DOI QR코드

DOI QR Code

Design and Evaluation of An Electromagnetic Driven Actuator for Near-field Optical Recording System

근접장 광기록 시스템용 전자기구동 액추에이터의 설계 및 평가

  • 김석중 (삼성전자(주) 중앙연구소 광메카 Lap) ;
  • 이용훈 (삼성전자(주) 중앙연구소 광메카 Lap) ;
  • 이철우 (삼성전자(주) 중앙연구소 광메카 Lap) ;
  • 서중언 (삼성전자(주) 중앙연구소 광메카 Lap)
  • Published : 2000.11.01

Abstract

Combination of magnetic recording technology and optical recording technology such as Near Field Optical Recording is watched recently. In order to accomplish this technology, the development of an electromagnetic driven mm-sized mirror shifting laser beam in track direction have to needed. In Near Field Optical Recording System, shifting laser beam in track direction mean as fine tracking and means as coarse tracking. Therefore in Near Field Optical Recording, 2-stage actuator is composed of servo controller in reading or recording information on disc layer. In our research, through design and simulation process of driven mm-sized mirror, we arrange systematically design process of driven mm-sized mirror having good frequency transfer characteristics. Design and simulation processes included modal analysis of spring, calculation of magnetic moment according to the number of turns and geometric configuration of coil and magnetic circuit analysis meaning that calculation of magnetic flux density in air gap of magnetic circuit. After that we design and make parts of driven mm-sized mirror, assemble and evaluate our electriomagnetic driven mm-sized mirror. we compared design values with actual characteristic values and present solution scheme. Through these processes we performed manufacturing of an electromagnetic driven mm-sized mirror having good frequency-domain characteristics and high sensitivity characteristics.

Keywords

References

  1. Myong R. KIM, June-Hyoung PARK, Wonho JHE, 2000, 'Near-Field Optical Recording by Reflection-Mode Near-Field Scanning Optical Microscope : Submicron-Sized Marks and Their Thermodynamic Stability,' Jpn. J. Appl. Phys., Vol.39(2000), pp. 984-985 https://doi.org/10.1143/JJAP.39.984
  2. Kusato HIROTA, Tom D. MILSTER, Van ZHANG, J. Kevin ERWIN, 2000, 'Design of a Near-Field Probe for Optical Recording Using a 3-Dimensional Finite Difference Time Domain Method,' Jpn. J. Appl. Phys., Vol.39(2000), pp. 973-975 https://doi.org/10.1143/JJAP.39.973
  3. ChulWoo Lee et al., 1998, 'A Catadioptric System For Near Field Application,' International Symposium on Optical Memory, Technical Digest, pp. 156-157
  4. 민영훈, 김용권, 1999, '단층 다결정 실리콘 마이크로머시닝 기술로 제작된 정전형 마이크로 미러어레이의 모델링 및 측정,' 대한전기학회논문지, 제 48C 권, 1 호, pp. 62-67
  5. Raanan A. Miller, Yu-Chong Tai, Guoda Xu, John Bartha, and Freddie Lin, 1997, 'An Electromagnetic MEMS 2x2 Fiber Optic Bypass Switch,' Technical Digest, International Conference on Solid-State Sensors and Actuators (Transducers '97), Vol. 1 , pp. 89-92 https://doi.org/10.1109/SENSOR.1997.613589
  6. Raanan A. Miller, Geoffery W. Burr, Yu-Chong Tai, and Demetri Psaltis, 1996, 'Electormagnetic MEMS scanning mirrors for holographic data storage,' Proceedings Solid-State Sensors and Actuators Workshop, pp. 183-186
  7. A. Feustel, O. Krusemark, J. Muller, 1998, 'Numerical simulation and optimization of planar electromagnetic actuators,' Sensors and Actuators, A 70, pp. 276-282 https://doi.org/10.1016/S0924-4247(98)00103-4
  8. 권대갑, 이문구, 1997, '광픽업 미세 구동기의 최적설계,' 대한기계학회논문집 A, 제 21 권 5 호, pp. 819-827
  9. Alan B.Marchant, 1990, 'Optical Recording,' Addison-Wesley Publishing Company, pp. 165-193
  10. Egor P. Popov, 1990, 'Engineering Mechanics of Solids,' Prentice-Hall International, Inc.