会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Disk drive employing a velocity profile and back EMF feedback to control a voice coil motor
    • 磁盘驱动器采用速度分布和反电动势反馈来控制音圈电机
    • US07068463B1
    • 2006-06-27
    • US10868551
    • 2004-06-14
    • Chuanwen JiJianghong Ding
    • Chuanwen JiJianghong Ding
    • G11B21/02
    • G11B21/12G11B5/5547
    • A disk drive is disclosed comprising a disk having a plurality of tracks, an actuator arm, a head connected to a distal end of the actuator arm, and a voice coil motor (VCM) for rotating the actuator arm about a pivot to actuate the head over the disk. A driving current is applied to the VCM to control the motion of the actuator arm. A back EMF voltage generated by the VCM is detected, and a velocity of the VCM is estimated in response to the back EMF voltage. The estimated VCM velocity is compared to a target velocity in a velocity profile, wherein the velocity profile comprises at least an acceleration component and a coast component. The driving current is adjusted in response to the comparison so that the velocity of the VCM substantially follows the velocity profile.
    • 公开了一种磁盘驱动器,其包括具有多个磁道的磁盘,致动器臂,连接到致动器臂的远端的磁头以及用于围绕枢轴旋转致动器臂以致动头部的音圈电机(VCM) 在磁盘上。 向VCM施加驱动电流以控制致动器臂的运动。 检测由VCM产生的反电动势电压,并且响应于反电动势电压来估计VCM的速度。 将估计的VCM速度与速度分布中的目标速度进行比较,其中速度分布至少包括加速度分量和海岸分量。 响应于比较来调节驱动电流,使得VCM的速度基本上遵循速度分布。
    • 7. 发明授权
    • Disk drive estimating angular position of spindle motor during spin-up by computing differences in winding current rise times
    • 磁盘驱动器通过计算绕组电流上升时间的差异来估算主轴电机在起动期间的角位置
    • US07253582B1
    • 2007-08-07
    • US10856320
    • 2004-05-28
    • Jianghong DingChuanwen JiDavid D. Nguyen
    • Jianghong DingChuanwen JiDavid D. Nguyen
    • G05B1/06
    • G11B19/20G11B19/2054
    • A disk drive is disclosed comprising a spindle motor having a plurality of windings including at least a first winding, a second winding, and a third winding. During a spin-up operation, a voltage is applied to the first winding and a first rise time is measured for current flowing through the first winding to reach a predetermined threshold. A voltage is applied to the second winding and a second rise time is measured for current flowing through the second winding to reach a predetermined threshold. A voltage is applied to the third winding and a third rise time is measured for current flowing through the third winding to reach a predetermined threshold. A difference is computed in response to the first rise time, the second rise time, and the third rise time, and an angular position of the spindle motor is estimated by computing an arctangent in response to the difference.
    • 公开了一种磁盘驱动器,其包括具有包括至少第一绕组,第二绕组和第三绕组的多个绕组的主轴电动机。 在升压操作期间,向第一绕组施加电压,并且测量流过第一绕组的电流达到预定阈值的第一上升时间。 对第二绕组施加电压,并且测量流过第二绕组的电流达到预定阈值的第二上升时间。 对第三绕组施加电压,并且测量流过第三绕组的电流达到预定阈值的第三上升时间。 响应于第一上升时间,第二上升时间和第三上升时间来计算差值,并且通过响应于该差异计算反正切来估计主轴电动机的角位置。
    • 9. 发明授权
    • Disk drive detecting crack in microactuator
    • 微型驱动器中的磁盘驱动器检测裂纹
    • US08335049B1
    • 2012-12-18
    • US12794891
    • 2010-06-07
    • Yanning LiuChuanwen JiNathan J. Santee
    • Yanning LiuChuanwen JiNathan J. Santee
    • G11B5/596
    • G11B19/048G11B5/5552
    • A disk drive is disclosed comprising a first disk surface, a first head coupled to a distal end of an actuator arm, and a voice coil motor (VCM) and a first microactuator operable to actuate the first head over the first disk surface. A servo loop for servoing the head in response to the servo sectors is disabled, and after disabling the servo loop, the first microactuator is excited with a control signal at a test frequency in order to accentuate a crack in the first microactuator. After exciting the first microactuator, the servo loop is enabled, and after enabling the servo loop, the first microactuator is evaluated to detect the crack in the first microactuator.
    • 公开了一种磁盘驱动器,包括第一磁盘表面,耦合到致动器臂的远端的第一磁头和音圈电动机(VCM)以及可操作以在第一磁盘表面上致动第一磁头的第一微型致动器。 用于响应于伺服扇区伺服磁头的伺服回路被禁用,并且在禁用伺服回路之后,第一微致动器以测试频率的控制信号被激励,以便加强第一微致动器中的裂纹。 在激活第一个微致动器之后,伺服回路被使能,并且在启用伺服回路之后,评估第一微致动器以检测第一微致动器中的裂纹。