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    • 1. 发明专利
    • Plasma display panel and driving method of the same
    • 等离子体显示面板及其驱动方法
    • JP2004193141A
    • 2004-07-08
    • JP2004091656
    • 2004-03-26
    • Mitsubishi Electric Corp三菱電機株式会社
    • HARADA SHIGEKIIWATA AKIHIKOSAITO YOSHIOYAMAMOTO TATSUYA
    • G09G3/20G09G3/288G09G3/291G09G3/292G09G3/298H01J11/22H01J11/24H01J11/32H01J11/34H01J11/02G09G3/28
    • PROBLEM TO BE SOLVED: To obtain a plasma display panel comprising a sustaining electrode for the front substrate with low resistance and high transmissivity without using a transparent conductive membrane, having a structure capable of realizing high contrast.
      SOLUTION: The plasma display panel has a discharge container constructed of a light transmitting front substrate and a rear substrate, and sustaining electrodes 7, 8 arranged on the front substrate. The sustaining electrodes 7, 8 arranged on the front substrate, formed by an opaque conductive membrane, are made of a pair of electrodes respectively constructed of a group of thin electrodes 13 divided in the direction parallel to the long side direction of the sustaining electrodes, and a short circuit part 14 is provided between the thin electrode 13 groups and the short circuit part 14 is constructed so as not to appear in the display cell.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:为了获得包括具有低电阻和高透射率的前基板的维持电极而不使用透明导电膜的等离子体显示面板,具有能够实现高对比度的结构。 解决方案:等离子体显示面板具有由透光前基板和后基板构成的放电容器,以及布置在前基板上的保持电极7,8。 由不透明导电膜构成的布置在前基板上的维持电极7,8由分别由与保持电极的长边方向平行的方向分割的一组薄电极13构成的一对电极构成, 并且在薄电极13组之间设置短路部分14,并且构造短路部分14以便不出现在显示单元中。 版权所有(C)2004,JPO&NCIPI
    • 5. 发明专利
    • DISCHARGE EXCITED GAS LASER DEVICE
    • JPH06275897A
    • 1994-09-30
    • JP6178393
    • 1993-03-22
    • MITSUBISHI ELECTRIC CORP
    • FUJIKAWA SHUICHIINOUE MITSUOSATO YUKIOSAITO YOSHIOHARUTA TAKEO
    • H01S3/0977H01S3/038
    • PURPOSE:To provide a discharge excited gas laser device wherein the constitution of a discharge part is simple, a main discharge is generated stably and the laser can be oscillated with good efficiency. CONSTITUTION:A dielectric 3 is arranged along the side of a second main electrode 6, a first preliminary ionization electrode 1 is installed along the surface of the dielectric 3, a second preliminary ionization electrode 2 is installed at the outer side with reference to the main electrode than the first preliminary ionization electrode 1 along the surface of the dielectric 3 in the same manner, a voltage is applied across the first preliminary ionization electrode 1 and the second preliminary ionization electrode 2, a creeping discharge 4 is generated on the surface of the dielectric, and a preliminary ionization in a main discharge space is performed by ultraviolet rays generated from there. Consequently, a preliminary ionization source 8 does not disturb a gas flow, and 3 discharge part can be constituted simply. In addition, since impurities produced by a main discharge can be removed sufficiently, the main discharge can be generated stably and uniformly even in a highly repeated operation.