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Capacitance-Based Frequency Adjustment of Micro Piezoelectric Vibration Generator

机译:基于电容的微压电振动发生器的频率调节

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摘要

Micro piezoelectric vibration generator has a wide application in the field of microelectronics. Its natural frequency is unchanged after being manufactured. However, resonance cannot occur when the natural frequencies of a piezoelectric generator and the source of vibration frequency are not consistent. Output voltage of the piezoelectric generator will sharply decline. It cannot normally supply power for electronic devices. In order to make the natural frequency of the generator approach the frequency of vibration source, the capacitance FM technology is adopted in this paper. Different capacitance FM schemes are designed by different locations of the adjustment layer. The corresponding capacitance FM models have been established. Characteristic and effect of the capacitance FM have been simulated by the FM model. Experimental results show that the natural frequency of the generator could vary from 46.5 Hz to 42.4 Hz when the bypass capacitance value increases from 0 nF to 30 nF. The natural frequency of a piezoelectric vibration generator could be continuously adjusted by this method.
机译:微型压电振动发生器在微电子领域具有广泛的应用。制造后其固有频率不变。但是,当压电发电机的固有频率和振动频率的来源不一致时,就不会发生共振。压电发电机的输出电压将急剧下降。它通常无法为电子设备供电。为了使发电机的固有频率接近振动源的频率,本文采用了电容FM技术。通过调整层的不同位置设计不同的电容FM方案。建立了相应的电容FM模型。 FM模型已经模拟了电容FM的特性和影响。实验结果表明,当旁路电容值从0 nF增加到30 nF时,发电机的固有频率可以在46.5 Hz到42.4 Hz之间变化。通过这种方法可以连续地调节压电振动发生器的固有频率。

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