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    • 3. 发明公开
    • Surface-discharge type display device with reduced power consumption
    • Plasmaanzeigetafel mitOberflächenentladungmit reduziertem Leistungsverbrauch
    • EP1126499A3
    • 2004-05-26
    • EP01300656.4
    • 2001-01-25
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Takada, YuusukeMurai, RyuichiShiokawa, AkiraShindo, Katutoshi
    • H01J17/49
    • H01J11/24H01J11/12H01J11/38H01J2211/245H01J2211/323
    • A surface-discharge type display device is provided that can reduce power consumption during sustain discharge and suppress the occurrence of illumination failures. A display electrode and a display scan electrode are aligned on a substrate, and a dielectric layer is formed on the substrate so as to cover the display electrode and the display scan electrode. An area having a lower relative permittivity than the dielectric layer is formed in an area surrounded on three sides by the display electrode, the display scan electrode, and the substrate. The dielectric layer allows sufficient wall charges for surface discharge to be accumulated, whereas the lower relative permittivity area allows the capacitance between the display electrode and the display scan electrode to be decreased. Accordingly, the power consumption during sustain discharge is reduced without causing illumination failures.
    • 提供一种表面放电型显示装置,其可以降低维持放电期间的功耗,并抑制照明故障的发生。 显示电极和显示扫描电极在基板上排列,并且在基板上形成介电层以覆盖显示电极和显示扫描电极。 通过显示电极,显示扫描电极和基板在三面包围的区域中形成具有比电介质层低的相对介电常数的区域。 介电层允许积累足够的壁电荷用于表面放电,而较低的相对介电常数面积允许显示电极和显示扫描电极之间的电容减小。 因此,维持放电期间的功率消耗减少而不引起照明故障。
    • 10. 发明公开
    • Plasma display panel suitable for high-quality display and production method
    • 等离子显示面板适合高质量的显示和制作方法
    • EP1221708A3
    • 2002-12-04
    • EP02006618.9
    • 1996-12-13
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Aoki, MasakiTorii, HideoFujii, EijiOhtani, MitsuhiroInami, TakashiKawamura, HiroyukiTanaka, HiroyoshiMurai, RyuichiIshikura, YasuhisaNishimura, YutakaYamashita, Katsuyoshi
    • H01J9/02H01J17/49
    • C23C16/404C23C16/403H01J9/02H01J11/12H01J11/38H01J11/40H01J11/50H01J2211/38H01J2211/40H01J2211/50Y10T117/1004Y10T117/1008
    • The first object of the present invention is to provide a PDP with improved panel brightness which is achieved by improving the efficiency in conversion from discharge energy to visible rays. The second object of the present invention is to provide a PDP with improved panel life which is achieved by improving the protecting layer protecting the dielectric glass layer. To achieve the first object, the present invention sets the amount of xenon in the discharge gas to the range of 10% by volume to less than 100% by volume, and sets the charging pressure for the discharge gas to the range of 500 to 760Torr which is higher than conventional charging pressures. With such construction, the panel brightness increases. Also, to achieve the second object, the present invention has, on the surface of the dielectric glass layer, a protecting layer consisting of an alkaline earth oxide with (100)-face or (110)-face orientation. The protecting layer, which may be formed by using thermal Chemical Vapor Deposition (CVD) method, plasma enhanced CVD method, or a vapor deposition method with irradiation of ion or electron beam, will have a high sputtering resistance and effectively protects the dielectric glass layer. Such a protecting layer contributes to the improvement of the panel life.
    • 本发明的第一个目的是提供一种具有改进的面板亮度的PDP,其通过改进从放电能量到可见光的转换效率来实现。 本发明的第二个目的是提供一种通过改进保护介电玻璃层的保护层而实现的具有改进的面板寿命的PDP。 为了实现第一个目的,本发明将放电气体中的氙的量设定为10体积%至小于100体积%的范围,并且将放电气体的充电压力设定为500至760Torr的范围 这比传统的充电压力更高。 采用这种结构,面板亮度增加。 而且,为了实现第二个目的,本发明在电介质玻璃层的表面上具有由具有(100)面或(110)面取向的碱土氧化物构成的保护层。 通过使用热化学气相沉积(CVD)法,等离子体增强CVD法或利用离子束或电子束的照射的气相沉积法可形成的保护层将具有高耐溅射性并且有效地保护电介质玻璃层 。 这种保护层有助于改善面板寿命。