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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Signal Transmission Analysis of Multilayer Graphene Nano-Ribbon (MLGNR) Interconnects
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Signal Transmission Analysis of Multilayer Graphene Nano-Ribbon (MLGNR) Interconnects

机译:多层石墨烯纳米带(MLGNR)互连的信号传输分析

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Signal transmission characteristics of some multilayer graphene nano-ribbon (MLGNR) interconnects are studied in this paper, with an equivalent single-conductor (ESC) model implemented for the analysis of their transient responses. In this model, both capacitive and inductive couplings between adjacent GNR layers are treated appropriately. According to the derived transfer function using the fourth-order approximation, the output voltage waveforms are predicted for both 14- and 22-nm technology nodes. In particular, the effects of Fermi level of MLGNR on the time delay of the transmitted rectangular pulse are examined and compared. Based on the decoupled partially differential equations (PDEs) for the common and differential modes of voltage wave propagation in the edge-coupled MLGNR interconnects, their output voltage responses are also predicted for different technology nodes, which are useful for the evaluation of on-chip signal integrity or EMC and EMI issues of MLGNR-built transmission lines for the future ICs.
机译:本文研究了一些多层石墨烯纳米带(MLGNR)互连的信号传输特性,并采用了等效单导体(ESC)模型来分析其瞬态响应。在此模型中,相邻GNR层之间的电容性和电感性耦合均得到适当处理。根据使用四阶近似法得出的传递函数,可以预测14纳米和22纳米技术节点的输出电压波形。特别地,检查并比较了MLGNR的费米能级对所发射矩形脉冲的时间延迟的影响。基于边缘耦合MLGNR互连中电压波传播的共模和差分模式的解耦的偏微分方程(PDE),还可以预测其在不同技术节点上的输出电压响应,这对于片上评估非常有用未来IC的MLGNR内置传输线的信号完整性或EMC和EMI问题。

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