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Short-Range Quality-Factor Modulation (SquirM) for Low Power High Speed Inductive Data Transfer

机译:用于低功率高速感应数据传输的短程质量因子调制(SquirM)

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Wireless data telemetry for implantable medical devices (IMDs) has, in general, been limited to a few Mbps, and used for applications such as transmitting recordings from an implanted monitoring device, or uploading commands to an implanted stimulator. However, modern neural interfaces need to record high resolution potentials from hundreds of neurons; this requires much higher data rates. While fast wireless communication is possible using existing standards such as WiFi, power consumption demands are far too high for IMDs. Short range inductive link based telemetry, in particular impulse-based systems such as pulse-harmonic modulation (PHM), have demonstrated transfer speeds of up to 20 Mbps with a small power budget. However, these systems require complex and precise circuits, making them potentially susceptible to inter-symbol-interference. This work presents a new method named Short-range Quality-factor Modulation (SQuirM), which retains the low power consumption and high data rate of PHM, while improving the resilience of the system and simplifying the circuit design. Transmitter and receiver circuits were fabricated using 0.35 micron CMOS. The circuits were capable of transceiving data at speeds of up to 50.4 Mbps, with a BER of < 4.5E-10, and a transmitter energy consumption of 8.11pJ/b.
机译:通常,用于植入式医疗设备(IMD)的无线数据遥测仅限于几Mbps,并用于诸如从植入的监视设备传输记录或将命令上传到植入的刺激器等应用。但是,现代神经接口需要记录数百个神经元的高分辨率电势。这需要更高的数据速率。尽管使用现有标准(例如WiFi)可以实现快速的无线通信,但对于IMD而言,功耗需求仍然过高。基于短程感应链路的遥测技术,尤其是基于脉冲的系统,例如脉冲谐波调制(PHM),已经证明了传输速度高达20 Mbps,而功率预算却很小。但是,这些系统需要复杂而精确的电路,因此可能容易受到符号间干扰的影响。这项工作提出了一种称为短程质量因数调制(SQuirM)的新方法,该方法保留了PHM的低功耗和高数据速率,同时提高了系统的弹性并简化了电路设计。发送器和接收器电路是使用0.35微米CMOS制造的。这些电路能够以高达50.4 Mbps的速度收发数据,BER <4.5E-10,发射器能耗为8.11pJ / b。

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