• DocumentCode
    1523208
  • Title

    New Ballasting Layout Schemes to Improve ESD Robustness of I/O Buffers in Fully Silicided CMOS Process

  • Author

    Ker, Ming-Dou ; Chen, Wen-Yi ; Shieh, Wuu-Trong ; Wei, I-Ju

  • Author_Institution
    Nanoelectron. & Gigascale Syst. Lab., Nat. Chiao Tung Univ., Hsinchu, Taiwan
  • Volume
    56
  • Issue
    12
  • fYear
    2009
  • Firstpage
    3149
  • Lastpage
    3159
  • Abstract
    Silicidation has been reported to result in substantial negative impact on the electrostatic discharge (ESD) robustness of MOS field-effect transistors. Although silicide blocking (SB) is a useful method to alleviate ESD degradation from silicidation, it requires additional mask and process steps to somehow increase the fabrication cost. In this paper, two new ballasting layout schemes to effectively improve the ESD robustness of input/output (I/O) buffers with fully silicided NMOS and PMOS transistors have been proposed. Ballasting technique in layout is a cost-effective method to enhance the ESD robustness of fully silicided devices. Experimental results from real IC products have confirmed that the new ballasting layout schemes can successfully increase the HBM ESD robustness of fully silicided I/O buffers from the original 1.5 kV to over 6 kV without using the additional SB mask.
  • Keywords
    CMOS integrated circuits; MOSFET; electrostatic discharge; ESD robustness; MOS field-effect transistors; ballasting layout schemes; electrostatic discharge; fully silicided CMOS process; fully silicided NMOS transistors; fully silicided PMOS transistors; input-output buffers; CMOS process; Costs; Degradation; Electronic ballasts; Electrostatic discharge; FETs; Fabrication; Robustness; Silicidation; Silicides; Ballast resistance; ESD protection; electrostatic discharge (ESD); input/output (I/O) buffer; silicidation;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2009.2031003
  • Filename
    5299049