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首页> 外文期刊>IEEE Transactions on Advanced Packaging >Unit cell approach to full-wave analysis of meander delay line using FDTD periodic structure modeling method
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Unit cell approach to full-wave analysis of meander delay line using FDTD periodic structure modeling method

机译:FDTD周期结构建模方法对曲折延迟线进行全波分析的单元格方法

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摘要

Unit cell modeling is performed to determine the effect of electromagnetic coupling on the propagation characteristics of a meander delay line, which is widely used in printed circuit boards and packages. Since the design of a delay line must guarantee several tens of picosecond timing margin in modern high-speed packages and board level interconnections, a penetrating understanding of the meander effect is essential. The propagation delay, the characteristic impedance, and the stop-band characteristic of the meander delay line have been carefully investigated based on a full-wave analysis using the finite-difference time-domain (FDTD) periodic structure modeling method. The periodicity of the meander line is utilized based on Floquet's theorem, resulting in a reduction of the computational domain in the FDTD simulation and providing a unit cell model of the meander line. The unit cell modeling of the meander delay line shows the effect of electromagnetic coupling in meander line structure on the reduction of the propagation delay. Also, an analysis based on the unit cell modeling was confirmed by time-domain reflection/transmission measurements.
机译:执行晶胞建模以确定电磁耦合对弯曲延迟线传播特性的影响,该电路广泛用于印刷电路板和封装中。由于延迟线的设计必须在现代高速封装和板级互连中保证数十皮秒的时序余量,因此对弯曲效应的透彻理解至关重要。基于有限差分时域(FDTD)周期结构建模方法的全波分析,已经仔细研究了弯曲延迟线的传播延迟,特性阻抗和阻带特性。基于弗洛奎特定理利用弯折线的周期性,从而减少了FDTD仿真中的计算域,并提供了弯折线的晶胞模型。蜿蜒延迟线的单位单元建模显示了蜿蜒线结构中电磁耦合对减小传播延迟的影响。另外,通过时域反射/透射测量证实了基于晶胞建模的分析。

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