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首页> 外文期刊>Journal of Microelectromechanical Systems >A Pulsed High-Voltage Generator Utilizing a Monolithic PZT Element and Evaluation of Nonlinear Piezoelectric Behavior in Transient Mode
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A Pulsed High-Voltage Generator Utilizing a Monolithic PZT Element and Evaluation of Nonlinear Piezoelectric Behavior in Transient Mode

机译:利用整体式PZT元件的脉冲高压发生器并评估瞬态模式下的非线性压电行为

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This paper presents a monolithic pulsed high-voltage (HV) generator utilizing a single piezoelectric element (PZT51 disk, 5 mm in diameter and 740 $mu{rm m}$ thick) with electrodes series-connected via a flexible polyimide cable. The design, fabrication, assembly, and testing of the HV generator are described. In response to transient mechanical load, the HV generator is evaluated within the stress range from 1 to 5 MPa, and the corresponding peak output voltages vary from 100 to 900 V. Performance comparison between single-electrode pair HV generator and three-electrode pair device indicates series-connected electrodes on a monolithic PZT element greatly boost the output voltage under the same mechanical load conditions. In further tests, the generated high-voltage pulses exceed 1.35 kV and are successfully used to initiate microdischarges on monolithically patterned electrodes across a 75 $mu{rm m}$ air gap. The measured capacitance of the test HV generator is 25 pF and the calculated charge delivered to the terminal electrodes in each discharge is 34 nC. The nonlinear piezoelectric property of the PZT51 in transient mode is studied. We experimentally obtain a linear increase of the effective piezoelectric coefficient as the applied pressure increases within the range from 1 to 5 MPa. [2012-0356]
机译:本文提出了一种利用单个压电元件(直径为5 mm且直径为740的PZT51圆盘)的整体式脉冲高压(HV)发生器。 $ 厚),并通过一条柔性聚酰亚胺电缆串联电极。描述了高压发生器的设计,制造,组装和测试。响应瞬态机械负载,在1到5 MPa的应力范围内评估HV发生器,并且相应的峰值输出电压在100到900 V之间变化。单电极对HV发生器和三电极对设备之间的性能比较表示在相同的机械负载条件下,单片PZT元件上的串联电极极大地提高了输出电压。在进一步的测试中,所产生的高压脉冲超过1.35 kV,并成功用于在75的整体式图案化电极上引发微放电。<公式> 气隙。测试HV发生器的测得电容为25 pF,在每次放电中传递到端子电极的计算电荷为34 nC。研究了瞬态模式下PZT51的非线性压电特性。随着施加压力在1到5 MPa范围内的增加,我们通过实验获得了有效压电系数的线性增加。 [2012-0356]

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