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Systematic Lumped-Element Modeling of Differential IC Transmission Lines

机译:差分IC传输线的系统集总建模

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In this paper, we report a systematic and efficient approach to obtain lumped-element models for differential integrated-circuit interconnect transmission lines covering both the low-frequency R/C as well as the high-frequency quasi-TEM behavior. To accurately model signal delay and loss, and to preserve causality, the frequency dependence of both line resistance as well as the line inductance is included in our model. The impact of ground inductance is also properly covered by the model. The validity of our approach is verified against experimental data collected up to 120 GHz for the even and odd modes on these differential transmission lines. We predict that these lines can transport data over 1-cm distance with rates up to 40 Gb/s, even with some imbalance in differential drive.
机译:在本文中,我们报告了一种系统有效的方法,用于获得涵盖低频R / C和高频准TEM行为的差分集成电路互连传输线的集总模型。为了准确地对信号延迟和损耗进行建模,并保持因果关系,我们的模型包括了线路电阻和线路电感的频率相关性。该模型还可以正确覆盖接地电感的影响。针对这些差分传输线上的偶数和奇数模式,针对高达120 GHz的实验数据验证了我们方法的有效性。我们预测,即使差分驱动器存在一些不平衡,这些线路也可以以1厘米的距离传输数据,速率高达40 Gb / s。

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