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A silicon neuron based biopotential amplifier for biomedical applications

机译:基于硅神经元的生物医学放大器

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In recent years various types of biosignals originating from the human body are being extensively used for diagnostics as well as therapeutic interventions. An implantable biopotential recording system could capture the detail information of the vital physiologic phenomena in the biosignal. A high performance biopotential amplifier as one of the critical components in the biopotential recording system requires power efficiency, high sensitivity, and suppression of the DC signal. In an attempt to reduce the power consumption, the system noise and the chip size, this paper presents a bio-inspired silicon neuron based low-frequency suppression biopotential amplifier. The amplifier is designed in 0.13 μm standard CMOS process and the total power consumption with 500 mV supply voltage is 4.4 μW. The gain is 34 dB with a −3 dB band of 11 Hz to 7.2 KHz. The input-referred noise is 6.7 μVrms integrated over the entire band.
机译:近年来,源自人体的各种类型的生物信号被广泛用于诊断以及治疗干预。植入式生物电势记录系统可以捕获生物信号中重要生理现象的详细信息。高性能生物电势放大器是生物电势记录系统中的关键组件之一,它要求功率效率,高灵敏度和抑制DC信号。为了降低功耗,系统噪声和芯片尺寸,本文提出了一种基于生物启发的基于硅神经元的低频抑制生物电势放大器。该放大器采用0.13μm标准CMOS工艺设计,电源电压为500 mV时的总功耗为4.4μW。增益为34 dB,−3 dB频段为11 Hz至7.2 KHz。在整个频带上积分的输入等效噪声为6.7μVrms。

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