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송명규(Song, Myeong-Gyu),손동훈(Son, Dong-Hun),박노철(Park, No-Cheol),박경수(Park, Kyoung-Su),박영필(Park, Young-Pil) 한국소음진동공학회 2011 한국소음진동공학회 논문집 Vol.21 No.2
Optical image stabilization is a device to compensate the camera movement in the exposure time. The compensation is implemented by movable lens or image sensor that adjusts the optical path to the camera movement. Generally, the camera is moved by a handshake, thus the handshake is considered as an external disturbance. However, there are many other vibrations such as car and train vibration. In this paper, the optical image stabilization system in high frequency region is presented. Notch filter and lead compensator are designed and applied to improve the stability without changing the actuator. To verify the performance of the optical image stabilization system in high frequency region, the experiment equipment with moving object is established. It is confirmed that the opticalimage stabilization system does not diverge at the resonance frequency.
Design of Moving Magnet Type Optical Pickup Actuator with High Frequencies of the Flexible Modes
송명규(Song, Myeong-Gyu),김윤기(Kim, Yoon-Ki),박영필(Park, Young-Pil),유정훈(Yoo, Jeong-Hoon),박노철(Park, No-Cheol) 한국소음진동공학회 2007 한국소음진동공학회 논문집 Vol.17 No.11
Data transfer rate and storage capacity are main criteria of the performance of the optical disk drive. The highest data transfer rate and the largest storage capacity is most desirable. To increase these performances, the actuator of the optical disk drive should have a high servo bandwidth to compensate the vibration of an optical disk. The servo bandwidth is limited by some flexible modes of the actuator, thus it is essential to increase the natural frequencies of the flexible modes. In this paper, we suggested a moving magnet type actuator having high frequencies of the flexible modes. Generally, the moving magnet type actuator has an advantage to increase the natural frequencies of the flexible modes because the moving magnet type actuator has simple structure and the Young's modulus of magnet is high. However, large moving mass and inefficiency of EM(electromagnetic) circuit cut down driving sensitivities of the actuator. To improve driving sensitivities, we designed the model with the closed electromagnetic circuit for tracking direction. In addition, driving sensitivities and the natural frequencies of the flexible modes were improved by using DOE(design of experiments) for electromagnetic circuit and modifying the lens holder.
모바일 카메라 모듈용 볼베어링 방식 OIS 액추에이터 설계
송명규(Myeong-Gyu Song),손동훈(Dong-Hun Son),박노철(No-Cheol Park),박경수(Kyoung-Su Park),박영필(Young-Pil Park),임수철(Soo-Cheol Lim) 한국소음진동공학회 2010 한국소음진동공학회 논문집 Vol.20 No.4
Optical image stabilization is a technique to compensate the image blurring caused by some vibrations of camera at the exposure time. Pitching and yawing of camera are sensitive to the image quality so they are usually compensated by optical image stabilization. Corresponding pitching and yawing of a camera, a lens or the image sensor is translated in two-axis direction and then the optical path of camera is adjusted. In this paper, two-axis OIS actuator for mobile camera module is suggested and designed. The actuator is a voice-coil actuator that uses the electromagnetic force of voice-coil to make compensation motions. And ball bearing is used to reduce friction force. Magnetic attractive force between magnets and yokes acts as a preload and magnet springs. Prototype actuator is fabricated to measure the friction force and to verify the feasibility of the OIS actuator with ball bearing. At last, the actuator is improved in consideration of driving force and friction force. Design of experiments is used for designing the actuator.