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Improved safety mode considering external shock direction for near-field recording system using SIL

机译:考虑到外部冲击方向的改进安全模式,用于使用SIL的近场记录系统

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摘要

To increase the near-field coupling efficiency in a near-field recording (NFR) system, extremely small air gap (less than 100 nm) between the solid immersion lens (SIL) and media should be maintained. However, maintaining the air gap is very important and difficult. Despite various anti-shock control methods, there are physical limitations to controlling the air gap against external shock. A safety mode that moves the actuator to the initial position for large external shock is currently being used. The existing safety mode exhibits good performance for downward shocks of 6 G amplitude and 10 ms duration time, but some problems arise for upward shocks of 3 G amplitude and 10 ms duration time. To avoid collision for upward and downward shocks, we present an improved safety mode that considers the direction of the external shock for an SIL-based near-field recording system. We analyzed the upward and downward shock responses of the NFR system. The shape of the pulse input was designed to minimize the overshoot of the actuator. Through various experiments, the amplitude and duration time of the pulse input were optimized. Even with an upward shock with 8 G and 10 ms, no collision was observed between the actuator and the media by using the improved safety mode with the optimized pulse input.
机译:为了提高近场记录(NFR)系统中的近场耦合效率,应在固体浸没透镜(SIL)和介质之间保持极小的气隙(小于100 nm)。但是,保持气隙非常重要且困难。尽管有多种防震控制方法,但是控制气隙以防外部冲击仍然存在物理限制。当前正在使用一种安全模式,该模式将执行器移动到初始位置以应对较大的外部冲击。现有的安全模式对于6 G振幅和10 ms持续时间的向下冲击表现出良好的性能,但是对于3 G振幅和10 ms持续时间的向上冲击会出现一些问题。为了避免向上和向下震动的碰撞,我们提出了一种改进的安全模式,该模式考虑了基于SIL的近场记录系统的外部震动方向。我们分析了NFR系统的向上和向下冲击响应。脉冲输入的形状旨在最大程度地减小执行器的过冲。通过各种实验,优化了脉冲输入的幅度和持续时间。即使使用8 G和10 ms的向上冲击,通过使用具有优化脉冲输入的改进安全模式,也不会在执行器和介质之间观察到碰撞。

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