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ELECTRIC FIELD MICROSENSOR BASED ON THE STRUCTURE OF PIEZOELECTRIC INTERDIGITATED CANTILEVER BEAMS 被引量:1
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作者 Feng Ke Tong Jianhua +2 位作者 Wang Yu Fang Dongming Xia Shanhong 《Journal of Electronics(China)》 2014年第6期497-504,共8页
This paper presents the design, fabrication, and preliminary experimental result of an electric field microsensor based on the structure of piezoelectric interdigitated cantilevers with staggered vertical vibration mo... This paper presents the design, fabrication, and preliminary experimental result of an electric field microsensor based on the structure of piezoelectric interdigitated cantilevers with staggered vertical vibration mode. The working principle of this electric field microsensor is demonstrated, and the induced charges and structural parameters of this microsensor are simulated by the finite element method. The electric field microsensor was fabricated by Micro-Electro Mechanical Systems(MEMS) technique. Each cantilever is a multilayer compound structure(Al/Si3N4/ Pt/PZT/Pt/ Ti/SiO 2/Si), and Piezoelectric, PieZ oelectric ceramic Transducer(PZT)(PbZ rxTi(1–x)O3) layer, prepared by sol-gel method, is used as the piezoelectric material to drive the cantilevers vibrating. This electric field microsensor was tested under the DC electric field with the field intensity from 0 to 5×104 V/m. The output voltage signal of the electric field microsensor has a good linear relationship to the intensity of applied electric field. The performance could be improved with the optimized design of structure, and reformative fabrication processes of PZT material. 展开更多
关键词 Micro-ElectroM echanical Systems(MEMS) Electric field microsensor piezOELECTRIC piez oelectric ceramic Transducer(PZT) driven
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压电超声微马达精密驱动的二维微动台 被引量:12
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作者 董蜀湘 王树昕 +1 位作者 邱海波 李龙土 《压电与声光》 CSCD 北大核心 1999年第5期360-362,384,共4页
发展了一种采用压电超声微马达精密驱动控制的二维微动台及其控制电路。利用压电超声马达的低速、大扭矩、高分辨率特性,直接驱动微动台的微调旋钮,可获得很高的位移分辨率和大的驱动力。利用一个单片机控制系统,通过对超声马达驱动... 发展了一种采用压电超声微马达精密驱动控制的二维微动台及其控制电路。利用压电超声马达的低速、大扭矩、高分辨率特性,直接驱动微动台的微调旋钮,可获得很高的位移分辨率和大的驱动力。利用一个单片机控制系统,通过对超声马达驱动信号的斩波控制实现了微动台步进位移的连续调整。已研制的二维微动台,采用一对直径为15 m m ,长25 m m 的压电超声微马达作为驱动控制元件,已获得12 nm 的位移分辨率和10 N的驱动力。 展开更多
关键词 微动台 压电超声马达 精密控制
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