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    • 31. 发明授权
    • Display panel and manufacturing method of display panel
    • 显示面板和显示面板的制造方法
    • US08007334B2
    • 2011-08-30
    • US12323790
    • 2008-11-26
    • Tadahisa TohyamaTsuyoshi Ozaki
    • Tadahisa TohyamaTsuyoshi Ozaki
    • H01J9/00H01J63/04
    • H01L27/3246H01L27/1248H01L27/3248H01L51/56H01L2227/323
    • A manufacturing method of a display panel including a light emitting element including a first electrode, a carrier transporting layer constituted of at least one layer and a second electrode so as to layer the first electrode, the carrier transporting layer and the second electrode, and the manufacturing method includes forming the first electrode in a predetermined region on a substrate, forming an opening from which only a predetermined region of the first electrode is exposed by patterning an insulation film by carrying out an etching after forming the insulation film on the substrate including the first electrode and forming the carrier transporting layer at least on the first electrode which is exposed from the opening.
    • 一种显示面板的制造方法,其包括发光元件,该发光元件包括第一电极,由至少一层构成的载流子传输层和第二电极,以便层叠第一电极,载流子传输层和第二电极, 制造方法包括在基板上的预定区域中形成第一电极,形成开口,通过在包括第一电极的基板上形成绝缘膜之后进行蚀刻,通过对绝缘膜进行图案化而仅暴露第一电极的预定区域 至少在从开口露出的第一电极上形成载流子传输层。
    • 32. 发明授权
    • Display apparatus and drive control method
    • 显示装置和驱动控制方法
    • US07982694B2
    • 2011-07-19
    • US11717385
    • 2007-03-13
    • Jun OguraTsuyoshi Ozaki
    • Jun OguraTsuyoshi Ozaki
    • G09G3/30
    • G09G3/3233G09G2300/0842G09G2300/0861G09G2310/0262G09G2320/0223
    • A display apparatus includes a display panel having a plurality of display pixels two-dimensionally arrayed display pixels having pixel drive circuits and light emitting devices near at intersections of a plurality of scan lines and a plurality of data lines laid out in a row direction and in a column direction so as to be orthogonal to each other, a scan driver which applies a scan signal to the scan lines at a predetermined timing, a data driver which supplies a gradation signal corresponding to display data to the display pixels via the data lines, and a pair of power source drivers which apply a supply voltage to both ends of a plurality of power supply lines laid out in the column direction at a predetermined timing.
    • 显示装置包括:显示面板,具有多个显示像素,二维阵列的显示像素,具有像素驱动电路,发光元件靠近多条扫描线和沿行方向排列的多条数据线; 列方向彼此正交;扫描驱动器,其以预定定时将扫描信号施加到扫描线;数据驱动器,经由数据线将与显示数据相对应的灰度信号提供给显示像素; 以及一对电源驱动器,其以预定的定时向列方向布置的多个电源线的两端施加电源电压。
    • 34. 发明授权
    • Artificial satellite equipment panel
    • 人造卫星设备面板
    • US07619326B2
    • 2009-11-17
    • US11534684
    • 2006-09-25
    • Hajime TakeyaTsuyoshi OzakiHirotsugu MorinagaShinji Badono
    • Hajime TakeyaTsuyoshi OzakiHirotsugu MorinagaShinji Badono
    • H02B1/015
    • B64G1/10B64G1/428B64G2001/1092
    • A satellite equipment panel on which may be mounted an installation equipment of a predetermined function, connectable by an interface, constitutes an artificial satellite. The satellite equipment panel includes a panel body, at least two interfaces for an interconnection to another satellite equipment panel, a line transfer switch disposed within the panel body for line transferring of the interconnection between the interfaces, wiring disposed within the panel body and connected at one end to one of the interfaces and at the other end to the line transfer switch for interconnecting the interfaces on that panel body. The interfaces and the wiring, in cooperation with a support structure, constitute a wiring module disposed within the panel body. The interface may comprise at least one of interfaces of electric communication, optical communication, and optical sensor.
    • 可以安装有可由接口连接的预定功能的安装设备的卫星设备面板构成人造卫星。 卫星设备面板包括面板主体,至少两个用于与另一个卫星设备面板的互连的接口,设置在面板主体内的线路传输开关,用于线路传输接口之间的互连,线路布置在面板主体内并连接在 一端到一个接口,另一端连接到线路传输开关,用于互连该面板主体上的接口。 与支撑结构协作的接口和布线构成布置在面板本体内的布线模块。 该接口可以包括电通信,光通信和光学传感器的至少一个接口。
    • 35. 发明申请
    • ADVANCED GRID STRUCTURE
    • 高级网格结构
    • US20090011175A1
    • 2009-01-08
    • US12131455
    • 2008-06-02
    • Kazushi SEKINEHajime TakeyaTsuyoshi OzakiMasami Kume
    • Kazushi SEKINEHajime TakeyaTsuyoshi OzakiMasami Kume
    • B32B5/12
    • B29C70/202B29D28/005B29K2707/04B29L2031/737Y10T428/24058Y10T428/24074Y10T428/24091Y10T428/24099Y10T428/24116Y10T428/24124Y10T428/24132Y10T428/2929Y10T442/637Y10T442/64Y10T442/641
    • Provided is an advanced grid structure having high strength and low thermal expansion characteristics. The advanced grid structure includes: a first grid side group extending in the same direction as a first tape prepreg group and constituting a side of a grid group; a second grid side group extending in the same direction as a second tape prepreg group and constituting a side of the grid group; and a third grid side group extending in the same direction as a third tape prepreg group and constituting a side of the grid group, in which: a structure ratio of the advanced grid structure is larger than 0 and 0.107 or less, the structure ratio being obtained by dividing a grid side width by an interval between a center point of a region where the second grid side group and the third grid side group cross each other and a center of a region which is closest to the region where the second grid side group and the third grid side group cross each other, and where the second grid side group and the third grid side group cross each other; and the carbon fibers have a tensile modulus of elasticity of 280 GPa or more and 330 GPa or less.
    • 提供了具有高强度和低热膨胀特性的高级格栅结构。 先进的格栅结构包括:与第一带预浸料组相同的方向延伸并构成网格组的一侧的第一栅格侧组; 第二栅极侧组,沿与第二带状预浸料组相同的方向延伸并构成栅极组的一侧; 和与第三带状预浸料组相同的方向延伸并且构成栅极组的第三栅极侧组,其中:高级栅格结构的结构比大于0和0.107以下,结构比为 通过将栅格宽度除以第二栅极侧组和第三栅极侧组之间的区域的中心点与第二栅极侧组的区域最接近的区域的中心间隔而得到的栅极侧宽度 并且第三栅极侧组彼此交叉,并且第二栅极侧组和第三栅极侧组彼此交叉; 碳纤维的拉伸弹性模量为280GPa以上且330GPa以下。
    • 39. 发明授权
    • Electroluminescent element and manufacturing method thereof
    • 电致发光元件及其制造方法
    • US08012526B2
    • 2011-09-06
    • US11521101
    • 2006-09-14
    • Takashi KiduTsuyoshi Ozaki
    • Takashi KiduTsuyoshi Ozaki
    • B05D5/06B05D3/02B01J19/00
    • H01L51/56H01L51/5234H01L2251/5315
    • The present invention improves luminance and light emitting efficiency of electroluminescent elements. A manufacturing method of electroluminescent elements includes forming a positive electrode on a substrate, forming an organic compound layer on the positive electrode, forming an electron injecting layer on the organic compound layer, and forming a transparent conductive film on the electron injecting layer, thus forming electroluminescent element. After forming the transparent conductive film on the electron injecting layer, by applying a voltage between the positive electrode and the transparent conductive film while heating the electroluminescent element, light emission of the electroluminescent element such as luminance and light emitting efficiency is improved.
    • 本发明提高了电致发光元件的亮度和发光效率。 电致发光元件的制造方法包括在基板上形成正极,在正极上形成有机化合物层,在有机化合物层上形成电子注入层,在电子注入层上形成透明导电膜,形成 电致发光元件。 在电子注入层上形成透明导电膜之后,通过在加热电致发光元件的同时在正电极和透明导电膜之间施加电压,提高了电致发光元件的亮度和发光效率等的发光。