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Improved gap servo system using a brake pulse for a SIL-based near-field recording system

机译:使用制动脉冲的改进的间隙伺服系统,用于基于SIL的近场记录系统

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摘要

A mode-switching servo is widely used in solid immersion lens (SIL)-based near-field recording (NFR) systems to control the air gap between the bottom surface of the SIL and the top surface of the rotating media. In the mode-switching servo, it is very important to reduce the initial overshoot in the near field region, as this overshoot can cause collisions between the SIL and the media, and increase the settling time required for the SIL to be initially moved to the final air gap. In this paper, the mode-switching servo with a brake pulse is proposed to reduce the initial overshoot and settling time. The effectiveness of the proposed method is proved by experiments of which results show that the minimum air gap due to the initial overshoot is improved from 6.86 to 18.73 nm and the settling time is reduced from 30 to 4.5 ms. Paper presented at the ISPS 2008 conference, Santa Clara, CA, USA, 16–17 June, 2008.
机译:模式切换伺服器广泛用于基于固体浸没透镜(SIL)的近场记录(NFR)系统中,以控制SIL底面和旋转介质顶面之间的气隙。在模式切换伺服系统中,减少近场区域的初始过冲非常重要,因为这种过冲会导致SIL与介质之间发生碰撞,并增加SIL最初移至介质所需的建立时间。最终气隙。本文提出了一种带有制动脉冲的模式切换伺服系统,以减少初始过冲和建立时间。实验证明了该方法的有效性,结果表明,由初始过冲引起的最小气隙从6.86 nm提高到18.73 nm,稳定时间从30 ms降低到4.5 ms。在2008年6月16日至17日于美国加州圣克拉拉举行的ISPS 2008大会上发表的论文。

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