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Journal of Display Technology

Issue 2 • Feb. 2010

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Displaying Results 1 - 10 of 10
  • [Front cover]

    Publication Year: 2010, Page(s): C1
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  • Journal of Display Technology publication information

    Publication Year: 2010, Page(s): C2
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  • Table of contents

    Publication Year: 2010, Page(s): 47
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  • Submillisecond Gray-Level Response Time of a Polymer-Stabilized Blue-Phase Liquid Crystal

    Publication Year: 2010, Page(s):49 - 51
    Cited by:  Papers (151)  |  Patents (2)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (432 KB) | HTML iconHTML

    The gray-to-gray response time of a polymer-stabilized blue-phase liquid crystal is investigated. As the voltage increases, rise time decreases gradually but decay time remains unchanged. A set of analytical equations is used to fit the measured results, and an acceptable agreement is obtained. View full abstract»

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  • Hollow Cathode Effect in Cold Cathode Fluorescent Lamps: A Review

    Publication Year: 2010, Page(s):52 - 59
    Cited by:  Papers (8)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (368 KB) | HTML iconHTML

    Various efforts within the cold cathode fluorescent lamp (CCFL) industry are underway to decrease costs and increase electrode performance. In order to understand the impact that the choice of gas mixtures and pressures, cathode shape and material might have on the lamp's operation requires a knowledge of the underlying principles governing the glow discharge. We present a review of the literature... View full abstract»

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  • Enhancing the Brightness of Parallax Barrier Based 3D Flat Panel Mobile Displays Without Compromising Power Consumption

    Publication Year: 2010, Page(s):60 - 64
    Cited by:  Papers (26)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (613 KB) | HTML iconHTML

    This paper presents an alternative approach for achieving higher optical efficiency in conventional parallax barrier 3D mobile displays. The method entails modifying and enhancing the protrusion structure of conventional multi-domain vertical alignment (MVA) pixel arrays plus the storage capacitors (Cst) of the pixel circuitry which increase effective pixel transmission area by a factor of 1.07. H... View full abstract»

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  • Reduction of Luminance Errors Due to Line Load in a PDP With Limited Display Levels

    Publication Year: 2010, Page(s):65 - 74
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (560 KB) | HTML iconHTML

    The displayed level of a plasma display panel (PDP) is often different from the intended level because the luminance of a PDP is affected by the load (i.e., the number of turned-on cells). Previous methods have attempted to reduce the difference by predicting the luminance variation and compensating for the difference. The luminance prediction and error compensation are difficult with a PDP that d... View full abstract»

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  • A Simple Sustain Power Conversion Scheme for AC Plasma Display Panel

    Publication Year: 2010, Page(s):75 - 82
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (987 KB) | HTML iconHTML

    A simple sustain power conversion scheme for a plasma display panel (PDP) is proposed. The proposed scheme is comprised of two-stage power conversion. The power factor correction circuit converts ac line voltage into dc-link voltage and provides a high power factor while maintaining a constant dc-link voltage. The proposed sustain driver converts the dc-link voltage into the sinusoidal voltage gen... View full abstract»

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  • Special issue on LCOS technology

    Publication Year: 2010, Page(s): 83
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  • Journal of Display Technology information for authors

    Publication Year: 2010, Page(s): C3
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Aims & Scope

This publication covers the theory, design, fabrication, manufacturing and application of information displays and aspects of display technology.

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Meet Our Editors

Editor-in-Chief
Arokia Nathan
University of Cambridge
Cambridge, U.K.