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Comparative analysis of copper and CNT interconnects for H-tree clock distribution

机译:H树钟钟分布铜和CNT互连的比较分析

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Clock distribution network is an important part of digital integrated circuits. The clock signal carried by the distribution network has to reach every end node at the same time to ensure synchronized switching. Due to mismatches among different nodes of the H-tree, the clock transitions among the final nodes of the distribution tree show some time difference, the maximum of which is called clock skew. In modern CMOS technologies, copper interconnect is popular for high level interconnects such as clock and power routing. Carbon Nanotube (CNT) exhibits less resistivity than copper making it a better material for interconnect. This paper compares the impact on clock skew of H-tree clock distribution network by replacing the traditional copper interconnects with carbon nanotube interconnects. By applying temperature mismatch, threshold voltage mismatch, and process mismatch, our findings show that using carbon nanotube interconnects reduces the clock skew significantly compared to traditional copper interconnects.
机译:时钟分配网络是数字集成电路的重要组成部分。由分配网络承载的时钟信号必须同时到达每个端节点以确保同步切换。由于H树的不同节点之间的不匹配,分发树的最终节点之间的时钟转换显示了一些时间差,其最大称为时钟偏斜。在现代CMOS技术中,铜互连对于诸如时钟和电源路由等高级互连的流行。碳纳米管(CNT)表现出比铜的电阻率更低,使其成为互连的更好材料。本文比较了用碳纳米管互连的传统铜互连对H树时钟分配网络时钟歪斜的影响。通过施加温度不匹配,阈值电压不匹配和过程不匹配,我们的研究结果表明,与传统的铜互连相比,使用碳纳米管互连可显着减少时钟偏斜。

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