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A New Efficient Domain Decomposition Method for Highly Irregular Via Patterns

机译:一种新的高效域分解方法,用于高度不规则的模式

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In the high-speed signal path on PCB and packagings, vias usually causes most discontinuities and thereby crosstalks. In simulation and characterizations, they also generate more errors than the trace parts due to rich modes around them. To achieve both efficiency and accuracy, in this paper, a new domain decomposition based finite element time domain (FETD) method is proposed for the analysis of power/ground plate pairs with various types of antipads. Using the magnetic field feature, the 3D computational domain is firstly represented by a quasi-2D field. Then by taking advantage of the fast decaying property of high order modes, the quasi-2D FETD is further simplified to a hybrid 2D/quasi-2D algorithm. Assisted by the wave-port excitation and its S-parameter extraction technique, irregularly shaped antipads of complex via patterns are benchmarked to demonstrate the accuracy and efficiency of the proposed algorithm.
机译:在PCB和包装上的高速信号路径中,VIA通常会导致大多数不连续性,从而导致串扰。在仿真和特征中,由于它们周围的丰富模式,它们也会产生比跟踪部件更多的错误。为了实现效率和准确性,本文提出了一种基于新的域分解的有限元时域(FETD)方法,用于分析各种类型的抗污染的电力/地板对。使用磁场特征,3D计算域首先由Quasi-2D字段表示。然后通过利用高阶模式的快速衰减特性,Quasi-2D FETD进一步简化为混合器2D / Quasi-2D算法。由波浪端口激励及其S参数提取技术辅助,复杂通络图案的不规则形状的突发数据是基准测试,以展示所提出的算法的准确性和效率。

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