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    • 21. 发明授权
    • Liquid crystal ITO connector having a metal layer
    • 具有金属层的液晶ITO连接器
    • US5270848A
    • 1993-12-14
    • US757987
    • 1991-09-12
    • Hiroshi TakabayashiMasanori TakahashiHideo Mori
    • Hiroshi TakabayashiMasanori TakahashiHideo Mori
    • G02F1/1345H05K3/24G02F1/1343
    • H05K3/24G02F1/1345H01R12/7076H05K2201/0326
    • A liquid crystal apparatus includes a liquid crystal panel side electrode extending from a liquid crystal panel and an external circuit side electrode extending from an external circuit and connected to the liquid crystal panel side electrode for driving the liquid crystal panel, by using conductive material. The liquid crystal panel side electrode includes a laminated film made of an indium tin oxide film having a surface and a metal film on the surface. The metal film is selected from one of a molybdenum film and an aluminum film. The liquid crystal panel side electrode has a left portion of the metal film and an indium tin oxide film opening area, at a connection area between the liquid crystal panel side electrode and the external circuit side electrode. The indium tin oxide film of the liquid crystal panel side electrode is covered with the metal film over the entire surface thereof. The liquid crystal panel side electrode is formed in a stripe shape, and the left portion of the metal film of the liquid crystal panel side electrode at the connection area is formed to have a width 1/30 to 1/3 times as narrow as a width of the stripe.
    • 一种液晶显示装置,其中从液晶面板延伸的液晶面板侧电极(1)通过使用导电材料(7a)连接到从用于驱动液晶面板的外部电路延伸的外部电路侧电极(5) 并且其中液晶面板侧电极是由氧化铟锡膜(2a)和金属膜(3)制成的层压膜,并且液晶面板侧电极具有金属膜的左部分和铟锡 在液晶面板侧电极和外部电路侧电极之间的连接区域处的氧化膜开口面积。
    • 22. 发明授权
    • Liquid crystal apparatus and production process thereof
    • 液晶装置及其制造方法
    • US06266119B1
    • 2001-07-24
    • US09228409
    • 1999-01-12
    • Masanori TakahashiHiroshi TakabayashiHideo MoriToshimichi Ouchi
    • Masanori TakahashiHiroshi TakabayashiHideo MoriToshimichi Ouchi
    • G02F11345
    • G02F1/13452H05K1/0269H05K3/361H05K2201/09918H05K2201/10681H05K2203/166
    • A liquid crystal apparatus is constituted by a liquid crystal device including a pair of substrates at least one of which is provided with first electrodes, and a liquid crystal disposed between the substrates; a plurality of driver devices disposed on said at least one substrate at a periphery thereof and electrically connected to the first electrodes; a driver board for supplying signals to the driver devices, disposed in parallel with the driver devices; second electrodes disposed on said at least one substrate and electrically connected to the driver devices; and a plurality of connection sheets disposed between the driver board and said at least one substrate and each electrically connecting each of the driver devices to the driver board via the second electrodes. In the apparatus, the first electrodes are supplied with driving signals for driving the liquid crystal device via the driver board, the connection sheets, the second electrodes and the driver devices, thus ensuring electrical connection of electrodes formed on the driver board with the second electrodes connected to the driver devices.
    • 液晶装置由包括一对基板的液晶装置构成,其中至少一个基板设置有第一电极以及设置在基板之间的液晶; 多个驱动器装置,其周边设置在所述至少一个基板上,并与第一电极电连接; 用于向驱动器装置提供信号的驱动器板,与驱动器装置并联放置; 设置在所述至少一个基板上并电连接到所述驱动器装置的第二电极; 以及设置在所述驱动器板和所述至少一个基板之间的多个连接片,并且每个驱动器装置经由所述第二电极将驱动器装置电连接到所述驱动器板。 在该装置中,通过驱动板,连接片,第二电极和驱动器装置向第一电极提供用于驱动液晶装置的驱动信号,从而确保在驱动器板上形成的电极与第二电极的电连接 连接到驱动器设备。
    • 28. 发明申请
    • SOLID ELECTROLYTIC CAPACITOR AND METHOD FOR PRODUCING THE SAME
    • 固体电解电容器及其制造方法
    • US20130083455A1
    • 2013-04-04
    • US13614594
    • 2012-09-13
    • Masanori TakahashiSatoshi Iwai
    • Masanori TakahashiSatoshi Iwai
    • H01G9/048
    • H01G9/025H01G9/15H01G11/56
    • The present invention provides a solid electrolytic capacitor and a method producing the same, in which high reliability is realized and further in which the product yield is improved by suppressing the increase of ESR or the like. In the present invention, the electroconductive polymer layer includes first electroconductive polymer layer 3 and second electroconductive polymer layer 10, in which first electroconductive polymer layer 3 covers the surface of dielectric polymer 2, and the second electroconductive polymer layer is provided on a surface of first electroconductive polymer layer 3 covering the bottom surface and the side surfaces, and is provide with opening at least a part of the leading surface of first electroconductive polymer layer 3.
    • 本发明提供了一种固体电解电容器及其制造方法,其中实现了高可靠性,并且通过抑制ESR等的增加来提高产品成品率。 在本发明中,导电聚合物层包括第一导电聚合物层3和第二导电聚合物层10,其中第一导电聚合物层3覆盖电介质聚合物2的表面,第二导电聚合物层设置在第一导电聚合物层 导电聚合物层3覆盖底表面和侧表面,并且为第一导电聚合物层3的前表面的至少一部分提供开口。
    • 29. 发明授权
    • Solid electrolytic capacitor and method of manufacturing same
    • 固体电解电容器及其制造方法
    • US08213160B2
    • 2012-07-03
    • US12076075
    • 2008-03-13
    • Takeshi SaitoYuji YoshidaTakeo KasugaKoji SakataKatsuhiro YoshidaMasanori Takahashi
    • Takeshi SaitoYuji YoshidaTakeo KasugaKoji SakataKatsuhiro YoshidaMasanori Takahashi
    • H01G4/228H01G9/10H01G9/00H05K5/03
    • H01G9/012H01G9/15Y10T29/417
    • A solid electrolytic capacitor including a solid electrolytic capacitor component comprises a porous anode body 2 composed of valve metal having a anode lead 1 protruding therefrom, a anode oxide film, a solid electrolyte layer 4, a graphite layer 5, a silver paste layer 6, a resist layer 3 separating the anode lead 1 used as a anode portion and the porous anode body 2 used as a cathode portion, and a anode lead element 7 connected to the anode lead 1, the anode oxide film, solid electrolyte layer 4, graphite layer 5, silver paste layer 6 being successively formed on the surface of the porous anode body 2, wherein the solid electrolytic capacitor component is bonded on a mounting substrate 21 having a anode terminal 21a, a cathode terminal 21b, and an insulating portion 21c therebetween with a precuring insulating adhesive 9 formed on the insulating portion 21c of the mounting substrate 21 and precuring conductive adhesives 8 formed on the anode terminal and cathode terminal, and sealed with exterior resin 10.
    • 包括固体电解电容器部件的固体电解电容器包括由具有突出的阳极引线1的阀金属构成的多孔阳极体2,阳极氧化膜,固体电解质层4,石墨层5,银膏层6, 分离用作阳极部分的阳极引线1和用作阴极部分的多孔阳极体2的抗蚀剂层3和连接到阳极引线1的阳极引线元件7,阳极氧化膜,固体电解质层4,石墨 层5依次形成在多孔阳极体2的表面上的银糊层6,其中,固体电解电容器部件接合在具有阳极端子21a,阴极端子21b和绝缘部分21c的安装基板21上 具有形成在安装基板21的绝缘部21c上的预固化绝缘粘合剂9,并且预先形成在阳极端子和阴极端子上的导电粘合剂8和密封 d与外部树脂10。
    • 30. 发明授权
    • Optical pickup
    • 光学拾音
    • US08199623B2
    • 2012-06-12
    • US12256497
    • 2008-10-23
    • Teruaki SogawaMasanori Takahashi
    • Teruaki SogawaMasanori Takahashi
    • G11B7/00
    • G11B7/127G11B7/1263G11B7/13
    • An optical pickup includes a semiconductor laser, a beam splitter, a collimating lens, an objective lens, an aperture and a front monitor. The beam splitter splits a light beam emitted by the semiconductor laser into transmitted light and reflected light. The front monitor detects luminous energy of the transmitted light. The front monitor is disposed near an optical axis of the transmitted light so that the following is satisfied: 1≦(S×L)/(s×f)≦6.8. S is an area of an entrance pupil of the objective lens, f is an optical distance from an emission portion of the semiconductor laser to the collimating lens, s is an effective receiving area of the front monitor, and L is an optical distance from the emission portion of the semiconductor laser to the front monitor.
    • 光拾取器包括半导体激光器,分束器,准直透镜,物镜,孔径和前监视器。 分束器将由半导体激光器发射的光束分离成透射光和反射光。 前置显示器检测透射光的光能。 前面监视器设置在透射光的光轴附近,使得满足以下条件:1≦̸(S×L)/(s×f)≦̸ 6.8。 S是物镜的入射光瞳的面积,f是从半导体激光器的发射部分到准直透镜的光学距离,s是前监视器的有效接收面积,L是距离 半导体激光器的发射部分到前监视器。