Simultaneous Ultrasonic Power Transfer and Depth Feedback for Active Medical Implants

Tianhui Li, Hailing Fu, S. Theodossiades, Sotiris Korossis
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Abstract

Wireless power transfer allows the delivery of energy to locations where electric wires cannot reach; one of the applications of it is powering active medical implants. Ultrasonic power transfer (USPT) has the potential to deliver a promising power density due to higher regulation limit. This method also possesses the possibility of maintaining a relatively small device size due to the short wavelength of mechanical waves in the ultrasonic frequency band. Previous studies have successfully proved the idea of powering a low-power computing device through ultrasonic power link. This paper reports a USPT system with the ability of data transfer and position feedback. The USPT system consists of a wearable transmitter and an implanted receiver in this system both featured a $2 \times 2 \times 2 \mathrm{~mm}^{3}$ cubic piezoelectric transducer: The resonant frequency of the system was determined to be 750 kHz. When the transmitter was driven with $\pm 30 \mathrm{~V}$, the receiver produced a peak-to-peak output voltage of 120 mV when placed $1 \mathrm{~cm}$ away from the transmitter. To test the capability of data transfer and position feedback of this system, the transmitter was driven with a non-return-tozero (NRZ) pulse. The pulse could be detected with a driving voltage as low as $\pm 5 \mathrm{~V}$.
主动医疗植入物的超声功率同步传递和深度反馈
无线电力传输允许将能量输送到电线无法到达的地方;它的一个应用是为主动医疗植入物提供动力。超声功率传输(USPT)由于具有较高的调节限制,具有提供良好的功率密度的潜力。由于超声波频带中机械波的波长较短,该方法还具有保持相对较小的器件尺寸的可能性。先前的研究已经成功地证明了通过超声波电源链路为低功耗计算设备供电的想法。本文报道了一种具有数据传输和位置反馈功能的USPT系统。USPT系统由一个可穿戴式发射机和一个植入式接收机组成,该系统均采用$2 \ × 2 \ × 2 \数学{~mm}^{3}$立方压电换能器,系统的谐振频率确定为750 kHz。当发射机以$\pm 30 \ mathm {~V}$驱动时,当距离发射机$1 \ mathm {~cm}$时,接收器产生120 mV的峰对峰输出电压。为了测试该系统的数据传输和位置反馈能力,发射机采用非归零脉冲驱动。该脉冲可以在低至$\pm 5 \ mathm {~V}$的驱动电压下检测到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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