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A Batteryless Energy Harvesting Storage System for Implantable Medical Devices Demonstrated In Situ

机译:用于现场演示的可植入医疗设备的无电池能量收集存储系统

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We report a wireless energy harvesting and telemetry storage system in 180 nm CMOS technology, demonstrated in situ in rat carcass. The implantable device has dimensions 13 mm x 15 mm and stores 87.5 mJ, providing a self-powering time of 8.5 s transmitting through tissue. We utilize an all-solid-state flexible supercapacitor of breakdown voltage 0.8 V and capacitance 400 mF to harvest incoming wireless power, followed by a boost converter CMOS that drives an active wireless transmitter at 1.5 V at 2.4 GHz in the industrial, scientific, and medical (ISM) band. The DC/DC converter component and switching frequency selection were guided by genetic algorithm analysis and use digital feedback to control the pulse width modulation (PWM), which slowly modifies the duty cycle to control output voltage fluctuations. This implantable medical device system presents the roadmap for batteryless energy harvesting in vivo and in clinical environments, exhibiting the highest operating storage density of 450 mu J/mm(2) reported to date.
机译:我们报告了一种在180纳米CMOS技术中的无线能量收集和遥测存储系统,该技术在大鼠尸体中进行了现场演示。该可植入设备的尺寸为13 mm x 15 mm,存储容量为87.5 mJ,提供了通过组织传输的8.5 s自供电时间。我们利用击穿电压为0.8 V的全固态柔性超级电容器和400 mF的电容来收集传入的无线功率,然后采用升压转换器CMOS,该升压转换器CMOS在工业,科学和工业应用中以2.4 GHz的频率驱动1.5 V有源无线发射机。医疗(ISM)频段。遗传算法分析指导了DC / DC转换器组件和开关频率的选择,并使用数字反馈来控制脉冲宽度调制(PWM),从而缓慢修改占空比以控制输出电压波动。该植入式医疗设备系统提供了体内和临床环境中无电池能量收集的路线图,具有迄今为止报道的450 mu J / mm(2)的最高工作存储密度。

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