首页> 外文会议>International Conference on Electronics Packaging Technology(ICEPT2005); 20050830-0902; Shenzhen(CN) >Design and Simulation of a Macro-micro Dual-drive High Acceleration Precision XY-stage for IC Bonding Technology
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Design and Simulation of a Macro-micro Dual-drive High Acceleration Precision XY-stage for IC Bonding Technology

机译:用于集成电路键合技术的宏微双驱动高加速度精密XY工作台的设计与仿真

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摘要

A macro-micro dual-drive high acceleration precision XY-stage is presented in this paper. Combining macro with micro actuator, a system of large workspace and high acceleration with high resolution of motion is developed. Two linear voice coil motors (VCM) are used into the macro motion, and two PZT-driven micro stages of high frequency are mounted on each motor to compensate the position error. A novel elastic decoupling mechanism is used in the stage to avoid the moving gap. The high resolution linear encoder is integrated into the closed-loop feedback, which is used to measure the position of the output end of macro stage and micro stage. By using the mechanical dynamic simulation and FEA method, the decoupling mechanism and the micro mechanism are optimized, and the dynamic characteristics of the high acceleration stage are investigated, which is based on the rigid-flexible dynamic analysis of mechanical system. The simulation results show that this new configuration allows a workspace of 25 X 25mm~2 and an acceleration exceeding 100m/s~2 with a resolution of motion better than 10nm. The improved significantly performance of the XY-stage can meet the requirement of the rapid development of IC bonding technology.
机译:本文介绍了一种宏微双驱动高加速度精度XY工作台。将微距执行器与微执行器相结合,开发了一个大工作空间,高加速度和高分辨率运动的系统。宏运动中使用了两个线性音圈电机(VCM),并且每个电机上安装了两个PZT驱动的高频微级,以补偿位置误差。舞台上使用了一种新颖的弹性去耦机制,以避免移动间隙。高分辨率线性编码器集成到闭环反馈中,用于测量宏级和微级输出端的位置。利用机械动力学仿真和有限元分析方法,对机械系统的去耦机制和微观机制进行了优化,以机械系统的刚柔动力分析为基础,研究了高加速阶段的动力学特性。仿真结果表明,这种新配置允许工作空间为25 X 25mm〜2,加速度超过100m / s〜2,运动分辨率优于10nm。 XY平台的显着改善性能可以满足IC键合技术快速发展的要求。

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