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具有两个压电元件的氧化锌薄膜压电微机电系统振动能量采集器,用于实现更高的输出性能。

ZnO thin film piezoelectric MEMS vibration energy harvesters with two piezoelectric elements for higher output performance.

作者信息

Wang Peihong, Du Hejun

机构信息

Key Laboratory of Opto-Electronic Information Acquisition and Manipulation of Ministry of Education, Anhui University, Hefei 230601, China.

School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

Rev Sci Instrum. 2015 Jul;86(7):075002. doi: 10.1063/1.4923456.

Abstract

Zinc oxide (ZnO) thin film piezoelectric microelectromechanical systems (MEMS) based vibration energy harvesters with two different designs are presented. These harvesters consist of a silicon cantilever, a silicon proof mass, and a ZnO piezoelectric layer. Design I has a large ZnO piezoelectric element and Design II has two smaller and equally sized ZnO piezoelectric elements; however, the total area of ZnO thin film in two designs is equal. The ZnO thin film is deposited by means of radio-frequency magnetron sputtering method and is characterized by means of XRD and SEM techniques. These ZnO energy harvesters are fabricated by using MEMS micromachining. The natural frequencies of the fabricated ZnO energy harvesters are simulated and tested. The test results show that these two energy harvesters with different designs have almost the same natural frequency. Then, the output performance of different ZnO energy harvesters is tested in detail. The effects of series connection and parallel connection of two ZnO elements on the load voltage and power are also analyzed. The experimental results show that the energy harvester with two ZnO piezoelectric elements in parallel connection in Design II has higher load voltage and higher load power than the fabricated energy harvesters with other designs. Its load voltage is 2.06 V under load resistance of 1 MΩ and its maximal load power is 1.25 μW under load resistance of 0.6 MΩ, when it is excited by an external vibration with frequency of 1300.1 Hz and acceleration of 10 m/s(2). By contrast, the load voltage of the energy harvester of Design I is 1.77 V under 1 MΩ resistance and its maximal load power is 0.98 μW under 0.38 MΩ load resistance when it is excited by the same vibration.

摘要

本文介绍了基于氧化锌(ZnO)薄膜压电微机电系统(MEMS)的两种不同设计的振动能量采集器。这些采集器由硅悬臂梁、硅质量块和ZnO压电层组成。设计I有一个较大的ZnO压电元件,设计II有两个较小且尺寸相同的ZnO压电元件;然而,两种设计中ZnO薄膜的总面积相等。ZnO薄膜通过射频磁控溅射法沉积,并采用XRD和SEM技术进行表征。这些ZnO能量采集器采用MEMS微加工制造。对制造的ZnO能量采集器的固有频率进行了模拟和测试。测试结果表明,这两种不同设计的能量采集器具有几乎相同的固有频率。然后,详细测试了不同ZnO能量采集器的输出性能。还分析了两个ZnO元件串联和并联对负载电压和功率的影响。实验结果表明,设计II中两个ZnO压电元件并联的能量采集器比其他设计制造的能量采集器具有更高的负载电压和更高的负载功率。当它受到频率为1300.1 Hz、加速度为10 m/s²的外部振动激励时,在1 MΩ负载电阻下其负载电压为2.06 V,在0.6 MΩ负载电阻下其最大负载功率为1.25 μW。相比之下,设计I的能量采集器在相同振动激励下,在1 MΩ电阻下负载电压为1.77 V,在0.38 MΩ负载电阻下最大负载功率为0.98 μW。

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