• Title/Summary/Keyword: Field emission display(FED)

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Study on Vacuum Packaging of Field Emission Display (Field Emission Display의 고진공 실장에 관한 연구)

  • Lee, Duck-Jung;Ju, Byeong-Kwon;Jang, Jin;Oh, Myong-Hwan
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.05a
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    • pp.103-106
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    • 1999
  • In this paper, we suggest the FED packaging technology that have 4mm thickness, using sodalime glass-to-sodalime glass electrostatic bonding. It based on conventional silicon-glass bonding. The silicon film was deposited an around the exhausting hole on FED backside panel. And then, the silicon film of panel was successfully bonded with capping(bare) glass in vacuum environment and the FED panel was vacuum-sealed. In this method, we could achieve more 153 times increased conductance and 200 times increased vacuum efficiency than conventional tube packaging method. The vacuum level in panel, by SRG test, was maintained about low 10$_{-4}$ Torr during above two months And, the light emission was observed to 0.7-inch tubeless packaged FED. Then anode current was 34 $\mu$ A. Emission stability was constantly measured for 10 days.

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CNT Emitter Coated with Titanium Oxide Nanoparticles for FED Application

  • Kim, Jong-Ung;Ryu, Byong-Hwan;Moon, Hee-Sung;Kim, Jae-Myeong;No, Cho-Hang;Uk, Park-Seoung;Choi, Young-Min
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08a
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    • pp.937-939
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    • 2007
  • Carbon nanotubes (CNTs) have used as an electron field emitter of the field emission display (FED) due to their characteristics of high-electron emission, rapid response and low power consumption. However, to commercialize the FED with CNT emitter, some fundamental problems regarding life time and emission efficiency have to be solved. In this study, we investigated the $TiO_2$ coated CNT as a field emitter. $TiO_2$ nanoparticles can coated on CNT surface by chemical solution method. $TiO_2$ nanoparticles had uniform size with the average size of about 2.4 nm to 3.1 nm. Field emission performance of CNT coated with $TiO_2$ nanoparticles was evaluated and discussed.

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Carbon-Nanotube FED;Japanese National Project

  • Soichiro, Okuda
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.855-859
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    • 2004
  • The Japanese National Project "Carbon Nanotube FED" is developing a high image-quality and low power-consumption field emission display (FED) by applying carbon nanotube (CNT) to the electron source. A uniform electron source with a flat-film CNTs and fine structure triodes Fir suppressing the deviation of emission is required. For realizing an FED panel, it is also necessary to develop the glass-bulb technologies for vacuum sealing, and display technologies for driving the panel by circuit electronic and for evaluating the picture quality by measuring. By achieving these technologies, an FED compatible with conventional Cathode Ray Tubes (CRTs) will be realized.

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Emission Characteristics of 0.7' Monochrome MOSFET-Controlled Field Emission Display in a High Vacuum Chamber

  • Lee, Jong-Duk;Oh, Chang-Woo;Kim, Il-Hwan;Park, Jae-Woo;Park, Byung-Gook
    • Journal of Information Display
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    • v.2 no.3
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    • pp.66-71
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    • 2001
  • MCFEDs (MOSFET-Contoolled Field Emission Displays) were fabricated to evaluate the validity of MCFEA for display application. The electrical properties of FEAs (Field Emitter Arrays), HVMOSFETs (High-Voltage MOSFETs), and MCFEAs (MOSFET-Controlled Field Emitter Arrays) were measured. The extraction gate voltage of the FEAs to obtain the anode current of 10 nA/tip was around 71 V. The breakdown voltages of the HVMOSFETs were above 81 V for all the samples. The I-V characteristics of the MCFEAs showed that the emission currents of the FEAs were well controlled depending on the control gate voltages of the HVMOSFETs. To avoid the harmful effects during the packaging process, the performance of the MCFEDs was evaluated in a high vacuum chamber. The emission images of the MCFEDs were controlled through very-through operation. From the comparison with a conventional FED, it was proven that the poor uniformity of FED could be improved through the integration with HVMOSFET.

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A Study on Data Driver IC for Field Emission Display (FED 용 Data Driver IC에 관한 연구)

  • Jang, Young-Min;Lee, Jin-Seok;Lee, Jun-Sung;Cho, Jun-Dong
    • Proceedings of the Korea Information Processing Society Conference
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    • 2004.05a
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    • pp.797-800
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    • 2004
  • FED(Field Emission Display)는 CRT(Cathode Ray Tube)의 화질과 LCD(Liquid Crystal Display)와 같은 FPD(Flat Panel Display)의 경량, 박형의 장점을 만족시키는 차세대 Display 소자로서 주목을 받고 있다. 본 논문은 저항열을 이용하여 256 Gray-Scale Level을 출력하는 8 비트 FED Data Driver IC 설계에 관한 것이다. 즉, 저항열과 D/A 변환기를 통하여 디지털 입력 데이터에 따른 아날로그 출력 데이터를 갖는 FED 용 Data Driver IC이다. 본 논문에서 설계된 Driver IC는 집적도를 높여 Output Channel 수를 증가시키는 것을 목표로, 하이닉스 0.6um High Voltage 공정을 사용하였으며, 8 비트 RGB 데이터 입력과 40V 구동전압에서 동작하도록 설계하였다.

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A Novel Carbon Nanotube FED Structure and UV-Ozone Treatment

  • Chun, Hyun-Tae;Lee, Dong-Gu
    • Journal of Information Display
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    • v.7 no.1
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    • pp.1-6
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    • 2006
  • A 10" carbon nanotube field emission display device was fabricated with a novel structure with a hopping electron spacer (HES) by screen printing technique. HES plays a role of preventing the broadening of electron beams emitted from carbon nanotubes without electrical discharge during operation. The structure of the novel tetrode is composed of carbon nanotube emitters on a cathode electrode, a gate electrode, an extracting electrode coated on the top side of a HES, and an anode. HES contains funnel-shaped holes of which the inner surfaces are coated with MgO. Electrons extracted through the gate are collected inside the funnel-shaped holes. They hop along the hole surface to the top extracting electrode. In this study the effects of the addition of HES on emission characteristics of field emission display were investigated. An active ozone treatment for the complete removal of residues of organic binders in the emitter devices was applied to the field emission display panel as a post-treatment.

Optimization of the fabrication process using nanostructured carbon for low-cost FED application

  • Sun, Z.;Wang, L.L.;Chen, T.;Zhang, Z.J.;Cao, Z.Y.;Chen, Y.W.;Pan, L.K.;Feng, T.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.274-277
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    • 2006
  • Nanostructured carbon (nm-C), including carbon nanotubes and nanofibers (CNTs/CNFs) is promising for low-cost field emission display (FED) application. By modification of CNTs/CNFs, uniform CNTs/CNFs can be obtained and used for field emission cathode (FEC) on glass substrate. By screen-printing (SP) and electrophoretic deposition (EPD) process, large area FEC can be obtained. The FED properties are studied and compared. Both SP and EPD FEC show excellent field emission properties, such as low emission field and uniform emission, after optimization the fabrication process. While EPD FEC exhibits better luminescence image. By vacuum sealing, the low cost nm-C-FED prototypes based on EPD cathode have been demonstrated.

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FIELD EMISSION DISPLAY TECHNOLOGY REVIEW (전계발광 디스플레이 기술 고찰)

  • 황운택;이헌택;이한영
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1995.11a
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    • pp.257-260
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    • 1995
  • The Field Emission Display promises to improve upon the performance of the traditional CRT, while overcoming the CRTs disadvantages in size and weight which limit its use in portable applications. The technical feasibility of the FED has been reviewed and expeceted to move toward the product development.

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Field Emission Display 개발동향 및 전망

  • 송윤호;이진호;권상직
    • Electrical & Electronic Materials
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    • v.15 no.12
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    • pp.11-18
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    • 2002
  • 전계 방출 디스플레이(Field Emission Display : FED)는 금속 또는 반도체로 만들어진 극미세 구조의 전계 에미터(field emitter)에 전기장을 인가하여 진공 속으로 방출되는 전자를 형광체에 충돌시켜 화상을 표시하는 디스플레이 소자로서, 원리적으로 브라운관(CRT)의 우수한 표시 특성을 그대로 가지면서 경량 박형화가 가능하기 때문에 'Thin CRT'라고 불리기도 한다 FED는 원리적으로 고휘도, 저소비전력, 빠른 응답속도, 광시야각, 고해상도, 우수한 칼라 표시. 넓은 사용온도 범위 등 CRT 및 평판 디스플레이의 장점을 모두 갖추고 있는 이상적인 디스플레이 소자로 평가되어 1990년대 초반부터 세계 유수의 연구 기관들이 본격 적 인 연구 개발을 추진하여 왔지만, 아직까지 평판 디스플레이 시장에 진입 할 만큼 기술 개발이 이루어지지 못하고 있다. 본 고에서는 FED의 근간이 되는 전계방출 소자의 원리 및 종류, FED의 핵심요소 기술, 최근 연구 개발 동향, FED의 응용 분야 및 상용화 가능성 등에 대하여 살펴보기로 한다.

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