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    • 4. 发明授权
    • Geometrically aligning a stator and a base plate for a spindle motor
    • 几何对准定子和主轴电机的基板
    • US06921993B2
    • 2005-07-26
    • US10854377
    • 2004-05-25
    • Mo XuVictor C. ChooYiRen HongPohLye Lim
    • Mo XuVictor C. ChooYiRen HongPohLye Lim
    • H02K1/14H02K1/18H02K5/06H02K21/16H02K7/00
    • H02K21/16H02K1/146H02K1/185H02K5/06
    • Stator and base plate interface alignment is provided for a spindle motor, meeting design specifications such that motor performance is maintained. A portion of a surface of the stator is separated from the base plate. Accurate stator z-height, parallelism and concentricity are provided for use with a low profile disc drive memory system. In an aspect, laminations are formed about a stator and the bottom layer laminations are formed with a smaller diameter than the top layer lamination. The stator bottom layer laminations seat on a flat base plate machined surface, avoiding a base plate corner radius. Precise machining of a small corner interface of the base plate where a stator is typically seated and aligned with the base plate is made unnecessary. Component machining costs, wear and tear to machining systems, and machining process cycle times are reduced.
    • 为主轴电机提供定子和底板接口对准,满足维护电机性能的设计规范。 定子表面的一部分与基板分离。 提供精确的定子z-高度,平行度和同心度用于低剖面磁盘驱动器存储器系统。 在一方面,围绕定子形成叠片,并且底层叠片形成为具有比顶层层叠更小的直径。 定子底层叠片位于平底板加工表面上,避免了底板拐角半径。 不需要对定子通常座位并与基板对准的基板的小角接口进行精密加工。 组件加工成本,加工系统的磨损和加工循环时间减少。
    • 7. 发明申请
    • Electronic device housing
    • 电子设备外壳
    • US20070032103A1
    • 2007-02-08
    • US11196901
    • 2005-08-04
    • Mo XuYiRen HongPohlye LimNiroot Jierapipatanakul
    • Mo XuYiRen HongPohlye LimNiroot Jierapipatanakul
    • H05K1/00
    • G11B33/02G11B33/12G11B33/1493
    • The invention includes techniques for mounting a printed circuit board (PCB) on a housing for an electronic device. The housing includes a top cover that combines with a base to form an internal space within the housing. The PCB has at least one tab that extends from it and fits within a recess formed by the base to secure the PCB on a side of the base opposite to the internal space. The electronic device may additionally include a shield such that the PCB fits between the shield and the base and the shield assists in securing the PCB to the base. The housing may also include a locking mechanism to constrain the PCB tab to the base. Embodiments of the invention allow for a PCB to be mounted to an electronic device housing without the use of screws.
    • 本发明包括用于将印刷电路板(PCB)安装在用于电子设备的外壳上的技术。 壳体包括顶盖,其与基座结合以在壳体内形成内部空间。 PCB具有至少一个从其延伸并且安装在由基座形成的凹部内的突片,以将PCB固定在与内部空间相反的一侧。 电子设备可以另外包括屏蔽,使得PCB配合在屏蔽和基座之间,并且屏蔽件有助于将PCB固定到基座。 壳体还可以包括用于将PCB接头约束到基座的锁定机构。 本发明的实施例允许将PCB安装到电子设备外壳上而不使用螺钉。
    • 10. 发明申请
    • Geometrically aligning a stator and a base plate for a spindle motor
    • 几何对准定子和主轴电机的基板
    • US20050057107A1
    • 2005-03-17
    • US10854377
    • 2004-05-25
    • Mo XuVictor ChooYiRen HongPohLye Lim
    • Mo XuVictor ChooYiRen HongPohLye Lim
    • H02K1/14H02K1/18H02K5/06H02K21/16H02K7/00H02K5/16H02K11/00
    • H02K21/16H02K1/146H02K1/185H02K5/06
    • Stator and base plate interface alignment is provided for a spindle motor, meeting design specifications such that motor performance is maintained. A portion of a surface of the stator is separated from the base plate. Accurate stator z-height, parallelism and concentricity are provided for use with a low profile disc drive memory system. In an aspect, laminations are formed about a stator and the bottom layer laminations are formed with a smaller diameter than the top layer laminations. The stator bottom layer laminations seat on a flat base plate machined surface, avoiding a base plate corner radius. Precise machining of a small corner interface of the base plate where a stator is typically seated and aligned with the base plate is made unnecessary. Component machining costs, wear and tear to machining systems, and machining process cycle times are reduced.
    • 为主轴电机提供定子和底板接口对准,满足维护电机性能的设计规范。 定子表面的一部分与基板分离。 提供精确的定子z-高度,平行度和同心度用于低剖面磁盘驱动器存储器系统。 在一方面,围绕定子形成叠片,并且底层叠片形成为具有比顶层叠片更小的直径。 定子底层叠片位于平底板加工表面上,避免了底板拐角半径。 不需要对定子通常座位并与基板对准的基板的小角接口进行精密加工。 组件加工成本,加工系统的磨损和加工循环时间减少。