• DocumentCode
    1276915
  • Title

    Electrophoretic Displays Fabricated on Ultra-Slim Flexible Glass Substrates

  • Author

    Garner, Sean M. ; He, Mingqian ; Lo, Po-Yuan ; Sung, Chao-Feng ; Liu, Chueh-Wen ; Hsieh, Yen-Min ; Hsu, Rebecca ; Ding, Jau-Min ; Hu, Je-Ping ; Chan, Yi-Jen ; ChiehLin, James Jen ; Li, Xinghua ; Sorensen, Michael ; Li, Jianfeng ; Cimo, Patrick ; Kuo, Chia

  • Author_Institution
    Corning Inc., Corning, NY, USA
  • Volume
    8
  • Issue
    10
  • fYear
    2012
  • Firstpage
    590
  • Lastpage
    595
  • Abstract
    Ultra-slim flexible glass substrates enable high performance displays and electronic devices through their inherent benefits of a high-quality surface, process compatibility, thermal and dimensional stability, optical transmission, and barrier properties. This study demonstrates use of flexible glass as a backplane substrate for both active matrix displays with organic thin-film transistors (TFTs) as well as segmented displays. The demonstrated 4.7-inch active matrix VGA displays have a resolution of 170 dpi (640×480 pixels), pixel size of 150 μm × 150 μm, and aperture ratio of 40%. The dimensional stability benefit of flexible glass was clearly observed when compared to the registration of polymer substrate devices. This study demonstrates the capability and benefits of flexible glass substrates in devices fabricated with solution-based processing as a step toward roll-to-roll flexible electronic fabrication.
  • Keywords
    electrophoretic displays; flexible displays; polymers; thin film transistors; SiO2; active matrix VGA displays; backplane substrate; barrier properties; dimensional stability; electronic devices; electrophoretic displays; high-quality surface; optical transmission; organic TFT; organic thin-film transistors; polymer substrate device registration; process compatibility; roll-to-roll flexible electronic fabrication; segmented displays; size 4.7 inch; solution-based processing; thermal stability; ultraslim flexible glass substrates; Backplanes; Fabrication; Glass; Polymers; Substrates; Thin film transistors; Displays; optical device fabrication; organic semiconductors; organic thin-film transistors; thin-film transistors (TFTs);
  • fLanguage
    English
  • Journal_Title
    Display Technology, Journal of
  • Publisher
    ieee
  • ISSN
    1551-319X
  • Type

    jour

  • DOI
    10.1109/JDT.2012.2206558
  • Filename
    6291757