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    • 2. 发明申请
    • Display device
    • 显示设备
    • US20080309233A1
    • 2008-12-18
    • US12155206
    • 2008-05-30
    • Atsushi HasegawaNaoki Tokuda
    • Atsushi HasegawaNaoki Tokuda
    • H01J1/62
    • H01L27/3244H01L27/3248H01L51/5218H01L51/5228H01L51/5271H01L2251/5315H05B33/10H05B33/26
    • There is provided a display device comprising a plurality of active elements on a substrate, a first insulating film for covering the active elements, electroconductive films were separated for each pixel on the first insulating film, a light-emitting layer disposed in an upper layer of the electroconductive films, and a common electrode disposed in an upper layer of the light-emitting layer, wherein a structure is used in which the electroconductive films have a layered film of a first electroconductive film, second electroconductive film, and third electroconductive film; the first electroconductive film is composed of ITO or chromium; the second electroconductive film is composed of aluminum with alumina on a surface; the second electroconductive film covers outside edges of the first electroconductive film; the third electroconductive film is composed of ITO; and the first electroconductive film and third electroconductive film are caused to contact each other.
    • 提供了一种显示装置,其包括在基板上的多个有源元件,用于覆盖有源元件的第一绝缘膜,对于第一绝缘膜上的每个像素分离导电膜,设置在第一绝缘膜的上层中的发光层 导电膜和布置在发光层的上层中的公共电极,其中使用其中导电膜具有第一导电膜,第二导电膜和第三导电膜的分层膜的结构; 第一导电膜由ITO或铬组成; 第二导电膜由表面上具有氧化铝的铝构成; 第二导电膜覆盖第一导电膜的外边缘; 第三导电膜由ITO构成; 使第一导电膜和第三导电膜彼此接触。
    • 3. 发明授权
    • Display device having three layer electroconductive film
    • 具有三层导电膜的显示装置
    • US08729794B2
    • 2014-05-20
    • US12155206
    • 2008-05-30
    • Atsushi HasegawaNaoki Tokuda
    • Atsushi HasegawaNaoki Tokuda
    • H01L27/15H01L27/32
    • H01L27/3244H01L27/3248H01L51/5218H01L51/5228H01L51/5271H01L2251/5315H05B33/10H05B33/26
    • There is provided a display device comprising a plurality of active elements on a substrate, a first insulating film for covering the active elements, electroconductive films were separated for each pixel on the first insulating film, a light-emitting layer disposed in an upper layer of the electroconductive films, and a common electrode disposed in an upper layer of the light-emitting layer, wherein a structure is used in which the electroconductive films have a layered film of a first electroconductive film, second electroconductive film, and third electroconductive film; the first electroconductive film is composed of ITO or chromium; the second electroconductive film is composed of aluminum with alumina on a surface; the second electroconductive film covers outside edges of the first electroconductive film; the third electroconductive film is composed of ITO; and the first electroconductive film and third electroconductive film are caused to contact each other.
    • 提供了一种显示装置,其包括在基板上的多个有源元件,用于覆盖有源元件的第一绝缘膜,对于第一绝缘膜上的每个像素分离导电膜,设置在第一绝缘膜的上层中的发光层 导电膜和布置在发光层的上层中的公共电极,其中使用其中导电膜具有第一导电膜,第二导电膜和第三导电膜的分层膜的结构; 第一导电膜由ITO或铬组成; 第二导电膜由表面上具有氧化铝的铝构成; 第二导电膜覆盖第一导电膜的外边缘; 第三导电膜由ITO构成; 使第一导电膜和第三导电膜彼此接触。
    • 9. 发明授权
    • Lens barrel and imaging device with lens barrel
    • 镜头镜筒和成像装置带镜筒
    • US07952821B2
    • 2011-05-31
    • US12527008
    • 2008-02-20
    • Atsushi HasegawaTakumi KuwaharaManabu Kobayashi
    • Atsushi HasegawaTakumi KuwaharaManabu Kobayashi
    • G02B7/02G02B15/14
    • G02B7/102
    • A lens barrel includes a holder, a lens frame, and an elastic member. The holder includes a first guide axis and a second guide axis. The lens frame includes a first guide section which is movably fitted around the first guide axis and a second guide section which is movably fitted around the second guide axis, and retains at least one lens. The elastic member exerts an energizing force on the second guide section and is disposed between the holder and the second guide section. The lens frame moves along the optical axis direction of the lens as the first guide section is guided by the first guide axis. The elastic member energizes the lens frame along the optical axis direction of the lens by exerting an energizing force on the second guide section. The distance from the holder to the second guide section is different from that from the holder to the first guide section.
    • 镜筒包括保持器,透镜框架和弹性构件。 保持器包括第一引导轴和第二引导轴。 透镜框架包括可移动地围绕第一引导轴线安装的第一引导部分和可移动地围绕第二引导轴线安装并保持至少一个透镜的第二引导部分。 弹性部件在第二引导部上施加通电力,并且设置在保持器和第二引导部之间。 当第一引导部被第一引导轴引导时,透镜框沿着透镜的光轴方向移动。 弹性部件通过在第二引导部上施加通电力而沿透镜的光轴方向激励透镜框。 从保持器到第二引导部的距离与从保持器到第一引导部的距离不同。
    • 10. 发明申请
    • Liquid Crystal Display Device
    • 液晶显示装置
    • US20100245739A1
    • 2010-09-30
    • US12794986
    • 2010-06-07
    • Atsushi HasegawaToshio Miyazawa
    • Atsushi HasegawaToshio Miyazawa
    • G02F1/1335
    • G02F1/134363G02F1/133555
    • The present invention provides a liquid crystal display device which can reduce the difference in brightness between an image obtained from a reflection region and an image obtained from a transmission region. The liquid crystal display device includes a pixel electrode and a counter electrode in each pixel region on a liquid-crystal-side surface of one substrate out of respective substrates which are arranged to face each other with liquid crystal therebetween. The pixel region includes a transmission region and a reflection region. A gap between the pixel electrode and the counter electrode in the reflection region is set larger than the gap between the pixel electrode and the counter electrode in the transmission region.
    • 本发明提供一种能够减少从反射区域获得的图像与从透射区域获得的图像之间的亮度差异的液晶显示装置。 液晶显示装置在各基板的一个基板的液晶侧表面的各像素区域中具有像素电极和对置电极,它们之间以液晶相互配置。 像素区域包括透射区域和反射区域。 反射区域中的像素电极和对置电极之间的间隙被设定为大于透射区域中的像素电极和对电极之间的间隙。