DocumentCode :
605296
Title :
Compact Models for Transient Analysis of Single-Layer Graphene Nanoribbon Interconnects
Author :
Kumar, Pranaw ; Singh, Ashutosh ; Garg, Adesh ; Sharma, Ritu
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Ropar, Rupnagar, India
fYear :
2013
fDate :
10-12 April 2013
Firstpage :
809
Lastpage :
814
Abstract :
Carbon based interconnects have shown immense potential as a candidate to replace traditional copper interconnects for on-chip applications. In that, 2D Graphene Nanoribbon (GNR) interconnects offer superior electrical properties owing to larger mean free paths of electrons and better current carrying capabilities. Single-layer GNR interconnects can be considered as the simplest form of planar carbon-based interconnects for on-chip applications. In this paper, we present closed-form models for computing transfer function of single-layer GNR interconnects. Further, we present the transient analysis of these interconnects, in that we report analytical solutions for 50% delay time, 90% rise time and energy dissipation. The proposed models exhibit excellent accuracy when compared to simulated data while providing physical insights into the effect of quantum capacitance on 50% delay and energy estimation. The proposed models are highly accurate, in that they closely match with data generated from simulations as well as that in the previously published literature.
Keywords :
graphene; integrated circuit interconnections; nanoribbons; transient analysis; 2D graphene nanoribbon interconnects; C; carbon based interconnects; closed-form models; delay time; electrical properties; energy dissipation; on-chip applications; planar carbon-based interconnects; quantum capacitance; single-layer graphene nanoribbon interconnects; transfer function; transient analysis; Delays; Energy dissipation; Integrated circuit interconnections; Quantum capacitance; Resistance; Transfer functions; 3 dB frequency; EDP (energy delay product); GNR; delay; energy; interconnects; time-domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Modelling and Simulation (UKSim), 2013 UKSim 15th International Conference on
Conference_Location :
Cambridge
Print_ISBN :
978-1-4673-6421-8
Type :
conf
DOI :
10.1109/UKSim.2013.80
Filename :
6527523
Link To Document :
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