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MEMS Based Broadband Piezoelectric Ultrasonic Energy Harvester (PUEH) for Enabling Self-Powered Implantable Biomedical Devices

机译:基于MEMS的宽带压电超声能量采集器(PUEH)用于实现自供电的可植入生物医学设备

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摘要

Acoustic energy transfer is a promising energy harvesting technology candidate for implantable biomedical devices. However, it does not show competitive strength for enabling self-powered implantable biomedical devices due to two issues – large size of bulk piezoelectric ultrasound transducers and output power fluctuation with transferred distance due to standing wave. Here we report a microelectromechanical systems (MEMS) based broadband piezoelectric ultrasonic energy harvester (PUEH) to enable self-powered implantable biomedical devices. The PUEH is a microfabricated lead zirconate titanate (PZT) diaphragm array and has wide operation bandwidth. By adjusting frequency of the input ultrasound wave within the operation bandwidth, standing wave effect can be minimized for any given distances. For example, at 1 cm distance, power density can be increased from 0.59 μW/cm2 to 3.75 μW/cm2 at input ultrasound intensity of 1 mW/cm2 when frequency changes from 250 to 240 kHz. Due to the difference of human body and manual surgical process, distance fluctuation for implantable biomedical devices is unavoidable and it strongly affects the coupling efficiency. This issue can be overcome by performing frequency adjustment of the PUEH. The proposed PUEH shows great potential to be integrated on an implanted biomedical device chip as power source for various applications.
机译:声能传递是可植入生物医学设备的有希望的能量收集技术的候选者。但是,由于以下两个问题,它无法显示出实现自供电式可植入生物医学设备的竞争实力–大体积的压电超声换能器以及输出功率随驻波传递距离而波动。在这里,我们报告基于微机电系统(MEMS)的宽带压电超声能量采集器(PUEH),以实现自供电的可植入生物医学设备。 PUEH是一种微细的锆钛酸铅(PZT)隔膜阵列,具有宽的工作带宽。通过在操作带宽内调整输入超声波的频率,可以使任意给定距离的驻波效应最小化。例如,在1 m距离处,在输入超声强度为1 mW / cm 2 增加到3.75 W / cm 2 > 2 ,当频率从250变为240 kHz时。由于人体和手动手术过程的差异,植入式生物医学设备的距离波动是不可避免的,并且会严重影响耦合效率。通过执行PUEH的频率调整可以解决此问题。拟议的PUEH显示出巨大的潜力,可以集成到植入的生物医学设备芯片上,作为各种应用的电源。

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