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    • 2. 发明申请
    • CONNECTOR
    • 连接器
    • US20110244711A1
    • 2011-10-06
    • US13074331
    • 2011-03-29
    • Takuya TAKAHASHI
    • Takuya TAKAHASHI
    • H01R13/64
    • H01R12/73H01R12/716
    • A first connector has a first holding member holding first male and female terminals. Each first male terminal has a horizontally extending first male contact. Each first female terminal has a first female contact. A second connector has a second holding member holding second male and female terminals. Each second male terminal has a horizontally extending second male contact receivable in the first female contact. Each second female terminal has a second female contact which receives the first male contact. The first and second connectors are positioned at a predetermined position in a vertical direction whereas the first male contact is apart from the second female contact while the second male contact is apart from the first female contact. A guiding mechanism guides the first connector to a position where the first and second male contacts are respectively connected to the second and first female contacts.
    • 第一连接器具有保持第一阳和阴端子的第一保持构件。 每个第一阳端子具有水平延伸的第一阳接头。 每个第一女性终端具有第一女性接触。 第二连接器具有保持第二阳和阴端子的第二保持构件。 每个第二阳端子具有可接收在第一阴接触件中的水平延伸的第二阳接头。 每个第二阴端子具有接收第一阳接触件的第二阴接触件。 第一和第二连接器位于垂直方向上的预定位置,而第一阳接触件与第二阴接触件分开,而第二阳接触件与第一阴接触件分开。 引导机构将第一连接器引导到第一和第二阳触头分别连接到第二和第一阴触头的位置。
    • 4. 发明申请
    • Liquid Crystal Display Device and Process of Manufacture
    • 液晶显示装置及制造工艺
    • US20120320300A1
    • 2012-12-20
    • US13596205
    • 2012-08-28
    • Takaaki SUZUKITakuya TAKAHASHI
    • Takaaki SUZUKITakuya TAKAHASHI
    • G02F1/136H01L21/336
    • H01L27/124G02F1/1368H01L29/458
    • A liquid crystal display device and method includes a pair of substrates with liquid crystal sandwiched therebetween, a plurality of intersecting scanning signal lines and image signal lines, a thin film transistor formed corresponding to each intersection, a pixel electrode which is formed in a pixel region and connected to the thin film transistor, a gate insulating film, and a protective insulating film. At least one of the scanning signal lines and the image signal lines are each formed of a laminated film including a first layer and a second layer, wherein the first layer is formed of a copper film having a purity of at least 99.5%, and the second layer is formed of an alloy film containing copper as a main component. The first layer and the second layer are collectively subjected to wet etching with an etchant having a predetermined pH.
    • 一种液晶显示装置和方法,包括一对夹在其间的液晶的基板,多个相交的扫描信号线和图像信号线,对应于每个交点形成的薄膜晶体管,形成在像素区域中的像素电极 并连接到薄膜晶体管,栅极绝缘膜和保护绝缘膜。 扫描信号线和图像信号线中的至少一个各自由包括第一层和第二层的层叠膜形成,其中第一层由纯度为至少99.5%的铜膜形成,并且 第二层由含有铜作为主要成分的合金膜形成。 第一层和第二层用具有预定pH的蚀刻剂共同进行湿蚀刻。
    • 5. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND PROCESS OF MANUFACTURE
    • 液晶显示器件及其制造工艺
    • US20100060839A1
    • 2010-03-11
    • US12540400
    • 2009-08-13
    • Takaaki SUZUKITakuya TAKAHASHI
    • Takaaki SUZUKITakuya TAKAHASHI
    • G02F1/1343G02F1/13
    • H01L27/124G02F1/1368H01L29/458
    • Provided is a liquid crystal display device capable of significantly reducing occurrence of a failure such as an interlayer short-circuit. In the liquid crystal device, a first layer formed of a copper film having a purity of 99.5% or more and a second layer formed of an alloy film containing copper as a main component are successively formed on a glass substrate or a substrate on which a transparent conductive film containing indium is formed. The alloy film serving as the second layer is made of an alloy containing copper as a main component, which has a higher etching rate in a wet etching process compared with that of copper. Accordingly, a patterned cross-section of the copper film having a large film thickness can be etched in a tapered shape, to thereby improve coverage of an insulating film or the like laminated on a wiring pattern.
    • 提供了能够显着减少诸如层间短路的故障的发生的液晶显示装置。 在液晶装置中,在玻璃基板或基板上依次形成由纯度为99.5%以上的铜膜形成的第一层和由含有铜作为主要成分的合金膜形成的第二层, 形成含有铟的透明导电膜。 作为第二层的合金膜由含有铜作为主要成分的合金制成,与铜相比,在湿蚀刻工艺中具有较高的蚀刻速率。 因此,可以以锥形形状蚀刻具有大膜厚度的铜膜的图案化横截面,从而提高层叠在布线图案上的绝缘膜等的覆盖。