• DocumentCode
    3518321
  • Title

    Electrostatic discharge protection in silicon-on-insulator technology

  • Author

    Voldman, S. ; Hui, D. ; Warriner, L. ; Young, D. ; Williams, R. ; Howard, John ; Gross, V. ; Rausch, W. ; Leobangdung, E. ; Sherony, M. ; Rohrer, N. ; Akrout, C. ; Assaderaghi, F. ; Shahidi, G.

  • Author_Institution
    IBM Corp., Essex Junction, VT, USA
  • fYear
    1999
  • fDate
    4-7 Oct. 1999
  • Firstpage
    68
  • Lastpage
    71
  • Abstract
    Electrostatic discharge (ESD) protection in silicon-on-insulator (SOI) semiconductor technology is perceived as a major roadblock for the SOI technology to become a viable mainstream contender for high-performance advanced CMOS semiconductor chips (Hu, 1994; Colinge, 1991). In this paper, our results in four successive SOI technology generations demonstrate that excellent ESD protection levels are achievable in SOI chips with no additional masking steps, process implants, costs or ESD design area. ESD results also show that the ESD robustness of the SOI ESD device is improving with partially depleted SOI MOSFET scaling from 0.25 to 0.12 /spl mu/m L/sub eff/ technology generations (Shahidi et al., 1999; Voldman et al., 1995, 1997, 1999). By allowing the ESD network minimum design to scale with the technology, improved ESD results are evident in each generation with no indication of any SOI-specific ESD limitations. For future technology generations below 1.5 V V/sub DD/ power supply, continued improvement is anticipated due to buried-oxide scaling, lower trigger voltages, dynamic threshold voltage MOSFET (DTMOS) techniques and ESD I/O design learning (Voldman et al, 1997; Assaderaghi et al., 1994). ESD protection of partially depleted SOI technology is not a problem or technology concern using our proposed ESD methodology.
  • Keywords
    CMOS integrated circuits; MOSFET; buried layers; electrostatic discharge; integrated circuit design; integrated circuit technology; protection; silicon-on-insulator; 0.12 to 0.25 micron; 1.5 V; CMOS semiconductor chips; DTMOS techniques; ESD I/O design learning; ESD design area; ESD methodology; ESD network minimum design scaling; ESD protection; ESD protection levels; ESD robustness; SOI ESD device; SOI chips; SOI semiconductor technology; SOI technology; SOI technology generations; SOI-specific ESD limitations; Si-SiO/sub 2/; buried-oxide scaling; dynamic threshold voltage MOSFET techniques; electrostatic discharge protection; masking steps; partially depleted SOI MOSFET scaling; partially depleted SOI technology; power supply; process cost; process implants; silicon-on-insulator technology; trigger voltages; CMOS technology; Costs; Electrostatic discharge; Implants; MOSFET circuits; Power generation; Protection; Robustness; Silicon on insulator technology; Threshold voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SOI Conference, 1999. Proceedings. 1999 IEEE International
  • Conference_Location
    Rohnert Park, CA, USA
  • ISSN
    1078-621X
  • Print_ISBN
    0-7803-5456-7
  • Type

    conf

  • DOI
    10.1109/SOI.1999.819858
  • Filename
    819858