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0.6 V 116 nW Neural Spike Acquisition IC with Self-Biased Instrumentation Amplifier and Analog Spike Extraction

机译:具有自偏置仪表放大器和模拟峰值提取功能的0.6 V116 nW神经峰值采集IC

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摘要

This paper presents an ultralow power 0.6 V 116 nW neural spike acquisition integrated circuit with analog spike extraction. To reduce power consumption, an ultralow power self-biased current-balanced instrumentation amplifier (IA) is proposed. The passive RC lowpass filter in the amplifier acts as both DC servo loop and self-bias circuit. The spike detector, based on an analog nonlinear energy operator consisting of a low-voltage open-loop differentiator and an open-loop gate-bulk input multiplier, is designed to emphasize the high frequency spike components nonlinearly. To reduce the spike detection error, the adjacent spike merger is also proposed. The proposed circuit achieves a low IA current consumption of 46.4 nA at 0.6 V, noise efficiency factor (NEF) of 1.81, the bandwidth from 102 Hz to 1.94 kHz, the input referred noise of 9.37 μVrms, and overall power consumption of 116 nW at 0.6 V. The proposed circuit can be used in the ultralow power spike pulses acquisition applications, including the neurofeedback systems on peripheral nerves with low neuron density.
机译:本文提出了一种具有模拟尖峰提取功能的超低功耗0.6 V 116 nW神经尖峰采集集成电路。为了降低功耗,提出了一种超低功耗自偏置电流平衡仪表放大器(IA)。放大器中的无源RC低通滤波器既用作直流伺服环路又用作自偏置电路。尖峰检波器基于由低压开环微分器和开环门极输入乘法器组成的模拟非线性能量算子,旨在非线性地强调高频尖峰分量。为了减少尖峰检测误差,还提出了相邻的尖峰合并。拟议的电路在0.6 V时实现了46.4 nA的低IA电流消耗,1.81的噪声效率因数(NEF),102 Hz至1.94 kHz的带宽,9.37μVrms的输入参考噪声以及在110 V时的总功耗为116 nW 0.6V。该电路可用于超低功率尖峰脉冲采集应用,包括神经元密度低的周围神经上的神经反馈系统。

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