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    • 1. 发明授权
    • Field emission display
    • 场发射显示
    • US07821191B2
    • 2010-10-26
    • US11961704
    • 2007-12-20
    • Masanori TakahashiHiroaki IbukiKeiji Suzuki
    • Masanori TakahashiHiroaki IbukiKeiji Suzuki
    • H01J1/62
    • H01J31/127H01J29/085H01J29/92H01J2329/08H01J2329/28H01J2329/92
    • A display apparatus includes an electron source; a substrate; a light emitting body arranged on the substrate and emitting light by being irradiated by an electron emitted from the electron source; an anode disposed on the substrate and supplied with a voltage for accelerating the electron; and an electrode for supplying the voltage to the anode, the electrode being disposed along a side of the substrate, and the electrode has a plurality of electrode films, the electrode films including two electrode films adjacent to each other, and a resistor film connecting between the electrode films, and a length of the portion opposing the other electrode film in one electrode film from among the two electrode films is longer than a length of the one electrode film in a direction orthogonal to the longitudinal direction of the electrode.
    • 显示装置包括电子源; 底物; 发光体,其被布置在所述基板上,并且通过被从所述电子源发射的电子照射而发光; 阳极,设置在基板上并提供用于加速电子的电压; 以及用于向阳极供给电压的电极,电极沿着基板的一侧设置,电极具有多个电极膜,电极膜包括彼此相邻的两个电极膜,以及电阻膜, 两个电极膜中的一个电极膜中的电极膜和与另一个电极膜相对的部分的长度比一个电极膜在与电极的纵向正交的方向上的长度长。
    • 2. 发明授权
    • Solid electrolytic capacitor and method for producing the same
    • 固体电解电容器及其制造方法
    • US09048024B2
    • 2015-06-02
    • US13614594
    • 2012-09-13
    • Masanori TakahashiSatoshi Iwai
    • Masanori TakahashiSatoshi Iwai
    • H01G11/56H01G9/025H01G9/15
    • 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。
    • 5. 发明授权
    • Electromagnetic conversion unit
    • 电磁转换单元
    • US08345897B2
    • 2013-01-01
    • US12812529
    • 2008-03-31
    • Masanori TakahashiKiyofumi Mori
    • Masanori TakahashiKiyofumi Mori
    • H04R25/00
    • H04R9/025H04R7/04H04R9/047
    • There is provided: first to fourth magnetic pole yokes 13-16 magnetized by the magnets 11, 12 having both poles on these opposite faces to establish a magnetic pole; and a vibrating membrane 17 disposed between the magnets 11, 12 and electromagnetically coupled to the yokes 13-16 by energizing a meandering coil pattern 17b thereon to vibrate in a predetermined direction. The yokes 13-16 include: abutting sections 13a-16a to be magnetized with abutting against the magnets 11, 12, and magnetic pole sections 13b-16b establishing the magnetic pole in a band shape. The sections 13b-16b each are disposed on the upper and lower sides of the vibrating membrane 17, and disposed with a gap (sound emitting hole 19) such that the magnetic poles different in magnetic polarity are positioned alternately in the lateral direction of the membrane 17 to form magnetic pole faces on the upper and lower sides thereof.
    • 提供:由磁铁11,12磁化的第一至第四磁极轭13-16,在这两个相对的面上具有两个磁极以形成磁极; 以及设置在磁体11,12之间的振动膜17,并通过使其上的曲折线圈图案17b通过向预定方向振动而电磁耦合到轭13-16。 轭13-16包括:抵靠部分13a-16a,其抵靠磁体11,12和磁极部分13b-16b,磁极部分13b-16b以带状形成。 部分13b-16b各自设置在振动膜17的上侧和下侧,并且设置有间隙(发声孔19),使得磁极性不同的磁极交替地位于膜的横向方向 以在其上侧和下侧上形成磁极面。
    • 7. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08303060B2
    • 2012-11-06
    • US12651635
    • 2010-01-04
    • Yusuke NemotoMasanori TakahashiDaisuke HasebeYukihiro Asano
    • Yusuke NemotoMasanori TakahashiDaisuke HasebeYukihiro Asano
    • B41J29/38
    • B41J2/16588B41J2/1652B41J2/16526B41J2/16532B41J2/16547
    • An image forming apparatus includes a suction unit; a pressure unit configured to pressurize the inside of a supply channel extending from a liquid container to a recording head at a pressurizing position along the supply channel; an opening and closing unit configured to open and close the supply channel at a position downstream of the pressurizing position; and a control unit configured to cap a nozzle surface with a cap and suction ink from nozzles with the suction unit, to move the cap away from the nozzle surface after pressurizing the inside of the supply channel with the pressure unit to a pressure greater than or equal to atmospheric pressure, to wipe the nozzle surface with a wiping part after closing the supply channel with the opening and closing unit, and to open the supply channel with the opening and closing unit after wiping the nozzle surface.
    • 图像形成装置包括抽吸单元; 压力单元,其构造成在沿着供给通道的加压位置处将从液体容器延伸到供给通道的内部加压到记录头; 打开和关闭单元,其构造成在所述加压位置的下游位置处打开和关闭所述供给通道; 以及控制单元,其被配置为用喷嘴盖和来自具有所述抽吸单元的喷嘴的吸嘴来盖住喷嘴表面,以在用所述压力单元将所述供应通道的内部加压到大于或等于的压力之后将所述盖从所述喷嘴表面移开, 等于大气压力,用打开和关闭单元关闭供应通道之后用擦拭部分擦拭喷嘴表面,并在擦拭喷嘴表面之后用打开和关闭单元打开供应通道。
    • 9. 发明授权
    • Solid electrolytic capacitor device and manufacturing method of the same
    • 固体电解电容器及其制造方法相同
    • US08040661B2
    • 2011-10-18
    • US12410569
    • 2009-03-25
    • Shinya TokashikiKatsuhiro YoshidaMasanori Takahashi
    • Shinya TokashikiKatsuhiro YoshidaMasanori Takahashi
    • H01G9/042
    • H01G9/012H01G2/02H01G4/224H01G4/236H01G9/15Y10T29/417
    • A method for manufacturing a solid electrolytic capacitor device is disclosed. The solid electrolytic capacitor device comprises a package substrate and a capacitor element which is mounted on the package substrate. The package substrate comprises an outer anode electrode, an outer cathode electrode, an inner anode electrode and an inner cathode electrode. The outer anode electrode is electrically connected to the inner anode electrode. The outer cathode electrode is electrically connected to the inner cathode electrode. The capacitor element comprises a capacitor body and an anode lead portion which extends from the capacitor body. The capacitor body has a surface at least one part of which is provided with a cathode portion. The method comprises: forming the anode lead portion; forming the cathode portion after the formation of the anode lead portion; and connecting the anode lead portion and the cathode portion to the inner anode electrode and the inner cathode electrode, respectively.
    • 公开了一种制造固体电解电容器装置的方法。 固体电解电容器装置包括封装基板和安装在封装基板上的电容器元件。 封装衬底包括外部阳极电极,外部阴极电极,内部阳极电极和内部阴极电极。 外阳极电极与内阳极电连接。 外部阴极电极与内部阴极电连接。 电容器元件包括电容器本体和从电容器本体延伸的阳极引线部分。 电容器主体具有至少一部分表面设置有阴极部分的表面。 该方法包括:形成阳极引线部分; 在形成阳极引线部分之后形成阴极部分; 并将阳极引线部分和阴极部分分别连接到内部阳极电极和内部阴极电极。
    • 10. 发明授权
    • Thermal printer unit and printing device
    • 热敏打印机单元和打印设备
    • US07852360B2
    • 2010-12-14
    • US12286866
    • 2008-10-02
    • Masanori Takahashi
    • Masanori Takahashi
    • B41J25/308
    • B41J2/32B41J25/312B41J2202/31
    • In order to realize an adjustment mechanism which can adjust the pressing force of a thermal head according to paper thickness, and in addition, which is suitable for a small thermal printer, in a small thermal printer in which a platen roller (11) is adapted to be detachably attachable to arms for rotatably holding the platen roller and room at the back of a thermal head where a spring (16) for pressing the thermal head (14) toward the platen roller is disposed is narrow, an auxiliary plate for receiving the spring is provided at the back of the thermal head, the auxiliary plate (13) is adapted to be approachable to or separable from a head support plate (15), and means (18, 41) which can adjust a position of the auxiliary plate with respect to a position of the head support plate (15) is provided.
    • 为了实现能够根据纸张厚度调节热敏头的按压力的调节机构,另外适用于适用于小型热敏打印机的调节机构,在适于压纸辊(11)的小型热敏打印机中 可拆卸地附接到臂上,用于可旋转地保持压纸辊和房间在热敏头的背面,其中设置用于将热敏头(14)压向压辊的弹簧(16)设置得较窄,用于接收 弹簧设置在热敏头的后部,辅助板(13)适于与头部支撑板(15)平齐或可分离;以及装置(18,41),其能够调节辅助板 相对于头部支撑板(15)的位置。