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    • 9. 发明专利
    • Plasma display device
    • 等离子体显示设备
    • JP2013214450A
    • 2013-10-17
    • JP2012084785
    • 2012-04-03
    • Panasonic Corpパナソニック株式会社
    • TANAKA HIROSHISAITO YOSHIYUKIIWAKI HIDEKIMASUDA KOHEI
    • H01J11/32G09F9/00H01J11/12H01J11/24H01J11/46
    • PROBLEM TO BE SOLVED: To provide a plasma display device that can reduce panel drive voltage to drive with low power consumption even if the plasma display device uses a large screen panel.SOLUTION: A plasma display device includes a plasma display panel that includes a front substrate 1 that has a plurality of scanning electrodes 10 and a plurality of sustaining electrodes 11 arranged thereon, and a back substrate 2 that has a plurality of data electrodes 21 arranged to intersect three-dimensionally with the plurality of scanning electrodes 10 and the plurality of sustaining electrodes 11, which are arranged to face each other. The scanning electrodes 10 and the sustaining electrodes 11 are wired with a predetermined angle that is larger than 0 degree and smaller than 90 degrees with respect to a horizontal direction of the plasma display panel, and do not intersect with data electrodes 21.
    • 要解决的问题:提供一种等离子体显示装置,其即使等离子体显示装置使用大屏幕面板也能够以低功耗降低面板驱动电压驱动。解决方案:等离子体显示装置包括等离子体显示面板,其包括前面 具有布置在其上的多个扫描电极10和多个维持电极11的基板1和具有多个数据电极21的背面基板2,该多个数据电极21与多个扫描电极10三维地相交, 保持电极11被布置成彼此面对。 扫描电极10和维持电极11相对于等离子体显示面板的水平方向以大于0度且小于90度的预定角度布线,并且不与数据电极21相交。
    • 10. 发明专利
    • Method for manufacturing a plasma display member
    • JP5293485B2
    • 2013-09-18
    • JP2009177401
    • 2009-07-30
    • 東レ株式会社
    • 貴史 大津敬治 津田
    • H01J9/02G03F1/00G03F7/20H01J11/12H01J11/22H01J11/24H01J11/26H01J11/34H01J11/36
    • PROBLEM TO BE SOLVED: To provide a member used for a plasma display having high productivity, and to provide a plasma display having a high display quality. SOLUTION: In a method of manufacturing a member used for a display, in which a grid-formed partition wall is formed by forming a photosensitive glass paste layer on a substrate, performing exposure operations a plurality of times, and developing and calcining the glass paste layer, an opening width of a subsidiary partition wall positioned on an outermost part, in a longitudinal direction, of a main partition wall of a photo-mask having a light-transmissive pattern formed in a grid is greater than an opening width of an auxiliary partition wall positioned on a center part, in a longitudinal direction, of the main partition wall. From among a plurality of exposure operations, after a predetermined exposure operation is completed, during a period for which a next exposure operation is conducted, a photo-mask displacement operation is performed, in which a photo-mask having a light-transmissive pattern formed in grid and the substrate are displaced relative to each other in parallel with an address electrode. A moving distance in the photo-mask moving operation is an integral multiple of a pitch of: a subsidiary partition wall positioned on an outermost part, in a longitudinal direction, of the main partition wall of the photo-mask having a light-transmissive pattern formed in grid; and a subsidiary partition wall adjacent thereto. COPYRIGHT: (C)2011,JPO&INPIT