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    • 14. 发明申请
    • Axial air-gap electronic motor
    • 轴向气隙电子马达
    • US20060113856A1
    • 2006-06-01
    • US11284935
    • 2005-11-23
    • Toshiaki TannoTomonori Kojima
    • Toshiaki TannoTomonori Kojima
    • H02K21/12H02K1/22
    • H02K21/24H02K1/2793
    • There is provided, at a low cost, an axial air-gap electronic motor capable of preventing a magnet from coming off and carrying out position detection more surely. In an axial air-gap electronic motor in which the teeth surface of a stator and the magnet surface of a rotor are arranged opposedly with a predetermined gap being provided therebetween along the axis line direction of the output shaft of the rotor, the rotor has a rotor back yoke arranged coaxially with the stator and a rotor magnet installed to the rotor back yoke so as to face to the teeth surface of the stator, and the rotor magnet is provided with an anchor magnet which is integral with the rotor magnet and is arranged on the back surface side of the rotor back yoke. The anchor magnet 36 integral with the rotor magnet 32 via a through hole 35 is provided on the back surface side of the rotor back yoke 31 of the rotor 3, thereby fixing the rotor magnet 32, and further position detection is carried out by the anchor magnet 36.
    • 以低成本提供能够更可靠地防止磁铁脱落并进行位置检测的轴向气隙电子马达。 在其中定子的齿面和转子的磁体表面沿着转子的输出轴的轴线方向设置在其间沿预定的间隙相对布置的轴向气隙电动马达中,转子具有 与定子同轴设置的转子后轭和安装在转子后轭上的转子磁体,以面向定子的齿面,并且转子磁体设置有与转子磁体成一体的锚固磁体, 在转子后轭的背面侧。 在转子3的转子后轭31的背面侧设置有通过通孔35与转子磁体32一体形成的锚定磁体36,由此固定转子磁体32,并且通过锚固体进行位置检测 磁铁36。
    • 17. 发明授权
    • Axial air-gap electronic motor
    • 轴向气隙电子马达
    • US07569958B2
    • 2009-08-04
    • US11979756
    • 2007-11-08
    • Hirokazu MatsuzakiToshiaki TannoKen MaeyamaTomonori Kojima
    • Hirokazu MatsuzakiToshiaki TannoKen MaeyamaTomonori Kojima
    • H02K11/00
    • H02K3/524
    • In an axial air-gap electronic motor having a stator that is formed by annularly connecting a plurality of core members around an axis of a rotor output axis, an insulator that insulates a winding portion of a stator core of each core member is formed in the winding portion in the shape of a bobbin having a pair of flanges, a winding draw-out portion is formed between abutted end portions of the flange, and a crossover wire of a winding is pulled out from the winding draw-out portion to outside the core member, whereby it is possible to positively perform routing treatment from the winding portion of the winding to the crossover wire and it is ensured that the crossover wire can be positively fixed without bringing a crossover wire of a different phase into contact.
    • 在具有通过围绕转子输出轴的轴线环状地连接多个铁芯构件而形成的定子的轴向气隙电动马达中,在每个铁芯构件的定子铁芯的绕组部分上形成绝缘体 绕线部分为具有一对凸缘的绕线管形式,在凸缘的相邻端部之间形成绕线引出部分,并且绕组的交叉线从绕线引出部分被拉出到外侧 从而可以从绕组的绕组部分到交叉线正确地执行布线处理,并且确保跨接线可以被正确地固定,而不会使不同相的交叉线接触。
    • 18. 发明申请
    • Axial air-gap electronic motor
    • 轴向气隙电子马达
    • US20080106161A1
    • 2008-05-08
    • US11979756
    • 2007-11-08
    • Hirokazu MatsuzakiToshiaki TannoKen MaeyamaTomonori Kojima
    • Hirokazu MatsuzakiToshiaki TannoKen MaeyamaTomonori Kojima
    • H02K1/12H02K11/00H02K3/47
    • H02K3/524
    • In an axial air-gap electronic motor having a stator that is formed by annularly connecting a plurality of core members around an axis of a rotor output axis, an insulator that insulates a winding portion of a stator core of each core member is formed in the winding portion in the shape of a bobbin having a pair of flanges, a winding draw-out portion is formed between abutted end portions of the flange, and a crossover wire of a winding is pulled out from the winding draw-out portion to outside the core member, whereby it is possible to positively perform routing treatment from the winding portion of the winding to the crossover wire and it is ensured that the crossover wire can be positively fixed without bringing a crossover wire of a different phase into contact.
    • 在具有通过围绕转子输出轴的轴线环状地连接多个铁芯构件而形成的定子的轴向气隙电动马达中,在每个铁芯构件的定子铁芯的绕组部分上形成绝缘体 绕线部分为具有一对凸缘的绕线管形式,在凸缘的相邻端部之间形成绕线引出部分,并且绕组的交叉线从绕线引出部分被拉出到外侧 从而可以从绕组的绕组部分到交叉线正确地执行布线处理,并且确保跨接线可以被正确地固定,而不会使不同相的交叉线接触。