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    • 1. 发明申请
    • Method for manufacturing display device
    • 显示装置制造方法
    • US20050231795A1
    • 2005-10-20
    • US11073670
    • 2005-03-08
    • Ricardo Jorge MartinsToshihiko TakedaTomonari Horikiri
    • Ricardo Jorge MartinsToshihiko TakedaTomonari Horikiri
    • G02F1/167G02B26/00G02F1/1333
    • G02F1/133377G02F1/167
    • A method for manufacturing a display device, having hollows containing fine particles, for displaying an image using the fine particles includes a step of packing a dispersion in the hollows, the dispersion containing the fine particles, a dispersion medium, and a precursor, dissolved or dispersed in the dispersion medium, for forming a sealing layer; a step of providing a support layer on partitions; a step of coating a face of the support layer and end portions of the partitions with the sealing layer precursor by allowing the face of the support layer and the end portions of the partitions to adsorb the sealing layer precursor, the face of the support layer and the end portions of the partitions being in contact with the dispersion; and a step of forming the sealing layer by subjecting the resulting sealing layer precursor to at least one of polymerization and cross-linking.
    • 制造具有包含微粒的中空的显示装置的方法,用于使用该微粒显示图像包括将分散体填充到中空部分中的步骤,含有细颗粒的分散体,分散介质和前体溶解或 分散在分散介质中,用于形成密封层; 在隔板上设置支撑层的步骤; 通过允许支撑层的表面和隔板的端部吸附密封层前体,支撑层的表面和支撑层的表面,通过密封层前体涂覆支撑层的表面和隔板的端部的步骤 隔板的端部与分散体接触; 以及通过使得到的密封层前体进行聚合和交联中的至少一种来形成密封层的步骤。
    • 2. 发明授权
    • Method for manufacturing display device
    • 显示装置制造方法
    • US07682651B2
    • 2010-03-23
    • US11073670
    • 2005-03-08
    • Ricardo Jorge de Albuquerque MartinsToshihiko TakedaTomonari Horikiri
    • Ricardo Jorge de Albuquerque MartinsToshihiko TakedaTomonari Horikiri
    • B05D5/06C08F2/46
    • G02F1/133377G02F1/167
    • A method for manufacturing a display device, having hollows containing fine particles, for displaying an image using the fine particles includes a step of packing a dispersion in the hollows, the dispersion containing the fine particles, a dispersion medium, and a precursor, dissolved or dispersed in the dispersion medium, for forming a sealing layer; a step of providing a support layer on partitions; a step of coating a face of the support layer and end portions of the partitions with the sealing layer precursor by allowing the face of the support layer and the end portions of the partitions to adsorb the sealing layer precursor, the face of the support layer and the end portions of the partitions being in contact with the dispersion; and a step of forming the sealing layer by subjecting the resulting sealing layer precursor to at least one of polymerization and cross-linking.
    • 制造具有包含微粒的中空的显示装置的方法,用于使用该微粒显示图像包括将分散体填充到中空部分中的步骤,含有细颗粒的分散体,分散介质和前体溶解或 分散在分散介质中,用于形成密封层; 在隔板上设置支撑层的步骤; 通过允许支撑层的表面和隔板的端部吸附密封层前体,支撑层的表面和支撑层的表面,通过密封层前体涂覆支撑层的表面和隔板的端部的步骤 隔板的端部与分散体接触; 以及通过使得到的密封层前体进行聚合和交联中的至少一种来形成密封层的步骤。
    • 4. 发明授权
    • Vehicle control apparatus
    • 车辆控制装置
    • US08818645B2
    • 2014-08-26
    • US13444879
    • 2012-04-12
    • Toshihiko Takeda
    • Toshihiko Takeda
    • G06F17/00B60W50/06B60W50/02
    • B60W50/06B60W50/0225Y02T10/7258
    • A vehicle control apparatus for a vehicle causes several control target instruments to operate in cooperation, thereby controlling a behavior of the vehicle so as to approach a target behavior of the vehicle. In this case, target behaviors of several control target instruments are estimated. When a separation arises in a certain control target instrument between an actual behavior and the target behavior, operations of other control target instruments are changed according to the magnitude of the separation in the certain control target instrument. Thereby, even if an anomaly arises in one of the control target instruments, the behavior of the vehicle can be brought close to the target behavior.
    • 用于车辆的车辆控制装置使得多个控制目标仪器协同操作,从而控制车辆的行为以接近车辆的目标行为。 在这种情况下,估计了几种控制目标仪器的目标行为。 当某个控制目标仪器在实际行为与目标行为之间产生分离时,其他控制目标仪器的操作会根据某些控制目标仪器中的分离幅度而改变。 因此,即使在其中一个控制目标仪器中出现异常,车辆的行为也可以接近目标行为。
    • 6. 发明申请
    • ORGANIC ELECTROLUMINESCENCE ELEMENT AND MANUFACTURING METHOD THEREOF
    • 有机电致发光元件及其制造方法
    • US20100051992A1
    • 2010-03-04
    • US12545993
    • 2009-08-24
    • Yoshihiro KobayashiToshihiko TakedaShigeru Morito
    • Yoshihiro KobayashiToshihiko TakedaShigeru Morito
    • H01L51/10H01L21/28
    • H01L27/3283H01L51/0037H01L51/0039
    • A main object of the present invention is to provide an organic EL element which can absolutely segment cathodes when forming an organic layer by a coating method, and a producing method thereof. The present invention attains the object by providing a producing method of an organic EL element comprising steps of: an organic layer forming step, in which at least one organic layer out of organic layers, including a light emitting layer, constituting an organic EL layer is formed by either of a printing method, a discharge method, or a transfer method on a substrate for an organic EL element, wherein the substrate for an organic electroluminescence element comprises a substrate, a first electrode layer formed on the substrate, plural insulating banks formed on the substrate on which the first electrode layer is formed and setting a segmentalized region which segments a second electrode layer into plural pieces, and wherein each of the banks has plural small banks provided in parallel with a predetermined gap; and a step of controlling a gap between the small banks such that, a height t1 of an end part of the organic layer at a side of a light emitting region of the small bank provided on the light emitting region side is higher than a height t2 of an end part of the organic layer at a side opposite to the side of the light emitting region of the small bank provided on the light emitting region side is
    • 本发明的主要目的是提供一种通过涂布方法形成有机层时绝对分割阴极的有机EL元件及其制造方法。 本发明的目的在于提供一种有机EL元件的制造方法,包括以下步骤:有机层形成工序,其中,构成有机EL层的包含发光层的有机层中的至少一个有机层为 在有机EL元件用基板上通过印刷法,放电法或转印法中的任一种形成的有机电致发光元件用基板,其特征在于,具有基板,形成在所述基板上的第一电极层,形成有多个绝缘堤 在其上形成有第一电极层的基板上设置将第二电极层分割为多个的分段区域,并且其中每个组具有以预定间隙平行设置的多个小组; 以及控制小组之间的间隙的步骤,使得设置在发光区域侧的小组的发光区域侧的有机层的端部的高度t1高于高度t2 在设置在发光区域侧的小组的发光区域的相反侧的一侧的有机层的端部是