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    • 1. 发明授权
    • Permanent magnet embedded motor
    • 永磁式嵌入式电机
    • US07042127B2
    • 2006-05-09
    • US10817719
    • 2004-04-01
    • Toshifumi TsurutaHideki KanebakoNoboru OtsukiDongning Zhang
    • Toshifumi TsurutaHideki KanebakoNoboru OtsukiDongning Zhang
    • H02K21/12
    • H02K1/276
    • A permanent magnet embedded motor including a rotor which is provided with a plurality of slits and a plurality of permanent magnets embedded into the slits and a stator which is provided with an iron core having a plurality of slots to which a coil is wound and is arranged to face the rotor via a gap. The slit includes a permanent magnet embedded part into which the permanent magnet is embedded in a direction perpendicular to the radial direction of the rotor and an “L”-shaped air gap part integrally provided on both ends of the permanent magnet embedded part. An angle “θ1” for one pole of the rotor and an angle “θ2” of the “L”-shaped air gap part are set to be 0.1≦θ2/θ1≦0.3. Further, a radius “R” of a circumscribed circle of the rotor and a radius “R1” for forming an outer peripheral face of the rotor at a portion of the “L”-shaped air gap part are preferably set to be 0.1≦(R−R1)/R≦0.3.
    • 一种永磁体嵌入式电动机,其包括设置有多个狭缝的转子和嵌入到所述狭缝中的多个永磁体,以及定子,所述定子具有铁心,所述铁芯具有缠绕线圈的多个槽,并且布置 通过间隙面对转子。 狭缝包括永磁体嵌入部,永磁体嵌入在与转子的径向垂直的方向上,并且一体地设置在永磁体嵌入部的两端的“L”形气隙部。 转子的一个极的角度“θ1”和“L”形的气隙部分的角度“θ2”被设置为0.1 <=θ2 /θ1<= 0.3。 此外,在“L”形气隙部分的一部分,转子的外接圆的半径“R”和用于形成转子的外周面的半径“R 1”优选设定为0.1 < =(RR 1)/ R <= 0.3。
    • 3. 发明授权
    • Auxiliary artificial heart pump drive device and auxiliary artificial heart system
    • 辅助人造心脏泵驱动装置和辅助人造心脏系统
    • US08545381B2
    • 2013-10-01
    • US12934074
    • 2009-03-22
    • Hideki Kanebako
    • Hideki Kanebako
    • A61M1/10
    • A61M1/1086A61M1/101A61M1/1025A61M1/122A61M2205/17H02P29/0241H02P29/027H02P29/60
    • An auxiliary artificial heart pump drive device for driving an auxiliary artificial heart pump includes first and second pump control parts which are arranged in duplexed configuration. Each pump control part controls the auxiliary artificial heart pump by outputting a drive signal to the auxiliary artificial heart pump. Each pump control part has a means which, when a failure is detected in the pump control part, electrically cuts off a path through which the drive signal is outputted to the auxiliary artificial heart pump. According to the present invention, it is possible to provide an auxiliary artificial heart pump drive device and an auxiliary artificial heart system which exhibit high availability even when a serious failure occurs by any chance without duplexing a pump device.
    • 用于驱动辅助人造心脏泵的辅助人造心脏泵驱动装置包括以双面配置布置的第一和第二泵控制部件。 每个泵控制部分通过向辅助人造心脏泵输出驱动信号来控制辅助人造心脏泵。 每个泵控制部分具有一种装置,当在泵控制部分检测到故障时,电切断驱动信号输出到辅助人造心脏泵的路径。 根据本发明,可以提供一种辅助人造心脏泵驱动装置和辅助人造心脏系统,即使在没有双重化泵装置的情况下发生严重故障的情况下也能显示高可用性。
    • 7. 发明授权
    • Hydrodynamic bearing apparatus
    • 流体动力轴承装置
    • US06296391B1
    • 2001-10-02
    • US09093098
    • 1998-06-08
    • Masamichi HayakawaMasato GomyoHideki KanebakoKazushi Miura
    • Masamichi HayakawaMasato GomyoHideki KanebakoKazushi Miura
    • F16C3206
    • F16C17/107F16C17/026F16C17/045F16C33/107F16C33/74F16C2370/12G11B19/2009
    • A hydrodynamic bearing apparatus comprises two hydrodynamic bearing sections which have a shaft member, a bearing member fit to the shaft member with a predetermined space therein, lubricants filling the space between the shaft member and the bearing member, and which are separately placed in the axial direction of the shaft member. The lubricants of the two hydrodynamic bearing sections are separated from each other by an air layer. The lubricants are pressured by hydrodynamic generating grooves formed on the hydrodynamic bearing sections such that the shaft member and the bearing member are rotatably supported in relation to each other. The hydrodynamic generating grooves separately formed on the two hydrodynamic bearing sections are formed into an unbalanced shape such that the lubricants are moved in a predetermined direction to correct the slope of the shaft member and the bearing member when rotation is suspended. Capillary sealing sections are formed in continuation to end sections of each of the two hydrodynamic bearing sections to sustain the lubricants by capillarity. The maximum amount of the lubricant in one of the capillary sealing sections, which is located downstream in the moving direction of the lubricants, is established to be larger than the moving amount of the lubricants.
    • 一种流体动力轴承装置包括两个流体动力轴承部分,它们具有一个轴部件,一个轴承部件,该轴承部件配合在其中具有预定空间的轴部件,润滑剂填充轴部件和轴承部件之间的空间,并分别放置在轴向 轴构件的方向。 两个流体动力轴承部分的润滑剂通过空气层彼此分离。 润滑剂由形成在流体动力轴承部分上的流体动力产生槽压力,使得轴构件和轴承构件相对于彼此可旋转地支撑。 分别形成在两个流体动力轴承部分上的流体动力产生槽形成为不平衡的形状,使得润滑剂沿预定方向移动,以在旋转停止时校正轴构件和轴承构件的倾斜度。 毛细管密封部分连续地形成在两个流体动力轴承部分中的每一个的端部部分上,以通过毛细管作用来维持润滑剂。 在位于润滑剂的移动方向下游的毛细管密封部分之一中的润滑剂的最大量被确定为大于润滑剂的移动量。
    • 9. 发明申请
    • AUXILIARY ARTIFICIAL HEART PUMP DRIVE DEVICE AND AUXILIARY ARTIFICAL HEART SYSTEM
    • 辅助人工心脏泵驱动装置和辅助人工心脏系统
    • US20110015732A1
    • 2011-01-20
    • US12934074
    • 2009-03-22
    • Hideki Kanebako
    • Hideki Kanebako
    • A61M1/10
    • A61M1/1086A61M1/101A61M1/1025A61M1/122A61M2205/17H02P29/0241H02P29/027H02P29/60
    • An auxiliary artificial heart pump drive device for driving an auxiliary artificial heart pump includes first and second pump control parts which are arranged in duplexed configuration. Each pump control part controls the auxiliary artificial heart pump by outputting a drive signal to the auxiliary artificial heart pump. Each pump control part has a means which, when a failure is detected in the pump control part, electrically cuts off a path through which the drive signal is outputted to the auxiliary artificial heart pump. According to the present invention, it is possible to provide an auxiliary artificial heart pump drive device and an auxiliary artificial heart system which exhibit high availability even when a serious failure occurs by any chance without duplexing a pump device.
    • 用于驱动辅助人造心脏泵的辅助人造心脏泵驱动装置包括以双面配置布置的第一和第二泵控制部件。 每个泵控制部分通过向辅助人造心脏泵输出驱动信号来控制辅助人造心脏泵。 每个泵控制部分具有一种装置,当在泵控制部分检测到故障时,电切断驱动信号输出到辅助人造心脏泵的路径。 根据本发明,可以提供一种辅助人造心脏泵驱动装置和辅助人造心脏系统,即使在没有双重化泵装置的情况下发生严重故障的情况下也能显示高可用性。
    • 10. 发明授权
    • Magnetically levitated motor
    • 磁悬浮马达
    • US06753631B2
    • 2004-06-22
    • US10127337
    • 2002-04-19
    • Hideki KanebakoYohji Okada
    • Hideki KanebakoYohji Okada
    • H02K709
    • F16C32/0493F16C2380/26H02K7/09
    • A magnetic levitation motor has a rotor with a rotor magnet magnetized in multiple poles, and a stator with rotor driving coils disposed confronting to the rotor magnet for generating a rotational torque on the rotor, and bearing coils for generating a bearing force in a direction perpendicular to a rotational axis of the rotor. The rotor driving coils and the bearing coils are shifted with respect to one another in a circumferential direction to avoid overlapping with one another. A displacement sensor is provided for detecting displacement of the rotor with respect to a plane that is perpendicular to the rotational axis of the rotor, wherein the rotor is rotated by the rotor driving coils, and the currents flowing in the bearing coils are controlled in accordance with output of the displacement sensor to keep the rotational axis of the rotor at a predetermined position.
    • 磁悬浮马达具有转子,转子磁体被多个磁极磁化,转子驱动线圈的转子驱动线圈与转子磁铁相对设置,以产生转子上的旋转转矩,以及用于在垂直方向上产生支承力的轴承线圈 到转子的旋转轴线。 转子驱动线圈和轴承线圈在圆周方向上彼此相对移位以避免彼此重叠。 设置位移传感器,用于检测转子相对于与转子的旋转轴线垂直的平面的位移,其中转子由转子驱动线圈旋转,并且流过轴承线圈的电流按照 通过位移传感器的输出将转子的旋转轴线保持在预定位置。