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    • 6. 发明公开
    • Plasma display panel suitable for high-quality display and production method
    • Plasmaanzeigetafel geeignetfürAnzeige hoherQualitätund Herstellungsverfahren
    • EP1333462A2
    • 2003-08-06
    • EP03075897.3
    • 1996-12-13
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Aoki, MasakiTori, HideoFujii, EijiOhtani, MitsushiroInam, TakashiKawamura, HiroyukiTanaka, HiroyoshiMurai, RyuichiIshikura, YasuhisaNishimura, YatakaYamashita, Katsuyoshi
    • H01J17/20H01J17/49
    • 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 (13), a protecting layer (14) consisting of an alkaline earth oxide with (100)-face or (110)-face orientation. The protecting layer (14), 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 (13). Such a protecting layer (14) 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,其通过提高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改善面板寿命的PDP,其通过改进保护电介质玻璃层的保护层来实现。 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在500至760乇的范围内 这高于常规的充气压力。 通过这样的结构,面板亮度增加。 此外,为了实现第二个目的,本发明在电介质玻璃层(13)的表面上具有由具有(100)面或(110)面取向的碱土金属氧化物组成的保护层(14) 。 可以通过使用热化学气相沉积(CVD)法,等离子体增强CVD法或通过离子或电子束照射的气相沉积法形成的保护层(14)将具有高的溅射电阻并且有效地保护 电介质玻璃层(13)。 这种保护层(14)有助于提高面板寿命。
    • 9. 发明公开
    • A plasma display panel manufacturing method for manufacturing a plasma display panel with superior picture quality, a manufacturing apparatus, and a phosphor ink
    • 具有优良的图像质量,制造装置,和磷光油墨制造等离子显示面板的等离子显示面板的制造方法
    • EP1291893A2
    • 2003-03-12
    • EP02027654.9
    • 1999-07-08
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Kawamura, HiroyukiSuzuki, ShigeoAoki, MasakiMiyashita, KanaokeOhtani, MitsuhiroKado, HiroyukiSumida, KeisukeKirihara, Nobuyuki
    • H01J9/227
    • H01J9/227H01J2211/42
    • The present invention intends to provide a manufacturing method for a PDP that can continuously apply phosphor ink for a long time and can accurately and evenly produce phosphor layers even when the cell construction is very fine. To do so, phosphor ink is continuously expelled from a nozzle while the nozzle moves relative to channels between partition walls formed on a plate so as to scan and apply phosphor ink to the channels. While doing so the path taken by the nozzle within each channel between a pair of partition walls is adjusted based on position information for the channel. When phosphor particles is successively applied to a plurality of channels, phosphor ink is continuously expelled from the nozzle even when the nozzle is positioned away from the channels. The phosphor ink is composed of: phosphor particles that have an average particle diameter of 0.5 to 5µm; a mixed solvent in which materials selected from a group consisting of terpineol, butyl carbitol acetate, butyl carbitol, pentandiol, and limonene are mixed; and a binder that is an ethylene group polymer or ethyl cellulose containing at least 49% of ethoxy group (-OC 2 H
    • 本发明的意图是提供一种用于PDP也可以连续申请磷墨时间长,并且可以精确地设定和均匀产生的荧光体层,即使当电池结构是非常精细的制造方法。 要做到这一点,荧光体墨连续地从喷嘴而喷嘴相对移动形成在板以扫描并应用磷油墨通道的隔壁之间的通道排出。 这样做虽然一对分隔壁之间的每个信道内由喷嘴所采取的路径是基于所述信道的位置信息进行调整。 当磷的颗粒被连续地应用到信道与多个,荧光体墨从连续即使当喷嘴位于从通道离开所述喷嘴排出。 荧光体墨的组成如下:荧光体粒子thathave为0.5至5微米的平均粒径; 从包括萜品醇,丁基卡必醇乙酸酯,丁基卡必醇,戊二醇,和柠檬烯中选择的,其中将材料的混合溶剂中混合; (和粘合剂那样被亚乙基聚合物或乙基纤维素含乙氧基基团的至少49%-OC2H