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    • 5. 发明授权
    • Claw-pole dynamo and bicycle
    • 爪极发电机和自行车
    • US06409197B1
    • 2002-06-25
    • US09372684
    • 1999-08-11
    • Takahiro EndoNagahiko Nagasaka
    • Takahiro EndoNagahiko Nagasaka
    • B62J612
    • B62J6/12H02K1/145H02K21/227H02K2201/12
    • A claw pole dynamo includes an annular member having a magnet extending in a circumferential direction thereof for rotation around an axis; a first stator yoke having a first annular portion and a plurality of first pole shoes extending in a direction of the axis and in close proximity to the magnet, wherein the first annular portion defines a plurality of first discontinuities (such as slots) in a circumferential direction thereof for suppressing eddy currents in the first annular portion; a second stator yoke having a second annular portion and a plurality of second pole shoes extending in the direction of the axis and in close proximity to the magnet, wherein the plurality of first pole shoes are interleaved with the plurality of second pole shoes in the circumferential directions of the first and second annular portions; a core yoke for magnetically coupling the first stator yoke and the second stator yoke and for transmitting a magnetic flux in the direction of the axis; and a coil disposed around the core yoke. The plurality of discontinuities suppress the eddy currents in the first stator yoke. If desired, the second stator yoke could have a similar plurality of discontinuities in the second annular portion thereof to suppress eddy currents in the second annular portion. A first separation member with a plurality of discontinuities may be disposed between the first stator yoke and the core yoke to further suppress eddy currents, and the core yoke may include a plurality of sections disposed at different positions in a circumferential direction of the core yoke to further reduce eddy currents.
    • 爪极发电机包括:环状构件,具有沿圆周方向延伸的磁体,用于绕轴线旋转; 第一定子磁轭,其具有第一环形部分和沿所述轴线的方向延伸并且紧邻所述磁体的多个第一极靴,其中,所述第一环形部分在周向上限定多个第一不连续性(例如狭槽) 用于抑制第一环形部分中的涡流的方向; 具有第二环形部分的第二定子线圈和沿所述轴线方向延伸并且靠近所述磁体的多个第二极靴,其中所述多个第一极靴与所述多个第二极靴在所述圆周方向上交错 第一和第二环形部分的方向; 用于磁耦合第一定子磁轭和第二定子磁轭并用于在轴线方向上传输磁通量的磁轭; 以及设置在所述芯轭的周围的线圈。 多个不连续性抑制第一定子磁轭中的涡流。 如果需要,第二定子磁轭可以在其第二环形部分中具有类似的多个不连续性,以抑制第二环形部分中的涡流。 具有多个不连续性的第一分离构件可以设置在第一定子磁轭和芯磁轭之间,以进一步抑制涡流,并且磁芯轭可以包括设置在芯磁轭的圆周方向上的不同位置的多个部分, 进一步减少涡流。
    • 7. 发明授权
    • Battery
    • 电池
    • US07682752B2
    • 2010-03-23
    • US11470686
    • 2006-09-07
    • Tomoyuki NakamuraTakahiro EndoHiroyuki Akashi
    • Tomoyuki NakamuraTakahiro EndoHiroyuki Akashi
    • H01M6/18
    • H01M10/0565H01M2/16H01M4/66H01M6/10H01M10/0436H01M2300/0082
    • A battery in which the relative positions of a cathode, an anode and a separator are maintained with high precision is provided. A cathode and an anode face each other with a polymer electrolyte including a polymer and a separator in between. In each of the cathode and the anode, an active material layer is disposed on a current collector. Exposed regions where the active material layers are not disposed on the current collectors and the separator are adhered to each other with the polymer electrolyte in between. Thereby, even under a high-temperature environment, the heat shrinkage of the separator can be prevented, and heat generation due to the generation of a short-circuit current can be prevented.
    • 提供了以高精度保持阴极,阳极和隔膜的相对位置的电池。 阴极和阳极在其间具有包括聚合物和隔膜的聚合物电解质彼此面对。 在阴极和阳极的每个中,活性物质层设置在集电体上。 活性物质层未设置在集电体上的曝光区域和隔板之间的聚合物电解质彼此粘合。 由此,即使在高温环境下也能够防止隔板的热收缩,能够防止由于短路电流的产生而发热。
    • 8. 发明申请
    • IMAGE FORMING APPARATUS AND METHOD OF CONTROLLING THE SAME
    • 图像形成装置及其控制方法
    • US20090225363A1
    • 2009-09-10
    • US12399001
    • 2009-03-05
    • Takahiro Endo
    • Takahiro Endo
    • G06F3/12
    • G03G15/80G03G15/5004
    • Provided is an image forming apparatus including: a print unit; an instruction unit for giving an instruction to start a printing operation; and a print control unit for controlling the printing operation according to the instruction to start the printing operation from the instruction unit, in which, when there is no instruction to start a subsequent printing operation after the executing of the printing operation to the recording medium according to the instruction to start the printing operation from the instruction unit, the print control unit executes a first post-processing operation for completing the printing operation, and the print control unit determines an operation to be performed after the executing of the first post-processing operation based on whether or not the instruction to start the subsequent printing operation is received during the executing of the first post-processing operation.
    • 提供一种图像形成装置,包括:打印单元; 用于给出开始打印操作的指令的指令单元; 以及打印控制单元,用于根据从指令单元开始打印操作的指令来控制打印操作,其中当在对记录介质执行打印操作之后没有开始后续打印操作的指令时,根据 打印控制单元执行从指令单元开始打印操作的指令,执行用于完成打印操作的第一后处理操作,并且打印控制单元确定在执行第一后处理之后执行的操作 基于在执行第一后处理操作期间是否接收到开始后续打印操作的指令的操作。
    • 10. 发明授权
    • Electrode and battery, and methods of producing the same
    • 电极和电池及其制造方法
    • US07384705B2
    • 2008-06-10
    • US09792708
    • 2001-02-23
    • Koichiro KezukaTakahiro Endo
    • Koichiro KezukaTakahiro Endo
    • H01M4/02
    • H01M2/26H01M4/13H01M6/16H01M10/0525Y10T29/49114
    • An electrode for a battery includes an electrode sheet, a lead, and a metal piece. The electrode sheet has a collector, an active material layer formed on the collector, and a lead connecting portion which is configured as an exposed extension of the collector, on both surfaces of which the active material layer is not formed. The lead connecting portion, the lead, and the metal piece are overlapped to and joined to each other. With this configuration, even if a contact area between the lead connecting portion and the lead is small, an electric resistance at the joined portion between the lead connecting portion and the lead becomes small, with a result that it is possible to enhance the strength of the joined portion and to enhance the discharge load characteristic of the battery.
    • 电池用电极包括电极片,引线和金属片。 电极片具有集电体,形成在集电体上的活性物质层,以及引线连接部,其被构造为集电体的露出的延伸部,其两面均未形成活性物质层。 引线连接部分,引线和金属片彼此重叠并连接。 利用这种结构,即使引线连接部分和引线之间的接触区域小,引线连接部分和引线之间的接合部分的电阻变小,结果是可以提高引线连接部分 并且增强电池的放电负载特性。