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Effect of micro-waviness and design of landing zones with a glide avalanche below 0.5 /spl mu/' for conventional pico sliders

机译:常规微微滑块的微波纹效应和滑行雪崩低于0.5 / spl mu /“的着陆区设计

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摘要

The effect of substrate micro-waviness and laser bump size were identified to be dominant on the tribology performance of laser zone texture for ultra-low glide avalanche applications. Smaller laser bumps tend to give a lower minimum allowable bump height with acceptable stiction, thus allowing for a laser texture design with a lower glide avalanche height. Remarkably, it was found that lower substrate micro-waviness can further reduce the minimum allowable bump height and result in an even lower glide avalanche laser texture. A proper design based on smaller laser bumps and lower substrate micro-waviness demonstrated that it is feasible to have a laser zone texture with a glide avalanche below 0.5 /spl mu/" for conventional pico sliders.
机译:衬底微波纹度和激光凸点尺寸的影响被确定为超低滑行雪崩应用中激光区域织构的摩擦学性能的主导。较小的激光凸块往往会在可接受的静摩擦力下提供较低的最小允许凸块高度,因此可以实现具有较低滑行雪崩高度的激光纹理设计。值得注意的是,发现较低的基片微波纹度可以进一步减小最小允许的凸块高度,并导致更低的滑动雪崩激光纹理。基于较小的激光凸块和较低的基板微波纹度的适当设计表明,对于常规的微微滑块,具有小于0.5 / spl mu /“的滑行雪崩的激光区域纹理是可行的。

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