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    • 1. 发明专利
    • Manufactuer of gas discharge panel
    • 气体放电面板制造商
    • JPS5765643A
    • 1982-04-21
    • JP14179180
    • 1980-10-09
    • Fujitsu Ltd
    • SUGIMOTO YOSHIMIMIYASHITA YOSHINORISHINODA HIROSHI
    • G09F9/313H01J11/10H01J11/14H01J11/42
    • H01J11/00
    • PURPOSE:To disperse uniformly phosphor and improve the display quality of a gas discharge panel, by stirring the mixture of phosphor which ought to be spread on the inside surface of a base constituting the panel before spreading it. CONSTITUTION:A certain rate of quantities of photoresist and phosphor are put in a container as a beaker or the like, and they are mixed by using a magnetic stirrer or the like. Then, the container is soaked in the wash-tub of an ultrasonic washhing machine, and subjected to ultrasonic vibration. Then, lumps of phosphor in the photoresist are crushed in fine particles, and dispersed uniformly. A uniform phosphor layer 8 can be formed, by spreading this mixture on a glass cover plate 2 constituting a gas discharge panel, forming it into a predetermined shape by a photographically exposing method, and baking it at a given temperature. Thereby, the ununiformity of brightness can be prevented, and the display quantity of the panel can be improved.
    • 目的:为了均匀地分散荧光体,提高气体放电面板的显示质量,通过在扩散之前将构成面板的底座的内表面上应涂布的荧光体的混合物搅拌。 构成:将一定量的光致抗蚀剂和磷光体作为烧杯等放入容器中,并通过使用磁力搅拌器等进行混合。 然后,将容器浸泡在超声波清洗机的洗涤槽中,进行超声波振动。 然后,光致抗蚀剂中的荧光体块被细粉碎,均匀分散。 可以通过将该混合物铺展在构成气体放电面板的玻璃盖板2上,通过照相曝光法将其形成为预定的形状,并在给定的温度下进行烘烤来形成均匀的荧光体层8。 由此,可以防止亮度的不均匀性,能够提高面板的显示量。
    • 5. 发明专利
    • Gas discharge display panel
    • 气体放电显示面板
    • JPS5767262A
    • 1982-04-23
    • JP14338980
    • 1980-10-13
    • Fujitsu Ltd
    • SHINODA HIROSHISUGIMOTO YOSHIMIMIYASHITA YOSHINORIYOSHIKAWA KAZUO
    • H01J1/54H01J11/10H01J11/14H01J11/42
    • H01J11/00
    • PURPOSE:To enhance the mutual separation property between dosplay ditts, by placing a phosphor layer on the internal surface of a substrate for the cover of a surface discharge type gas discharge panel, and by utilizing the transmission light absorbing action of the phosphor layer itself. CONSTITUTION:A display panel 10 has, interposing a gas space 11, a pair of glass substrates 12 and 13, which are placed facing each other; a Y electrode 14 which can expand breadthwise is provided on the substrate 12; on the Y electrode, an X electrode 16 which can expand lengthwise and an islandlike discharge control electrode 17 are provided through an insulating film 15. On the other hand, on the internal surface of a substrate 13 which acts as a substrate for the cover, the phosphor layer 20 having a thickness of 2-50mum is provided in the coating density of 40-100%. Consequently, unnecessary emission can be eliminated from a visual field and thereby the separation property between dotts can be enhanced through the utilization of the light-transmission loss characteristics of a phosphor layer itself, by observing the emission from the phosphor layer 20 caused by the excitation of the discharge light through the phosphor layer 20.
    • 目的:通过在表面放电型气体放电板的盖的基板的内表面上配置荧光体层,并且通过利用荧光体层本身的透射光吸收作用,来增强喷射喷嘴之间的相互分离性。 构成:显示面板10具有相对配置的气体空间11,一对玻璃基板12,13, 在基板12上设置能够宽幅扩展的Y电极14; 在Y电极上,通过绝缘膜15设置可纵向扩展的X电极16和岛状放电控制电极17.另一方面,在用作盖的基板的基板13的内表面上, 以40-100%的涂层密度提供厚度为2-50μm的磷光体层20。 因此,可以从视野中消除不必要的发射,从而通过利用荧光体层本身的光透射损失特性,通过观察由激发引起的荧光体层20的发射,可以提高点之间的分离性能 的放电光通过荧光体层20。
    • 10. 发明专利
    • SURFACE DISCHARGE TYPE GAS DISCHARGE PANEL
    • JPS5885249A
    • 1983-05-21
    • JP18456881
    • 1981-11-16
    • FUJITSU LTD
    • SHINODA HIROSHI
    • H01J11/10H01J11/14H01J11/24H01J11/42
    • PURPOSE:To enable high resolution display to be realized by bending each of upper-layer electrodes in a zigzag form, arranging discharge points zigzag, and providing discharge regulating electrode pieces between the respective electrodes. CONSTITUTION:Glass substrates 1 and 2 are opposed through a discharge gas space 3 and Y electrodes 4 that form a lower-layer electrode group are arranged in parallel on the substrate 1. X electrodes 9 that form an upper-layer electrode group are arranged perpendicularly on the Y electrodes 4 through a dielectric layer 5 on a height level that differs from those of the Y electrodes 4 and are bent in a zigzag form, then discharge points are arranged zigzag on the intersection of X electrodes group with each of the Y electrodes 4. Besides, discharge regulating electrode pieces 7 are arranged on each of the Y electrodes 4 and between the respective X electrodes 9. Phosphor layers 10 and 11 are provided corresponding to their own discharge points and allowed to emits light. As a result, the independence of the discharge points can be maintained for both the X electrodes 9 and Y electrodes 4 and high resolution can be obtained along with prevention of conductive coupling.