• Title/Summary/Keyword: high transmittance polarizer

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Enhancement of Transmittance Efficiency of TFT-LCD using High Transmittance Polarizer and Dielectric Anisotropy Liquid Crystal

  • Lim, Sung-Hoon;Son, Dong-Yeon;Choi, Kyung-Seob;Choi, Jae-Ho;Lee, Jong-Hwan;Choi, Kwang-Soo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.661-663
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    • 2009
  • This paper describes a fabrication method for high transmittance panel using newly designed polarizer and liquid crystal with a high dielectric anisotropy (${\Delta}{\varepsilon}$). To enhance the transmittance of the panel without contrast ratio reduction, new polarizer with high transmittance and high ${\Delta}{\varepsilon}$ liquid crystal were used. The transmittance of the liquid crystal display (LCD) panel employed by a new polarizer was increased by 6% over that of the panel with a conventional polarizer and liquid crystal in LCD industry.

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A Study on Optical Characteristic of Nano Metal Grid Polarizer Film with Different Deposition Thicknes (나노 금속 격자형 편광필름 제작에서 증착 두께에 따른 광 특성 연구)

  • Kim, Jiwon;Cho, Sanguk;Jeong, Myung Yung
    • Journal of the Microelectronics and Packaging Society
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    • v.22 no.1
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    • pp.63-67
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    • 2015
  • In this study, we demonstrate the change of optical characteristic by thickness of metal deposition on nano metal grid polarizer film fabrication. Nano metal grid polarizer film consists of aluminium grid polarizer layer on PET (Polyethylene phthalate) substrate. We aim at metal grid layer formation for the large nano wire grid polarizer fabrication. we draw process conditions of the nano metal grid polarizer film fabrication to improve transmittance and extinction ratio and Nano wire grid polarizer film (NWGP) film is fabricated with 140 nm pitch, 70 nm width, and 70 nm depth of metal grid on optimum design conditions. As a result, we get high optical properties of nano wire grid polarizer which is the maximum transmittance of 80% and the extinction ratio of $10^6$ at 600 nm wavelength respectively.

Study on Electro-optic Characteristics of Fringe-field Switching Twisted Nematic Mode using a Liquid Crystal with Negative Dielectric Anisotropy (유전율 이방성이 음인 액정을 이용한 Fringe-field Switching Twisted Hematic 모드의 전기광학 특성 연구)

  • 송일섭;신성식;이종문;이승희
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.17 no.5
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    • pp.530-535
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    • 2004
  • We have studied 90$^{\circ}$ twisted nematic mode switching by fringe electric field(F-TN mode) using a liquid crystal (LC) with negative dielectric anisotropy. In the device, two polarizers are parallel each other, electrodes exist only on bottom substrate, and one of rubbing direction is coincident with polarizer axis. Therefore, the cell shows a black state before a voltage is applied. With a bias voltage generating fringe-electric field, the LC twists perpendicular to fringe electric field such that the LCs are almost homogeneously aligned except near the bottom surface since the negative type of the LC is used. Consequently, the new device exhibits much wider viewing angle than that of the conventional TN mode due to in-plane switching and relatively high transmittance since the LC director above whole electrode area aligns parallel to the polarizer axis.

One-step fabrication of a large area wire-grid polarizer by nanotransfer molding

  • Hwang, Jae-K.;Park, Kyung-S.;Sung, Myung-Mo
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.464-464
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    • 2011
  • We report a method to fabricate a large-area metal nanowire-grid polarizer. Liquid-bridge-mediated nanotransfer molding (LB-nTM) is based on the direct transfer of metal nanowires from a mold to a transparent substrate via liquid layer. A metal particle solution is used as an ink in the LB-nTM, which can be used for the formation of metal nanowires. The nanowires have higher depth are preferred for high transmittance. The height of nanowires that we made is about 140 nm. Large-area WGP is fabricated with good average transmittance of 74.89% in our measuring range.

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Taguchi method-optimized roll nanoimprinted polarizer integration in high-brightness display

  • Lee, Dae-Young;Nam, Jung-Gun;Han, Kang-Soo;Yeo, Yun-Jong;Lee, Useung;Cho, Sang-Hwan;Ok, Jong G.
    • Advances in nano research
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    • v.13 no.2
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    • pp.199-206
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    • 2022
  • We present the high-brightness large-area 10.1" in-cell polarizer display panel integrated with a wire grid polarizer (WGP) and metal reflector, from the initial design to final system development in a commercially feasible level. We have modeled and developed the WGP architecture integrated with the metal reflector in a single in-cell layer, to achieve excellent polarization efficiency as well as brightness enhancement through the light recycling effect. After the optimization of key experimental parameters via Taguchi method, the roll nanoimprint lithography employing a flexible large-area tiled mold has been utilized to create the 90 nm-pitch polymer resist pattern with the 54.1 nm linewidth and 5.1 nm residual layer thickness. The 90 nm-pitch Al gratings with the 51.4 nm linewidth and 2150 Å height have been successfully fabricated after subsequent etch process, providing the in-cell WGPs with high optical performance in the entire visible light regime. Finally we have integrated the WGP in a commercial 10.1" display device and demonstrated its actual operation, exhibiting 1.24 times enhancement of brightness compared to a conventional film polarizer-based one, with the contrast ratio of 1,004:1. Polarization efficiency and transmittance of the developed WGPs in an in-cell polarizer panel achieve 99.995 % and 42.3 %, respectively.

Single cell gap polymer-stabilized blue-phase transflective LCDs using internal nanowire grid polarizer

  • Cui, Hong-Qing;Ye, Zhi-Cheng;Hu, Wei;Lin, Xiao Wen;Chung, T.C.;Jen, Tean-Sen;Lu, Yan-Qing
    • Journal of Information Display
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    • v.12 no.3
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    • pp.115-119
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    • 2011
  • Optically isotropic liquid crystal (LC) mixture such as blue-phase LC and nanostructured LC composites exhibit the advantages of fast response time, high contrast ratio and wide-viewing angle due to the induced birefringence along the horizontal electric field. Utilizing this mixture, a novel single cell gap in-plane switching-type polymer-stabilized blue-phase transflective liquid crystal display by embedding the nanowire grid polarizer as a polarization-dependent reflective polarizer in the R region is proposed. This device can be used as a normal black mode without any quarter-wave plate or patterned in-cell phase retarder. Moreover, the transmittance is identical to the reflectance so that it will be suitable for single gamma driving. Detailed electro-optic performances, such as voltage-dependent light efficiency and viewing angle of the proposed device configuration, are investigated.

3D Display adopted microlensarray Back Light

  • Shin, Sung-Sik
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.183-183
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    • 2010
  • 3D Display type have software and hardware architecture in generally got low transmittance characteristics and high price product equipment. In this article, specified polarizer adopted MLA type structure have 3D display with hardware configuration and high transmission wide view angle. Method of screen printing type is adopted B/L system with simple structure.

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Antireflective Film Design to Improve the Optical Efficiency of Organic Light-emitting Diode Displays (유기발광다이오드 디스플레이의 광효율 향상을 위한 반사방지필름 설계)

  • Kim, Kiman;Lim, Young Jin;Doan, Le Van;Lee, Gi-Dong;Lee, Seung Hee
    • Korean Journal of Optics and Photonics
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    • v.29 no.6
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    • pp.262-267
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    • 2018
  • In this paper, we designed a new antireflective film to improve the optical efficiency of organic light-emitting diode displays (OLEDs). The reflection characteristics in the normal and side viewing directions of OLEDs with the antireflective film were calculated, depending on the degree of polarization and transmittance of the currently used polarizer when used in the antireflective film of an OLED. The results showed that when the polarization degree of the commercial polarizer (99.990~99.995%) is lowered to 99.900%, the average reflectance of the antireflective film is increased by about 0.1% (2.5% in terms of rate of increase) which is difficult to notice with the human eye, while the transmittance is increased by 1.63~3.34% (4.2~8.2% in terms of rate of increase). This study provides an optimal design for high-light-efficiency OLEDs with good antireflection properties.

Liquid Crystal Device Associated with Fringe-field Driven Vertically Aligned Optically Compensated Splay (OCS) (프린지 필드에 의해 구동되는 수직 배향된 광학적 자기 보상 스플레이 액정 소자)

  • Jung, B.S.;Kim, S.J.;Oh, S.M.;Kim, H.Y.;Lee, S.H.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.05a
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    • pp.157-160
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    • 2004
  • We have studied an optically compensated splay (OCS) mode driven by fringe electric field. The OCS LC configuration obtained by applying voltage to vertically aligned LCs shows a dark state when an optic axis of the OCS cell coincides with one of crossed polarizer axis. When the fringe electric field is applied, the LC director rotates in plane above whole electrode surface, giving rise to high transmittance and wide viewing angle simultaneously.

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Electrode-Optic Characteristics of Fringe-field driven Twisted Nematic Mode using a Liquid Crystal with Negative Dielectric Anisotropy (유전율 이방성이 음인 액정을 이용한 fringe-field driven Twisted Nematic 모드의 전기광학 특성)

  • Song, I.S.;Shin, S.S.;Song, S.H.;Kim, H.Y.;Rhee, J.M.;Lee, S.H.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.07b
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    • pp.1054-1057
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    • 2003
  • We have studied $90^{\circ}$ twisted nematic (TN) mode driven by fringe electric field, where two polarizers are parallel each other such that the cell shows a black state before a voltage is applied. According to the studies by computer simulation for a LC with negative dielectric anisotropy, the LC twists perpendicular to the horizontal field direction of fringe electric field and the degree of tilt angle is very low, when a voltage is applied. Therefore, the new device exhibits wide viewing angle characteristic due to in-plane switching and high transmittance since the LC director aligns parallel to the polarizer axis.

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