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    • 11. 发明授权
    • Method of manufacturing display device and display device
    • 显示设备和显示设备的制造方法
    • US08106410B2
    • 2012-01-31
    • US12698306
    • 2010-02-02
    • Mitsunobu Sekiya
    • Mitsunobu Sekiya
    • H01L29/18H01L33/00H01J1/62H01J63/04
    • H01L27/3246H01L27/3248H01L51/0023H01L51/5206
    • A method of manufacturing a display device including the steps of: forming drive elements on a substrate; forming a planarization film in a position corresponding to each of the drive elements; forming a bottom electrode corresponding to each of the plurality of organic light emitting elements; forming a pixel isolation insulating film in a region between the bottom electrodes; forming an organic layer including a light emission layer above the bottom electrode by evaporation using an evaporation mask; and forming a top electrode over the organic layer. In the step of forming the bottom electrode includes the steps of: forming a bottom electrode material film; forming a photoresist film on the bottom electrode material film; exposing the photoresist film using the evaporation mask and developing it; and selectively removing the bottom electrode material film by etching using the photoresist film as a mask.
    • 一种制造显示装置的方法,包括以下步骤:在基板上形成驱动元件; 在对应于每个所述驱动元件的位置形成平坦化膜; 形成与所述多个有机发光元件中的每一个对应的底部电极; 在所述底部电极之间的区域中形成像素隔离绝缘膜; 使用蒸发掩模通过蒸发形成包括底部电极上方的发光层的有机层; 并在有机层上形成顶部电极。 在形成底部电极的步骤中包括以下步骤:形成底部电极材料膜; 在底部电极材料膜上形成光致抗蚀剂膜; 使用蒸发掩模曝光光致抗蚀剂膜并显影; 并且通过使用光致抗蚀剂膜作为掩模通过蚀刻选择性地去除底部电极材料膜。
    • 12. 发明申请
    • METHOD OF MANUFACTURING DISPLAY DEVICE AND DISPLAY DEVICE
    • 制造显示装置和显示装置的方法
    • US20100200869A1
    • 2010-08-12
    • US12698306
    • 2010-02-02
    • Mitsunobu Sekiya
    • Mitsunobu Sekiya
    • H01L51/52H01L21/28
    • H01L27/3246H01L27/3248H01L51/0023H01L51/5206
    • A method of manufacturing a display device including the steps of: forming drive elements on a substrate; forming a planarization film in a position corresponding to each of the drive elements; forming a bottom electrode corresponding to each of the plurality of organic light emitting elements; forming a pixel isolation insulating film in a region between the bottom electrodes; forming an organic layer including a light emission layer above the bottom electrode by evaporation using an evaporation mask; and forming a top electrode over the organic layer. In the step of forming the bottom electrode includes the steps of: forming a bottom electrode material film; forming a photoresist film on the bottom electrode material film; exposing the photoresist film using the evaporation mask and developing it; and selectively removing the bottom electrode material film by etching using the photoresist film as a mask.
    • 一种制造显示装置的方法,包括以下步骤:在基板上形成驱动元件; 在对应于每个所述驱动元件的位置形成平坦化膜; 形成与所述多个有机发光元件中的每一个对应的底部电极; 在所述底部电极之间的区域中形成像素隔离绝缘膜; 使用蒸发掩模通过蒸发形成包括底部电极上方的发光层的有机层; 并在有机层上形成顶部电极。 在形成底部电极的步骤中包括以下步骤:形成底部电极材料膜; 在底部电极材料膜上形成光致抗蚀剂膜; 使用蒸发掩模曝光光致抗蚀剂膜并显影; 并且通过使用光致抗蚀剂膜作为掩模通过蚀刻选择性地去除底部电极材料膜。
    • 13. 发明授权
    • Organic electroluminescence display
    • 有机电致发光显示
    • US06774575B2
    • 2004-08-10
    • US09914050
    • 2002-01-31
    • Mitsunobu Sekiya
    • Mitsunobu Sekiya
    • G09G310
    • H01L27/3288
    • An organic electroluminescence display in which plural rows of scanning lines and plural columns of signal lines are arranged, and pixels are arranged at the portions where said scanning lines intersect said signal lines The pixels have an organic electroluminescence layer inclusive of an organic light-emitting layer held between first pixel electrodes constituted by said scanning lines and second pixel electrodes connected to said signal lines The second pixel electrodes are arranged so that the second pixel electrodes are overlapped on said scanning lines in a direction in which said signal lines are extending and each of said second pixel electrodes overlap at least two neighboring signal lines.
    • 一种有机电致发光显示器,其中布置有多行扫描线和多列信号线,并且像素布置在所述扫描线与所述信号线相交的部分。像素具有包括有机发光层的有机电致发光层 保持在由所述扫描线构成的第一像素电极与连接到所述信号线的第二像素电极之间。第二像素电极被布置成使得第二像素电极在所述信号线延伸的方向上与所述扫描线重叠, 所述第二像素电极与至少两个相邻的信号线重叠。
    • 15. 发明申请
    • FLUID MEASUREMENT DEVICE AND FLUID MEASUREMENT METHOD
    • 流体测量装置和流体测量方法
    • US20110029261A1
    • 2011-02-03
    • US12919895
    • 2008-12-03
    • Kenji MutaMasazumi TanouraAtsushi TakitaDaishi UenoTadashi AokiMitsunobu SekiyaHikaru TsukakoshiKiyoshi Mine
    • Kenji MutaMasazumi TanouraAtsushi TakitaDaishi UenoTadashi AokiMitsunobu SekiyaHikaru TsukakoshiKiyoshi Mine
    • G01F1/712
    • G01F1/86G01F1/7086G01F1/712
    • Provided is a fluid measurement device and the like for measuring flow velocity of a fluid in detail. A fluid measurement device (10) is configured to included a generator-side detecting section (30) that detects a parameter indicating an operating state of a fluid generator (20) and changing in a corresponding way relative to a generating state of the fluid, a pipe-side detecting section (40) that is provided in a pipe (22) in which a fluid containing the fluid generated by the fluid generator passes through and detects a parameter relating to the fluid passing through the pipe and changing in a corresponding way relative to the operating state of the fluid generator, and a calculating section (50) that calculates the flow velocity of the fluid based on a time shift between the change in the parameter detected by the generator-side detecting section and the change in the parameter detected by the pipe-side detecting section, and a distance (L) along the pipe between a detection position of the parameter relating to the fluid generator and the pipe-side detecting section.
    • 提供了用于详细测量流体的流速的流体测量装置等。 流体测量装置(10)被配置为包括:发生器侧检测部(30),其检测表示流体发生器(20)的运转状态的参数,并相对于流体的生成状态变化; 管道侧检测部分(40),其设置在管道(22)中,其中包含由流体发生器产生的流体的流体通过,并且检测与通过管道的流体相关的参数并以相应的方式改变 相对于所述流体发生器的运转状态,以及计算部(50),其基于由所述发生器侧检测部检测出的所述参数的变化与所述参数的变化之间的时间偏差来计算所述流体的流速 由管侧检测部检测出的距离(L)和与流体发生器有关的参数的检测位置与管侧检测部之间的距离(L)。
    • 17. 发明授权
    • Optical device, a fabrication method thereof, a driving method thereof and a camera system
    • 光学装置,其制造方法,其驱动方法和照相机系统
    • US06631022B1
    • 2003-10-07
    • US09577116
    • 2000-05-23
    • Toru KihiraToru UdakaMitsunobu Sekiya
    • Toru KihiraToru UdakaMitsunobu Sekiya
    • G02F115
    • H04N5/2254G02F1/1506G02F1/1508G02F1/155H04N5/238
    • An optical device includes an insulation layer formed on a lead electrode of an electrode, an electrode having an indium doped tin oxide in which indium/tin is 1.5 or less by the element ratio, an electrode having a laminate including an oxide layer in which indium is doped to tin and a tin oxide layer, and an electrode having conductive particles as a first layer, a polymeric layer as a second layer and a current collector as a third layer, and the second layer is disposed between the first layer and the third layer. A control device controls a driving current to an electrode in accordance with a temperature and a current supply supplies a current to an electrode for supplementing a dissolved portion of electrodeposited material. The optical device includes a polarization device which polarizes an electrode to an oxidation direction before electrodeposition on the electrode.
    • 光学器件包括形成在电极的引线电极上的绝缘层,具有掺杂铟的氧化铟的电极,其中铟/锡的元素比为1.5或更小,电极具有包括氧化物层的层压体,其中铟 被掺杂到锡和氧化锡层中,并且具有作为第一层的导电颗粒的电极,作为第二层的聚合物层和作为第三层的集电体,并且第二层设置在第一层和第三层之间 层。 控制装置根据温度控制到电极的驱动电流,并且电流供应将电流提供给用于补充电沉积材料的溶解部分的电极。 该光学器件包括在电沉积在电极之前将电极极化为氧化方向的偏振器件。