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Ultra-low-power sensor signal processing unit for implantable biosensor applications

机译:超低功耗传感器信号处理单元,用于植入式生物传感器应用

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In recent years various types of implantable medical devices have been proposed for monitoring various physiological parameters of human body. Long term maintenance-free operation of these devices requires extreme low-power operation to avoid periodic replacement of batteries. For real-time monitoring of health condition, the implantable medical devices also need to transmit the vital information outside of the human body for further diagnostics and processing. This work shows the design and simulation of an ultra-low-power signal processing unit suitable for implantable biosensor applications. The proposed unit comprises of a Data Generator Block, an Impulse Generator Block and a Buffer Block. The Data Generator Block takes the signal from any generic sensor and transforms the sensor signal into frequency modulated digital pulses by employing a relaxation oscillator. The Impulse Generator Block converts the digital pulses into impulse signals for impulse-radio based wireless telemetry. Finally the Buffer Block drives a standard 200O antenna load. Use of weak inversion MOSFET and relaxation oscillator structure inside the Data Generator Block facilitate to achieve extreme low-power operation. Simulation results show the effectiveness of the proposed system.
机译:近年来,已经提出了用于监视人体的各种生理参数的各种类型的可植入医疗装置。这些设备的长期免维护运行需要极低的功率运行,以避免定期更换电池。为了实时监视健康状况,可植入医疗设备还需要将重要信息传输到人体之外,以进行进一步的诊断和处理。这项工作展示了适用于植入式生物传感器应用的超低功耗信号处理单元的设计和仿真。所提出的单元包括数据生成器块,脉冲生成器块和缓冲器块。数据生成器模块从任何通用传感器获取信号,并通过使用张弛振荡器将传感器信号转换为调频数字脉冲。脉冲发生器模块将数字脉冲转换为脉冲信号,以用于基于脉冲无线电的无线遥测。最后,缓冲模块驱动标准的200O天线负载。在数据生成器模块内部使用弱反相MOSFET和张弛振荡器结构有助于实现极低的功耗。仿真结果表明了该系统的有效性。

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