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用于集成传感、驱动和成像的压电微机电超声换能器(PMUT)阵列。

Piezoelectric micromachined ultrasound transducer (PMUT) arrays for integrated sensing, actuation and imaging.

作者信息

Qiu Yongqiang, Gigliotti James V, Wallace Margeaux, Griggio Flavio, Demore Christine E M, Cochran Sandy, Trolier-McKinstry Susan

机构信息

Institute for Medical Science and Technology, University of Dundee, Dundee DD2 1FD, UK.

Materials Research Institute, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Sensors (Basel). 2015 Apr 3;15(4):8020-41. doi: 10.3390/s150408020.

Abstract

Many applications of ultrasound for sensing, actuation and imaging require miniaturized and low power transducers and transducer arrays integrated with electronic systems. Piezoelectric micromachined ultrasound transducers (PMUTs), diaphragm-like thin film flexural transducers typically formed on silicon substrates, are a potential solution for integrated transducer arrays. This paper presents an overview of the current development status of PMUTs and a discussion of their suitability for miniaturized and integrated devices. The thin film piezoelectric materials required to functionalize these devices are discussed, followed by the microfabrication techniques used to create PMUT elements and the constraints the fabrication imposes on device design. Approaches for electrical interconnection and integration with on-chip electronics are discussed. Electrical and acoustic measurements from fabricated PMUT arrays with up to 320 diaphragm elements are presented. The PMUTs are shown to be broadband devices with an operating frequency which is tunable by tailoring the lateral dimensions of the flexural membrane or the thicknesses of the constituent layers. Finally, the outlook for future development of PMUT technology and the potential applications made feasible by integrated PMUT devices are discussed.

摘要

超声在传感、驱动和成像方面的许多应用都需要与电子系统集成的小型化、低功耗换能器及换能器阵列。压电微机械超声换能器(PMUT)是一种通常在硅衬底上形成的类似隔膜的薄膜弯曲换能器,是集成换能器阵列的一种潜在解决方案。本文概述了PMUT的当前发展状况,并讨论了它们在小型化和集成设备中的适用性。文中讨论了使这些设备具备功能所需的薄膜压电材料,接着介绍了用于制造PMUT元件的微加工技术以及制造对器件设计的限制。还讨论了电气互连以及与片上电子器件集成的方法。展示了对具有多达320个隔膜元件的已制造PMUT阵列进行的电学和声学测量结果。结果表明,PMUT是宽带器件,其工作频率可通过调整弯曲膜的横向尺寸或组成层的厚度来调节。最后,讨论了PMUT技术未来的发展前景以及集成PMUT器件实现的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d84/4431219/7baa2904e7e5/sensors-15-08020-g001.jpg

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