Wang Zhe, Xue Qing-Tang, Chen Yuan-Quan, Shu Yi, Tian He, Yang Yi, Xie Dan, Luo Jian-Wen, Ren Tian-Ling
Institute of Microelectronics, Tsinghua University, Beijing 100084, China.
Department of Biomedical Engineering, Tsinghua University, Beijing 100084, China.
Sensors (Basel). 2015 Jan 23;15(2):2538-47. doi: 10.3390/s150202538.
This paper proposes a novel flexible piezoelectric micro-machined ultrasound transducer, which is based on PZT and a polyimide substrate. The transducer is made on the polyimide substrate and packaged with medical polydimethylsiloxane. Instead of etching the PZT ceramic, this paper proposes a method of putting diced PZT blocks into holes on the polyimide which are pre-etched. The device works in d31 mode and the electromechanical coupling factor is 22.25%. Its flexibility, good conformal contacting with skin surfaces and proper resonant frequency make the device suitable for heart imaging. The flexible packaging ultrasound transducer also has a good waterproof performance after hundreds of ultrasonic electric tests in water. It is a promising ultrasound transducer and will be an effective supplementary ultrasound imaging method in the practical applications.
本文提出了一种新型的柔性压电微加工超声换能器,它基于PZT和聚酰亚胺基板。该换能器在聚酰亚胺基板上制成,并用医用聚二甲基硅氧烷进行封装。本文提出了一种将切割好的PZT块放入聚酰亚胺上预先蚀刻好的孔中的方法,而不是蚀刻PZT陶瓷。该器件工作在d31模式,机电耦合系数为22.25%。其柔韧性、与皮肤表面良好的贴合性以及合适的共振频率使该器件适用于心脏成像。在水中进行数百次超声电测试后,这种柔性封装的超声换能器也具有良好的防水性能。它是一种很有前途的超声换能器,将成为实际应用中一种有效的超声成像补充方法。