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Robust Design of High-Speed Interconnects Based on an MWCNT

机译:基于MWCNT的高速互连器的鲁棒设计

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摘要

A robust design of the propagation characteristics of interconnect structures based on multiwall carbon nanotubes (MWCNTs) is carried out. The study allows us to identify the minimum number of shells N of the MWCNT able to guarantee that the time delay at 50% outperforms the Cu-based solution for the upcoming technology nodes, taking into account the uncertainties affecting other geometrical and physical parameters of the device. Such an investigation is carried out in the most severe conditions for the MWCNTs-based device, i.e., for short and thin wire structures, starting from the minimum interconnect length for which the MWCNT outperforms the Cu-based solution. A worst case polynomial expression of the time delay as a function of the number of the shells of the MWCNT, obtained on the basis of the equivalent single conductor model of the nano-interconnect, is adopted for the optimization procedure. The minimum number of shells that lead to outperform the Cu-based solution is determined by the use of an approach relying on a particular application of the interval analysis to find the upper bound of the performance function. The quality of the results is checked by a Monte Carlo analysis.
机译:对基于多壁碳纳米管(MWCNT)的互连结构的传播特性进行了鲁棒性设计。这项研究使我们能够确定MWCNT的最小壳数N,从而能够考虑到影响碳纳米管其他几何和物理参数的不确定性,从而确保50%的时延优于即将到来的技术节点的基于铜的解决方案。设备。对于基于MWCNTs的器件,即最短条件和最细的导线结构,是在最严酷的条件下进行此类研究的,其起始条件是MWCNT优于Cu-based解决方案的最小互连长度。优化程序采用了根据纳米互连的等效单导体模型获得的,随MWCNT壳数变化的时间延迟的最坏情况多项式表达式。导致性能优于基于铜的解决方案的最小壳体数量是通过使用一种方法来确定的,该方法依赖于间隔分析的特定应用程序来查找性能函数的上限。通过蒙特卡洛分析检查结果的质量。

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