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FFS 모드의 공통전극과 화소전극 사이의 절연층 두께에 따른 전기광학 특성
정준호,하경수,임영진,유일수,정연학,유재진,김경현,이승희,Jung, Jun-Ho,Ha, Kyung-Su,Lim, Young-Jin,Yoo, Il-Sou,Jeong, Yeon-Hak,Lyu, Jae-Jin,Kim, Kyeong-Hyeon,Lee, Seung-Hee 한국전기전자재료학회 2009 전기전자재료학회논문지 Vol.22 No.7
We have studied electro-optic characteristics as a function of passivation thickness existing between common electrode and pixel electrodes in the fringe-field switching (FFS) mode using the LC with positive dielectric anisotropy. A steep increase in the transmission is observed with increase in the passivation layer from $0.29{\mu}m$ to $1.09{\mu}m$ and thereafter it almost saturates over the $1.09{\mu}m$ of passivation layer. This saturation is mainly associated with correlation between transmittance at the center region of pixel electrode and at the center region between pixel electrodes. From the results, optimal thickness of passivation layer can be defined.
Study of Damper Shape for Vibration Reduction Effect of Treadmill
권혁동(Hyuk Dong Kwon),하경수(Kyeong Su Ha),박동환(Dong Hwan Park) Korean Society for Precision Engineering 2021 한국정밀공학회지 Vol.38 No.1
As interest in the quality of life has recently increased, there is a growing interest and demand for exercise equipment, such as indoor treadmills or cycles, which can be used at home. However, the use of such indoor exercise equipment has caused social problems by generating noise between floors and causing inconvenience to neighbors. In particular, treadmills that generate a lot of vibration during use cause more social problems in an assembly building, such as an apartment. The purpose of this study is to design dampers of various shapes and to develop dampers with high vibration damping effects through vibration analysis. The damper was installed at the lower end of the treadmill to reduce vibration from the product. Three types of dampers were designed by referring to the damper shape of the existing treadmill, and the vibration reduction effect of each damper shape was verified through structural analysis of the magnitude of vibration generated from the bottom surface of each damper.