• DocumentCode
    1045775
  • Title

    The Impact of Total Ionizing Dose on Unhardened SRAM Cell Margins

  • Author

    Yao, Xiaoyin ; Hindman, Nathan ; Clark, Lawrence T. ; Holbert, Keith E. ; Alexander, R. ; Shedd, Walter M.

  • Author_Institution
    Dept. of Electr. Eng., Arizona State Univ., Tempe, AZ
  • Volume
    55
  • Issue
    6
  • fYear
    2008
  • Firstpage
    3280
  • Lastpage
    3287
  • Abstract
    Static random access memory (SRAM) cells have diminishing read and write margins due to fabrication variations. These variations are a direct result of the small device sizes necessary to maintain scaling commensurate with Moore´s law. Total ionizing dose (TID) primarily affects NMOS device characteristics, which are the most important to maintaining SRAM cell read stability. A test structure allowing direct measurement of SRAM cell electrical characteristics in an SRAM memory bank is presented. Experimentally measured results from this structure, fabricated on a 90 nm process, show impact of Co-60 irradiation on SRAM cell margins. This test structure is fabricated on the same die as a 1.2 Mbit SRAM, allowing comparison of the individual cell characteristics with the overall leakage impact on the large SRAM. The results indicate that by simply providing sufficient margins during SRAM cell design, functionality at high TID can be achieved without the use of radiation hardening by design (RHBD) techniques. The implications for future unhardened SRAMs operating in TID environments and on design to maintain margins are discussed.
  • Keywords
    SRAM chips; logic design; Co-60 irradiation; Moore law; NMOS device characteristic; cell electrical characteristic; memory bank; radiation hardening by design techniques; size 90 nm; static random access memory; storage capacity 1.2 Mbit; total ionizing dose impact; unhardened SRAM cell margins; Electric variables; Electric variables measurement; Fabrication; MOS devices; Moore´s Law; Radiation hardening; Random access memory; SRAM chips; Stability; Testing; Static random access memory; VLSI test structures; total ionizing dose;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2008.2007122
  • Filename
    4723767