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Effect of Current Mode Signaling in Carbon Nanotube On-Chip Interconnect

机译:碳纳米管片上互连中电流模式信号的影响

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摘要

A novel signaling technique for on-chip carbon nanotube interconnect aiming a higher bitrate in the range of Terahertz (THz) with low power dissipation, employing the current mode signal transportation is proposed in this paper. The technique exploits the combined advantages of current mode signaling and carbon nanotube. Using the equivalent circuit model, the transfer function is derived for the current mode carbon nanotube interconnect. Current mode signaling through carbon nanotube interconnect is simulated in MATLAB and HSPICE to study its efficiency and performance. The results are compared with the existing voltage mode CNT, current mode copper and optical interconnect. The proposed current mode signaling for carbon nanotube interconnect achieves 10 2 times lesser power delay product and 90% lesser delay than voltage mode. It exhibits lesser delay, 1000 times in local and 1.2 times in global and lesser power delay product by the factor of 1000 as compared with optical interconnect.
机译:本文提出了一种新颖的信号传输技术,该技术采用电流模式信号传输技术,旨在以较低的功耗在太赫兹(THz)范围内实现更高的比特率。该技术利用了电流模式信号和碳纳米管的综合优势。使用等效电路模型,可以导出电流模式碳纳米管互连的传递函数。在MATLAB和HSPICE中模拟了通过碳纳米管互连的电流模式信号,以研究其效率和性能。将结果与现有的电压模式CNT,电流模式铜和光学互连进行比较。所提出的用于碳纳米管互连的电流模式信令与电压模式相比,其功率延迟积小10倍,而延迟则小90%。与光互连相比,它显示的延迟更短,本地延迟为1000倍,全局延迟为1.2倍,功率延迟乘积也较小,仅为1000倍。

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