• DocumentCode
    3444224
  • Title

    Material dependence of hydrogen diffusion: implications for NBTI degradation

  • Author

    Krishnan, A.T. ; Chancellor, C. ; Chakravarthi, S. ; Nicollian, P.E. ; Reddy, V. ; Varghese, A. ; Khamankar, R.B. ; Krishnan, S.

  • Author_Institution
    Silicon Technol. Dev., Texas Instruments, Dallas, TX
  • fYear
    2005
  • fDate
    5-5 Dec. 2005
  • Lastpage
    691
  • Abstract
    Negative bias temperature instability (NBTI) is known to exhibit significant recovery upon removal of the gate voltage. The process dependence of this recovery behavior is studied by using the time slope (n) as the monitor. We observe a systematic variation of n with oxide thickness, nitrogen concentration, and fluorine implantation. Incorporation of the material dependence of the diffusivity within the reaction-diffusion (R-D) framework captures the observed trends. The consequences of this modification are (a) diffusion limitation is shown to arise from diffusion in poly-Si, rather than oxide, (b) a plausible explanation for low-voltage stress induced leakage current (LV-SILC) naturally appears. Important findings are (a) NBTI degradation remains significant at high frequencies, (b) numerical simulations at moderate frequencies can be used to predict circuit impact in the GHz regime, (c) high frequency operation can be modeled as a lower effective DC stress
  • Keywords
    MOSFET; fluorine; hydrogen; leakage currents; low-power electronics; nitrogen; reaction-diffusion systems; semiconductor device breakdown; semiconductor device models; thermal stability; DC stress; H; LV-SILC; NBTI degradation; R-D framework; fluorine implantation; high frequency operation; hydrogen diffusion; low-voltage stress induced leakage current; negative bias temperature instability; nitrogen concentration; oxide thickness; poly-silicon diffusion; reaction-diffusion; systematic variation; Degradation; Frequency; Hydrogen; Monitoring; Negative bias temperature instability; Niobium compounds; Nitrogen; Stress; Titanium compounds; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electron Devices Meeting, 2005. IEDM Technical Digest. IEEE International
  • Conference_Location
    Washington, DC
  • Print_ISBN
    0-7803-9268-X
  • Type

    conf

  • DOI
    10.1109/IEDM.2005.1609445
  • Filename
    1609445