截面弯曲微带延迟线:互连建模

A. Gurskas, A. Krukonis, V. Urbanavičius
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引用次数: 1

摘要

建立了考虑路段不匹配和非均质性的路段曲流微带延迟线模型。平面延迟线广泛采用多截面设计,以优化信号导体对衬底面积的填充;例如,为了获得期望的大延迟,可以组装和连接具有多个部分的几个基板。本文讨论了分段深度学习的几种模型。根据“简化”模型,一段传输线(TL)连接到不同阻抗的负载上。此部分对应于单个MMDL蜿蜒段。该模型没有考虑DL边缘处电场的散射,也没有考虑TL截面特征阻抗和相位延迟的频率依赖性。现实中的“中间”模型只是对“简化”模型的修正。在这些模型中使用集总电容器来评估MMDL末端的电场散射。然而,在“中间”模型中,阻抗和相位延迟的频率依赖性仍未得到评估。“最终”模型是基于混合分析技术-矩量法和散射矩阵的协同作用。该模型同时考虑了电场散射和截面不一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sectional meander microstrip delay line: interconnection modelling
Model of sectional meander microstrip delay line (MMDL), which takes into account the mismatch and heterogeneity of sections, is created. Multiple sections are widely used in the planar delay lines (DL) to optimize filling the substrate area by signal conductor; for example, to achieve desired large delay, several substrates with multiple sections may be assembled and connected. Several models of the sectional DL are discussed in this paper. According to the “simplified” model a section of the transmission line (TL) is connected to the load of different impedances. This section corresponds to the single MMDL meander segment. Such model does not take into account scattering of electric field at the DL edges, and frequency dependency of characteristic impedance and phase delay of TL section. The “intermediate” models in reality are only modified the “simplified” model. To evaluate electric field scattering at the MMDL ends lumped capacitors are used in these models. Nevertheless, the frequency dependence of impedance and phase delay remains unevaluated in the “intermediate” model. The “final” model is based on hybrid analysis technique - synergy of method of moments and scattering matrixes. This model takes into account both the electric field scattering and inconsistency of sections.
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