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    • 5. 发明授权
    • Disk drive with composite sheet metal and encapsulated plastic base
    • 带复合金属片和封装塑料底座的磁盘驱动器
    • US6034841A
    • 2000-03-07
    • US87336
    • 1998-05-29
    • Thomas Robert AlbrechtVijayeshwar Das KhannaSuresh KumarSri Muthuthamby Sri-Jayantha
    • Thomas Robert AlbrechtVijayeshwar Das KhannaSuresh KumarSri Muthuthamby Sri-Jayantha
    • G11B25/04G11B33/02G11B5/012
    • G11B33/02G11B25/043
    • A miniature removable disk drive that meets the CompactFlash type II form factor and interface specifications uses a composite sheet metal/plastic tub-shaped base for supporting the disk drive components, e.g., the spindle motor with attached disk, the voice coil motor actuator with attached read/write head, and the preamplifier/write driver electronics module. The composite base is a metal plate with a flange extending around its perimeter and a plastic frame that encapsulates the flange and surrounds the perimeter of the metal plate. The metal plate supports the disk drive spindle motor and voice coil motor actuator and is made of high magnetic permeability, low coercivity material so that it can form part of the magnetic circuit of the spindle motor and/or actuator. The flanges on the metal plate provide rigidity and allow the base to be fabricated by injection molding the plastic frame onto the metal base so that the plastic encapsulates the metal flanges to form the walls of the tub-shaped base. An electronics card is located beneath the metal plate and is electrically shielded from the read/write heads and electronics module by the metal plate. Top and bottom covers are attached to the frame to enclose the disk drive components and the electronics card. Because the frame is made of plastic the corners may be made with intricately shaped cutouts that allow elastomeric corner bumpers to be interlocked into the frame at the corners. The corner bumpers extend beyond the frame and the covers so as to provide shock protection if the miniature removable disk drive is dropped.
    • 符合CompactFlash II型外形尺寸和接口规格的微型可移动磁盘驱动器使用复合金属/塑料桶形基座来支撑磁盘驱动器组件,例如带有附加磁盘的主轴电机,附带的音圈电机执行器 读/写头,以及前置放大/写入驱动器电子模块。 复合基座是具有围绕其周边延伸的凸缘的金属板和塑料框架,其封装凸缘并且围绕金属板的周边。 金属板支撑磁盘驱动器主轴电机和音圈电机执行器,并由高磁导率,低矫顽力材料制成,从而可以形成主轴电机和/或执行器的磁路的一部分。 金属板上的凸缘提供刚性并允许通过将塑料框架注塑成金属基底来制造基座,使得塑料封装金属法兰以形成盆形基座的壁。 电子卡位于金属板下方,并通过金属板与读/写头和电子模块电隔离。 顶盖和底盖连接到框架以封闭磁盘驱动器组件和电子卡。 由于框架由塑料制成,所以角部可以形成为具有复杂形状的切口,其允许弹性角部保险杠在拐角处与框架互锁。 拐角缓冲器延伸超出框架和盖子,以便在微型可移动磁盘驱动器掉落时提供冲击保护。
    • 7. 发明授权
    • Adaptive vibration control for servo systems in data storage devices
    • 数据存储设备伺服系统的自适应振动控制
    • US06549349B2
    • 2003-04-15
    • US09955391
    • 2001-09-18
    • Sri Muthuthamby Sri-JayanthaArun SharmaHien Phu DangNaoyuki KagamiYuzo NakagawaAkira TokizonoIsao Yoneda
    • Sri Muthuthamby Sri-JayanthaArun SharmaHien Phu DangNaoyuki KagamiYuzo NakagawaAkira TokizonoIsao Yoneda
    • G11B2736
    • G11B21/106G11B5/59611
    • Methods and systems for detecting and correcting for undesirable vibrations impacting the servo systems in data storage devices. A detection technique is provided wherein a detection filter is configured to scan a position signal of the servo system across a range of frequencies, and, at each respective scanned frequency, record an amplitude associated therewith. The recorded amplitudes are examined to determine whether any exceed a threshold, thereby locating a peak frequency of the vibration. Using the detected peak frequency of the vibration, a corrective filter is configured to operate about the peak frequency of vibration, thereby reducing its impact on the position signal in the servo system. Optimum detection and correction filter structures are disclosed, as are techniques for addressing filter state vectors as initial conditions as the corrective filters are repeatedly engaged during successive settle-out and track follow cycles (between seeks), as are continuous adaptation techniques for changing vibration environments.
    • 用于检测和校正影响数据存储设备中的伺服系统的不期望的振动的方法和系统。 提供了一种检测技术,其中检测滤波器被配置为扫描频率范围内的伺服系统的位置信号,并且在每个相应的扫描频率处记录与之相关联的振幅。 检查记录的振幅以确定是否有超过阈值,从而定位振动的峰值频率。 使用检测到的振动峰值频率,校正滤波器被配置为围绕振动的峰值频率运行,从而减小其对伺服系统中位置信号的影响。 公开了最佳检测和校正滤波器结构,作为用于将滤波器状态向量寻址作为初始条件的技术,校正滤波器在连续的稳定和跟踪周期(寻找之间)期间重复接合),以及用于改变振动环境的连续自适应技术 。