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A mm-Sized Wirelessly Powered and Remotely Controlled Locomotive Implant

机译:毫米尺寸的无线遥控机车植入物

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摘要

A wirelessly powered and controlled implantable device capable of locomotion in a fluid medium is presented. Two scalable low-power propulsion methods are described that achieve roughly an order of magnitude better performance than existing methods in terms of thrust conversion efficiency. The wireless prototype occupies 0.6 mm $times,$ 1 mm in 65 nm CMOS with an external 2 mm $times,$2 mm receive antenna. The IC consists of a matching network, a rectifier, a bandgap reference, a regulator, a demodulator, a digital controller, and high-current drivers that interface directly with the propulsion system. It receives 500 $mu{rm W}$ from a 2 W 1.86 GHz power signal at a distance of 5 cm. Asynchronous pulse-width modulation on the carrier allows for data rates from 2.5–25 Mbps with energy efficiency of 0.5 pJ/b at 10 Mbps. The received data configures the propulsion system drivers, which are capable of driving up to 2 mA at 0.2 V and can achieve speed of 0.53 cm/sec in a 0.06 T magnetic field.
机译:提出了一种能够在流体介质中运动的无线可控植入式设备。描述了两种可缩放的低功率推进方法,它们在推力转换效率方面比现有方法获得的性能大约好一个数量级。无线原型在65 nm CMOS中占用0.6毫米时间,1毫米,而外部天线则是2毫米时间,接收天线2毫米。该IC由匹配网络,整流器,带隙基准,稳压器,解调器,数字控制器和直接与推进系统连接的高电流驱动器组成。它从2 W 1.86 GHz功率信号以5 cm的距离接收500μm。载波上的异步脉冲宽度调制允许2.5–25 Mbps的数据速率,在10 Mbps时的能量效率为0.5 pJ / b。接收到的数据将构成推进系统驱动器,该驱动器能够在0.2 V的电压下驱动高达2 mA的电流,并在0.06 T的磁场中达到0.53 cm / sec的速度。

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