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作 者:葛川[1] 李朋志[1] 徐立松[1] 李佩玥[1]
机构地区:[1]中国科学院长春光学精密机械与物理研究所超精密光学工程研究中心,长春130033
出 处:《国外电子测量技术》2015年第6期58-61,共4页Foreign Electronic Measurement Technology
基 金:国家重大科技专项02专题(2009ZX02205)
摘 要:超精密平台中使用压电陶瓷驱动器提供位移进给,采用集成应变式位移传感器的驱动器能够减小磁滞与蠕变特性,提高位移控制精度。设计并实现应变式位移传感器位移检测电路,介绍电阻应变式位移传感器位移测量原理;设计位移传感器电路,采用仪表放大器、同相衰减器与低通滤波器电路得到正比于位移变化的电压信号并输出;最后对位移传感器电路进行实验验证。实验结果表明:设计的传感器检测电路的电噪声峰-峰值为0.390mV,输出电压分辨率小于0.6mV,对应的位移传感器的分辨可达1nm,能够有效提高压电陶瓷的精度。Ultra-precision platform uses piezoelectric ceramic drivers to provide displacement feed. Strain gauge displace- ment sensor integrated drivers can be used to reduce the hysteresis and creep characteristics and improve precision of the displacement control. This paper designs and implements the displacement measuring circuit for the strain displacement sensor. The measurement principle of the resistance strain displacement sensor is introduced. Then, the displacement sensor circuit is designed, using instrumentation amplifier in-phase attenuator and low-pass filter to obtain and output voltage signal that proportional to displacement change. Finally, the experiments of the displacement sensor circuit are carried out. The experiment results indicate that the electronic noise of the sensor circuit is 0. 390 mV (peak-to-peak val- ue), and the resolution of the output voltage is less than 0. 6 mV, the corresponding displacement resolution is up to 1 nm, which can effectively improve the precision of the piezoelectric ceramic.
分 类 号:TN721.1[电子电信—电路与系统]
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