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    • 3. 发明申请
    • PLASMA DISPLAY PANEL AND DISPLAY DEVICE HAVING THE SAME
    • 等离子显示面板和显示设备
    • US20090184895A1
    • 2009-07-23
    • US12344672
    • 2008-12-29
    • Norihiro UemuraShunichiro NobukiMasakazu SagawaShirun HoKeizo SuzukiYoshiro Mikami
    • Norihiro UemuraShunichiro NobukiMasakazu SagawaShirun HoKeizo SuzukiYoshiro Mikami
    • G09G3/28
    • H01J11/24H01J11/12H01J11/32H01J11/36
    • A high-definition, high-quality, and high-contrast PDP that features high brightness, guaranteed long life, and stable driving, is provided by improving the time-dependent degradation of address discharge delay. The PDP includes: a front substrate having bus electrodes, and sustain discharge electrodes extending in a lateral direction of the bus electrodes to form display lines; a back substrate having address electrodes facing the sustain discharge electrodes in the lateral direction of the bus electrodes; and discharge cells formed between the substrates. Each of the discharge cells includes a sustain discharge cell and a priming discharge cell, in which a protruding electrode is formed to extend in a direction opposite to the discharge gap from the bus electrode, and a predetermined space is provided between the two cells to supply priming. The shape and size of the space are optimized so that the sustain discharge does not spread to the address discharge cell through the space.
    • 通过改善寻址放电延迟的时间依赖性降低,提供了具有高亮度,长寿命和稳定驱动的高清晰度,高质量和高对比度的PDP。 PDP包括:具有总线电极的前基板和沿总线电极的横向方向延伸的维持放电电极,以形成显示线; 背面基板,其具有在所述总线电极的横向方向上面对所述维持放电电极的寻址电极; 以及在基板之间形成的放电单元。 每个放电单元包括维持放电单元和起动放电单元,其中突出电极形成为沿着与总线电极的放电间隙相反的方向延伸,并且在两个单元之间提供预定的空间以供应 起动 优化空间的形状和尺寸,使得维持放电不会通过该空间扩散到寻址放电单元。
    • 5. 发明申请
    • Light emitting display device
    • 发光显示装置
    • US20070035229A1
    • 2007-02-15
    • US11500991
    • 2006-08-09
    • Yoshiro MikamiMasakazu SagawaTomoki NakamuraShoji Shirai
    • Yoshiro MikamiMasakazu SagawaTomoki NakamuraShoji Shirai
    • H01J63/04H01J1/62
    • H01J29/467H01J29/04H01J29/481H01J31/127
    • In a light emitting display device using electron emitter elements, it is possible to prevent lowering of image quality caused by spread of electron beams. MIM (Metal Insulator Metal) is used as the electron emitter elements and each of the electron emitter elements is surrounded by a conductive barrier (scanning wire). The electron emitter elements and the barriers are covered by upper electrodes so that the barriers and the surfaces of the electron emitter elements have the same electrical potential. The electron emitter elements and the barriers are formed on a cathode substrate. Color phosphors of R (red), G (green), and B (blue) are formed on an anode substrate at the side opposing to the cathode substrate. The color phosphors are excited by electron beams emitted from the electron emitter elements.
    • 在使用电子发射体元件的发光显示装置中,可以防止由电子束扩散引起的图像质量的降低。 使用MIM(金属绝缘体金属)作为电子发射体元件,并且每个电子发射体元件被导电屏障(扫描线)包围。 电子发射体元件和屏障被上部电极覆盖,使得电子发射体元件的势垒和表面具有相同的电位。 电子发射体元件和阻挡层形成在阴极基板上。 在与阴极基板相对的一侧的阳极基板上形成R(红色),G(绿色)和B(蓝色)的彩色荧光体。 彩色荧光体被从电子发射体元件发射的电子束激发。