• Title/Summary/Keyword: large-area panel

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Reduction of the air consumption in the air conveyor with the air slit (공기 슬릿 구조를 이용한 공기 부상 컨베이어의 공기 소모량 감소)

  • 이학구;이대길
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.231-236
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    • 2004
  • The area of flat glass panel displays such as LCD (Liquid crystal display) and PDP (Plasma display panel) has been increased more than 2 $\times$ 2 m$^2$ for productivity improvement. However, such a large panel area incurs large panel deflection during panel transfer using robots or AGV (Automated guided vehicle) systems. Therefore, electronic industries are making an effort to find an alternative transfer system for the large glass panels with small deflection. The air conveyor with porous pads is one plausible solution, but it becomes expensive because the large porous pads cost much and air consumption increases as the panel area increases. In this work, a simple air slit levitating conveyor was devised to lower the equipment cost and to reduce the air consumption of system. The air flow model between the LCD glass panel and conveyor was constructed and its validity was verified by experiments. To minimize the air consumption, the conveyor dimensions were optimized, and the air consumptions between the air conveyors with the air slit and that with the porous pad were compared.

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Large-Area OLED Lighting Fabricated by Screen Printing

  • Lee, Dong-Hyun;Lee, Kyung-Hee;Shin, Hyun-Chul;Liu, Yang-Peng;Cho, Sung-Min
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.923-926
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    • 2009
  • We fabricated large-area OLED lighting device using screen printing. In order to operate full area of large-area OLED uniformly, each cell in OLED panel was designed to work separately. We connected OLED panel with a PCB electrically using jig pins so that each cell could be operated individually. In this presentation, we report a few important issues on the fabrication of large-area OLED for lighting applications.

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Prefabricated Apartments Project Using Precast Concrete Large Panel System (프리캐스트 콘크리트 대형 패널을 이용한 조립식 아파트 공사)

  • 박의식
    • Proceedings of the Korea Concrete Institute Conference
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    • 1989.10a
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    • pp.49-52
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    • 1989
  • This report introduces the large scale prefabricated apartment project in Saudi Arabia designed and built by Hyundai Engineering and construction Co. as turn-key basis from ministry of Public works and ltousing of Saudi Arabia. This project using precast large panel system is 7,600 dwelling unit, total building area 1.8 mil sguare meters. Large panel system is a kind of industrialized building method which classified as monolithic system, total system and structural system. Hyundai Engineering and Construction Co. develop his own prefabricated large panel system for this project and named "HYUNDAI SYSTEM". The key point of this system is vertical and horizontal joints between panels. Also stability of whole building structure is especially important for this kind of prefabricated building. building.

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A Design of Large Area Viewing LED Panel Control System (광시각용 LED 전광판제어 시스템 설계)

  • Lee, Su-Beom;Nam, Sang-Gil;Jo, Gyeong-Yeon;Kim, Jong-Jin
    • The Transactions of the Korea Information Processing Society
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    • v.6 no.5
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    • pp.1351-1361
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    • 1999
  • The wide spread of multimedia system demands a large area viewing display device which can inform a message to many people in open area. This paper is about the design of a large area viewing LED panel control system. The control system runs on 16 bit microprocessor MC68EC000 and has following functions: 16 line clock and time, 2 channel priority interrupt, 2 channel direct memory access, 2 channel 12 bit clock and timer, 2 channel infrared remocon receiver, 2 channel RS-232C with 16 byte FIFO, IBM PC/AT compatible keyboard interface, ISA bus, battery backuped real time clock, battery backuped 256 byte SRAM and watch dog timer. The core circuits are implemented to ASIC, considering lower cost, higher reliability, higher performance, smaller dimension, and lower power consumption. This is verified by simulation and fabricated in 0.6 um CMOS SOG processes. The total gate count is 39,083 and the clock frequency is 48 MGz. The fabricated ASIC is mounted on test board.

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Liquid crystal display panel fabricated in dual mode

  • Wang, Yaping;Mo, Aiping;Jiang, Qingfeng
    • Journal of Information Display
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    • v.13 no.1
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    • pp.17-20
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    • 2012
  • The current panels for liquid crystal display (LCD) TV sets are all characterized by pins placed on two sides. To manufacture one type of panel, a dedicated mask is needed, and the production line should be started once. Moreover, the whole panel needs to be removed if a dead pixel is found. If the panel, however, will first be fabricated with pins placed on four sides and then divided by a cross-cut into four equal-sized panels with pins placed on two sides, one set of masks can be used to manufacture two types of LCD panels, which was referred to by the authors as dual mode. In this paper, the concept of the dual mode and its differences from the conventional way of producing panels are introduced. Its advantages in boosting production efficiency, improving the product's good rate, and lowering the production cost are also described based on case studies. Of particular importance is the fact that the dual mode is very suitable for the trial production of very-large-area LCD TV sets.

Development of the Composite Bus Housing Panel Using RTM (RTM 을 이용한 복합재료 Bus Housing Panel의 개발)

  • 김포진;이대길
    • Proceedings of the Korean Society For Composite Materials Conference
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    • 2001.05a
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    • pp.189-192
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    • 2001
  • Resin transfer molding process has been widely used in the automobile industry, because the product with large area can be manufactured easily and the cost for the manufacturing is lower than that of compression molding and hand lay up method. Since RTM process is suitable for large bus housing panels, in this work, the composite housing panel was manufactured by RTM process and the mechanical properties, surface quality and the condition of manufacturing process were studied.

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Seperate Driving System For Large Area X-ray Detector In Radiology (대면적 X-ray 검출기를 위한 분할 구동 시스템)

  • Lee, D.G.;Park, J.K.;Kim, D.H.;Nam, S.H.;Ahn, S.H.;Park, H.D.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.11a
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    • pp.388-391
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    • 2003
  • The properties of these detectors can be controlled by electronics and exposure conditions. Flat-panel detectors for digital diagnostic imaging convert incident x-ray images to charge images. Flat panel detectors gain more interest real time medical x-ray imaging. Active area of flat panel detector is $14{\times}17$ inch. Detector is based on a $2560{\times}3072$ away of photoconductor and TFT pixels. X-ray conversion layer is deposited upper TFT array flat panel with a 500m by thermal deposition technology. Thickness uniformity of this layer is made of thickness control technology(5%) of thermal deposition system. Each $139m{\times}139m$ pixel is made of thin film transistor technology, a storage capacitor and charge collection electrode having geometrical fill factor of 86%. Using the separate driving system of two dimensional mosaic modules for large area, that is able to 4.2 second per frame. Imaging performance is suited for digital radiography imaging substitute by conventional radiography film system..

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Development of Air-floating Conveyor System for FPD (FPD용 공기부상 이송컨베이어 시스템 개발)

  • Lho, Tae-Jung;Lee, Wook-Jin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.1
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    • pp.39-45
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    • 2009
  • The CRT(Cathode Ray Tube) displays have been substituted for FPDs(Flat Panel Displays) such as LCD(Liquid Crystal Display) and PDP(Plasma Display Panel) because they have a convex surface, large volume and heavy weight. The productivity of FPDs is greatly dependent on the area of thin glass panel with $0.6{\sim}0.8mm$ thickness because FPDs are manufactured by cutting a large-scaled thin glass panel with patterns to the required product dimensions. So FPD's industries are trying to increase the area of thin glass Panel. Through FEM(Finite Element Method) analysis and fluid analysis, we developed an non-contact and air-floating conveyor system which consists of transport-module, distributor, horizontal/vertical changer and controller for the 7th generation glass panel (2,200mm in width, 1,870mm in length and 0.7mm in thickness). The design technology developed in this study can be effectively applied to a conveyor system for a larger-scaled thin glass panel.

Development of Back Panel Dies for the Large Size PDP TV (대형 PDP TV후방 판넬 금형 개발)

  • Ahn, Dong-Gyu;Kim, Jin-Suck;Han, Gil-Young
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.15 no.6
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    • pp.88-96
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    • 2006
  • The objective of this research works is to develop back panel dies of PDP TV with a large size. In order to design the geometry of the dies and an initial size of blank optimally, the finite element analysis has been carried out using AUTOFORM V4.2. The conner radius of the upper trimming area and the distance from the outer line of the blank holder to the outer line of the blank have been selected as design parameters to remove the wrinkling of the trimming area. The results of the analyses have been shown that a feasible product without wrinkles and skid lines can be obtained when the conner radius ranges from 6mm to 8mm and the distance lines in the range of 40-60mm. From the proposed design of the dies and an initial blank size, the final die set of the back panel has been successfully manufactured.

A Touch-sensitive Display with Embedded Hydrogenated Amorphous-silicon Photodetector Arrays (비정질 실리콘 광센서를 이용한 터치 감응 디스플레이 설계 및 제작)

  • Lee, Soo-Yeon;Park, Hyun-Sang;Han, Min-Koo
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.11
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    • pp.2219-2222
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    • 2009
  • A new touch-sensitive hydrogenated amorphous silicon(a-Si:H) display with embedded optical sensor arrays is presented. The touch-sensitive panel operation was successfully demonstrated on a prototype of 16-in. active-matrix liquid crystal display (AMLCD). The proposed system provides the finger touched point without the real-time image processing of information of the captured images. Due to the simple architecture of the system, we expect the introduction of large-area touch-sensitive display panels.