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Practical aspects of modeling apertures for signal and power integrity co-simulation

机译:信号和功率完整性共同仿真孔径建模的实用方面

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When the return path of a signal is not continuous, unwanted noise will couple to the return current, leading to worsening of the signal waveform. To prevent such a signal integrity issue, a thorough understanding of the physics of the return path discontinuity (RPD) is critical. This paper presents analysis and quantification of the impact of RPDs in the presence of a power delivery network. The study of the different types of RPDs, such as a gap between reference planes and an aperture, provides designing and modeling guidelines. The guidelines are applied to an efficient PDN analysis method to further improve computational efficiency.
机译:当信号的返回路径不连续时,不需要的噪声将耦合到返回电流,导致信号波形恶化。为了防止这种信号完整性问题,彻底了解返回路径不连续性(RPD)的物理是至关重要的。本文介绍了RPD在电力传递网络的存在中的影响和量化。对不同类型的RPD的研究,例如参考平面和孔径之间的间隙,提供了设计和建模指南。该指南应用于高效的PDN分析方法,以进一步提高计算效率。

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