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RF CMOS wireless implantable microsystem for sacral roots stimulation with on-chip antenna and far-field wireless powering

机译:RF CMOS无线植入式微系统,通过片上天线和远场无线供电刺激根

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The use of heterogeneous integration technologies is the path for the development of further miniaturized, smarter, and energy autonomous microdevices, which are required to tackle the challenge of monitoring and/or control the health condition of everyone, everywhere. The interaction with human body requires the use of flexible materials, while the electronic component are based on rigid materials, like silicon substrates. Also, once inside the human body, it is desirable to have a wireless link for data communication, as well for RF powering, using energy harvesting techniques or dedicated powering RF links. This paper shows the design of an implantable microsystem to be used for functional electrical stimulation of sacral roots. The proposed system includes flexible electrodes, integrated with an RF CMOS chip, which is powered by a wireless link through an efficient on-chip antenna.
机译:异构集成技术的使用是进一步小型化,智能化和能源自主的微型设备发展的途径,而微型设备则是应对监视和/或控制每个地方每个人的健康状况的挑战所必需的。与人体的交互需要使用柔性材料,而电子组件则基于刚性材料,例如硅基板。而且,一旦进入人体,就希望具有使用能量收集技术或专用的供电RF链路的用于数据通信以及RF供电的无线链路。本文展示了可植入微系统的设计,该系统可用于functional根的功能性电刺激。所提出的系统包括与RF CMOS芯片集成的柔性电极,该柔性电极由无线链路通过有效的片上天线供电。

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