embedded in epoxy. Because the epoxy and the glass fiber have different dielectric constants, the dielectric constant experienced by electric field in the substrate depends on the direction of the electric field. Error in knowledge of this anisotropy causes error in the electromagnetic (EM) analysis of any circuits being designed. An "average" dielectric constant can be used, however the correct average depends on the specific field configuration and thus on the specific circuit layout. As such, both accurate knowledge of dielectric anisotropy and the ability to perform EM analysis including anisotropy is important. This paper proposes a new dual mode resonator for measurement of dielectric anisotropy, specifically uniaxial anisotropy where there is one dielectric constant for electric field perpendicular to the substrate surface, and a second dielectric constant for all electric field tangential to the substrate surface. The technique proposes to compare EM analysis results to measurements to determine the anisotropy. In this paper, we describe and simulate the proposed approach and illustrate evaluation of the expected error.
一种单轴各向异性介电测量技术
流行的印刷电路板(PCB)材料,FR4是由嵌入环氧树脂的玻璃纤维编织组成的。由于环氧树脂和玻璃纤维的介电常数不同,电场在基材中所经历的介电常数取决于电场的方向。对这种各向异性的错误认识会导致对任何设计电路的电磁分析出现错误。可以使用“平均”介电常数,但是正确的平均值取决于特定的场配置,因此取决于特定的电路布局。因此,准确了解介质各向异性和进行包括各向异性在内的电磁分析的能力都很重要。本文提出了一种新的双模谐振器,用于测量介质各向异性,特别是单轴各向异性,其中垂直于衬底表面的电场有一个介电常数,切向衬底表面的所有电场都有第二个介电常数。该技术建议将电磁分析结果与测量结果进行比较,以确定各向异性。在本文中,我们描述和模拟了所提出的方法,并举例说明了期望误差的评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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