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Wireless Power and Data Link for Ensembles of Sub-mm scale Implantable Sensors near 1GHz

机译:适用于1GHz以下亚毫米级可植入传感器组件的无线电源和数据链路

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We describe a custom wireless power and data transmission (WPDT) link and analyze its performance in a prototype implantable sensor system of ensembles of CMOS sensor ASICs (“Neurograins”) embedding 0.5 mm × 0.5 mm planar microcoil antennas. We use near-field RF at ~1 GHz for wireless powering in a resonant 3-coil architecture including an implanted relay coil in a quadrant layout architecture to maximize coverage area and RF transfer efficiency. We demonstrate successful WPDT across antenna cross-section in benchtop proxy physiological tests. Demodulation and analysis of backscattered signals validate the data link fidelity. Our results suggest that this electromagnetic coupling scheme can robustly support a chip density of 250/ cm2 (up to 1024 individual Neurograins in a 2 cm × 2 cm area) and parallel transmitters can be combined to multiply the channel capacity without destructive interference.
机译:我们描述了一个定制的无线电源和数据传输(WPDT)链路,并在嵌入了0.5 mm×0.5 mm平面微线圈天线的CMOS传感器ASIC(“神经颗粒”)集成体的原型可植入传感器系统中分析了其性能。我们在〜3 GHz谐振架构中使用〜1 GHz的近场RF进行无线供电,包括在象限布局架构中植入的中继线圈,以最大程度地覆盖面积和RF传输效率。我们在台式代理生理测试中证明了跨天线横截面的成功WPDT。反向散射信号的解调和分析验证了数据链路的保真度。我们的结果表明,这种电磁耦合方案可以有力地支持250 / cm的芯片密度 2 (在2 cm×2 cm的区域内最多可容纳1024个单个Neurograins)和并行发送器可以组合使用,以增加信道容量,而不会造成破坏性干扰。

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