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Evaluation of the PTSI Crosstalk Noise Analysis Tool and Development of an Automated Spice Correlation Suite to Enable Accuracy Validation

机译:评估PTSI串扰噪声分析工具和自动化香料相关套件的开发,实现精度验证

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As process geometries are shrinking, width of the metal layer is continuously decreasing, height of the layer and wire lengths are increasing, thereby increasing the effect of coupling capacitances. Coupling induced crosstalk may induce unwanted noise on coupled signal nets resulting in functional failure and performance degradation and becomes a significant limitation in achieving first pass silicon success. At the same time the complexity of noise analysis has significantly increased due to factors such as driver weakening, IR drop, power network switching, voltage scaling and variations in manufacturing processes. Therefore validating the capabilities and verifying the analysis of a crosstalk analysis tool for current and future process nodes is very critical for efficient and accurate signoff analysis. The modeling of the cell itself needs to be accurate and comprehensive. The objective of the paper is to share the methodology and challenges involved in Crosstalk Noise Analysis and how the Composite Current Source (CCS) based Crosstalk Noise Analysis capability of PrimeTime SI would help us achieve many of our goals.
机译:作为过程几何形状正在收缩,金属层的宽度连续降低,层和线长度的高度增加,从而增加耦合电容的效果。耦合诱导的串扰可以在耦合信号网上诱导不需要的噪声,导致功能故障和性能下降,并且成为实现首先通过硅成功的显着限制。同时,由于驾驶员弱化,IR下降,电网切换,电压缩放和制造过程的变化,噪声分析的复杂性显着增加。因此,验证功能和验证对当前和未来流程节点的串扰分析工具的分析对于高效和准确的签收分析非常关键。细胞本身的建模需要准确和全面。本文的目的是分享参与串扰噪声分析的方法和挑战,以及如何基于基于基于MINETIME SI的基于串扰的串扰噪声分析能力,这将有助于我们实现许多目标。

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