Pre-charged collapse-mode capacitive micromachined ultrasonic transducer (CMUT) for broadband ultrasound power transfer

Shinnosuke Kawasaki, Youri Westhoek, Indulakshmi Subramaniam, M. Saccher, R. Dekker
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引用次数: 6

Abstract

Using ultrasound to power deeply implanted biomedical devices is a promising technique due to its low attenuation in body tissue and its short wavelength that allows precise focusing of the energy. Ultrasound energy harvesting conventionally has been done using lead zirconate titanate (PZT) ultrasound transducers, which uses the piezoelectric effect to convert mechanical vibration to an electrical voltage. However, PZT is typically bulky, and is not bio-compatible, and cannot be monolithically integrated with application-specific integrated circuits (ASIC). In this work, a pre-charged collapse-mode capacitive micromachined ultrasonic transducer (CMUT) was fabricated to harvest ultrasound energy. The pre-charged CMUT has a high power transfer efficiency over a wide bandwidth at optimal loading conditions; 43% at 2.15 MHz and 47% at 5.85 MHz. For the last 1.4 years, the device has been in collapse-mode, and it is still functional without any additional charging. This device will enable the development of smaller implantable biomedical devices in the future.
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用于宽带超声功率传输的预充电折叠式电容式微机械超声换能器(CMUT)
利用超声波为深度植入的生物医学设备供电是一项很有前途的技术,因为它在身体组织中的衰减低,波长短,可以精确地聚焦能量。传统的超声能量收集是使用锆钛酸铅(PZT)超声换能器来完成的,它利用压电效应将机械振动转换为电压。然而,PZT通常体积庞大,不具有生物相容性,不能与专用集成电路(ASIC)单片集成。在这项工作中,制作了一个预充电的坍缩模电容式微机械超声换能器(CMUT)来收集超声能量。在最佳负载条件下,预充电CMUT具有高功率传输效率和宽带宽;43%在2.15 MHz, 47%在5.85 MHz。在过去的1.4年里,这款设备一直处于折叠模式,在没有任何额外充电的情况下,它仍然可以正常工作。该装置将使未来更小的植入式生物医学装置的发展成为可能。
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