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    • 4. 发明授权
    • Spindle motor with fluid dynamic bearing having a journal bearing in
combination with a conical bearing
    • 具有流体动力轴承的主轴电机具有与锥形轴承组合的轴颈轴承
    • US6137650A
    • 2000-10-24
    • US981338
    • 1997-12-19
    • Gunter Karl HeineMohamed Mizanur RahmanRaquib Uddin KhanHans Leuthold
    • Gunter Karl HeineMohamed Mizanur RahmanRaquib Uddin KhanHans Leuthold
    • G11B5/48F16C17/10F16C17/26F16C33/10F16C33/74G11B19/20H02K7/08G11B17/08
    • G11B19/2009F16C17/102F16C33/107F16C33/745G11B19/2018G11B19/2036F16C2370/12
    • A hydrodynamic fluid bearing useful in a bearing cartridge which cartridge may be incorporated into a spindle motor or the like, where the bearing includes a shaft, a conical bearing supported on the shaft, and journal bearings located at least on one side and typically both above and below the conical bearing. A sleeve is mounted for rotation relative to the shaft and defines, in cooperation with the shaft, the gaps necessary for both the conical hydrodynamic bearing and the axial, journal bearings. At an end of the shaft, capillary seals are defined between the sleeve and the shaft so that fluid does not escape from the hydrodynamic bearing. The shaft itself includes a central hole, with bores communicating with both the conical bearing and the journal bearings to maintain appropriate pressure balances.In a further desirable feature, in some embodiments the diameter of one end of the shaft can be made greater than the diameter of the other end of the shaft. This allows for making the gaps between the shaft and the surrounding sleeve or journal to be greater where the diameter of the fixed shaft is greater, reducing the need for tight tolerances within at least part of the hydrodynamic bearing. Preferably the top end of the shaft (i.e. the end of the shaft adjacent the wider end of the conical bearing) has the journal bearing with greater diameter.
    • PCT No.PCT / US97 / 23925 Sec。 371 1997年12月19日第 102(e)日期1997年12月19日PCT 1997年12月19日PCT公布。 第WO98 / 48419号公报 日期1998年10月29日一种用于轴承筒的流体动力学流体轴承,其中可以将筒体并入到主轴电机等中,其中轴承包括轴,支撑在轴上的锥形轴承和至少位于一个上的轴颈轴承 并且通常在锥形轴承的上方和下方。 安装套筒相对于轴线旋转,并与轴配合限定锥形流体动力轴承和轴向轴颈轴承所需的间隙。 在轴的端部,在套筒和轴之间限定毛细管密封,使得流体不会从流体动力轴承逸出。 轴本身包括中心孔,孔与锥形轴承和轴颈轴承连通,以保持适当的压力平衡。 在另一个期望的特征中,在一些实施例中,轴的一端的直径可以制成大于轴的另一端的直径。 这允许在固定轴的直径更大的情况下使得轴和周围的套筒或轴颈之间的间隙更大,减少了至少部分流体动力轴承内的严格公差的需要。 优选地,轴的顶端(即,与锥形轴承的较宽端相邻的轴的端部)具有较大直径的轴颈轴承。
    • 10. 发明授权
    • Slotless spindle motor for disc drive
    • 无盘主轴电机用于磁盘驱动器
    • US5850318A
    • 1998-12-15
    • US731073
    • 1996-10-09
    • John C. DunfieldGunter Karl HeineMarcel Jufer
    • John C. DunfieldGunter Karl HeineMarcel Jufer
    • G11B19/20H02K3/04H02K3/28H02K5/16H02K5/173H02K7/08H02K15/04H02K21/12H02K21/14H02K21/22H02K29/00G11B17/02
    • G11B19/2009H02K15/0478H02K21/12H02K21/14H02K21/22H02K5/163H02K7/085H02K7/086H02K3/04H02K3/28H02K5/173
    • A disc drive data storage system according to the present invention comprises a housing, a central axis, a stationary member which is fixed with respect to the housing and coaxial with the central axis, and a rotatable member which is rotatable about the central axis with respect to the stationary member. At least one data storage disc is attached to and is coaxial with the rotatable member. Upper and lower ball bearing assemblies interconnect the stationary member and the rotatable member. At least one rotor magnet is attached to the rotatable member. A back-iron is supported by the stationary member. A stator winding is attached to the back-iron and has a slotless structure. The rotor magnet, back-iron and stator winding have a common axial position along the central axis and the stator winding is magnetically coupled to the rotor magnet such that the stator winding and the rotor magnet cooperate to reduce excitation of pure tone vibrations in the disc drive data storage system and to reduce transfer of the vibrations to the housing through the ball bearing assemblies.
    • 根据本发明的盘驱动器数据存储系统包括壳体,中心轴线,相对于壳体固定并与中心轴线同轴的固定构件,以及可旋转构件,其可围绕中心轴线相对于 到固定构件。 至少一个数据存储盘被附接到可旋转构件并且与可旋转构件同轴。 上和下滚珠轴承组件将固定构件和可旋转构件互连。 至少一个转子磁体连接到可旋转构件。 后铁由固定构件支撑。 定子绕组安装在后铁上,具有无槽结构。 转子磁铁,后铁和定子绕组沿着中心轴具有共同的轴向位置,并且定子绕组磁耦合到转子磁体,使得定子绕组和转子磁体配合以减少盘中的纯音振动的激发 驱动数据存储系统并且通过球轴承组件减少振动传递到壳体。