• DocumentCode
    3193066
  • Title

    A Simplified Model of Carbon Nanotube Transistor with Applications to Analog and Digital Design

  • Author

    Sinha, Saurabh ; Balijepalli, Asha ; Cao, Yu

  • Author_Institution
    Arizona State Univ., Tempe
  • fYear
    2008
  • fDate
    17-19 March 2008
  • Firstpage
    502
  • Lastpage
    507
  • Abstract
    A compact model for the Carbon nanotube transistor (CNFET) is presented in this work. This simple model aids the first-order analysis for digital and analog design with CNFET. Based on the physical understanding of ballistic transport in the CNFET channel and tunneling at the Schottky barrier contacts, we develop a set of closed- form expressions that predict the device behavior with varying process and bias conditions. Using this model, we compare a CNFET with 22 nm MOSFET in both digital and analog domains. We conclude that (1) a CNFET digital circuit can be more than 1 OX faster than 22 nm CMOS; (2) there is 1 OX improvement in gmfor comparable device dimensions, and (3) >25X improvement in gosfor comparable saturation current. This simple, scalable model is an efficient tool for analytical treatment of CNFET based circuits, revealing potential design opportunities, especially in the analog domain.
  • Keywords
    Schottky barriers; carbon nanotubes; field effect transistors; nanotechnology; CNFET channel; MOSFET; Schottky barrier contacts; analog design; ballistic transport; carbon nanotube transistor; digital design; first-order analysis; Ballistic transport; CMOS process; CMOS technology; CNTFETs; Carbon nanotubes; Coaxial components; MOSFETs; Process design; Semiconductor device modeling; Tunneling; CNT; Schottky barrier; analog design metrics; modeling;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Quality Electronic Design, 2008. ISQED 2008. 9th International Symposium on
  • Conference_Location
    San Jose, CA
  • Print_ISBN
    978-0-7695-3117-5
  • Type

    conf

  • DOI
    10.1109/ISQED.2008.4479786
  • Filename
    4479786