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Dynamically Controlled Thermal Flying-Height Control Slider

机译:动态控制的热飞行高度控制滑块

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摘要

To achieve ultra-low flying height, magnetic spacing variations due to manufacturing tolerances and temperature-induced thermal protrusion need to be reduced. We have developed a thermal flying-height control (TFC) slider that carries a micro-thermal actuator. Previous TFC sliders were mainly statically controlled by a constant power supply. Our purpose is to demonstrate dynamic control of a TFC slider to compensate for high-speed magnetic signal modulation using feed-forward control methods. In this report, to dynamically compensate for magnetic signal modulation using TFC, two methods were examined. In method 1, TFC power was adjusted by using only time domain information. In Method 2, TFC power was adjusted by using frequency domain information in addition to time domain information. Method 2 showed better compensation for magnetic signal modulation due to better compensation at higher frequencies. These results showed that a dynamically controlled TFC slider is feasible in compensating for kilohertz order modulation.
机译:为了获得超低的飞行高度,需要减少由于制造公差和温度引起的热突起引起的磁间距变化。我们已经开发了带有微型热执行器的热飞行高度控制(TFC)滑块。以前的TFC滑块主要由恒定电源静态控制。我们的目的是演示动态控制TFC滑块,以使用前馈控制方法补偿高速磁信号调制。在此报告中,为了动态补偿使用TFC的磁信号调制,研究了两种方法。在方法1中,仅通过使用时域信息来调整TFC功率。在方法2中,除时域信息外,还通过使用频域信息来调整TFC功率。方法2显示了对磁信号调制的更好补偿,这是因为在较高频率下的补偿更好。这些结果表明,动态控制的TFC滑块在补偿千赫兹级调制方面是可行的。

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