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    • 1. 发明授权
    • Flat panel display having mesh grid
    • 具有网状网格的平板显示器
    • US06686678B2
    • 2004-02-03
    • US10370943
    • 2003-02-21
    • Bong-Kyung SukCheol-Hyeon ChangDong-Su Chang
    • Bong-Kyung SukCheol-Hyeon ChangDong-Su Chang
    • H01J1942
    • B82Y10/00H01J29/028H01J29/06H01J31/127H01J2329/8625H01J2329/8665
    • A flat panel display having a mesh grid assembly which includes upper and lower spacers integral therein. The flat panel display includes a faceplate and a backplate provided opposing one another with a predetermined gap therebetween to define an exterior of the display. An illuminating assembly is provided in the display, the illuminating assembly realizing predetermined images. A mesh grid is provided between the backplate and the faceplate. A lower spacer is connected to a surface of the mesh grid opposing the backplate to be supported by the backplate. Upper spacers are connected to a surface of the mesh grid opposing the faceplate to be supported by the faceplate. The mesh grid, the lower spacer, and the upper spacers thereby integrally forming a single structural assembly.
    • 一种具有网格组件的平板显示器,其包括在其中整合的上部和下部间隔件。 平板显示器包括面板和相对设置的面板,其间具有预定间隙,以限定显示器的外部。 照明组件设置在显示器中,照明组件实现预定图像。 在背板和面板之间提供网格。 下部间隔件连接到与背板相对的网格的表面,以由背板支撑。 上隔片连接到与面板相对的网格面的表面,以由面板支撑。 网状网格,下部间隔件和上部间隔件由此一体地形成单个结构组件。
    • 2. 发明授权
    • Large-area FED apparatus and method for making same
    • US06495956B2
    • 2002-12-17
    • US09867912
    • 2001-05-30
    • David A. CatheyJimmy J. Browning
    • David A. CatheyJimmy J. Browning
    • H01J1942
    • H01J31/123H01J9/025H01J9/185H01J9/242H01J29/028H01J29/864H01J31/127H01J2329/863
    • A large-area field emission device (“FED”) which is sealed under a predetermined level of vacuum pressure and method for making same includes a large-area substrate, an emitter electrode structure disposed on the substrate such that the emitter structure is disposed over a substantial portion of the substrate, a plurality of groups of micropoints, with each group having a predetermined number of micropoints and with each group being disposed at discrete positions on the emitter electrode structure, an insulating layer disposed over the substrate, with the insulating layer having openings therethrough which have a diameter within a predetermined range, and with each openings surrounding at least a portion a micropoint, an extraction structure disposed on the insulating layer, with the extraction structure having openings therethrough which have a diameter within a predetermined range, with each openings surrounding at least a portion of a micropoint, and with the openings in the extraction structure being aligned with openings in the insulating layer, a faceplate disposed above and spaced away from the extraction structure that is transparent to predetermined wavelengths of light, an indium tin oxide (“ITO”) layer disposed on a surface of the faceplate towards the extraction structure, a matrix member disposed on the ITO layer, with the matrix member defining areas of the ITO surface that are to serve as pixel areas, with the pixel areas being aligned with the micropoints of a group micropoints, cathodoluminescent material disposed on the ITO in a plurality pixel areas, with the cathodoluminescent material at a particular pixel area being aligned to receive electron emitted from the micropoints associated that pixel area, and a plurality of spacers disposed between the faceplate and the extraction structure at predetermined locations, with each spacer having a height and cross-sectional shape commensurate with stresses that spacer will encounter caused by the vacuum pressure within the FED.
    • 7. 发明授权
    • Large-area FED apparatus and method for making same
    • US06255772B1
    • 2001-07-03
    • US09032127
    • 1998-02-27
    • David A. CatheyJimmy J. Browning
    • David A. CatheyJimmy J. Browning
    • H01J1942
    • H01J31/123H01J9/025H01J9/185H01J9/242H01J29/028H01J29/864H01J31/127H01J2329/863
    • A large-area field emission device (“FED”) which is sealed under a predetermined level of vacuum pressure and method for making same includes a large-area substrate, an emitter electrode structure disposed on the substrate such that the emitter structure is disposed over a substantial portion of the substrate, a plurality of groups of micropoints, with each group having a predetermined number of micropoints and with each group being disposed at discrete positions on the emitter electrode structure, an insulating layer disposed over the substrate, with the insulating layer having openings therethrough which have a diameter within a predetermined range, and with each openings surrounding at least a portion a micropoint, an extraction structure disposed on the insulating layer, with the extraction structure having openings therethrough which have a diameter within a predetermined range, with each openings surrounding at least a portion of a micropoint, and with the openings in the extraction structure being aligned with openings in the insulating layer, a faceplate disposed above and spaced away from the extraction structure that is transparent predetermined wavelengths of light, an indium tin oxide (“ITO”) layer disposed on a surface of the faceplate towards the extraction structure, a matrix member disposed on the ITO layer, with the matrix member defining areas of the ITO surface that are to serve as pixel areas, with the pixel areas being aligned with the micropoints of a group micropoints, cathodoluminescent material disposed on the ITO in a plurality pixel areas, with the cathodoluminescent material at a particular pixel area being aligned to receive electron emitted from the micropoints associated that pixel area, and a plurality of spacers disposed between the faceplate and the extraction structure at predetermined locations, with each spacer having a height and cross-sectional shape commensurate with stresses that spacer will encounter caused by the vacuum pressure within the FED.
    • 10. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US06541905B1
    • 2003-04-01
    • US09628700
    • 2000-07-28
    • Masahiro FushimiHideaki MitsutakeHidetoshi Suzuki
    • Masahiro FushimiHideaki MitsutakeHidetoshi Suzuki
    • H01J1942
    • H01J29/864H01J29/028H01J31/127H01J2201/3165H01J2329/864H01J2329/8645H01J2329/8655
    • An image forming apparatus includes a first substrate and a second substrate disposed opposite to the first substrate, with fluorescent material being provided on the second substrate. A matrix wiring having a plurality of first wires and a plurality of second wires is provided, with each of the first wires located on the first substrate, and each of the second wires intersecting the plurality of first wires. Also included are electron-emitting devices, each of which emit an electron by applying a signal to the matrix wiring, and a metal electrode, having a plate-shaped form, provided above the matrix wiring, with the metal electrode having electron through-holes for passing electrons emitted by the electron-emitting devices. A support member, having a plate-shaped form, is provided on the metal electrode, wherein the metal electrode is arranged in parallel to the first substrate and a longitudinal direction of a cross section of the support member and a longitudinal direction of a cross-section of the metal electrode are perpendicular and intersect both of the metal electrode and the support member.
    • 图像形成装置包括第一基板和与第一基板相对设置的第二基板,荧光材料设置在第二基板上。 提供具有多个第一布线和多个第二布线的矩阵布线,其中每个第一布线位于第一基板上,并且每个第二布线与多个第一布线相交。 还包括通过向矩阵布线施加信号而发射电子的电子发射器件和设置在矩阵布线上方的具有板状形式的金属电极,金属电极具有电子通孔 用于通过由电子发射器件发射的电子。 具有板状形状的支撑构件设置在金属电极上,其中金属电极平行于第一基板布置,并且支撑构件的横截面的纵向方向和截面的纵向方向, 金属电极的截面垂直并且与金属电极和支撑构件相交。