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The analytical model for crosstalk noise of current-mode signaling in coupled RLC interconnects of VLSI circuits

The analytical model for crosstalk noise of current-mode signaling in coupled RLC interconnects of VLSI circuits
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摘要 With the continuous advancement of semiconductor technology, the interconnects crosstalk has had a great influence on the performances of VLSI circuits. To date, most of the research about the interconnects of VLSI circuits focus on the voltage-mode signaling (VMS) scheme while the current-mode signaling (CMS) scheme is rarely analyzed. First of all, an equivalent circuit model of two-line coupled interconnects is presented in this paper, which is applicable to both the CMS and VMS schemes. The coupling capacitive and mutual inductive are taken into account in the equivalent circuit model. Secondly, the output noise of CMS and VMS schemes are investigated in the paper according to the decoupling technique and A B CD parameter matrix approach at local level, intermediate level and global level, respectively. Moreover, the experimental results show that the CMS interconnects have lesser noise peak, noise width and noise amplitude than the VMS interconnects in the same cases, and the CMS scheme is especially suitable for the global interconnects communication of VLSI circuits. It is found that the results obtained by A B CD parameter matrix approach are in good accordance with the simulation results of the advanced design system. With the continuous advancement of semiconductor technology, the interconnects crosstalk has had a great influence on the performances of VLSI circuits. To date, most of the research about the interconnects of VLSI circuits focus on the voltage-mode signaling (VMS) scheme while the current-mode signaling (CMS) scheme is rarely analyzed. First of all, an equivalent circuit model of two-line coupled interconnects is presented in this paper, which is applicable to both the CMS and VMS schemes. The coupling capacitive and mutual inductive are taken into account in the equivalent circuit model. Secondly, the output noise of CMS and VMS schemes are investigated in the paper according to the decoupling technique and A B CD parameter matrix approach at local level, intermediate level and global level, respectively. Moreover, the experimental results show that the CMS interconnects have lesser noise peak, noise width and noise amplitude than the VMS interconnects in the same cases, and the CMS scheme is especially suitable for the global interconnects communication of VLSI circuits. It is found that the results obtained by A B CD parameter matrix approach are in good accordance with the simulation results of the advanced design system.
出处 《Journal of Semiconductors》 EI CAS CSCD 2017年第9期74-81,共8页 半导体学报(英文版)
基金 supported by the Guangdong Provincial Natural Science Foundation of China(No.2014A030313441) the Guangzhou Science and Technology Project(No.201510010169) the Guangdong Province Science and Technology Project(No.2016B090918071) the National Natural Science Foundation of China(No.61072028)
关键词 VLSI circuits interconnects crosstalk noise current-mode signaling decoupling technique A B CD parameter matrix VLSI circuits interconnects crosstalk noise current-mode signaling decoupling technique A B CD parameter matrix
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