Noise Control of Hard Disk Drive Using Structural Mobility Analysis

STRUCTURAL MOBILITY 분석을 통한 하드 디스크 드라이브의 소음제어(현장개발사례: SAMSUNG HDD 'SPINPOINT V20/P20 SERIES' )

  • 강성우 (삼성종합기술원 MEMS Lab) ;
  • 한윤식 (삼성종합기술원 MEMS Lab) ;
  • 황태연 (삼성종합기술원 MEMS Lab) ;
  • 손영 (삼성종합기술원 MEMS Lab) ;
  • 오동호 (삼성종합기술원 MEMS Lab) ;
  • Published : 2001.05.01

Abstract

Structural acoustic modification method based on the structural mobility analysis is applied to reduce the structure-borne noise radiated from hard disk drive system. Sound intensity techniques and ODS(Operational Deflection Shape) techniques are also used in order to provide the structural acoustic information for the mobility modification. The sound intensity is for the acoustic visualization of the noise source locations, and the ODS is for the visualization of the vibration pattern and its dynamic characteristics of the noise sources. Using visualization information of sound and vibration, local structural input mobility is reduced in the frequency band of interest by designing asymmetrical wave-stringer structure in the wave-number domain as well as frequency domain. The overall sound pressure level is reduced by 4dB and its controlled sound power radiated from the disk drive is proved to under 2.8Bel in idle-spinning mode and 3.1 Bel in random-seeking mode, which are the lowest noise levels in the hard disk drive industry.

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