• Title/Summary/Keyword: Display Technology

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Electrowetting displays, progression toward large area and high brightness flexible displays

  • Cheng, Wei Yuan;Lo, Kuo Lung;Heikenfeld, Jason
    • 한국정보디스플레이학회:학술대회논문집
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    • 2008.10a
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    • pp.1337-1340
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    • 2008
  • Since 2006, the Industrial Technology Research Institute and the University of Cincinnati have been jointly exploring approaches for high brightness flexible electrowetting displays (EWDs). Recently, ITRI demonstrated for the $1^{st}$ time a 6" AM-EWD reflective display panel. To create flexible AM-EWDs, Cincinnati has developed low-temperature processing and improved pixel structures.

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The Effect of Wet Milling on Transparency of Transparent Dielectric in PDP

  • Han, Sun-Mi;Park, Ji-Su;Hwang, Jong-Hee;Lim, Tae-Young;Kim, Kwang-Jin;Masaki, Takaki
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.558-560
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    • 2004
  • We report the effect of wet ball milling conditions on the transparency of glass frit. Generally, the particle size of glass frit decreased as the milling time increased. And the transparency of glass frit changed with the particle size variation. The transparency of glass frit A increased as the milling time increased. But, the transparency of glass frit B, containing high $B_2O_3$ decreased as the particle size decreased. It seems to be the result of chemical reaction with water and glass frit.

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Development of new heat dissipated material in metal core PCB for LED backlight source

  • Ban, K.Y.;Lee, D.Y.;Lee, M.J.;Han, C.J.;Han, J.I.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.1432-1435
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    • 2006
  • We report on carbon nano-fibers (CNFs) for applying to epoxy as a highly thermal conductive adhesive. In order to fabricate CNFs, electro-spinning process was performed with polyacrylonitrile (PAN) solutions. The sample was stabilized at the annealing temperature of $360^{\circ}C$, and carbonized from 900 to $1100^{\circ}C$. It is shown that the synthesized CNFs have a good thermal conductivity of several hundred W/m K. LED backlight units (BLUs) fabricated with MPCB using CNF-mixed epoxy give a better heat dissipation and higher performance than normal LED BLUs. On the basis of SEM, XRD, and FTIR, the characteristics of CNFs are described.

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Rubbing Angle Effect on Response Time of the Fringe Field Switching (FFS) TFT-LCD using the Liquid Crystal with Negative Dielectric Anisotropy

  • Noh, Jeong-Dong;Kim, Hyang-Yul;Kim, Jin-Mahn;Lee, Won-Gun;Park, Hae-Sung;Lee, Seung-Hee
    • 한국정보디스플레이학회:학술대회논문집
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    • 2002.08a
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    • pp.401-404
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    • 2002
  • We have studied on response time of the fringe-field switching (FFS) TFT-LCD using the LCs with negative dielectric anisotropy related to rubbing angle. Simulation and experimental results shows that when a rubbing angle approached $45^{\circ}$, a slope of voltage-dependent curve is decreased such that the operation voltage is increased, however the whole response characteristic between inter-gray levels have a trend to be fast.

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Sol-Gel Processed InGaZnO Oxide Semiconductor Thin-Film Transistors for Printed Active-Matrix Displays

  • Kim, Yong-Hoon;Park, Sung-Kyu;Oh, Min-Suk;Kim, Kwang-Ho;Han, Jeong-In
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.1002-1004
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    • 2009
  • Solution-processed indium-gallium-zinc-oxide thin-film transistors were fabricated by sol-gel method. By a combinatorial study of InGaZnO multi-component system, optimum molar ratio of In, Ga, and Zn has been selected. By adjusting the In:Ga:Zn molar ratio, TFTs with field-effect mobility of 0.5 ~ 1.5 $cm^2$/V-s, threshold voltage of -5 ~ 5 V, and subthreshold slope of 1.5 ~ 2.5 V/decade were achieved.

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Research and Development Trends in Three-dimensional (3D) Displays (공간표시 디스플레이 연구 및 개발 동향)

  • Cho, S.M.;Hwang, C.S.;Choi, J.H.;Kim, Y.H.;Cheon, S.H.;Choi, K.H.;Kim, J.Y.;Yang, J.H.
    • Electronics and Telecommunications Trends
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    • v.35 no.4
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    • pp.65-80
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    • 2020
  • In this article, we review the study trends of three-dimensional (3D) displays that can display stereoscopic images from the perspective of a display device. 3D display technology can be divided into light field, holographic, and volume displays. Light field display is a display that can reproduce the intensity and direction of light or 'ray' in each pixel. It can display stereoscopic images with less information than a holographic display and does not require coherence of the light source. Therefore, it is expected that it will be commercialized before the holographic display. Meanwhile, the holographic display creates a stereoscopic image by completely reproducing the wavefront of an image using diffraction in terms of wave characteristics of light. This technology is considered to be able to obtain the most complete stereoscopic image, and the digital holographic display using a spatial light modulator (SLM) is expected to be the ultimate stereoscopic display. However, the digital holographic display still experiences the problem of a narrow viewing angle due to the finite pixel pitch of the SLM. Therefore, various attempts have been made at solving this problem. Volumetric display is a technology that directly creates a stereoscopic image by forming a spatial pixel, which is known as a volumetric pixel, in a physical space, and has a significant advantage in that it can easily solve the problem of the viewing angle. This technology has already been tested for commercial purposes by several leading companies. In this paper, we will examine recent research trends regarding these 3D displays and near-eye display that is emerging as a significant application field of these technologies.

Effect of Surface-Modified Poly (4-vinyl phenol) Gate Dielectric on Printed Thin Film Transistor

  • Sung, Chao-Feng;Tsai, Hsuan-Ming;Lee, Yuh-Zheng;Cheng, Kevin
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1771-1773
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    • 2007
  • Surface modification of the gate dielectric has a strong influence on the performance of printed transistors. The surface modification occurs between the gate dielectric and semiconductor. The printed transistor with evaporated vanadium pentoxide ($V_2O_5$) modification exhibits a mobility of $0.2cm^2\;V^{-1}\;s{-1}$ and a subthreshold slope of 1.47 V/decade.

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Interconnection Technology Based on InSn Solder for Flexible Display Applications

  • Choi, Kwang-Seong;Lee, Haksun;Bae, Hyun-Cheol;Eom, Yong-Sung;Lee, Jin Ho
    • ETRI Journal
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    • v.37 no.2
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    • pp.387-394
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    • 2015
  • A novel interconnection technology based on a 52InSn solder was developed for flexible display applications. The display industry is currently trying to develop a flexible display, and one of the crucial technologies for the implementation of a flexible display is to reduce the bonding process temperature to less than $150^{\circ}C$. InSn solder interconnection technology is proposed herein to reduce the electrical contact resistance and concurrently achieve a process temperature of less than $150^{\circ}C$. A solder bump maker (SBM) and fluxing underfill were developed for these purposes. SBM is a novel bumping material, and it is a mixture of a resin system and InSn solder powder. A maskless screen printing process was also developed using an SBM to reduce the cost of the bumping process. Fluxing underfill plays the role of a flux and an underfill concurrently to simplify the bonding process compared to a conventional flip-chip bonding using a capillary underfill material. Using an SBM and fluxing underfill, a $20{\mu}m$ pitch InSn solder SoP array on a glass substrate was successfully formed using a maskless screen printing process, and two glass substrates were bonded at $130^{\circ}C$.

TFT Technology for Flexible Display Applications

  • Kim, Chang-Dong;Kang, In-Byeong;Chung, In-Jae
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1767-1770
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    • 2007
  • The key development issues in the flexible displays are TFT backplane technology for their various applications, which requires competitive device performance as well as its low temperature process. In this paper, with shortly reviewing recent flexible display development status, we describe technical trends of low-temperature a-Si TFTs. Our TFTs show good device characteristics enough to apply LCD and electrophoretic display.

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Low Power Consumption Technology for Mobile Display

  • Lee, Joo-Hyung
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.402-403
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    • 2009
  • A variety of power reduction technologies is introduced and the benefits of the technologies are discussed. PenTile$^{(R)}$ DBLC (Dynamic Brightness LED Control) combined with SABC (Sensor-Based Adaptive Brightness Control) enables to achieve the average LED power consumption to one third. The panel power reduction of 25% can be achieved with low power driving technology, ALS (Active Level Shifter). MIP (Memory In Pixel) is expected to be useful in transflective display because the whole display area can be utilized in reflective mode with power consumption of 1mW.

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