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    • 6. 发明授权
    • Multipanel liquid crystal display device having a groove on the edge
surface
    • 多边界液晶显示装置,在边缘表面具有凹槽
    • US06057898A
    • 2000-05-02
    • US141022
    • 1998-08-27
    • Goh ItohKazuki TairaRei HasegawaYukio KizakiYujiro HaraMiki Mori
    • Goh ItohKazuki TairaRei HasegawaYukio KizakiYujiro HaraMiki Mori
    • G02F1/1333G02F1/1339G09F9/40G02F1/13
    • G02F1/13336
    • Large size flat display panels are used in many technical fields, with television (TV) sets, personal computers (PCs) and advertising equipment. A multiple panel display device has been developed which employs a plurality of separate flat-surface display panel modules united by adhesion together into a matrix array of rows and columns. Juncture sections of the panels have non-displayable regions between adjacent ones of the panels. To avoid seam lines visible to the human eye, the seams are minimized in width. To this end, the peripheral ends of display panels are provided with a concave/projection configuration or gap for limiting excessive expansion of a sealing material used. This significantly reduces the width of such non-display region at the juncture section of neighboring display panels bonded together.
    • 大尺寸平板显示屏用于许多技术领域,包括电视(电视机),个人电脑(PC)和广告设备。 已经开发了一种多面板显示装置,其采用多个独立的平面显示面板模块,通过粘合在一起成为行和列的矩阵阵列。 面板的接合部分在相邻的面板之间具有不可显示的区域。 为了避免人眼可见的接缝线,接缝的宽度最小化。 为此,显示面板的周边端部设置有用于限制所使用的密封材料的过度膨胀的凹凸形状或间隙。 这显着地降低了粘结在一起的相邻显示面板的接合部处的这种非显示区域的宽度。
    • 8. 发明授权
    • Method of manufacturing electron emitter and associated display
    • 制造电子发射器和相关显示器的方法
    • US06626724B2
    • 2003-09-30
    • US10234151
    • 2002-09-05
    • Masahiko YamamotoMiki MoriYumi FukudaHitoshi KobayashiYujiro HaraGoh ItohMasayuki SaitoToshiro HiraokaKoji Asakawa
    • Masahiko YamamotoMiki MoriYumi FukudaHitoshi KobayashiYujiro HaraGoh ItohMasayuki SaitoToshiro HiraokaKoji Asakawa
    • H01J926
    • H01J1/3042H01J9/025H01J9/185
    • A display device has an array formed on a substrate including a cathode wiring line layer, a gate wiring line layer and an insulating layer for electrically insulating the cathode wiring line layer and the gate wiring line layer from each other. Holes are formed at the crossing portion between the cathode wiring line layer and the gate wiring line layer so as to penetrate through the insulating layer, and resistive layer and an emitter layer are provided in the holes. The resistive layer has such a structure that conductive fine particles are dispersed in a base material of insulating fine particles, and the emitter layer is formed of a fine particle material. The insulating layer between the cathode electrode lines and the gate electrodes is formed of a silicon oxide film containing fluorine. When a large number of elements are formed over a large area in an electron emission device using fine particle emitters, there can be provided electron emission elements which can suppress the unevenness of the electron emission amount. According to the present invention, there can be provided a large-area and uniform display device which can be operated with a low driving voltage, and have a long lifetime.
    • 显示装置具有形成在包括阴极布线线层,栅极布线线层和绝缘层的基板上的阵列,用于使阴极布线层和栅极布线层彼此电绝缘。 在阴极布线层和栅极布线层之间的交叉部分处形成孔,以穿透绝缘层,并且在孔中设置电阻层和发射极层。 电阻层具有将导电性细颗粒分散在绝缘性细颗粒的基材中的结构,发射极层由细粒材料形成。 阴极电极线和栅电极之间的绝缘层由含氟的氧化硅膜形成。 当使用细粒子发射体的电子发射装置中,在大面积上形成大量的元件时,可以提供能够抑制电子发射量不均匀的电子发射元件。 根据本发明,可以提供一种能够以低驱动电压操作并且寿命长的大面积均匀的显示装置。
    • 9. 发明授权
    • Electron emission element having resistance layer of particular particles
    • 具有特定颗粒的电阻层的电子发射元件
    • US06563260B1
    • 2003-05-13
    • US09525531
    • 2000-03-15
    • Masahiko YamamotoMiki MoriYumi FukudaHitoshi KobayashiYujiro HaraGoh ItohMasayuki SaitoToshiro HiraokaKoji Asakawa
    • Masahiko YamamotoMiki MoriYumi FukudaHitoshi KobayashiYujiro HaraGoh ItohMasayuki SaitoToshiro HiraokaKoji Asakawa
    • H01J162
    • H01J1/3042H01J9/025H01J9/185
    • A display device has an array formed on a substrate including a cathode wiring line layer, a gate wiring line layer and an insulating layer for electrically insulating the cathode wiring line layer and the gate wiring line layer from each other. Holes are formed at the crossing portion between the cathode wiring line layer and the gate wiring line layer so as to penetrate through the insulating layer, and resistive layer and an emitter layer are provided in the holes. The resistive layer has such a structure that conductive fine particles are dispersed in a base material of insulating fine particles, and the emitter layer is formed of a fine particle material. The insulating layer between the cathode electrode lines and the gate electrodes is formed of a silicon oxide film containing fluorine. When a large number of elements are formed over a large area in an electron emission device using fine particle emitters, there can be provided electron emission elements which can suppress the unevenness of the electron emission amount. According to the present invention, there can be provided a large-area and uniform display device which can be operated with a low driving voltage, and have a long lifetime.
    • 显示装置具有形成在包括阴极布线线层,栅极布线线层和绝缘层的基板上的阵列,用于使阴极布线层和栅极布线层彼此电绝缘。 在阴极布线层和栅极布线层之间的交叉部分处形成孔,以穿透绝缘层,并且在孔中设置电阻层和发射极层。 电阻层具有将导电性细颗粒分散在绝缘性细颗粒的基材中的结构,发射极层由细粒材料形成。 阴极电极线和栅电极之间的绝缘层由含氟的氧化硅膜形成。 当使用细粒子发射体的电子发射装置中,在大面积上形成大量的元件时,可以提供能够抑制电子发射量不均匀的电子发射元件。 根据本发明,可以提供一种能够以低驱动电压操作并且寿命长的大面积均匀的显示装置。