• DocumentCode
    1051943
  • Title

    Analog/RF Performance of Multichannel SOI MOSFET

  • Author

    Lim, Tao Chuan ; Bernard, Emilie ; Rozeau, Olivier ; Ernst, Thomas ; Guillaumot, Bernard ; Vulliet, Nathalie ; Buj-Dufournet, Christel ; Paccaud, Michel ; Lepilliet, Sylvie ; Dambrine, Gilles ; Danneville, François

  • Author_Institution
    CNRS, Inst. d´´Electron. de Microelectron. et de Nanotechnol., Villeneuve-d´´Ascq
  • Volume
    56
  • Issue
    7
  • fYear
    2009
  • fDate
    7/1/2009 12:00:00 AM
  • Firstpage
    1473
  • Lastpage
    1482
  • Abstract
    In this paper, for the first time, we present a detailed RF experimental and simulation study of a 3-D multichannel SOI MOSFET (MCFET). Being different from the conventional planar technology, the MCFET features a total of three self-aligned TiN/HfO2 gate stacks fabricated on top of each other, allowing current to flow through the three undoped ultrathinned silicon bodies (UTBs). In other words, the operation of the MCFET is theoretically based on two UTB double-gate SOIs and a single-gate UTB fully depleted SOI (FDSOI) at the bottom. Using on-wafer S-parameters, the RF/analog figures-of-merit of an MCFET with a gate length of 50 nm are extracted and discussed. Thanks to the enormous transconductance (gm) and very low output conductance, the RF/analog performances of MCFET-voltage gain (A VI) and early voltage (V EA) are superior compared with that of the single-gate UTB-FDSOI. However, these advantages diminish in terms of transition frequency (fT), due to the large total input gate capacitances (C GG). This inspires the introduction of spacer engineering in MCFET, aiming at improving both C GG and fT. The sensitivity of the spacer length to the RF/analog performances is experimentally analyzed, and the performance optimization is validated using ac simulation. This paper concludes that optimized MCFETs are a serious contender to the mainstream MOSFETs including FinFETs for realizing future low-power analog applications.
  • Keywords
    Ge-Si alloys; MOSFET; S-parameters; electrical conductivity; silicon-on-insulator; 3-D multichannel SOI MOSFET; MCFET; RF figures-of-merit; Si-SiGe; analog-figures-of-merit; on-wafer S-parameters; self-aligned gate stacks; size 50 nm; transconductance; transition frequency; ultrathinned silicon bodies; Capacitance; Hafnium oxide; MOSFET circuits; Performance gain; Radio frequency; Scattering parameters; Silicon; Tin; Transconductance; Voltage; Early voltage; high frequency (HF); multichannel MOSFET; silicon; silicon-on-insulator (SOI); voltage gain;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2009.2021438
  • Filename
    5061648