2005Unpublished venueRequires access

MEMS-based active-head sliders for flying height control in hard disk drives

Kenji Suzuki

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Abstract

This paper describes a novel design and fabrication of an active-head slider for flying-height control in hard disk drives. An air bearing slider with a piezoelectric cantilever which allows the head-disk spacing to be adjusted actively is presented. Static and dynamic analyses of the slider were carried out to optimize the air bearing surface profiles. The slider was then fabricated monolithically by silicon micromachining and tested the performance. The active motion of the cantilever is successfully confirmed while the slider is flying stably above a spinning disk.

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What this paper is about

This paper describes a novel design and fabrication of an active-head slider for flying-height control in hard disk drives. An air bearing slider with a piezoelectric cantilever which allows the head-disk spacing to be adjusted actively is presented. Static and dynamic analyses of the slider were carried out to optimize the air bearing surface profiles. The slider was then fabricated monolithically by silicon micromachining and tested the performance. The active motion of the cantilever is successfully confirmed while the slider is flying stably above a spinning disk.

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Available abstract

This paper describes a novel design and fabrication of an active-head slider for flying-height control in hard disk drives. An air bearing slider with a piezoelectric cantilever which allows the head-disk spacing to be adjusted actively is presented. Static and dynamic analyses of the slider were carried out to optimize the air bearing surface profiles. The slider was then fabricated monolithically by silicon micromachining and tested the performance. The active motion of the cantilever is successfully confirmed while the slider is flying stably above a spinning disk.

Key concepts: Slider, Flying height, Air bearing, Cantilever, Head (geology), Microelectromechanical systems, Surface micromachining, Fabrication

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