• Title/Summary/Keyword: Large display devices

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VNC-Based Screen Sharing System for Android Smart Devices (VNC 기반의 안드로이드 스마트 기기 화면 공유 시스템)

  • Park, Jong-Eun;Lee, You-Dong;Lee, Hong-Chang;Lee, Myung-Joon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.3
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    • pp.522-532
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    • 2012
  • Smartphones and smartpads have a lot of advantages such as high convenience and portability. Also, they can effectively manage enormous amounts of information based on their high performance and plentiful applications. As such devices have been frequently used, many users manage various types of information using the devices. Recently, during conferences or seminars, smart device users often try to utilize stored resources on their devices and present them visually. Unfortunately, since smart devices have small displays, there is an essential difficulty in visual sharing of information. In this paper, we propose a method which integrates screens of several android smart devices and supports sharing of the integrated screen through a large display, presenting a screen sharing system for android smart devices. The developed system integrates display screens of several smart devices into a screen and shows the integrated screen through a large display connected to a desktop computer. In addition, to support the effective sharing of screens, the system provides functions for adjusting the number and the size of screens on a large display. The functions are controlled on a smart device and/or a desktop computer.

An Implementation of Device Connection and Layout Recognition Techniques for the Multi-Display Contents Delivery System (멀티 디스플레이 콘텐츠 전송 시스템을 위한 디바이스 연결 및 배치 인식 기법의 구현)

  • Jeon, So-yeon;Lim, Soon-Bum
    • Journal of Korea Multimedia Society
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    • v.19 no.8
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    • pp.1479-1486
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    • 2016
  • According to the advancement of display devices, the multi-screen contents display environment is growing to be accepted for the display exhibition area. The objectives of this research are to find communications technology and to design an editor interface of contents delivery system for the larger and adaptive multi-display workspaces. The proposed system can find existence of display devices and get information without any additional tools like marker, and can recognize device layout with only web-cam and image processing technology. The multi-display contents delivery system is composed of devices with three roles; display device, editor device, and fixed server. The editor device which has the role of main control uses UPnP technology to find existence and receive information of display devices. extract appointed color in captured picture using a tracking library to recognize the physical layout of display devices. After the device information and physical layout of display devices are connected, the content delivery system allows the display contents to be sent to the corresponding display devices through WebSocket technology. Also the experimental results show the possibility of our device connection and layout recognition techniques can be utilized for the large spaced and adaptive multi-display applications.

Backplane Technologies for Flexible Display (플렉시블 디스플레이 백플레인 기술)

  • Lee, Yong Uk
    • Vacuum Magazine
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    • v.1 no.2
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    • pp.24-29
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    • 2014
  • Display is a key component in electronic devices. OLED is growing very fast recently due to the explosion of the smart phone market although still LCD is the dominating display technology in the display market at the moment. Also needs for the large area and high resolution TVs and flexible displays are increasing these days. Especially flexible display is expected to be one of the key technologies in mobile devices requiring small device size and large display size. Contrary to the conventional displays, flexible display requires organic materials for the substrate, the active driving element and also for the display element. Plastic film as a substrate, organic semiconductor as an active component of the transistor and organic light emitting materials or electronic paper as a display element are studied actively. In this article, mainly backplane technologies such as substrates and the transistor materials for flexible display will be introduced.

Haptic Display in the Virtual Cooperative Workspace (가상협동공간에서의 Haptic Display)

  • 류성모;최혁렬
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1995.10a
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    • pp.284-289
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    • 1995
  • This paper presents a haptic display of a cooperative work between the networked multiple users. Excluding the possibility of large timedelay among the users, it is presented the way of configuring individual haptic display systems including the computation of interaction forces, joint driving forces of haptic devices and simulation of the virtual objects. A haptic display system is developed consisting of two haptic display devices operated by two remote users and experimental results to show the validity of the proposed method are also presented.

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Vertical Type Organic Transistors and Flexible Display Applications

  • Kudo, Kazuhiro
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08a
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    • pp.168-169
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    • 2007
  • Organic transistors are promising in the future development of active devices for flexible, low-cost and large-area photoelectric devices. However, conventional organic field-effect transistors have lowspeed, low-power, and relatively high operational voltage. Vertical type transistors show high-speed and high-current characteristics and are suitable for driver elements of flexible displays.

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Electrochromic Device for the Reflective Type Display Using Reversible Electrodeposition System

  • Kim, Tae-Youb;Cho, Seong M.;Ah, Chil Seong;Suh, Kyung-Soo;Ryu, Hojun;Chu, Hye Yong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.232.1-232.1
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    • 2014
  • The green displays are the human friendly displays, the nature friendly displays, and the economical displays. Electrochromic displays are low cost and environmental devices because they do have more choice of colours and use much less power. The elements of the electrochromic devices consist of at least two conductors, an electrochromic material and an electrolyte. The optical properties were obtained using the optical contrast between the transparency of the substrate and the coloured state of the electrochromic materials. These devices can be fully flexible and printable. Due to the characteristics of the high coloration efficiency and memory effects, the electrochromic devices have been used in various applications such as information displays, smart windows, light shutters and electronic papers. Among these technical fields switchable mirrors have been received much attention in the applicative point of view of various electronic devices production. We have developed a novel silver (Ag) deposition-based electrochromic device for the reversible electrodeposition (RED) system. The electrochromic device can switch between transparent states and mirror states in response to a change in the applied voltage. The dynamic range of transmittance percent (%) for the fabricated device is about 90% at 550 nm wavelength. Also, we successfully fabricated the large area RED display system using the parted electrochromic cells of the honey comb structure.

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Thin composite film passivation through RF sputtering method For Large-sized Organic Display Devices

  • Lee, Joo-Won;Kim, Young-Min;Park, Jung-Soo;Bea, Sung-Jin;Kim, Na-Rae;Kim, Jai-Kyeong;Jang, Jin;Ju, Byeong-Kwon
    • 한국정보디스플레이학회:학술대회논문집
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    • 2005.07b
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    • pp.1480-1483
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    • 2005
  • Transparent thin composite films (TCFs) were deposited on OLED devices by means of RF sputtering method and their passivation-properties were evaluated by comparing to the e-beam evaporating method. This composite film formed by mixed ratio of MgO (3wt %): $SiO_2$ (1wt %) was developed from pallet as a source of e-beam evaporator to 6-inch size target for sputtering in order to apply for large-sized organic display devices. Water Vapor Transmission Rates (WVTR) of the deposited films were measured as a function of thickness to assess the effectiveness of this film as a passivation layer and it applied to real devices. From this study, we can confirm that the passivation layer formed by TCFs using RF sputtering method sufficiently shows the potentiality of application to passivation layer for organic display devices.

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Dynamic Association and Natural Interaction for Multi-Displays Using Smart Devices (다수의 스마트 디바이스를 활용한 멀티 디스플레이 동적 생성 및 인터랙션)

  • Kim, Minseok;Lee, Jae Yeol
    • Korean Journal of Computational Design and Engineering
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    • v.20 no.4
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    • pp.337-347
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    • 2015
  • This paper presents a dynamic association and natural interaction method for multi-displays composed of smart devices. Users can intuitively associate relations among smart devices by shake gestures, flexibly modify the layout of the display by tilt gestures, and naturally interact with the multi-display by multi-touch interactions. First of all, users shake their smart devices to create and bind a group for a multi-display with a matrix configuration in an ad-hoc and collaborative situation. After the creation of the group, if needed, their display layout can be flexibly changed by tilt gestures that move the tilted device to the nearest vacant cell in the matrix configuration. During the tilt gestures, the system automatically modifies the relation, view, and configuration of the multi-display. Finally, users can interact with the multi-display through multi-touch interactions just as they interact with a single large display. Furthermore, depending on the context or role, synchronous or asynchronous mode is available to them for providing a split view or another UI. We will show the effectiveness and advantages of the proposed approach by demonstrating implementation results and evaluating the method by the usability study.

Some requirement on future flat panels

  • Matsuda, Hirotoshi
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.3-7
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    • 2004
  • Two different kinds of subjects are discussed. One is " Enhanced color space for displays" and the other one is"An application for large format displays". Originally defined color space by NTSC has never been used widely for TVs and information displays as there have been no available display devices. LCD panels with new light sources for backlighting will provide much wider color space. LCD monitors which use these new panels will meet almost 100% with the color space defined by NTSC or Adobe. Now, It is the time to deploy wider color space defined by such as the NTSC or Adobe as the standard of LCD display panels. As the large format display devices with reasonable price have not been available till plasma panels became available, application of these panels as an information display in public space is a quite new experience for us. Various kinds of practical applications are observed and coming out. It will generate many and new types of businesses.

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Display Technologies for Immersive Devices and Electronic Skin (디스플레이 현황과 발전방향 -실감 및 스킨 기기로의 확대)

  • Park, Y.J.
    • Electronics and Telecommunications Trends
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    • v.34 no.2
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    • pp.10-18
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    • 2019
  • Since the introduction of CRT(Cathode Ray Tube) in the 1950s, display technologies have been developed continuously. Flat panel displays such as PDP(Plasma Display Panel) and LCD(Liquid Crystal Display) were commercialized in the late 1990s, and OLED(Organic Light Emitting Diodes) and Micro-LED(Micro-Light Emitting Diodes) are now being developed and are becoming widespread. In the future, we expect to develop ultra-realistic, flexible, embedded sensor displays. Ultra-realistic display can be applied to AR/VR(Augmented Reality/Virtual Reality) devices and spatial light modulators for holography. The sensor-embedded display can be applied to robots; electronic skin; and security devices, including iris recognition sensors, fingerprint recognition sensors, and tactile sensors. AR/VR technology must be developed to meet technical requirements such as viewing angle, resolution, and refresh rate. Holography requires optical modulation technology that can significantly improve resolution, viewing angle, and modulation method to enable wide-view and high-quality hologram stereoscopic images. For electronic skin, stable mass production technology, large-area arrays, and system integration technologies should be developed.