微透镜
镜头(地质)
惯性
光学
运动学
焦距
阶段(地层学)
激光器
计算机科学
材料科学
物理
经典力学
生物
古生物学
作者
Yuuka Irie,Hisayuki Aoyama,Junichi Kubo,Takahiro Fujioka,Takashi Usuda,Takashi Usuda,Opto-Module R and D Section, New Business Development Department, Nalux Co.,Ltd.,National Metrology Institute Japan (NMIJ), Advanced Industrial Science and Technology (AIST)
标识
DOI:10.20965/jrm.2009.p0635
摘要
This paper details the development of an inertia-driven X-Y microstage and simple gripper for a pick-up lens in Blu-ray disc alignment incorporating inertia-driven microsliders on V-shaped grooves and a micropart handler. The microslider is driven by impact generated by a mass connected with a piezo element. We made a kinematic model for theoretical analysis on the X-Y microstage and gave the microinertia X-Y stage a sophisticated design.The X stage is stacked on the Y stage to provide fine in-plane positioning. Practical applications include multiple lens component assembly in which the optical lens must be centered within a tolerance of less than 100 nm. Experiments confirmed successful achievement of this microlens positioning in the center of the reference lens axis as observed by the laser interference fringe.
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