Zhao Bo, Wang Lei, Tan Jiu-Bin
Harbin Institute of Technology, D-403 Science Park, No. 2 Yikuang Street, Harbin 150080, China.
Sensors (Basel). 2015 Sep 8;15(9):22530-46. doi: 10.3390/s150922530.
This paper presents the design and realization of a three degrees of freedom (DOFs) displacement measurement system composed of Hall sensors, which is built for the XYθz displacement measurement of the short stroke stage of the reticle stage of lithography. The measurement system consists of three pairs of permanent magnets mounted on the same plane on the short stroke stage along the Y, Y, X directions, and three single axis Hall sensors correspondingly mounted on the frame of the reticle stage. The emphasis is placed on the decoupling and magnetic field fitting of the three DOFs measurement system. The model of the measurement system is illustrated, and the XY positions and θZ rotation of the short stroke stage can be obtained by decoupling the sensor outputs. A magnetic field fitting by an elliptic function-based compensation method is proposed. The practical field intensity of a permanent magnet at a certain plane height can be substituted for the output voltage of a Hall sensors, which can be expressed by the elliptic function through experimental data as the crucial issue to calculate the three DOFs displacement. Experimental results of the Hall sensor displacement measurement system are presented to validate the proposed three DOFs measurement system.
本文介绍了一种由霍尔传感器组成的三自由度位移测量系统的设计与实现,该系统用于光刻掩模版台短行程阶段的XYθz位移测量。测量系统由三对永磁体组成,它们沿Y、Y、X方向安装在短行程阶段的同一平面上,还有三个单轴霍尔传感器相应地安装在掩模版台的框架上。重点在于三自由度测量系统的解耦和磁场拟合。阐述了测量系统的模型,通过对传感器输出进行解耦可获得短行程阶段的XY位置和θZ旋转。提出了基于椭圆函数补偿方法的磁场拟合。永磁体在某一平面高度处的实际场强可替代霍尔传感器的输出电压,通过实验数据用椭圆函数表示该输出电压是计算三自由度位移的关键问题。给出了霍尔传感器位移测量系统的实验结果,以验证所提出的三自由度测量系统。