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    • 1. 发明授权
    • Organic electroluminescence display apparatus
    • 有机电致发光显示装置
    • US07365487B2
    • 2008-04-29
    • US10992851
    • 2004-11-22
    • Hiroyasu MatsuuraShingo IshiharaKeiji TakanosuEiji Matsuzaki
    • Hiroyasu MatsuuraShingo IshiharaKeiji TakanosuEiji Matsuzaki
    • H05B33/00
    • H01L27/322H01L27/3246H01L27/3276H01L51/5212H01L51/5228H01L51/525H01L51/5253H01L51/5259H01L2251/5315H01L2251/5353
    • The organic electroluminescence display apparatus of the present invention comprises a first and second substrates, the former being coated with banks for separating pixels, a lower electrode, organic light-emitting layer and upper electrode of a transparent material in this order, and the latter being coated with a color filter and electroconductive shadow pattern, wherein the organic light-emitting layer surrounded by the banks for separating pixels faces the color filter, and the first and second substrates face each other in such a way that the upper electrode over the banks for separating pixels is electrically connected to the electroconductive shadow pattern.This structure connects at least one of the upper electrode and electroconductive shadow pattern to a power supply point, to control ununiform emitted light brightness which may result from voltage drop at the upper transparent electrode.Moreover, the organic light-emitting layer can be formed without a vapor deposition mask having a precise aperture pattern, to efficiently produce the organic EL display apparatus.
    • 本发明的有机电致发光显示装置包括第一和第二基板,前者被涂覆有用于分离像素的堤,下电极,有机发光层和透明材料的上电极,后者是 涂覆有滤色器和导电阴影图案,其中由用于分离像素的堤包围的有机发光层面向滤色器,并且第一和第二基板彼此面对,使得银行上方的电极用于 分离像素电连接到导电阴影图案。 该结构将上电极和导电阴影图案中的至少一个连接到电源点,以控制可能由上透明电极的电压降引起的不均匀发射光亮度。 此外,有机发光层可以形成为没有具有精确孔径图案的气相沉积掩模,以有效地产生有机EL显示装置。
    • 5. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF
    • 液晶显示装置及其制造方法
    • US20080074588A1
    • 2008-03-27
    • US11845806
    • 2007-08-28
    • Shinji SekiguchiKeiji TakanosuYasushi SanoKoji HaraHiroyasu Matsuura
    • Shinji SekiguchiKeiji TakanosuYasushi SanoKoji HaraHiroyasu Matsuura
    • G02F1/1335H01L21/02
    • G02F1/133555G02F1/13363G02F2001/133565G02F2001/133633G02F2413/09
    • The present invention relates to a method of manufacturing a transflective liquid crystal display device including a color filter substrate having a plurality of pixels, each including a reflective display part and a transmissive display part, and retardation plates each built in areas on a principal surface of the color filter substrate opposed to a liquid crystal layer, which correspond to the reflective display parts. The manufacturing method is characterized by including in the following order: a first step of applying a photosetting resin composition on the principal surface of the color filter; a second step of partially curing areas of a photosetting resin film, which correspond to the reflective display parts, respectively, by light exposure through a mask; a third step of removing uncured portions of the photosetting resin film remaining in the second step by development; a fourth step of selectively forming unevenness in areas of a principal surface of the cured photosetting resin film, which correspond to the reflective display parts; and a fifth step of applying a material of the retardation plate onto the photosetting resin film having the unevenness, to form the retardation plates in the respective areas corresponding to the reflective display parts, by anchoring energy of a part having the unevenness, for the material of the retardation plate.
    • 本发明涉及一种半透射型液晶显示装置的制造方法,其包括具有多个像素的滤色器基板,每个像素包括反射显示部分和透射显示部分,以及相位差板,其各自内置在 与液晶层相对的与反射显示部相对应的滤色器基板。 该制造方法的特征在于包括以下顺序:在滤色器的主表面上施加光固化树脂组合物的第一步骤; 通过通过掩模的曝光分别对应于反射显示部分部分地固化光固化树脂膜的区域的第二步骤; 第三步,通过显影除去残留在第二步中的光固化树脂膜的未固化部分; 在与所述反射显示部对应的所述固化的光固化型树脂薄膜的主面的区域中选择性地形成凹凸的第四工序; 以及将相位差板的材料施加到具有不平坦度的光固化树脂膜上的第五步骤,通过将具有不平坦部分的能量锚定在材料上以形成相应于反射显示部分的各个区域中的相位差板 的相位差板。
    • 6. 发明授权
    • Liquid crystal display device and manufacturing method thereof
    • 液晶显示装置及其制造方法
    • US07812905B2
    • 2010-10-12
    • US11845806
    • 2007-08-28
    • Shinji SekiguchiKeiji TakanosuYasushi SanoKoji HaraHiroyasu Matsuura
    • Shinji SekiguchiKeiji TakanosuYasushi SanoKoji HaraHiroyasu Matsuura
    • G02F1/1335
    • G02F1/133555G02F1/13363G02F2001/133565G02F2001/133633G02F2413/09
    • The present invention relates to a method of manufacturing a transflective liquid crystal display device including a color filter substrate having a plurality of pixels, each including a reflective display part and a transmissive display part, and retardation plates each built in areas on a principal surface of the color filter substrate opposed to a liquid crystal layer, which correspond to the reflective display parts. The manufacturing method is characterized by including in the following order: a first step of applying a photosetting resin composition on the principal surface of the color filter; a second step of partially curing areas of a photosetting resin film, which correspond to the reflective display parts, respectively, by light exposure through a mask; a third step of removing uncured portions of the photosetting resin film remaining in the second step by development; a fourth step of selectively forming unevenness in areas of a principal surface of the cured photosetting resin film, which correspond to the reflective display parts; and a fifth step of applying a material of the retardation plate onto the photosetting resin film having the unevenness, to form the retardation plates in the respective areas corresponding to the reflective display parts, by anchoring energy of a part having the unevenness, for the material of the retardation plate.
    • 本发明涉及一种半透射型液晶显示装置的制造方法,其包括具有多个像素的滤色器基板,每个像素包括反射显示部分和透射显示部分,以及相位差板,其各自内置在 与液晶层相对的与反射显示部相对应的滤色器基板。 该制造方法的特征在于包括以下顺序:在滤色器的主表面上施加光固化树脂组合物的第一步骤; 通过通过掩模的曝光分别对应于反射显示部分部分地固化光固化树脂膜的区域的第二步骤; 第三步,通过显影除去残留在第二步中的光固化树脂膜的未固化部分; 在与所述反射显示部对应的所述固化的光固化型树脂薄膜的主面的区域中选择性地形成凹凸的第四工序; 以及第五步骤,将相位差板的材料施加到具有不平坦度的光固化树脂膜上,通过将具有不平坦部分的能量锚定在材料上而形成相应于反射显示部分的各个区域中的相位差板 的相位差板。
    • 8. 发明申请
    • Vapor deposition crucible, thin-film forming apparatus comprising the same, and method of producing display device
    • 气相沉积坩埚,包含该蒸镀坩埚的薄膜形成装置以及制造显示装置的方法
    • US20070178225A1
    • 2007-08-02
    • US11637805
    • 2006-12-13
    • Keiji TakanosuHiroyasu Matsuura
    • Keiji TakanosuHiroyasu Matsuura
    • B05D5/06C23C16/00
    • C23C14/243H01L51/001H01L51/56
    • For lasting stable vapor deposition of a material for a long term, the present invention provides the vapor deposition crucible comprising an evaporation chamber defined by a container part of the material and an orifice plate controlling vapor pressure of the material evaporated therein, and a pressure-controlling chamber defined in a space between the orifice plate and a discharge plate through which the material is discharged to the exterior of the vapor deposition crucible. A protrusion extending outwardly from the pressure-controlling chamber and having a second opening on its distal end may be provided on the upper surface of the discharge plate, and a heater may be provided on the side surface of the protrusion to oppose the side surface of the protrusion with an insulation mechanism provided at a position higher than the heater but lower than the second opening. In the vapor deposition crucible, temperature of the pressure-controlling chamber may be kept higher than that of the evaporation chamber by the other heaters.
    • 为了长期持续稳定的气相沉积材料,本发明提供一种蒸镀坩埚,其包括由该材料的容器部分限定的蒸发室和控制蒸发在其中的材料蒸气压的孔板, 控制室限定在孔板和排放板之间的空间中,材料通过该排出板排出到蒸镀坩埚的外部。 从压力控制室向外延伸并且在其远端具有第二开口的突起可以设置在排放板的上表面上,加热器可以设置在突起的侧表面上, 所述突起具有设置在比所述加热器高但低于所述第二开口的位置处的绝缘机构。 在气相沉积坩埚中,压力控制室的温度可以通过其它加热器保持高于蒸发室的温度。
    • 9. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF
    • 液晶显示装置及其制造方法
    • US20080074593A1
    • 2008-03-27
    • US11845803
    • 2007-08-28
    • Shinji SekiguchiKeiji TakanosuYasushi SanoKoji HaraHiroyasu Matsuura
    • Shinji SekiguchiKeiji TakanosuYasushi SanoKoji HaraHiroyasu Matsuura
    • G02F1/1335H01J9/24
    • G02F1/13363G02F1/133371G02F1/133555G02F2001/133565G02F2001/133633G02F2001/133638G02F2202/023G02F2413/09
    • A method of manufacturing a transflective liquid crystal display device including a plurality of pixels each having a reflective display part and a transmissive display part, and a color filter substrate including a retardation plate built in an area of a principal surface of each pixel opposed to a liquid crystal layer, which corresponds to the reflective display part, the method including in the following order: (1) a step of forming an underlayer for aligning molecules of the retardation plate; (2) a step of applying a photosetting material of the retardation plate onto the underlayer; (3) a first exposure step of selectively curing a part of the material of the retardation plate, which corresponds to the reflective display part, by light radiation through a mask; and (4) a second exposure step of heating the material of the retardation plate while exposing an entire surface thereof to light to cure the material of the retardation plate. As a result, a process of manufacturing the transflective liquid crystal display device is simplified while preventing the retardation plate from being colored.
    • 一种半透射型液晶显示装置的制造方法,包括具有反射显示部和透射型显示部的多个像素,以及滤色器基板,其具有内置在与像素对置的各像素的主面的区域中的相位差板 液晶层,其对应于反射显示部分,该方法包括以下顺序:(1)形成用于对准相位差板的分子的底层的步骤; (2)将延迟板的光固化材料施加到底层上的步骤; (3)第一曝光步骤,通过通过掩模的光辐射选择性地固化对应于反射显示部分的相位差板的材料的一部分; 和(4)第二曝光步骤,在将其整个表面暴露于光以固化延迟板的材料的同时加热延迟板的材料。 结果,制造半透射型液晶显示装置的过程被简化,同时防止延迟板被着色。