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마이크로 구조물의 원자현미경 캔티레버 부착을 위한 정밀기구개발
박창용(C. H. Park),채영훈(Y. H. Chae),권현규(H. K. Kweon) 한국기계가공학회 2013 한국기계가공학회지 Vol.12 No.6
Recently, the cell adhesion phenomenon that occurs in or between cells and other substances has become an important field of research in biology and biomedical engineering. Among the research, the foundational studies primarily experiment using biomedical materials (e.g. Glass Beads) attached to an AFM cantilever. For cell adhesion research, the mechanism where biomedical materials can be attached to the cantilever must be developed for this purpose; however, the mechanism remains an insufficient step. In this paper, a new stage where the Glass Bead can be attached to the cantilever is designed and fabricated;, the mm range movement in the stage is controlled using the stepping motor with a minimum displacement of 1 ㎛. The adhesive flow is also controlled using a PZT actuator. In addition, through the air suction, the cantilever holder can be fixed to the stage. The new stage including the bond inflows mechanism is evaluated and analyzed using theory and experiments.
펨토초 레이저 주입잠금법을 이용한 광주파수 빗의 모드 선택과 증폭
문한섭,김억봉,박상언,박창용,Moon, H.S.,Kim, E.B.,Park, S.E.,Park, C.Y. 한국광학회 2006 한국광학회지 Vol.17 No.3
펨토초 레이저 주입잠금법을 이용하여 펨토초 광주파수 벗에서 특정한 주파수 모드를 선택하고 증폭시켰다. 실험에서는 모드 잠금된 Ti:sapphire레이저를 지배 레이저로 그리고 단일모드로 발진하는 반도체 레이저를 종속 레이저로 사용하였다. 모드 잠금된 Ti:sapphire레이저를 중심파장 794.7 nm, 밴드 폭 1.5 nm의 간섭필터를 통과한 후 반도체 레이저에 주입잠금시켰다. 주입잠금된 반도체 레이저가 모드 잠금된Ti:sapphire레이저의 펄스 반복율과 일치하는 100.5 MHz간격의 모드 $3{\sim}4$개가 동시에 발진되는 것 확인할 수 있었다. 펨토초 레이저 주입잠금법에 의해서 선택된 모드의 출력을 수천 배 증폭시킬 수 있었다. We have demonstrated the selection and the amplification of the components of an optical frequency comb using femto-second laser injection-locking technique. We used a mode-locked Ti:sapphire laser as a master laser and a single-mode diode laser as a slave laser. After passing through the interference filter with the center wavelength 794.7 nm and the transmittance bandwidth 1.5 nm, the optical frequency comb by mode-locked femto-second laser was injected into the slave laser. The injection-locked slave laser had $3{\sim}4$ multi-mode with the mode spacing 100.5 MHz, whichcorrespond to the repetition rate of a mode-locked Ti:sapphire laser. The power of the modes selected by femto-second laser injection-locking technique was amplified to several thousands times
노명규(M. G. Noh),박수진(S. J. Park),박창용(C. Y. Park) 한국정밀공학회 2004 한국정밀공학회 학술발표대회 논문집 Vol.2004 No.10월
Bearingless motors are the rotational electric machine which utilize a common magnetic structure for rotation and magnetic suspension. Since the bearing function is combined with the motor, the shaft length can be shortened resulting in higher critical speeds. Relationship between suspension force and current of bearingless motor is clearly derived by prior research. However, relationship between displacement of rotor and suspension force is not precisely defined. In this paper, we present model of bearingless motor describing the radial force variation due to the movement of the rotor. Using a distributed magnetic circuit and maxwell stress tensor, we derived a mathematical expression for the radial force. For a slotless bearingless motor, we are able to find an analytical model presented in the form of stiffness. For a slotted motor, we can compute the stiffness by semi-analytical analysis. This model is validated by a finite-element-analysis.