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Bandwidth expanding technology for dynamic crosstalk aware single-walled and multi-walled carbon nanotube bundle interconnects

机译:用于动态串扰感知的单壁和多壁碳纳米管束互连的带宽扩展技术

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In view of scarce bandwidth resources, an inductive peaking technology is used to expand 3-dB bandwidth of the coupled single-walled and multi-walled carbon nanotube bundle interconnects, which take the dynamic crosstalk into account. Based on decoupling technique and ABCD parameter matrix approach, the transfer function of the decoupled victim line at global level of 14 nm technology node is derived to analyze and compare the bandwidth performance under different length, diameter, temperature and load resistance conditions. It is obvious that 3-dB bandwidth can be effectively expanded by adding peaking inductance to the load irrespective of phase-mode. However, the bandwidth will remain nearly unchanged once the adding inductance reaches a certain extent. Furthermore, the overshoot and undershoot in the step response will be caused with the further increase of the peaking inductance. On the other hand, it is shown that the value of 3-dB bandwidth at out-of-phase mode is much smaller than that at in-phase mode under the same condition.
机译:鉴于带宽资源稀缺,采用感应峰值技术来扩展耦合的单壁和多壁碳纳米管束互连的3-dB带宽,其中考虑了动态串扰。基于去耦技术和ABCD参数矩阵方法,推导了去耦牺牲线在14nm技术节点全局的传递函数,以分析和比较不同长度,直径,温度和负载电阻条件下的带宽性能。显然,无论相位模式如何,都可以通过向负载增加峰值电感来有效地扩展3dB带宽。但是,一旦增加电感达到一定程度,带宽将几乎保持不变。此外,随着峰值电感的进一步增加,将引起阶跃响应中的过冲和下冲。另一方面,在相同条件下,异相模式下的3-dB带宽值远小于同相模式下的3-dB带宽值。

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