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Study on the equivalent circuit of a microfabricated ultrasonic micro-knife and PZT driving power

机译:微耦合超声波微刀和PZT驱动力的等效电路研究

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In this paper an equivalent circuit model is established for an ultrasonic micro-knife, which is fabricated by using MEMS Technology and driven by the piezoelectric PZT-4 plates. In this model, the overall electrical characteristics of micro-knife is equivalent to a RC network, the mechanical properties reflected in a form of series resonance branch, and the parameter value of the components in this resonance branch will changed when external load conditions varied. Based on these analysis, we developed a piezoelectric device driving power system using high-voltage operational amplifier, current power amplify circuit, adjustable compensation circuit and dual independent power sources. The tested results demonstrate that the developed power supply has advantages of high frequency, low-power consume, high-power output, small size, good dynamic response and stability in driving capacitive loads, and can meet well with needs of the micro-knife.
机译:在本文中,建立了一种用于超声波微刀的等效电路模型,其通过使用MEMS技术和由压电PZT-4板驱动而制造。在该模型中,微刀的总电气特性等同于RC网络,在串联谐振分支的形式中反射的机械性能,并且当外部负载条件变化时,该谐振分支中的组件的参数值将改变。基于这些分析,我们开发了一种使用高压运算放大器,电流功率放大电路,可调节补偿电路和双独立电源的压电装置驱动电力系统。测试结果表明,发达的电源具有高频,低功耗消耗,高功率输出,体积小,动态响应良好以及驱动电容负载的稳定性的优点,并且可以满足微刀的需求。

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