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    • 93. 发明申请
    • Plasma display panel
    • 等离子显示面板
    • US20060267496A1
    • 2006-11-30
    • US11407548
    • 2006-04-19
    • Tae-Joung KweonKyoung-Doo Kang
    • Tae-Joung KweonKyoung-Doo Kang
    • H01J17/00
    • H01J11/26H01J11/16H01J2211/265
    • A plasma display panel includes a first substrate and a second substrate with discharge cells partitioned therebetween. First electrodes and second electrodes surround the discharge cells and are respectively disposed proximate to opposite ones of the first and second substrates. The first electrodes are connected to each other and the second electrodes are connected to each other in a first direction. Address electrodes are between and spaced apart from the first and second electrodes along the direction perpendicular to the planes of the first substrate and the second substrate, and are connected in a second direction crossing the first direction. The address electrodes also surround the discharge cells.
    • 等离子体显示面板包括第一基板和在其之间分隔有放电单元的第二基板。 第一电极和第二电极围绕放电单元并且分别设置成靠近第一和第二基板的相对的基板。 第一电极彼此连接并且第二电极在第一方向上彼此连接。 地址电极沿着与第一基板和第二基板的平面垂直的方向在第一和第二电极之间并与第一和第二电极间隔开,并且沿与第一方向交叉的第二方向连接。 寻址电极也围绕放电单元。
    • 95. 发明授权
    • Phosphor, its manufacturing method and plasma display panel
    • 荧光粉,其制造方法和等离子体显示面板
    • US6099753A
    • 2000-08-08
    • US7516
    • 1998-01-15
    • Futoshi YoshimuraNobuyuki Sudou
    • Futoshi YoshimuraNobuyuki Sudou
    • C09K11/08C09K11/02H01J11/12H01J11/26H01J11/42H01J17/49H01J17/00
    • C09K11/025H01J2211/42Y10T428/2991Y10T428/2993
    • An object of the present invention is to provide a phosphor capable of improving the light emitting efficiency of a plasma display panel and restraining the deterioration of luminance and a change in chromaticity with the passage of time, and also provide a manufacturing method of this phosphor and the plasma display panel using this phosphor. To achieve this object, the surfaces of phosphor particles for a plasma display panel are covered with a metallic oxide generated by the hydrolysis of a metallic alkoxide. A manufacturing method of the phosphor particles for the plasma display panel is characterized in that the metallic alkoxide is attached to the phosphor particle surfaces and is burned. In this manufacturing method, the phosphor particle surfaces are covered with a close film of the metallic oxide. The plasma display panel uses the phosphor particles having surfaces covered with the metallic oxide.
    • 本发明的目的是提供一种能够提高等离子体显示面板的发光效率并且抑制亮度的劣化和随时间的色度变化的荧光体,并且还提供了该荧光体的制造方法和 使用该荧光体的等离子体显示面板。 为了实现该目的,用金属醇盐水解生成的金属氧化物覆盖等离子体显示面板的荧光体颗粒的表面。 用于等离子体显示面板的荧光体颗粒的制造方法的特征在于,金属醇盐附着在荧光体颗粒表面上并被燃烧。 在该制造方法中,荧光体颗粒表面被金属氧化物的密闭膜覆盖。 等离子体显示面板使用具有被金属氧化物覆盖的表面的荧光体颗粒。
    • 97. 发明授权
    • Plasma display panel with magnetic partition walls
    • 等离子显示屏带磁隔墙
    • US5959403A
    • 1999-09-28
    • US947469
    • 1997-10-09
    • Kyeong-Won Lee
    • Kyeong-Won Lee
    • H01J11/12H01J11/36H01J17/14H01J17/00
    • H01J11/36H01J11/12H01J2211/366
    • A plasma display panel includes a plurality of discharge cells formed with a plurality of partition walls arranged at fixed intervals between a front substrate and a rear substrate disposed in parallel spaced at a certain distance. A fluorescent material film is formed on a portion of an inside surface of each of the discharge cells. A discharge gas is sealed in each of the discharge cells and is converted into a plasma upon the occurrence of a discharge in each of the discharge cells. Each of the partition walls is formed with a stack of at least more than one permanent magnets magnetized with N and S poles for forming a magnetic field in the discharge cell. The electrons existing in the plasma are thus accelerated toward the fluorescent material film upon occurrence of a discharge in the discharge cell by the magnetic field such that the fluorescent material film can be excited, whereby a luminance of a panel screen can be improved, equal sized magnetic partition walls can be formed, and production time of the magnetic partition walls can be shortened.
    • 等离子体显示面板包括多个放电单元,多个放电单元形成有多个分隔壁,其以固定的间隔布置在前面基板和后部基板之间,隔开间隔开一定距离。 在每个放电单元的内表面的一部分上形成荧光材料膜。 放电气体被密封在每个放电单元中,并且在每个放电单元中发生放电时转换为等离子体。 每个分隔壁形成有至少多于一个用N和S极磁化的永磁体的堆叠,用于在放电单元中形成磁场。 因此,存在于等离子体中的电子通过磁场在放电单元中发生放电而朝向荧光材料膜加速,使得可以激发荧光材料膜,从而可以提高面板屏幕的亮度,相同尺寸 可以形成磁隔离壁,并且可以缩短磁隔离壁的生产时间。