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    • 1. 发明公开
    • PLASMA DISPLAY PANEL WITH IMPROVED EXHAUST CONDUCTANCE
    • 具有改进的排气导管的等离子体显示面板
    • KR20080111151A
    • 2008-12-22
    • KR20087028433
    • 2008-11-20
    • HITACHI PLASMA DISPLAY LTD
    • WATARI SOICHIOHIRA KOJIIWASE NOBUHIRO
    • H01J11/36H01J11/48
    • A plasma display panel with a partition wall structure in which fall of emission efficiency is suppressed by improving exhaust conductance. In the plasma display panel where the space between a pair of opposing substrates is filled with discharge gas, a plurality of display electrodes extending in the lateral direction and address electrodes (A) extending in the longitudinal direction and intersecting the display electrodes (40) are provided on the pair of substrates, and a latticelike partition wall (29) consisting of a longitudinal partition wall (29V) and a lateral partition wall (29H) and defining a unit light emitting region (C) is provided on one substrate, the lateral partition wall (29H) defining the unit light emitting region has a first lateral partition wall (29H-1) having a gap (30) penetrating in the lateral direction and a second lateral partition wall (29H-2) not having a gap penetrating in the lateral direction alternately. Consequently, one lateral wall of the first lateral partition wall, the second lateral partition wall, and the other lateral wall of another first lateral partition wall are coupled sequentially by the longitudinal partition wall (29V) and the coupling units are arranged through the gap (30) penetrating in the lateral direction. ® KIPO & WIPO 2009
    • 具有分隔壁结构的等离子体显示面板,通过提高排气导通性来抑制发光效率的下降。 在一对相对基板之间的空间填充有放电气体的等离子体显示面板中,沿横向延伸的多个显示电极和沿纵向延伸并与显示电极(40)相交的寻址电极(A) 设置在所述一对基板上,并且在一个基板上设置由纵向隔壁(29V)和横向隔壁(29H)构成并且限定单位发光区域(C)的网状隔离壁(29) 限定单元发光区域的分隔壁(29H)具有在横向方向上具有间隙(30)的第一侧壁(29H-1)和不具有贯穿孔的第二侧隔壁(29H-2) 横向交替。 因此,第一侧分隔壁,第二侧分隔壁和另一第一侧分隔壁的另一侧壁的一个侧壁由纵向分隔壁(29V)顺序地联接,并且联接单元布置成穿过间隙 30)在横向上穿透。 ®KIPO&WIPO 2009
    • 3. 发明专利
    • Plasma treatment apparatus
    • 等离子体处理装置
    • JP2007327097A
    • 2007-12-20
    • JP2006158749
    • 2006-06-07
    • Fujitsu Hitachi Plasma Display Ltd富士通日立プラズマディスプレイ株式会社
    • WATARI SOICHI
    • C23C16/455H01L21/3065H01L21/31
    • PROBLEM TO BE SOLVED: To provide a plasma treatment apparatus which can uniformly treat even a large substrate with plasma. SOLUTION: The plasma treatment apparatus comprises: a reaction chamber with an airtight structure; a gas-introducing port for introducing a gas into the reaction chamber; a lower electrode installed inside the reaction chamber; an upper electrode and a gas distributor which are installed inside the reaction chamber and are placed so as to face the lower electrode respectively; and a gas-exhausting port for exhausting a gas from the reaction chamber. The upper electrode has a plurality of upper electrode holes. The gas distributor has a plurality of gas distribution holes which are uniformly distributed. The gas-introducing port is placed so that the introduced gas from the gas-introducing port passes through the gas distribution holes and the upper electrode holes in this sequential order or in the reverse order, is supplied to a space between the upper electrode and the lower electrode, and is converted into plasma by high-frequency voltage applied between the upper electrode and the lower electrode. The gas distributor is formed from a material having a smaller coefficient of linear expansion or a larger Young's modulus than either of the upper electrode. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种等离子体处理装置,其可以均匀地处理等离子体的大的基板。 解决方案:等离子体处理装置包括:具有气密结构的反应室; 用于将气体引入反应室的气体导入口; 安装在反应室内的下电极; 上部电极和气体分配器,其安装在反应室内部并分别放置成与下部电极相对; 以及用于从反应室排出气体的排气口。 上电极具有多个上电极孔。 气体分配器具有均匀分布的多个气体分配孔。 气体导入口被配置成使得从气体导入口导入的气体依次顺序或以相反的顺序通过气体分配孔,上部电极孔被供给到上部电极和 并通过施加在上电极和下电极之间的高频电压而被转换成等离子体。 气体分配器由具有比上部电极中的任何一个更小的线性膨胀系数或较大杨氏模量的材料形成。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Plasma display panel
    • 等离子显示面板
    • JP2010135223A
    • 2010-06-17
    • JP2008311265
    • 2008-12-05
    • Hitachi Plasma Display Ltd日立プラズマディスプレイ株式会社
    • SAWA MASAHIROSETOGUCHI NORIAKIWATARI SOICHIKOBAYASHI YUJIYOSHINAGA TAKASHI
    • H01J11/02H01J9/26H01J11/12H01J11/22H01J11/24H01J11/26H01J11/34H01J11/36H01J11/48
    • PROBLEM TO BE SOLVED: To realize a plasma display panel which can prevent malfunction due to an increasing discharge voltage of each pixel and can early and easily assess the malfunction due to the increasing the discharge voltage in a manufacturing process. SOLUTION: In a cell outside a display region 100, a bus alignment mark 50 is formed on a bus electrode 12. A spacing between a barrier plate 7 and the bus alignment mark 50 is changed by varying the width of the bus alignment mark 50 in each cell, and variations in spacings among the barrier plate 7, the bus electrode 12 and a discharge electrode 11 are assessed by pattern recognition. This allows prevention of the malfunction due to the increasing discharge voltage, assessment of the malfunction due to the increasing discharge voltage in the manufacturing process, and prevention of transfer of a defective into a subsequent process. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:实现能够防止由于每个像素的放电电压的增加引起的故障的等离子体显示面板,并且可以在制造过程中由于增加放电电压而早期且容易地评估故障。 解决方案:在显示区域100外的单元中,在总线电极12上形成总线对准标记50.阻挡板7和总线对准标记50之间的间隔通过改变总线对准的宽度来改变 在每个单元中标记50,并且通过图案识别来评估阻挡板7,总线电极12和放电电极11之间的间隔的变化。 这允许防止由于放电电压的增加引起的故障,由于在制造过程中放电电压的增加而导致的故障的评估以及防止将有缺陷转移到后续过程中。 版权所有(C)2010,JPO&INPIT