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A Low-Voltage CMOS Rectifier With On-Chip Matching Network and a Magnetic Field Focused Antenna for Wirelessly Powered Medical Implants

机译:具有片上匹配网络和磁场聚焦天线的低压CMOS整流器,用于无线供电的医疗植入物

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摘要

In this paper, we present a CMOS rectifier and its associated external transmitting antenna that are designed for wirelessly powered implantable devices in general, and for a smart medical stent interface, in particular. The detailed characterization and modeling procedures of the "smart stent" implant are presented, and the extracted circuit model of the stent is used for stent-rectifier co-optimization. A fully on-chip transformer-based tunable matching network is co-designed with the differential cross-coupled rectifier. At the external side, a four-port driven antenna is designed to focus the magnetic field in tissue as well as to enhance the power density around the implant. As a proof-of-concept, the rectifier is fabricated in a 0.13-mu m CMOS process and the measurement results show that it can generate more than 500-mV dc voltage on a 2-k Omega load when the available power of the stent is greater than -2 dBm, corresponding to 34% power conversion efficiency. Finally, the "smart stent" system is tested in vitro. The results of the wireless power transfer experiments show that with 480-mW transmitting power and 53-mm separation distance (including 33-mm phantom tissue), more than 350 mu W is delivered to the rectifier's 2-k Omega load.
机译:在本文中,我们介绍了一种CMOS整流器及其相关的外部发射天线,这些天线通常设计用于无线供电的可植入设备,尤其是用于智能医疗支架接口。介绍了“智能支架”植入物的详细表征和建模过程,并将提取的支架电路模型用于支架-整流器的共同优化。与差分交叉耦合整流器共同设计了一个基于芯片的完全基于变压器的可调匹配网络。在外部,设计了一个四端口驱动天线,以聚焦组织中的磁场,并增强植入物周围的功率密度。作为概念验证,整流器采用0.13微米的CMOS工艺制造,测量结果表明,当支架的可用功率达到2kΩ负载时,整流器可以产生500毫伏以上的直流电压。大于-2 dBm,相当于34%的功率转换效率。最后,在体外测试“智能支架”系统。无线功率传输实验的结果表明,在480mW的发射功率和53mm的分离距离(包括33mm的幻像组织)的情况下,超过350μW的功率被输送到整流器的2k Omega负载。

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