• DocumentCode
    1100623
  • Title

    Amorphous Silicon Thin-Film Transistor Backplanes Deposited at 200 ^{\\circ}{\\hbox {C}} on Clear Plastic for Lamination to Electrophoretic Displays

  • Author

    Kattamis, Alex Z. ; Cheng, I-Chun ; Long, Ke ; Hekmatshoar, Bahman ; Cherenack, Kunigunde H. ; Wagner, Sigurd ; Sturm, James C. ; Venugopal, Sameer M. ; Loy, Douglas E. ; Rourke, Shawn M O ; Allee, David R.

  • Author_Institution
    Princeton Univ., Princeton
  • Volume
    3
  • Issue
    3
  • fYear
    2007
  • Firstpage
    304
  • Lastpage
    308
  • Abstract
    The transition of thin-film transistor (TFT) backplanes from rigid plate glass to flexible substrates requires the development of a generic TFT backplane technology on a clear plastic substrate. To be sufficiently stable under bias stress, amorphous-silicon (a-Si:H) TFTs must be deposited at elevated temperatures, therefore the substrate must withstand high temperatures. We fabricated a-Si:H TFT backplanes on a clear plastic substrate at 200degC. The measured stability of the TFTs under gate bias stress was superior to TFTs fabricated at 150degC. The substrate was dimensionally stable within the measurement resolution of 1, allowing for well-aligned 8 times 8 and 32 times 32 arrays of pixels. The operation of the backplane is demonstrated with an electrophoretic display. This result is a step toward the drop-in replacement of glass substrates by plastic foil.
  • Keywords
    amorphous semiconductors; display devices; electrophoresis; laminations; plastics; semiconductor device measurement; silicon; thin film transistors; Si:H; TFT; amorphous silicon thin-film transistor backplanes; bias stress; drop-in replacement; electrophoretic displays; flexible substrates; plastic foil; plastic lamination; rigid plate glass; temperature 150 C; temperature 200 C; Amorphous silicon; Backplanes; Displays; Glass; Plastics; Stability; Stress measurement; Substrates; Temperature; Thin film transistors; Amorphous silicon thin-film transistor (a-Si:H TFT); clear plastic; electrophoretic display; flexible; stability;
  • fLanguage
    English
  • Journal_Title
    Display Technology, Journal of
  • Publisher
    ieee
  • ISSN
    1551-319X
  • Type

    jour

  • DOI
    10.1109/JDT.2007.900935
  • Filename
    4292132