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A Robust Design Study of Air Bearing Slider for HDD

HDD용 에어베어링 슬라이더의 강건설계에 관한 연구

  • 전규찬 (삼성전자(주) 중앙연구소 광메카 Lab.) ;
  • 장동섭 (삼성전자(주) 중앙연구소 광메카 Lab.) ;
  • 좌성훈 (삼성전자(주) 중앙연구소 광메카 Lab.)
  • Published : 2000.08.01

Abstract

As the demand for higher areal recording densities requires a lower flying height of the slider, the variation of the flying height of the slider during drive operation becomes of great concern. The variation of the flying height is closely related with the slider design parameters such as air bearing shape, cavity depth, shallow step depth, crown, camber, pitch offset, roll offset, gram load, and so on. The objective of this work is to optimize the cavity depth and the shallow step depth, which are the control factors in air bearing design, using Robust Design method. It was found that the shallow step depth was statistically significant in affecting the variation of flying height, therefore the level of the shallow step depth should be chosen to minimize the variation of flying height.

Keywords

References

  1. Data Storage Thermal Asperities: MR Heads Face New Dangers Sawatzky, E.
  2. ASME Journal of Tribology v.105 Flying Characteristics of the Zero-Load Slider Bearing White, J. W.
  3. IEEE Transactions of Magnetics v.19 Dynamic Simulation of the Zero-Load Slider Bearing White, J. W.
  4. IEEE Transactions of Magnetics v.36 no.6 Robust Design Optimization Techniques for Ultra-Low Flying Sliders O'Hara, M. A.;Bogy, D. B.
  5. ASME Journal of Tribology v.121 An Optimization Method for Design of Subambient Pressure Shaped Rail Sliders Choi, D.-H.;Kang, T.-S.
  6. Quality Engineering Using Robust Design Phadke, M. S.;