• DocumentCode
    1301644
  • Title

    Color Shift Reduction of Liquid Crystal Displays by Controlling Light Distribution Using a Micro-Lens Array Film

  • Author

    Park, Seong-Sik ; Sohn, Insung ; Cho, Eunyoung ; Park, Seungwon ; Kim, Euisoo

  • Author_Institution
    Electron. Mater. Lab., Samsung Corning Precision Mater. Co. Ltd., Gumi, South Korea
  • Volume
    8
  • Issue
    11
  • fYear
    2012
  • Firstpage
    643
  • Lastpage
    649
  • Abstract
    A new optical film is proposed to reduce angular color shifts of liquid crystal displays (LCDs). The film is composed of microstructures to induce the angular light mixing by deflection and reflection at the microstructure surfaces. A simulation scheme was developed to predict color shifts based on geometrical optics, and applied to design and optimize the microstructures. Among various microstructures studied, parallel grooves with parabolic cross sections were found to be the most efficient in redistributing light. Experimental verification by the UV micro-imprinting method were conducted to show the new film design can reduce the angular shifts by 50% or more for 13 primary and secondary colors of a super-patterned vertical alignment (S-PVA) LCD, and greatly reduce the grey inversion of twisted nematic (TN) LCDs as well.
  • Keywords
    colour displays; geometrical optics; light reflection; liquid crystal displays; microdisplays; microlenses; nematic liquid crystals; optical arrays; optical design techniques; optical films; optical variables control; optical waveguides; S-PVA; UV microimprinting method; angular light mixing; color shift reduction; deflection; geometrical optics; light distribution control; light redistribution; liquid crystal display; microlens array film; microstructure surface; optical design; optical film; optimization; parabolic cross section; parallel groove; reflection; superpatterned vertical alignment; twisted nematic LCD; Color; Image color analysis; Image quality; Microstructure; Optical imaging; Predictive models; Ray tracing; Color shift; liquid crystal display (LCD); optical film; view angle;
  • fLanguage
    English
  • Journal_Title
    Display Technology, Journal of
  • Publisher
    ieee
  • ISSN
    1551-319X
  • Type

    jour

  • DOI
    10.1109/JDT.2012.2211860
  • Filename
    6313923