• Title/Summary/Keyword: 액정 평판 TV

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Super-PVA LCD Technology for Wide Viewing Angle Performance

  • Kim, Sang-Su;Park, Jin-Hyeok;Kim, Tae-Seong
    • Information Display
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    • v.6 no.4
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    • pp.11-21
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    • 2005
  • 평판 디스플레이 장치가 LCD-TV에 사용되는 경우 시야각 특성과 동화상 성능은 보다 중요한 성능이 된다. 전반적인 LCD의 화질 특성은 시야각 특성과 동화상 응답 속도를 제외한 모든 부문에서 경쟁 기술보다 우세하다. 이러한 디스플레이의 시야각 특성을 개선하기 위해 LCD업계에서는 IPS, MVA, PVA 등 시야각 특성이 개선된 광시야각 액정 Mode를 개발하여 사용하고 있지만 여전히 LCD는 자발광 디스플레이에 비하여 측면 시인성 측면으로 열세에 있었다. 최근에는 LCD의 측면 시인성을 획기적으로 개선 할 수 있는 기술이 개발되어 더 이상 LCD-TV 응용에서 문제가 되지 않을 수준이 되고 있다. 본 논문에서는 여러가지 광시야각 액정모드 LCD의 측면 시인성 향상 기술에 대한 개략적인 사항을 알아보고, 그 중 Super PVA 액정 기술의 기본원리와 동작 방법에 대하여 상세히 기술하기로 한다.

Study on Corner Crack Protection for Various Thermal Environment in Flat Panel Displays (온도 환경 변화에 따른 평판형 TV 모서리 파손 방지를 위한 구조 설계 연구)

  • Kim, Min-Keun;Kim, Sung-Ki
    • Proceedings of the KSME Conference
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    • 2007.05a
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    • pp.678-682
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    • 2007
  • It is conducted that study on corner crack protection for various thermal environment in a flat panel display. Most of the consumer electronics consist of a plastic and a metal structure. And different properties of materials could cause failure of structural reliability due to the various operating temperatures. Especially for front bezel with thin and slender structure, the effect of temperature is significant, and the design for crack protection is crucial for thermal reliability of displays. In this study, it is prescribed the behavior of the front bezel in flat panel display for various operation temperatures and proposed design parameters to ensure the structural reliability of displays.

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Fundamentals of Liquid Crystal and Liquid Crystal Optics (액정의 비등방 물성 및 광학 특성)

  • Yu, Chang-Jae;Lee, Sin-Doo
    • Korean Journal of Optics and Photonics
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    • v.24 no.4
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    • pp.159-167
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    • 2013
  • The liquid crystal(LC) display is the most promising technology of the flat panel displays covering all applications from small mobile to large television applications. To understand the operating principles and improve the performances of the various LC displays, one should grasp the anisotropic nature of the LC and the propagation of light in the anisotropic media. Basic formulas governing the distribution of the LC molecules, directly related to the electro-optic effects of the LC devices, are described in view of the macroscopic interaction. Based on the matrix representation, the polarization analysis for the LC devices is also presented.

Electro-optical Characteristics of LED Flat Light Source in Low Temperature Condition (LED 평판조명의 저온환경에서의 전기광학특성)

  • Han, Jeong-Min;Seo, Dae-Shik
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.11 no.1
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    • pp.61-65
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    • 2011
  • Recently, LCD (liquid crystal display) industry is needed to goods of high reliability and wide range temperature condition and it is interested in products for extremely cold condition without failure of light-up. In this experiment, we made the LED backlight unit for Automotive-navigation under the extremely cold condition. And for making this backlight unit, we used to eight side emitting type white LEDs with 3W high power LED. We could know that this backlight unit releases to 18,000 nit in 24W power consumption and start up voltage time is under the 1ms in the ambient temperature at -40.

Current Research Trend on Recycling of Waste Flat Panel Display Panel Glass (폐 평판디스플레이 패널유리의 재활용 연구 동향)

  • Shin, Dongyoon;Kang, Leeseung;Park, Jae Layng;Lee, Chan Gi;Yoon, Jin-Ho;Hong, Hyun Seon
    • Resources Recycling
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    • v.24 no.1
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    • pp.58-65
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    • 2015
  • Although Korea is a top market sharing and world leading producer and developer of flat panel display devices, relevant recycling technology is not up to her prestigious status. Besides, most of the waste glass arising from flat panel displays is currently land-filled. The present paper mainly reviews on development of recycling systems for waste TFT-LCD glass from end-of-life LCD TVs and monitors and TFT-LCD process waste of crushed glass particles with target end uses of raw material for high strength concrete pile and glass fibers, respectively. Waste LCD glass was recycled to fabricate ingredients for high strength concrete piles with enhanced physical properties and spherical foam products. The waste LCD glass recycling technology is already developed to fabricate long and short fibers at commercial level. In view of these, future R & D on waste LCD glass materials is to be directed toward implementation of commercial materials recycling system therefrom.