PCB应用中非均匀介质层的模式相关有效介电常数

Chaofeng Li;Mehdi Mousavi;Seyed Mostafa Mousavi;Reza Asadi;Xiaoning Ye;DongHyun Kim
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引用次数: 0

摘要

印刷电路板(pcb)的介电基板通常由环氧树脂或聚氨酯树脂和玻璃纤维组成,它们可以被建模为非均匀介电层(idl)。在层界面的垂直方向上,idl是不均匀的,这意味着它们构成了一种各向异性材料。因此,idl的有效介电常数(Dk)与方向有关,即与模式有关。本研究采用三种常用的全波仿真模型:横向电模型(TE)、横向磁模型(TM)和等效平行板电容模型,提取不同模式下idl的有效Dk值。TE模式和TM模式的结果相差10%。基于层的介电特性和层的厚度,采用平行板电容模型,有效地估计了idl的有效Dk。此外,推导了填充idl的圆柱腔谐振腔的谐振频率解析公式,提取了idl在不同谐振模式下的有效Dk,可作为PCB材料表征的谐振腔方法的指导。这些结果与等效并联电容器模型的结果相吻合。最后,基于全波仿真分析了IDL各向异性对传输线损耗和时域反射阻抗的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mode-Dependent Effective Dielectric Constants of Inhomogeneous Dielectric Layers for PCB Applications
The dielectric substrate of printed circuit boards (PCBs) generally consists of epoxy or polyurethane resin and fiberglass, which can be modeled as inhomogeneous dielectric layers (IDLs). IDLs are not homogeneous in the perpendicular direction of the layers’ interface, which means that they constitute an anisotropic material. Thus, the effective dielectric constant (Dk) for IDLs is direction dependent, i.e., mode dependent. In this study, the effective Dk values of IDLs are extracted for different modes using three commonly used full-wave simulation models: the transverse electric (TE), transverse magnetic (TM), and equivalent parallel-plate capacitor models. The results for the TE and TM modes showed a 10% discrepancy. The effective Dk of IDLs was efficiently estimated by the parallel-plate capacitor model based on the layers’ dielectric properties and thicknesses. Moreover, the analytical formulas of resonance frequency for a cylindrical cavity resonator filled with IDLs were derived to extract the effective Dk of the IDLs at different resonance modes, which could be used as a guideline of resonator methods for PCB material characterization. These results correlated with the results from the equivalent parallel capacitor model. Finally, the impact of IDL anisotropy on transmission line loss and time-domain reflectometry impedance was analyzed based on full-wave simulation.
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