A MEMS piezoelectric hydrophone with high sensitivity and wide bandwidth

IF 2.6 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Physica Scripta Pub Date : 2024-08-06 DOI:10.1088/1402-4896/ad68db
Dongdong Liu, Lidong Zhang, Mengxiao Zhang and Hongquan Zhang
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Abstract

To solve the problems of low sound pressure sensitivity and narrow operating bandwidth of hydrophones, this paper proposes a MEMS piezoelectric hydrophone with a corrugated structure substrate. This design is improved from two aspects, on the one hand, the MEMS technology is used to make the aluminum oxide substrate into a corrugated structure, the corrugated structure can make the hydrophone work with better linearity, and at the same time broaden the hydrophone’s operating bandwidth; on the other hand, the array design is utilized to improve the sound pressure sensitivity by integrating four identical sensitive cores in the same piece of hydrophone. The test results show that the sound pressure sensitivity of the MEMS piezoelectric hydrophone of this design is better than −207.6 dB in the operating bandwidth of 10 ∼ 3800 Hz, and reaches the highest −195.5 dB sound pressure sensitivity at the input signal frequency of 2500 Hz.
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具有高灵敏度和宽带宽的 MEMS 压电水听器
为了解决水听器声压灵敏度低、工作带宽窄的问题,本文提出了一种采用波纹结构基板的 MEMS 压电水听器。该设计从两个方面进行了改进,一方面,利用 MEMS 技术将氧化铝基板制成波纹结构,波纹结构可以使水听器的线性度更好,同时拓宽了水听器的工作带宽;另一方面,利用阵列设计将四个相同的敏感磁芯集成在同一片水听器中,提高了声压灵敏度。测试结果表明,这种设计的 MEMS 压电水听器在 10 ∼ 3800 Hz 工作带宽内的声压灵敏度优于 -207.6 dB,在输入信号频率为 2500 Hz 时达到最高的 -195.5 dB 声压灵敏度。
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来源期刊
Physica Scripta
Physica Scripta 物理-物理:综合
CiteScore
3.70
自引率
3.40%
发文量
782
审稿时长
4.5 months
期刊介绍: Physica Scripta is an international journal for original research in any branch of experimental and theoretical physics. Articles will be considered in any of the following topics, and interdisciplinary topics involving physics are also welcomed: -Atomic, molecular and optical physics- Plasma physics- Condensed matter physics- Mathematical physics- Astrophysics- High energy physics- Nuclear physics- Nonlinear physics. The journal aims to increase the visibility and accessibility of research to the wider physical sciences community. Articles on topics of broad interest are encouraged and submissions in more specialist fields should endeavour to include reference to the wider context of their research in the introduction.
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