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High resolution MEMS strain sensors for vibration detection on hard disk drive instrumented suspensions.

机译:高分辨率MEMS应变传感器,用于检测硬盘驱动器悬架上的振动。

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摘要

As data densities in computer hard disk drives increase, airflow-induced vibration of the disk drive suspension becomes a major barrier to positioning the read-write head with sufficient precision. The overall system performance is limited both by the bandwidth of the position error signal and the positioning capability of the conventional voice coil motor.; Dual stage actuation has been proposed and implemented which utilizes an additional actuator on the suspension to achieve vibration compensation beyond the voice coil motor bandwidth. To fully exploit the dual-stage configuration, a dedicated sensor system is required on the suspension arm to detect vibration directly which enables high-frequency sampling and modal selectivity. The real time vibration information ensures better coordination between the two actuators resulting in higher efficiency and accuracy.; Using micro-electro-mechanical systems (MEMS) techniques, ZnO piezoelectric strain sensors are directly fabricated on silicon for characterization and on steel substrates, which is transformed into suspensions for testing. The sensors are intended to be used as point sensors for vibration sensing without putting extra burden on the host structures. An efficient method is used for identifying the optimal position and shape of the piezoelectric strain sensor on the steel suspension of a hard disk drive.; The experimental data indicate that the overall sensor system is capable of resolving better than 40.3 nano-strain time domain signal at frequencies above 2 kHz. The corresponding noise floor is lower than 200 femto-strain per root Hertz. The sensitivity, defined as the sensor voltage output over strain input, is calculated to be 340 V/&egr;. Micro ZnO piezoelectric sensors fabricated on steel hard disk drive suspensions also show excellent results. The sensor not only has a better signal-to-noise ratio but also detects more vibration information than the combination of two laser-Doppler-vibrometer (LDV) measurements in different directions.
机译:随着计算机硬盘驱动器中数据密度的增加,气流引起的磁盘驱动器悬架振动将成为以足够的精度定位读写头的主要障碍。整个系统的性能受位置误差信号的带宽和常规音圈电动机的定位能力的限制。已经提出并实现了双级致动,其利用悬架上的附加致动器来实现音圈马达带宽之外的振动补偿。为了充分利用双级配置,在悬架臂上需要专用的传感器系统来直接检测振动,从而实现高频采样和模态选择性。实时振动信息可确保两个执行器之间更好的协调,从而提高效率和精度。使用微机电系统(MEMS)技术,ZnO压电应变传感器直接在硅上制造以进行表征,并直接在钢基底上制造,然后将其转变为悬浮液以进行测试。该传感器旨在用作振动感应的点传感器,而不会给主机结构带来额外的负担。一种有效的方法用于确定硬盘驱动器钢悬架上的压电应变传感器的最佳位置和形状。实验数据表明,在高于2 kHz的频率下,整个传感器系统能够比40.3纳米应变时域信号更好地分辨。相应的本底噪声低于每根赫兹200个毫微微应变。灵敏度定义为通过应变输入输出的传感器电压,计算得出为340 V / eg。在钢制硬盘驱动器悬架上制造的微型ZnO压电传感器也显示出出色的结果。与两个方向不同的激光多普勒振动计(LDV)测量相结合,该传感器不仅具有更好的信噪比,而且还可以检测更多的振​​动信息。

著录项

  • 作者

    Kon, Stanley.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Electronics and Electrical.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;机械、仪表工业;
  • 关键词

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