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    • 4. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20120326598A1
    • 2012-12-27
    • US13202896
    • 2011-03-15
    • Jun HashimotoTakehiro ZukawaTakuji TsujitaTakayuki Shimamura
    • Jun HashimotoTakehiro ZukawaTakuji TsujitaTakayuki Shimamura
    • H01J17/49
    • H01J11/12H01J11/40
    • PDP (1) includes front plate (2) and rear plate (10). Front plate (2) has protective layer (9). Rear plate (10) has phosphor layers (15). Protective layer (9) includes a first metal oxide and a second metal oxide. In X-ray diffraction analysis, a peak of a base layer lies between a first peak of the first metal oxide and a second peak of the second metal oxide. The first and second metal oxides are two selected from the group consisting of MgO, CaO, SrO, and BaO. The concentration of calcium contained in the base layer ranges from not less than 1 atomic % to not greater than 5 atomic %. In X-ray diffraction analysis, the metal oxide exhibits one peak that lies between the minimum and the maximum of diffraction angles of single substances of the selected metal oxides in a specific plane direction (111).
    • PDP(1)包括前板(2)和后板(10)。 前板(2)具有保护层(9)。 后板(10)具有荧光体层(15)。 保护层(9)包括第一金属氧化物和第二金属氧化物。 在X射线衍射分析中,基层的峰位于第一金属氧化物的第一峰和第二金属氧化物的第二峰之间。 第一和第二金属氧化物选自MgO,CaO,SrO和BaO。 基质层中所含的钙浓度为1原子%以上5原子%以下。 在X射线衍射分析中,金属氧化物表现出一个位于特定平面方向上选择的金属氧化物的单一物质的最小和最大衍射角的峰(111)。
    • 5. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20100181909A1
    • 2010-07-22
    • US12665310
    • 2008-04-15
    • Takuji TsujitaYusuke FukuiMasaharu TerauchiMikihiko NishitaniShinichiro IshinoKaname MizokamiMichiko OkafujiHiroshi AsanoKyohei Yoshino
    • Takuji TsujitaYusuke FukuiMasaharu TerauchiMikihiko NishitaniShinichiro IshinoKaname MizokamiMichiko OkafujiHiroshi AsanoKyohei Yoshino
    • H01J17/49
    • H01J11/40H01J11/12H01J11/42
    • A plasma display panel demonstrating excellent image display performance by suppressing generation of initialization bright points through modification of the phosphor layer, and by eliminating variation in discharge characteristics between the discharge cells of each color. In addition to solving these problems, the luminance of the plasma display panel is also enhanced by using the ultraviolet rays emitted in the discharge space in order to promote the production of visible light on the front panel side. Specifically, the phosphor layer (14) is composed of a phosphor component and of MgO powder (16) disposed principally inside the phosphor layer and exposed towards the surface (140) facing the discharge space in order to impart secondary electron emission characteristics. The MgO powder (16) is composed of MgO particles (16a-16d) having a crystal structure with two specific crystal faces consisting of the (100) crystal face and the (111) crystal face, or three specific crystal faces consisting of the (100) crystal face, the (110) crystal face, and the (111) crystal face.
    • 一种等离子体显示面板,其通过改变荧光体层而抑制初始化亮点的产生,并且消除每种颜色的放电单元之间的放电特性的变化,从而显示出优异的图像显示性能。 除了解决这些问题之外,通过使用在放电空间中发射的紫外线来提高等离子体显示面板的亮度,以促进前面板侧的可见光的产生。 具体地,荧光体层(14)由荧光体组分和主要位于荧光体层的内部的MgO粉末(16)构成,并朝向面向放电空间的表面(140)暴露以赋予二次电子发射特性。 MgO粉末(16)由具有由(100)晶面和(111)晶面组成的两个特定晶面的晶体结构的MgO粒子(16a-16d)或由(111)晶面组成的三个特定晶面构成, 100)晶面,(110)晶面和(111)晶面。