Equidimensional Suspended Piezoelectric Micromachined Ultrasound Transducer Array with Various Mass Loads for High Ultrasound Sensitivity and Wide Bandwidth

Xingli Xu, Yongquan Ma, Chenyang Yu, Liang Zhang, Wei Wei, Mingchao Sun, Boyun Zhang, Menglun Zhang, Pengfei Niu, Wei Pang
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Abstract

For the first time, we develop piezoelectric micromachined ultrasound transducer (PMUT) array with the cells having suspended vibrational membranes and the array having the same-dimension cells in plane but with various mass loads for tuning their frequency range. The suspended membrane of PMUT, facilitated by four through-holes at the edge, offers distinct advantages of low constraint and high sensitivity. The resonant frequency of equidimensional suspended PMUT with the same diameter becomes adjustable through various mass loads. The suspended PMUT array containing same-dimension cells with different mass loads exhibits superior acoustic performance and broader bandwidth compared to traditional PMUT array. According to this strategy, this paper presents our PMUT array, with central frequency be in around 10MHz, has a 1.5X higher displacement and 1.8X higher bandwidth than traditional PMUT array. It promises significant advancements in PMUT-based ultrasound imaging.
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具有各种质量载荷的等维悬浮压电微机械超声换能器阵列,可实现高超声灵敏度和宽带宽
我们首次开发了压电微机械超声换能器(PMUT)阵列,其单元具有悬浮振动膜,阵列在平面上具有相同尺寸的单元,但具有不同的质量载荷以调整其频率范围。PMUT 的悬浮振动膜边缘有四个通孔,具有低约束和高灵敏度的明显优势。具有相同直径的等维悬浮式 PMUT 的谐振频率可通过不同的质量载荷进行调节。与传统的 PMUT 阵列相比,包含不同质量负载的同尺寸单元的悬浮 PMUT 阵列具有更优越的声学性能和更宽的带宽。根据这一策略,本文介绍了我们的 PMUT 阵列,其中心频率约为 10MHz,与传统 PMUT 阵列相比,位移和带宽分别提高了 1.5 倍和 1.8 倍。它有望在基于 PMUT 的超声成像领域取得重大进展。
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