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Display Technology, Journal of

Issue 11 • Date Nov. 2010

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Displaying Results 1 - 14 of 14
  • [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): 555
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  • Blank page

    Publication Year: 2010 , Page(s): 556
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  • Guest Editorial

    Publication Year: 2010 , Page(s): 557
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  • A Direct-Write Printed Antenna on Paper-Based Organic Substrate for Flexible Displays and WLAN Applications

    Publication Year: 2010 , Page(s): 558 - 564
    Cited by:  Papers (11)
    Save to Project icon | Request Permissions | Click to expandAbstract | PDF file iconPDF (1215 KB) |  | HTML iconHTML  

    This paper presents the design, fabrication and measurements of a direct-write printed low-cost and flexible inverted-F antenna on an ultra-low-cost paper-based organic substrate for wireless local area network (WLAN) and flexible display applications. Innovations include the study and utilization of paper as a high-frequency substrate for the first time in the gigahertz (GHz) range, the fabricati... View full abstract»

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  • Highly Flexible AM-OLED Display With Integrated Gate Driver Using Amorphous Silicon TFT on Ultrathin Metal Foil

    Publication Year: 2010 , Page(s): 565 - 570
    Cited by:  Papers (5)  |  Patents (1)
    Save to Project icon | Request Permissions | Click to expandAbstract | PDF file iconPDF (1393 KB) |  | HTML iconHTML  

    This paper introduces the technology behind developing of flexible AM-OLED displays with improved color and reduced bending radius. Developing a-Si TFT fabrication technology using 80-μm ultrathin stainless steel foil as the substrate and integrating driver electronic in the display panel, we were able to demonstrate a full-color AM-OLED displayed in a curvature of less than 5 cm bending ra... View full abstract»

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  • A Roll-to-Roll Photolithography Process for Establishing Accurate Multilayer Registration on Large Area Flexible Films

    Publication Year: 2010 , Page(s): 571 - 578
    Cited by:  Papers (3)
    Save to Project icon | Request Permissions | Click to expandAbstract | PDF file iconPDF (851 KB) |  | HTML iconHTML  

    Roll-to-roll (R2R) flexible electronics manufacturing techniques may eventually provide a solution for continuous production of high quality flexible display devices at a significant cost reduction. The new display applications that can be enabled by using R2R technologies include inexpensive display, large area display, and etc. In this work, the R2R photolithography system and dependent material... View full abstract»

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  • Numerical Simulation of Colloidal Drop Deposition Dynamics on Patterned Substrates for Printable Electronics Fabrication

    Publication Year: 2010 , Page(s): 579 - 585
    Save to Project icon | Request Permissions | Click to expandAbstract | PDF file iconPDF (914 KB) |  | HTML iconHTML  

    One of the major challenges in printable electronics fabrication is the print resolution and accuracy for high precision applications such as printable displays. In this paper, the lattice Boltzmann method (LBM) is used for the direct numerical simulation of an inkjet-printed colloidal drop wetting on a patterned substrate for confined deposition. The two-dimensional multiphase particle suspension... View full abstract»

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  • Blank page

    Publication Year: 2010 , Page(s): 586
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  • The worlds leading event for Advancings Optical Solutions

    Publication Year: 2010 , Page(s): 587
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  • Special Issue JDT Display Technologies for Consumer Electronics

    Publication Year: 2010 , Page(s): 588
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  • IEEE copyright form

    Publication Year: 2010 , Page(s): 589 - 590
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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.

Full Aims & Scope

Meet Our Editors

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