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Performance Comparison Between Current-Mode Signaling and Voltage-Mode Signaling for Single-Walled Carbon Nanotube Bundle Interconnects

机译:单壁碳纳米管束互连的电流模式信号和电压模式信号之间的性能比较

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Compared with the traditional copper material, carbon nanotube (CNT) has been identified as one of the most potential materials for interconnects in nanometer regime due to higher performance. However, for CNT interconnects, most of the researches focus on voltage-mode signaling (VMS) scheme, whereas current-mode signaling scheme (CMS) is meagerly investigated. The paper proposes an equivalent circuit model of two-line coupled single-walled CNT bundle interconnects, which is applicable to both CMS and VMS schemes. In addition, the model takes capacitive and inductive crosstalk into consideration. In CMS and VMS interconnects, the performance of victim line in the time domain is studied according to decoupling technique and ABCD parameter matrix approach at local, intermediate and global levels, respectively. The influence of aggressor line on victim line is discussed because of dynamic crosstalk and functional crosstalk. Furthermore, the paper comparatively analyzes the performance advantage between CMS interconnects and VMS interconnects. The results show that CMS interconnects have lower output voltage swing and propagation delay than VMS interconnects in the same condition. In terms of noise, CMS scheme has higher advantage for lesser noise peak, noise width and noise area. Moreover, it is found that the results obtained by ABCD parameter matrix approach have great consistency with Advanced Design System simulation results.
机译:与传统的铜材料相比,碳纳米管(CNT)由于具有更高的性能而被公认为是纳米级互连中最具潜力的材料之一。然而,对于CNT互连,大多数研究都集中在电压模式信号传输(VMS)方案上,而电流模式信号传输方案(CMS)则研究得很少。本文提出了两线耦合单壁CNT束互连的等效电路模型,该模型适用于CMS和VMS方案。此外,该模型还考虑了电容性和电感性串扰。在CMS和VMS互连中,分别根据解耦技术和ABCD参数矩阵方法在局部,中间和全局级别研究时域中受害者线的性能。由于动态串扰和功能串扰,讨论了侵害线对受害线的影响。此外,本文比较分析了CMS互连和VMS互连之间的性能优势。结果表明,在相同条件下,CMS互连比VMS互连具有更低的输出电压摆幅和传播延迟。就噪声而言,CMS方案具有更高的优势,因为它具有较小的噪声峰值,噪声宽度和噪声面积。此外,发现通过ABCD参数矩阵方法获得的结果与Advanced Design System仿真结果具有很大的一致性。

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