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Journal of Display Technology

Issue 7 • July 2009

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  • [Front cover]

    Publication Year: 2009, Page(s): C1
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  • Journal of Display Technology publication information

    Publication Year: 2009, Page(s): C2
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  • Table of contents

    Publication Year: 2009, Page(s): 241
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  • Discrete Cosine Transform for Driving Liquid Crystal Displays

    Publication Year: 2009, Page(s):243 - 249
    Cited by:  Papers (1)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (796 KB) | HTML iconHTML

    Despite rapid advances in science and technology of liquid crystal display (LCD); elimination of motion-related artifacts and preservation of color purity in moving images have remained elusive because gray-scale to gray-scale response time, i.e., time taken to switch pixels from one gray-scale to another depends on the initial and final gray shades. A technique wherein gray scale to gray scale re... View full abstract»

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  • Modeling of Blue Phase Liquid Crystal Displays

    Publication Year: 2009, Page(s):250 - 256
    Cited by:  Papers (136)  |  Patents (3)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (799 KB) | HTML iconHTML

    We propose a numerical model based on Kerr effect for simulating the electro-optics of polymer-stabilized blue phase liquid crystal displays (BP-LCDs). Parameters affecting the electro-optics of BP-LCDs in in-plane-switching (IPS) structures, such as wavelength, temperature, electrode dimension, and cell gap are investigated. In addition, viewing angle and color shift of IPS BP-LCDs are studied. View full abstract»

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  • A Driving Scheme for Active-Matrix Organic Light-Emitting Diode Displays Based on Current Feedback

    Publication Year: 2009, Page(s):257 - 264
    Cited by:  Papers (18)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1004 KB) | HTML iconHTML

    This paper presents a method of driving active-matrix organic light-emitting diode (AMOLED) displays with amorphous silicon (a-Si) thin-film transistors (TFTs). By using current feedback, the method effectively compensates for the effect of shift in the threshold voltage (V T) of a-Si TFTs on the OLED current. A CMOS transresistance amplifier is used as the column driver to cance... View full abstract»

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  • A Light-Impact Model for p-Type and n-Type Poly-Si TFTs

    Publication Year: 2009, Page(s):265 - 272
    Cited by:  Papers (2)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1539 KB) | HTML iconHTML

    This paper introduces and verifies a new light-impact model (LIM) for both p-type and n-type polycrystalline thin-film transistors (poly-Si TFTs). The ratio of the produced current under a specific light intensity (Id) over the dark current (Idark) is calculated. The new model has been also implemented in the circuit simulation program HSPICE. Comparative results between meas... View full abstract»

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  • Origins of High Mobility and Low Operation Voltage of Amorphous Oxide TFTs: Electronic Structure, Electron Transport, Defects and Doping

    Publication Year: 2009, Page(s):273 - 288
    Cited by:  Papers (197)  |  Patents (5)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2329 KB) | HTML iconHTML

    Amorphous oxide semiconductors (AOSs) are expected as new channel materials in thin-film transistors (TFTs) for large-area and/or flexible flat-panel displays and other giant-microelectronics devices. So far, many prototype displays have been demonstrated in these four years since the first report of AOS TFT. The most prominent feature of AOS TFTs is that they operate with good performances even i... View full abstract»

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  • Special issue of the IEEE/OSA Journal od Display technology on 3–D Displays and Visualization

    Publication Year: 2009, Page(s): 289
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  • Journal of Display Technology information for authors

    Publication Year: 2009, Page(s): C3
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Aims & Scope

This Journal ceased publication in December 2016.

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

Full Aims & Scope

Meet Our Editors

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