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    • 24. 发明授权
    • Plasma display panel manufacturing method for manufacturing a plasma display panel with superior picture quality, a manufacturing apparatus and a phosphor ink
    • 等离子体显示面板制造方法,用于制造具有优异图像质量的等离子体显示面板,制造装置和荧光体油墨
    • US06547617B1
    • 2003-04-15
    • US09743171
    • 2001-01-05
    • Hiroyuki KawamuraShigeo SuzukiMasaki AokiKanako MiyashitaMitsuhiro OhtaniHiroyuki KadoKeisuke SumidaNobuyuki Kirihara
    • Hiroyuki KawamuraShigeo SuzukiMasaki AokiKanako MiyashitaMitsuhiro OhtaniHiroyuki KadoKeisuke SumidaNobuyuki Kirihara
    • H05D506
    • 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 5 &mgr;m; 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 (—OC2H5) cellulose molecules. After dispersion a charge-removing material is added to the phosphor ink.
    • 本发明旨在提供一种能够长时间连续施加荧光体油墨的PDP的制造方法,即使在电池结构非常细的情况下也能够准确均匀地制造荧光体层。 为了这样做,当喷嘴相对于形成在板上的隔壁之间的通道移动时,荧光体墨水从喷嘴连续排出,以便扫描并将磷光体墨施加到通道。 在这样做时,基于通道的位置信息来调整在一对分隔壁之间的每个通道内的喷嘴所采取的路径。 当荧光体颗粒连续地施加到多个通道时,即使喷嘴远离通道定位,荧光体墨也从喷嘴连续排出。 荧光体墨水由平均粒径为0.5〜5μm的荧光体粒子构成, 将选自萜品醇,丁基卡必醇乙酸酯,丁基卡必醇,戊二醇和柠檬烯的材料混合的混合溶剂; 和含有至少49%的乙氧基(-OC2H5)纤维素分子的乙烯基聚合物或乙基纤维素的粘合剂。 分散后,将电荷去除材料添加到荧光体油墨中。
    • 26. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20100308721A1
    • 2010-12-09
    • US12745375
    • 2009-09-28
    • Takuji TsujitaJun HashimotoRyuichi MuraiHiroyuki KadoMasashi GotouYukihiro MoritaYasuyuki Noguchi
    • Takuji TsujitaJun HashimotoRyuichi MuraiHiroyuki KadoMasashi GotouYukihiro MoritaYasuyuki Noguchi
    • H01J17/49
    • H01J11/40H01J11/12
    • A plasma display panel has high definition, high luminance, and low power consumption. In the plasma display panel, the front panel is provided thereon with display electrodes, a dielectric layer, and a protective layer. The display electrodes are formed on the front glass substrate. The dielectric layer coats the display electrodes, and the protective layer is formed on the dielectric layer. The rear panel is provided thereon with address electrodes and barrier ribs for partitioning the discharge space in the direction crossing to the display electrodes. The front and rear panels are opposed to each other with a discharge space therebetween filled with a discharge gas. The protective layer on the dielectric layer includes an underlying film, and aggregated particles adhered on the underlying film, the aggregated particles being formed by aggregating crystal grains of magnesium oxide. The underlying film contains metal oxides composed of at least two oxides selected from magnesium oxide, calcium oxide, strontium oxide, and barium oxide. According to an X-ray diffraction analysis of the surface of the underlying film, in a specific plane direction, the metal oxides have a diffraction angle peak between the minimum and maximum diffraction angles of simple substances of the oxides composing the metal oxides.
    • 等离子体显示面板具有高清晰度,高亮度和低功耗。 在等离子体显示面板中,前面板上设有显示电极,电介质层和保护层。 显示电极形成在前玻璃基板上。 电介质层涂覆显示电极,并且在电介质层上形成保护层。 后面板设置有寻址电极和阻挡肋,用于在与显示电极交叉的方向上分隔放电空间。 前面板和后面板彼此相对,其间填充有放电气体的放电空间。 电介质层上的保护层包括下面的膜,并且凝集的颗粒附着在下面的膜上,聚集的颗粒是通过聚集氧化镁的晶粒而形成的。 底层膜含有由选自氧化镁,氧化钙,氧化锶和氧化钡中的至少两种氧化物构成的金属氧化物。 根据下面的膜的表面的X射线衍射分析,在特定的平面方向上,金属氧化物在构成金属氧化物的氧化物的简单物质的最小衍射角与最大衍射角之间具有衍射角峰。
    • 30. 发明申请
    • Throttle control apparatus
    • 油门控制装置
    • US20080011269A1
    • 2008-01-17
    • US11798546
    • 2007-05-15
    • Hiroshi TanimuraHiroyuki KadoHiroshi Asanuma
    • Hiroshi TanimuraHiroyuki KadoHiroshi Asanuma
    • F02D9/08
    • F02D41/107F02D2009/0269F02D2009/0277F02D2011/102F02D2041/227F02D2200/0404
    • A throttle control apparatus has a torsional coil spring that is associated with the throttle body and the rotator to bias throttle valve to a predetermined intermediate angle between a full open angle and a full close angle. An actuator rotates the rotator against a biasing force of the torsional coil spring. The torsional coil spring has a first and a second loading portions that apply biasing forces to the rotator to bias the throttle valve from the full open angle or from the full close angle toward the intermediate angle. The rotator is provided with a spring force receiving portion that receives both the biasing forces applied by the first and second loading portions so that the first and second loading portions sandwich the spring force receiving portion therebetween.
    • 节气门控制装置具有扭转螺旋弹簧,其与节气门体和旋转体相关联,以将节流阀偏压到全开角度与全角度之间的预定中间角度。 致动器抵抗扭转螺旋弹簧的偏置力使转动器旋转。 扭转螺旋弹簧具有第一和第二加载部分,该第一和第二加载部分向旋转器施加偏压力,以将节流阀从完全打开的角度或从完全接近角向中间角度偏压。 旋转器设置有弹簧力接收部分,其接收由第一和第二装载部分施加的偏压力,使得第一和第二装载部分夹在其间的弹簧力接收部分。