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Modelling and analysis of crosstalk induced noise effects in bundle SWCNT interconnects and its impact on signal stability

机译:串扰SWCNT互连中串扰引起的噪声效应的建模和分析及其对信号稳定性的影响

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In order to analyse crosstalk delay and stability in single wall carbon nanotube bundle (SWCNT) interconnects, the time and frequency domain response are investigated in this paper. Based on the transmission line model and by using matrix formulation, we perform the Nyquist stability analysis to survey the dependence of the degree of relative stability for coupled SWCNT bundle interconnects. We present an exact transfer function formula for a SWCNT bundle and two coupled SWCNT bundle interconnects. The proposed model can be extended to coupled n bundled SWCNT interconnects. In order to demonstrate the crosstalk effects, we seek to compare the coupled SWCNT bundle interconnects with the SWCNT bundle interconnect. The results show that due to the capacitive and mutual inductive couplings between two SWCNT bundles, the stability of near-end output increases and the created undesirable voltage on the far-end output may reduce the stability and degrade logic. Also, it is observed that stability and switching delay of near-end output increases with increasing the interconnect length and diameter. Furthermore, maximum overshoot and switching delay of far-end output increases with length and diameter of interconnect. Also, as the parasitic coupling capacitance increases and the mutual inductance decreases, stability of near-end output increases whereas the stability of the far-end output decreases. Finally, compared to Advanced Design System results, the model exhibits an excellent accuracy.
机译:为了分析单壁碳纳米管束(SWCNT)互连中的串扰延迟和稳定性,本文研究了时域和频域响应。基于传输线模型并使用矩阵公式,我们执行奈奎斯特稳定性分析以调查耦合的SWCNT束互连的相对稳定性程度的依赖性。我们为SWCNT束和两个耦合的SWCNT束互连提供了精确的传递函数公式。所提出的模型可以扩展到耦合的n个捆绑的SWCNT互连。为了证明串扰效应,我们试图将耦合的SWCNT束互连与SWCNT束互连进行比较。结果表明,由于两个SWCNT束之间的电容性和互感性耦合,近端输出的稳定性增加,并且在远端输出上创建的不良电压可能会降低稳定性并降低逻辑。此外,可以观察到,随着互连长度和直径的增加,近端输出的稳定性和切换延迟也会增加。此外,远端输出的最大过冲和切换延迟会随着互连的长度和直径而增加。另外,随着寄生耦合电容的增加和互感的减小,近端输出的稳定性增加,而远端输出的稳定性降低。最后,与Advanced Design System结果相比,该模型具有极好的准确性。

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