Efficient inclusive analytical model for delay estimation of multi-walled carbon nanotube interconnects

被引:11
|
作者
Gholipour, M. [1 ]
Masoumi, N. [1 ]
机构
[1] Univ Tehran, Coll Engn, Sch Elect & Comp Engn, Adv VLSI Lab, Tehran 14395515, Iran
关键词
GLOBAL INTERCONNECTS; PERFORMANCE ANALYSIS; RESISTANCE;
D O I
10.1049/iet-cds.2011.0283
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Multi-walled carbon nanotubes (MWCNTs) have attracted much attention as very large scale integration (VLSI) chip interconnects, because of their high-current densities and excellent thermal and mechanical properties. This study investigates different aspects of the use of MWCNTs as chip routing wires to seek modern technologies for high-performance interconnects. Mathematical analyses, and simulations were made for MWCNT and Cu at global, intermediate and local interconnect levels. The authors propose a semi-analytical delay estimation model along with an equivalent RC model for MWCNT global interconnects. The results obtained from these models show good conformance with the simulation results. The proposed compact semi-analytical model can be used to perform fast analysis of MWCNT global interconnects, including delay, buffer insertion and crosstalk. The authors exploited their model to investigate the impact of buffer insertion on MWCNT interconnect delay. The optimal number of required buffers is estimated, as it minimises the MWCNT propagation delay. Analytical and simulation results show that the MWCNT interconnects require lower number of buffers compared to Cu wires.
引用
收藏
页码:252 / 259
页数:8
相关论文
共 50 条
  • [31] Chitosan and multi-walled carbon nanotube composite rods
    Zheng-ke Wang
    Qiao-ling Hu
    Lei Cai
    Chinese Journal of Polymer Science, 2010, 28 : 801 - 806
  • [32] Microtubule guiding in a multi-walled carbon nanotube circuit
    Sikora, Aurelien
    Ramon-Azcon, Javier
    Sen, Mustafa
    Kim, Kyongwan
    Nakazawa, Hikaru
    Umetsu, Mitsuo
    Kumagai, Izumi
    Shiku, Hitoshi
    Matsue, Tomokazu
    Teizer, Winfried
    BIOMEDICAL MICRODEVICES, 2015, 17 (04)
  • [33] Wet spinning of multi-walled carbon nanotube fibers
    Im, Jaegyun
    Jeong, Yun Ho
    Kim, Min Chan
    Oh, Daehan
    Son, Jeonghyun
    Hyun, Kyu
    Jeong, Beomjin
    Hong, Seungki
    Lee, Jaegeun
    CARBON, 2024, 216
  • [34] Preparation and Electrocatalysis of Multi-walled Carbon Nanotube Electrode
    Chen Jia-yue
    ENVIRONMENTAL PROTECTION AND RESOURCES EXPLOITATION, PTS 1-3, 2013, 807-809 : 2713 - 2717
  • [35] CHITOSAN AND MULTI-WALLED CARBON NANOTUBE COMPOSITE RODS
    胡巧玲
    Chinese Journal of Polymer Science, 2010, (05) : 801 - 806
  • [36] Durability of multi-walled carbon nanotube reinforced concrete
    Carrico, A.
    Bogas, J. A.
    Hawreen, A.
    Guedes, M.
    CONSTRUCTION AND BUILDING MATERIALS, 2018, 164 : 121 - 133
  • [37] Applications of multi-walled carbon nanotube in electronic packaging
    Tan, Cher Ming
    Baudot, Charles
    Han, Yongdian
    Jing, Hongyang
    NANOSCALE RESEARCH LETTERS, 2012, 7 : 1 - 7
  • [38] Surface Modification and Characterization of Multi-Walled Carbon Nanotube
    Kanbur, Yasin
    Kucukyavuz, Zuhal
    FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES, 2011, 19 (06) : 497 - 504
  • [39] Wetting behavior of multi-walled carbon nanotube nanofluids
    Karthikeyan, A.
    Coulombe, S.
    Kietzig, A. M.
    NANOTECHNOLOGY, 2017, 28 (10)
  • [40] Terahertz characterization of multi-walled carbon nanotube films
    Wu, Ziran
    Wang, Lu
    Peng, Yitian
    Young, Abram
    Seraphin, Supapan
    Xin, Hao
    JOURNAL OF APPLIED PHYSICS, 2008, 103 (09)