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A Unified Delay, Power and Crosstalk Model for Current Mode Signaling Multiwall Carbon Nanotube Interconnects

机译:电流模式信号多壁碳纳米管互连的统一延迟,功率和串扰模型

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Multiwall carbon nanotube (MWCNT) has been investigated as a potential interconnect material for future advanced technology nodes. The present paper analyzes performance of MWCNT interconnects using current mode signaling (CMS) scheme. The novelty of the present work can be stated as: Firstly, a unified model is proposed for both copper and MWCNT interconnects using finite-difference time-domain (FDTD) technique. Secondly, this model is applicable for both the conventional voltage mode signaling and more versatile CMS schemes. Furthermore, the presented FDTD-based model is valid for single as well as M-line coupled interconnects in integrated circuits. The model also incorporates CMOS gate as driver for MWCNT interconnect. Thirdly, power model using FDTD technique is investigated for the first time. Accurate formulation and computation of power dissipation in CMS MWCNT interconnects are presented in the paper. Propagation delay, power dissipation and power_delay_product (PDP) are the performance metrics considered for single-line CMS MWCNT interconnect. Crosstalk is analyzed for 2-Line and 5-Line coupled interconnects. It is investigated that CMS scheme leads to about 4 times lesser propagation delay and 2.5 times reduced PDP in MWCNT interconnect than the conventional copper interconnect for interconnect length of 4500 m. The technology node considered is 32 nm. The response of the system is accurately computed using the proposed FDTD-based model. The maximum percentage error between results obtained by the proposed analytical model and SPICE simulation model is 3% for the various test cases.
机译:多壁碳纳米管(MWCNT)已被研究为未来先进技术节点的潜在互连材料。本文分析了使用电流模式信令(CMS)方案的MWCNT互连的性能。本文工作的新颖性可以说是:首先,提出了使用时域有限差分(FDTD)技术的铜和MWCNT互连的统一模型。其次,该模型适用于常规电压模式信令和更通用的CMS方案。此外,所提出的基于FDTD的模型对于集成电路中的单线以及M线耦合互连都是有效的。该模型还集成了CMOS栅极作为MWCNT互连的驱动器。第三,首次研究了采用FDTD技术的功率模型。本文介绍了CMS MWCNT互连中功耗的准确公式和计算。传播延迟,功耗和power_delay_product(PDP)是单线CMS MWCNT互连考虑的性能指标。分析了2线和5线耦合互连的串扰。研究表明,对于4500 m的互连长度,CMS方案在MWCNT互连中导致的传播延迟小约4倍,PDP降低2.5倍。所考虑的技术节点为32 nm。使用建议的基于FDTD的模型可准确计算系统的响应。对于各种测试案例,通过建议的分析模型和SPICE仿真模型获得的结果之间的最大百分比误差为<3%。

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