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基于悬臂梁的压电微机械超声换能器,采用后处理软互连策略用于空气中测距。

Cantilever beam-based piezoelectric micromachined ultrasonic transducer with post processing soft interconnecting strategy for in-air rangefinding.

作者信息

Wang Yan, Chen Peng, Zhang Junning, Li Zihan, Yu Hongbin

机构信息

School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, 430074, China.

Optics Valley Laboratory, Hubei, 430074, China.

出版信息

Microsyst Nanoeng. 2025 May 19;11(1):97. doi: 10.1038/s41378-025-00939-x.

Abstract

Despite of good performance immunity to stress and high transmitting/receiving sensitivity advantages, the fabrication imperfection induced asynchronous vibration and the resultant prolonged ring-down tail severely limit the potential of the cantilever beam-based piezoelectric micromachined ultrasonic transducer (PMUT) in pulse-echo applications as transceiver. To address this issue, a novel post processing soft interconnecting strategy is presented. In this case, specific reservoir structure is intentionally integrated into the cantilever-beam based PMUT design, under the assistance of which the liquid PDMS can be accurately applied and spontaneously driven to seal the air gaps between the already released cantilever beams via the capillary effect. After curing, the PDMS will be transformed from liquid to solid and serve as soft interconnecting spring between adjacent cantilever beams so as to force them to vibrate in synchronous mode. At the same time, this treatment does not change the existing fabrication process and has little effect on the original PMUT performance. From both of the mechanical and acoustic response measurement results, effective suppression for the asynchronous vibration and significant reduction of the ring-down tail have been successfully demonstrated for the treated PMUT device. In the subsequent pulse-echo rangefinding experiment, a distance detection range covering from 270.8 mm to 3.8 m with a divergence angle close to 170° has been achieved when it is driven at resonant frequency of 69.2 kHz with 40 V, 40-cycles sinusoidal signal. Given the simple yet effective treatment, the proposed strategy shows great prospective in developing high performance PMUT for in-air rangefinding applications.

摘要

尽管基于悬臂梁的压电微机械超声换能器(PMUT)具有良好的抗应力性能和高发射/接收灵敏度优势,但制造缺陷引起的异步振动以及由此产生的延长的衰减尾严重限制了其在脉冲回波应用中作为收发器的潜力。为了解决这个问题,提出了一种新颖的后处理软互连策略。在这种情况下,特意将特定的储液器结构集成到基于悬臂梁的PMUT设计中,在其辅助下,可以精确施加液态聚二甲基硅氧烷(PDMS),并通过毛细作用自发驱动其密封已释放的悬臂梁之间的气隙。固化后,PDMS将从液体转变为固体,并作为相邻悬臂梁之间的软互连弹簧,迫使它们以同步模式振动。同时,这种处理不会改变现有的制造工艺,并且对原始PMUT性能影响很小。从机械和声学响应测量结果来看,已成功证明了处理后的PMUT器件对异步振动的有效抑制以及衰减尾的显著减少。在随后的脉冲回波测距实验中,当以69.2kHz的谐振频率、40V、40周期的正弦信号驱动时,实现了270.8mm至3.8m的距离检测范围,发散角接近170°。鉴于这种简单而有效的处理方法,所提出的策略在开发用于空中测距应用的高性能PMUT方面具有很大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfe6/12089283/f06d1e351e3e/41378_2025_939_Fig1_HTML.jpg

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