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A METHOD FOR CHARACTERIZING THE HEAD-DISK INTERFACE DYNAMICS NEAR THE TOUCHDOWN CONDITIONS USING THE MAGNETIC FLY-HEIGHT

机译:一种使用磁性飞行高度在触达条件附近的头磁盘接口动态的方法

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Recent growth in the cloud storage industry has created a massive demand for higher capacity hard disk drives (HDD). A sub-nanometer head media spacing (HMS) remains the most critical pre-requisite to achieve the areal density needed to deliver the next generation of HDD products. Designing a robust head-disk interface (HDI) with small physical clearance requires the understanding of slider dynamics, especially when the head flies in proximity to the disk surface. In this paper, we describe a method using the magnetic read-back signal to characterize the head fly-height modulations as it undergoes a transition from a free-flying state to soft contact with the disk surface. A technique based on the magnetic fly-height sensitivity is introduced for the identification of the transition plane that corresponds to the onset of the touchdown process. Additionally, the proposed magnetic spacing based meteorology is used to study the effect of the air bearing stiffness on the magnitude of the slider vibrations induced by intermittent head-disk interactions. The information about the minimum spacing while maintaining the stable flying conditions can help in reducing the head-disk interaction risk that can enable a low clearance interface.
机译:最近云存储行业的增长为更高容量硬盘驱动器(HDD)创造了大量需求。亚纳米头介质间距(HMS)仍然是实现提供下一代HDD产品所需的面密度最关键的先决条件。设计具有小物理间隙的强大头磁盘接口(HDI)需要了解滑块动态,尤其是当磁头在靠近磁盘表面偏差时。在本文中,我们描述了一种使用磁性读取信号的方法,以表征头部飞行高度调制,因为它经历从自由飞向的过渡到与盘表面软接触。引入了一种基于磁性飞行高度灵敏度的技术,用于识别与触阵过程的开始相对应的过渡平面。另外,所提出的基于磁间距的气象学用于研究空气轴承刚度对间歇头盘相互作用引起的滑块振动的幅度的影响。有关最小间距的信息,同时保持稳定的飞行条件可以帮助降低能够实现低间隙接口的头磁盘交互风险。

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