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    • 82. 发明公开
    • Split-core type motor and method of manufacturing armature of split-core type motor
    • Spaltkernmotor und Verfahren zur Herstellung des Ankers eines Spaltkernmotors
    • EP2733826A2
    • 2014-05-21
    • EP13191772.6
    • 2013-11-06
    • Sanyo Denki Co., Ltd.
    • Koichi, ShintarouTakeda, TooruMatsuhashi, Kenta
    • H02K3/52H02K15/00
    • H02K3/50H02K3/52H02K15/0068H02K15/0075H02K15/026H02K15/095H02K15/12Y10T29/49009
    • A split-core type motor, which makes work for connecting lead wires of split coils simple and efficient and can reduce manufacturing costs by reducing time taken to connect wires, is realized.
      A split-core type motor includes: at least a plurality of split coils that are formed by winding coils on split cores on which insulating members have been mounted; a stator that is formed by disposing the plurality of split coils in an annular shape; crimp terminals that connect lead wires of the split coils by being crimped so that the lead wires of the split coils correspond to a u phase, a v phase, and a w phase of a three-phase AC power source, and form terminals corresponding to the u phase, the v phase, and the w phase, respectively; and a resin mold part that covers the coils and the lead wires while power line connecting portions of the crimp terminals are exposed to the outside.
    • 实现了分离式电动机,其用于简单高效地连接分离线圈的引线,并且可以通过减少连接导线所花费的时间来降低制造成本。 分裂型电动机包括:至少多个分离线圈,其通过在已经安装有绝缘构件的分裂铁芯上缠绕线圈而形成; 定子,其通过将所述多个分离线圈设置成环状而形成; 通过压接将分割线圈的引线连接起来的压接端子,使得分离线圈的引线对应于三相AC电源的au相,av相和aw相,并形成对应于u相的端子 ,v相和w相分别; 以及在压接端子的电力线连接部分暴露于外部时覆盖线圈和引线的树脂模制部件。
    • 83. 发明公开
    • Composite magnet stepper/torquer motor
    • Schritt- / Drehmomentmotor mit zusammengesetztem Magnet。
    • EP0630098A2
    • 1994-12-21
    • EP94304030.3
    • 1994-06-03
    • ALLWINE, Elmer C.
    • ALLWINE, Elmer C.
    • H02K37/12H02K1/27
    • G01B7/30H02K1/146H02K1/2793H02K3/28H02K3/46H02K3/52H02K3/522H02K3/525H02K37/125H02K2203/03
    • A stepper motor is provided that is compact, easily manufactured, and provides high torque. The stepper motor comprises a multi-pole composite magnet (64) which functions as a rotor, at least one stator member (65A,65B) which determines the angular position of this rotor, and means for positioning the rotor and the stator members on a common axis. The composite magnet comprises two pieces, each piece having a mating member and an arc-shaped member integrally formed with the mating member. To form the composite magnet, the mating members of both pieces are aligned on an axis and the arc-shaped members of both pieces are juxtaposed. The first and second pieces are magnetized in opposite axial directions which results in two advantages. First, the composite magnet provides a high area of energy conversion per unit volume, thereby significantly reducing the size of the stepper motor in comparison to prior art stepper motors. Second, because the projections and apertures are magnetized in opposite axial directions, the magnetic poles are extremely well-defined thereby ensuring that the composite magnet provides both accuracy and high torque capability.
    • 提供了一种紧凑,易于制造并提供高扭矩的步进电机。 步进电动机包括用作转子的多极复合磁体,确定该转子的角位置的至少一个定子构件和用于将转子和定子构件定位在公共轴上的装置。 复合磁体包括两个部件,每个部件具有配合部件和与配合部件一体形成的弧形部件。 为了形成复合磁体,两个部件的配合部件在轴线上对齐,并且两个部件的弧形部件并置。 第一和第二片在相反的轴向被磁化,这导致两个优点。 首先,与现有技术的步进电机相比,复合磁体提供每单位体积的高的能量转换面积,从而显着地减小了步进电机的尺寸。 第二,由于突起和孔径在相反的轴向上被磁化,所以磁极非常明确,从而确保复合磁体提供精度和高扭矩能力。