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    • 1. 发明授权
    • Mesh-pattern partitioned plasma display panel
    • 网格划分等离子体显示面板
    • US07728792B2
    • 2010-06-01
    • US11745582
    • 2007-05-08
    • Masahiro SawaYoshimi KawanamiKoji OhiraNobuyuki Takahashi
    • Masahiro SawaYoshimi KawanamiKoji OhiraNobuyuki Takahashi
    • G09G3/28H01J17/49
    • H01J11/12H01J11/36H01J2211/361
    • A plasma display panel is provided in which discharge connection in the column direction is prevented without increasing the number of man-hours in a formation process of a partition and without deteriorating ventilation for an exhaust process. A pattern in a plan view of a partition is made a mesh pattern in which vertical patterns are included at inter-row positions in each column. Each of first vertical walls is positioned at a boundary between columns, each of second vertical walls is arranged at a position away from a boundary between columns for each boundary between rows and each of horizontal walls is positioned at a boundary between rows. In the partition, a height of portions where the first vertical wall crosses the horizontal wall and a height of portions where the second vertical wall crosses the horizontal wall are smaller than a height of the other portions of the partition.
    • 提供了一种等离子体显示面板,其中防止排列连接在列方向上,而不增加在隔板的形成过程中的工时数,并且不会使排气过程的通风恶化。 分区的平面视图中的图案被制成网格图案,其中在每列中的行间位置包括垂直图案。 每个第一垂直壁位于柱之间的边界处,每个第二垂直壁布置在离行之间的边界处的位置之间,并且每个水平壁位于行之间的边界处。 在隔壁中,第一垂直壁与水平壁交叉的部分的高度和第二垂直壁与水平壁交叉的部分的高度小于隔板的其他部分的高度。
    • 4. 发明申请
    • PLASMA DISPLAY PANEL AND METHOD FOR MANUFACTURING THE SAME
    • 等离子体显示面板及其制造方法
    • US20090302763A1
    • 2009-12-10
    • US12296376
    • 2006-05-31
    • Taiki MakinoMasahiro SawaKoji OhiraAkihiro Fujimoto
    • Taiki MakinoMasahiro SawaKoji OhiraAkihiro Fujimoto
    • H01J17/49H01J11/02
    • H01J11/36H01J9/385H01J11/12H01J11/54H01J2211/368
    • In a plasma display panel wherein lattice-like ribs are formed, an impurity gas inside the panel is easily exhausted. The panel has a paired substrates facing each other. The peripheral portions of the panel are bonded to each other to be sealed. The panel is manufactured by allowing an impurity gas located between the substrates to be exhausted upon carrying out the sealing/bonding process. The panel includes a cell-defining rib and a dummy rib. The cell-defining rib has longitudinal ribs and lateral ribs, which is formed in a display area between the paired substrates. The dummy rib has the same shape as that of the cell-defining rib, which is formed in a non-display area which covers from an outer edge of the display area over to the periphery of the substrates, a ventilation passage being formed in the non-display area in which the dummy rib is formed.
    • 在其中形成格子状的肋的等离子体显示面板中,面板内的杂质气体容易耗尽。 该面板具有彼此面对的成对基板。 面板的周边部分彼此粘合以进行密封。 通过在进行密封/粘合处理之后使位于基板之间的杂质气体排出来制造面板。 面板包括细胞限定肋和虚肋。 单元限定肋具有形成在成对基板之间的显示区域中的纵向肋和横向肋。 虚设肋具有与单元限定肋相同的形状,其形成在从显示区域的外边缘覆盖到基板周边的非显示区域中,形成在通孔 形成虚拟肋的非显示区域。
    • 5. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20090160336A1
    • 2009-06-25
    • US12295970
    • 2006-05-01
    • Koji OhiraMasahiro Sawa
    • Koji OhiraMasahiro Sawa
    • H01J17/49
    • H01J11/36H01J11/12H01J2211/361H01J2211/365H01J2211/54
    • A high-definition, high-reliability plasma display panel having a simple structure and having a stably ensured gas-exhaust passage. In the plasma display panel, display electrodes and address electrodes crossing these display electrodes are provided between a pair of substrate defining an electric discharge space, display lines produced by surface discharge are provided between adjacent display electrodes, discharge luminous regions are provided at cross sections between display lines and address electrodes, partitions (29) for defining discharge luminous regions for each line and for each column by first wall sections (29a) extending in the line direction in which the display electrodes are provided and second wall sections (29b) extending in the column direction in which the address electrodes are provided, nondischarge regions (31) are formed at interlinear sections which are sections between adjacent display lines, auxiliary partitions (32) projecting the first or second wall sections (29a or 29b) of the partitions (29) defining the nondischarge region (31) are formed by baking a material having a thermal shrinkability. Since the thermal shrinkage by the baking in the height direction is uneven, the height of the top part is partially greater than those of the top parts of the first and second partitions (29a, 29b) of the partitions defining the nondischarge regions (31).
    • 一种具有简单结构并具有稳定保证的气体排气通道的高清晰度,高可靠性等离子体显示面板。 在等离子体显示面板中,在限定放电空间的一对基板之间设置有与这些显示电极交叉的显示电极和寻址电极,在相邻的显示电极之间设置由表面放电产生的显示线,放电发光区域设置在 显示线和寻址电极,用于通过在其中设置显示电极的线方向上延伸的第一壁部分(29a)为每条线和每列确定放电发光区域的分隔部(29)和第二壁部分(29b) 设置寻址电极的列方向,非充电区域(31)形成在作为相邻显示线之间的部分的线间部分,突出分隔件的第一或第二壁部分(29a或29b)的辅助隔板(32) 29)通过烘焙具有热凝胶的材料来形成非充电区域(31) 可行性 由于在高度方向上的烘烤的热收缩是不均匀的,所以顶部的高度部分地大于限定非充电区域(31)的隔板的第一和第二隔板(29a,29b)的顶部的高度, 。
    • 6. 发明申请
    • MESH-PATTERN PARTITIONED PLASMA DISPLAY PANEL
    • MESH-PATTERN分级等离子显示面板
    • US20070285348A1
    • 2007-12-13
    • US11745582
    • 2007-05-08
    • Masahiro SawaYoshimi KawanamiKoji OhiraNobuyuki Takahashi
    • Masahiro SawaYoshimi KawanamiKoji OhiraNobuyuki Takahashi
    • G09G3/10
    • H01J11/12H01J11/36H01J2211/361
    • A plasma display panel is provided in which discharge connection in the column direction is prevented without increasing the number of man-hours in a formation process of a partition and without deteriorating ventilation for an exhaust process. A pattern in a plan view of a partition is made a mesh pattern in which vertical patterns are included at inter-row positions in each column. Each of first vertical walls is positioned at a boundary between columns, each of second vertical walls is arranged at a position away from a boundary between columns for each boundary between rows and each of horizontal walls is positioned at a boundary between rows. In the partition, a height of portions where the first vertical wall crosses the horizontal wall and a height of portions where the second vertical wall crosses the horizontal wall are smaller than a height of the other portions of the partition.
    • 提供了一种等离子体显示面板,其中防止排列连接在列方向上,而不增加在隔板的形成过程中的工时数,并且不会使排气过程的通风恶化。 分区的平面视图中的图案被制成网格图案,其中在每列中的行间位置包括垂直图案。 每个第一垂直壁位于柱之间的边界处,每个第二垂直壁布置在离行之间的边界处的位置之间,并且每个水平壁位于行之间的边界处。 在隔壁中,第一垂直壁与水平壁交叉的部分的高度和第二垂直壁与水平壁交叉的部分的高度小于隔板的其他部分的高度。
    • 7. 发明授权
    • Plasma display panel and method of manufacturing the same
    • 等离子显示面板及其制造方法
    • US08247970B2
    • 2012-08-21
    • US12183684
    • 2008-07-31
    • Noriaki SetoguchiMasahiro SawaYuji Kobayashi
    • Noriaki SetoguchiMasahiro SawaYuji Kobayashi
    • H01J17/49H01J9/24
    • H01J11/12H01J11/24H01J11/44H01J2211/444
    • A PDP (Plasma Display Panel) comprising a front substrate structure (first substrate structure) in which two pairs of an X electrode and a Y electrode and a non-emission area therebetween are formed, and a plurality of light-shielding films formed with spacing from the X electrode and the Y electrode in the non-emission area. The light-shielding film contains a metal material common with a metal material forming the X electrode and the Y electrode. And, the light-shielding film is formed in an island-shape having spacing from a neighboring barrier rib formed to a rear substrate structure (second substrate structure). According to the above structure, the area of the light-shielding film which may cause a capacitance-coupled portion with the X electrode, the Y electrode, or an address electrode can be made small, thereby suppressing capacitance coupling even when a conductive material is used to the light-shielding film.
    • 一种PDP(等离子体显示面板),包括其中形成有两对X电极和Y电极以及它们之间的非发射区域的前面衬底结构(第一衬底结构),以及形成有间隔的多个遮光膜 从X电极和Y电极在非发射区域。 遮光膜含有与形成X电极和Y电极的金属材料相同的金属材料。 并且,遮光膜形成为与形成于后基板结构(第二基板结构)的相邻隔壁间隔开的岛状。 根据上述结构,可以使可能导致与X电极,Y电极或地址电极的电容耦合部分的遮光膜的面积变小,从而即使当导电材料为 用于遮光膜。
    • 8. 发明申请
    • PLASMA DISPLAY PANEL AND METHOD OF MANUFACTURING THE SAME
    • 等离子显示面板及其制造方法
    • US20090146567A1
    • 2009-06-11
    • US12183684
    • 2008-07-31
    • Noriaki SETOGUCHIMasahiro SawaYuji Kobayashi
    • Noriaki SETOGUCHIMasahiro SawaYuji Kobayashi
    • H01J17/49H01J9/24
    • H01J11/12H01J11/24H01J11/44H01J2211/444
    • A PDP (Plasma Display Panel) comprising a front substrate structure (first substrate structure) in which two pairs of an X electrode and a Y electrode and a non-emission area therebetween are formed, and a plurality of light-shielding films formed with spacing from the X electrode and the Y electrode in the non-emission area. The light-shielding film contains a metal material common with a metal material forming the X electrode and the Y electrode. And, the light-shielding film is formed in an island-shape having spacing from a neighboring barrier rib formed to a rear substrate structure (second substrate structure). According to the above structure, the area of the light-shielding film which may cause a capacitance-coupled portion with the X electrode, the Y electrode, or an address electrode can be made small, thereby suppressing capacitance coupling even when a conductive material is used to the light-shielding film.
    • 一种PDP(等离子体显示面板),包括其中形成有两对X电极和Y电极以及它们之间的非发射区域的前面衬底结构(第一衬底结构),以及形成有间隔的多个遮光膜 从X电极和Y电极在非发射区域。 遮光膜含有与形成X电极和Y电极的金属材料相同的金属材料。 并且,遮光膜形成为与形成于后基板结构(第二基板结构)的相邻隔壁间隔开的岛状。 根据上述结构,可以使可能导致与X电极,Y电极或地址电极的电容耦合部分的遮光膜的面积变小,从而即使当导电材料为 用于遮光膜。
    • 9. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20090140951A1
    • 2009-06-04
    • US12187490
    • 2008-08-07
    • Noriaki SETOGUCHIMasahiro SawaYoshimi Kawanami
    • Noriaki SETOGUCHIMasahiro SawaYoshimi Kawanami
    • G09G3/28
    • H01J11/24H01J11/12
    • A technology capable of stably maintaining the address discharge characteristics even in a long-term drive of a PDP is provided. A PDP has a structure where projecting portions are provided to a display electrode pair used for surface discharge so as to extend toward a reverse slit side in a cell region. Address discharge is performed between a scan electrode having the projecting portion and an address electrode. Since surface discharge in the display electrode pair and address discharge using the projecting portion are positionally separated from each other in this structure, address discharge characteristics are stabilized even if a protective layer is degraded due to the surface discharge.
    • 提供了即使在PDP的长期驱动中也能够稳定地维持寻址放电特性的技术。 PDP具有向用于表面放电的显示电极对提供突出部分以在小区区域中朝向反向狭缝侧延伸的结构。 在具有突出部分的扫描电极和寻址电极之间进行地址放电。 由于在这种结构中由于在显示电极对中的表面放电和使用突出部分的寻址放电在位置上彼此分离,所以即使由于表面放电而导致保护层劣化,寻址放电特性也被稳定。
    • 10. 发明申请
    • Plasma display panel and production method therefor
    • 等离子显示面板及其制作方法
    • US20090121631A1
    • 2009-05-14
    • US11988890
    • 2005-08-26
    • Masahiro SawaKoji Ohira
    • Masahiro SawaKoji Ohira
    • H01J17/49H01J9/26
    • H01J9/261H01J9/385H01J11/12H01J11/36H01J11/48H01J2211/366
    • A plasma display panel production method is provided for producing a plasma display panel including a first substrate, a second substrate opposed to the first substrate, a barrier rib partitioning a space defined between the first and second substrates into a plurality of discharge spaces, and a seal frit portion provided between peripheral inner surface portions of the first and second substrates to seal the first and second substrates. The method comprises the steps of: forming a seal frit portion on one of the first and second substrates, and forming a barrier rib on the second substrate; combining the first substrate and the second substrate with a spacer of the same material as the seal frit portion being provided between the first substrate and a top of the barrier rib; pressing peripheral portions of the first and the second substrates from outside by a pressing member; heating the first and second substrates to a temperature not lower than a softening temperature of the seal frit portion while evacuating the space defined between the first and second substrates; and introducing a discharge gas into the space defined between the first and second substrates after the evacuating step.
    • 提供了一种等离子体显示面板的制造方法,用于制造等离子体显示面板,其包括第一基板,与第一基板相对的第二基板,将形成在第一和第二基板之间的空间分隔成多个排出空间的隔壁,以及 密封玻璃料部分设置在第一和第二基板的周边内表面部分之间,以密封第一和第二基板。 该方法包括以下步骤:在第一和第二基板之一上形成密封玻璃料部分,并在第二基板上形成隔壁; 将所述第一基板和所述第二基板的间隔件与所述第一基板和所述隔壁的顶部之间设置有与所述密封玻璃料部分相同材料的间隔件; 通过按压部件从外部挤压第一和第二基板的周边部分; 将所述第一和第二基板加热到不低于所述密封玻璃料部分的软化温度的温度,同时抽空所述第一和第二基板之间限定的空间; 并且在排气步骤之后将放电气体引入到限定在第一和第二基板之间的空间中。