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    • 2. 发明授权
    • Gas discharge type light emission apparatus and method of driving the
same
    • 气体放电型发光装置及其驱动方法
    • US5212472A
    • 1993-05-18
    • US413678
    • 1989-09-28
    • Atsushi TakahashiHiroshi FuruyaHideo SawaiMio ChibaYukio NakamuraMasao IkehataHiroshi TohyamaHiromi TakahashiYoshitaka TeraoYuuji Terouchi
    • Atsushi TakahashiHiroshi FuruyaHideo SawaiMio ChibaYukio NakamuraMasao IkehataHiroshi TohyamaHiromi TakahashiYoshitaka TeraoYuuji Terouchi
    • G06K15/12G09G3/29
    • G06K15/1247G09G3/285
    • A method is for driving a gas discharge type light emission apparatus having an electrode block line(s) constituted by electrode blocks. Scanning of adjacent cathodes, one being in one of two adjacent electrode blocks and the other being in the other electrode block, is effected such that subsequent to the scanning of one adjacent cathode, at least one cathode other than the other adjacent cathode is scanned prior to the scanning of the other adjacent cathode. By the method, crosstalk between adjacent electrode blocks is prevented without the provision of a partitioning member between the adjacent electrode blocks. A gas discharge type light emission apparatus includes an anode(s) on a front substrate and cathodes on a rear substrate. The anodes and cathodes face one another via a discharge gas medium to constitute discharge cells. The anodes are made of a light-blocking material and including windows at positions corresponding to the cathodes. The windows are also provided at positions corresponding to boundaries between adjacent anodes. By providing windows, discharge light emission having a clear shape and a high resolution can be obtained.
    • 一种用于驱动具有由电极块构成的电极块线的气体放电型发光装置的方法。 实现相邻阴极的扫描,一个位于两个相邻电极块中的一个中,另一个位于另一个电极块中,使得在一个相邻阴极的扫描之后,至少一个除了另一个相邻阴极之外的阴极被扫描 到另一个相邻阴极的扫描。 通过该方法,可以防止相邻的电极块之间的串扰,而不在相邻的电极块之间设置分隔构件。 气体放电型发光装置包括前基板上的阳极和后基板上的阴极。 阳极和阴极通过放电气体介质彼此面对以构成放电单元。 阳极由遮光材料制成,并且在对应于阴极的位置处包括窗口。 窗口也设置在对应于相邻阳极之间的边界的位置处。 通过提供窗口,可以获得具有清晰形状和高分辨率的放电发光。
    • 4. 发明申请
    • Plasma display panel (PDP)
    • 等离子显示面板(PDP)
    • US20070103072A1
    • 2007-05-10
    • US11591503
    • 2006-11-02
    • Yoshitaka TeraoYukika YamadaTakashi Miyama
    • Yoshitaka TeraoYukika YamadaTakashi Miyama
    • H01J17/49
    • H01J11/42H01J11/12H01J11/16
    • A Plasma Display Panel (PDP) includes a front substrate, a rear substrate arranged to face the front substrate, and a discharge gas contained between the front substrate and the rear substrate. The front substrate includes a transparent substrate, and a plurality of X electrodes and Y electrodes formed to extend in parallel to each other along a first direction on the surface of the transparent substrate facing the rear substrate, and arranged alternately and facing each other with respect to a second direction crossing the first direction. The rear substrate includes an insulating substrate, an address electrode formed to extend along the second direction on the surface of the insulating substrate, and a phosphor layer formed on the surface of the insulating substrate. At least part of the phosphor layer is disposed between the respective X electrodes and Y electrodes.
    • 等离子体显示面板(PDP)包括前基板,布置成面向前基板的后基板和包含在前基板和后基板之间的放电气体。 前面基板包括透明基板,以及多个X电极和Y电极,其形成为沿面向后基板的透明基板的表面上的第一方向彼此平行地延伸,并且交替地相互交替布置,并且相对于 到与第一方向交叉的第二方向。 后基板包括绝缘基板,形成为沿绝缘基板的表面上的第二方向延伸的寻址电极和形成在绝缘基板的表面上的荧光体层。 荧光体层的至少一部分设置在X电极和Y电极之间。
    • 7. 发明授权
    • Plasma display panel and manufacturing method of the same
    • 等离子显示面板及其制造方法相同
    • US07569991B2
    • 2009-08-04
    • US11343267
    • 2006-01-31
    • Yoshitaka TeraoTakashi MiyamaYukika Yamada
    • Yoshitaka TeraoTakashi MiyamaYukika Yamada
    • H01J17/49
    • H01J11/24H01J11/16H01J11/32H01J11/36H01J2211/326
    • A plasma display panel and manufacturing process therefor, providing an improved barrier rib strength in an opposing discharge structure. The plasma display panel may include a front substrate and a rear substrate, address electrodes extending in a predetermined direction on the rear substrate, and a barrier rib layer disposed between the front and rear substrates for defining a plurality of discharge spaces. The barrier rib layer includes barrier rib members for defining the plurality of discharge spaces, and display electrodes forming opposing electrodes with the discharge spaces therebetween, with grooves formed in a direction crossing the address electrodes on the barrier rib members facing the front substrate, and inner surfaces of the grooves that are coated with display electrodes.
    • 一种等离子体显示面板及其制造方法,在相对放电结构中提供了改进的隔壁强度。 等离子体显示面板可以包括前基板和后基板,在后基板上沿预定方向延伸的寻址电极,以及设置在前基板和后基板之间用于限定多个放电空间的阻挡肋层。 障壁层包括用于限定多个放电空间的阻挡肋构件,以及形成在其间具有放电空间的相对电极的显示电极,在与面向前基板的隔壁构件上的寻址电极交叉的方向上形成有沟槽, 涂有显示电极的槽的表面。
    • 8. 发明授权
    • Plasma display and manufacturing method thereof
    • 等离子体显示及其制造方法
    • US06930451B2
    • 2005-08-16
    • US10045017
    • 2002-01-15
    • Yoshitaka TeraoTakashi KomatsuJe-Hwan OhHidehito OgawaYukika Yamada
    • Yoshitaka TeraoTakashi KomatsuJe-Hwan OhHidehito OgawaYukika Yamada
    • H01J17/49
    • H01J11/14H01J11/36H01J2211/363
    • A plasma display includes first and second substrates provided opposing one another. A plurality of first electrodes is formed on a surface of the first substrate facing the second substrate. A first dielectric layer is formed covering the first electrodes. A plurality of main barrier ribs is formed on a surface of the second substrate facing the first substrate, the main barrier ribs defining a plurality of discharge cells. A plurality of electrode barrier ribs is formed on the second substrate between the main barrier ribs. Phosphor layers are formed within the discharge cells, and discharge gas included in the discharge cells, where the main barrier ribs are formed integrally to the second substrate, and a second electrode and a second dielectric layer are formed, in this order, on a distal end of each of the electrode barrier ribs. A method of manufacturing the plasma display includes the processes of integrally forming a plurality of main barrier ribs on a plasma display substrate, the main barrier ribs defining a plurality of discharge cells, forming electrode barrier ribs between the main barrier ribs, forming an electrode on a distal end of each of the electrode barrier ribs, and forming a dielectric layer on each of the electrodes.
    • 等离子体显示器包括彼此相对设置的第一和第二基板。 在面向第二基板的第一基板的表面上形成多个第一电极。 形成覆盖第一电极的第一电介质层。 在第二基板的面向第一基板的表面上形成有多个主阻挡肋,主阻挡肋限定多个放电单元。 在主阻挡肋之间的第二基板上形成多个电极隔肋。 在放电单元内形成荧光体层,并且包括在放电单元中的放电气体,其中主阻挡肋与第二基板一体地形成,并且第二电极和第二介电层依次形成在远端 每个电极隔板的端部。 等离子体显示器的制造方法包括在等离子体显示基板上一体形成多个主障壁的工序,主阻挡肋限定多个放电单元,在主阻挡肋之间形成电极隔壁,形成电极 每个电极阻挡肋的远端,并且在每个电极上形成电介质层。