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一种用于神经信号记录的CMOS低功耗低噪声电流模式前端放大器。

A CMOS power-efficient low-noise current-mode front-end amplifier for neural signal recording.

作者信息

Wu Chung-Yu, Chen Wei-Ming, Kuo Liang-Ting

机构信息

Department of Electronics Engineering, Institute of Electronics, National Chiao Tung University, Hsinchu 300, Taiwan.

出版信息

IEEE Trans Biomed Circuits Syst. 2013 Apr;7(2):107-14. doi: 10.1109/TBCAS.2013.2256422.

Abstract

In this paper, a new current-mode front-end amplifier (CMFEA) for neural signal recording systems is proposed. In the proposed CMFEA, a current-mode preamplifier with an active feedback loop operated at very low frequency is designed as the first gain stage to bypass any dc offset current generated by the electrode-tissue interface and to achieve a low high-pass cutoff frequency below 0.5 Hz. No reset signal or ultra-large pseudo resistor is required. The current-mode preamplifier has low dc operation current to enhance low-noise performance and decrease power consumption. A programmable current gain stage is adopted to provide adjustable gain for adaptive signal scaling. A following current-mode filter is designed to adjust the low-pass cutoff frequency for different neural signals. The proposed CMFEA is designed and fabricated in 0.18-μm CMOS technology and the area of the core circuit is 0.076 mm(2). The measured high-pass cutoff frequency is as low as 0.3 Hz and the low-pass cutoff frequency is adjustable from 1 kHz to 10 kHz. The measured maximum current gain is 55.9 dB. The measured input-referred current noise density is 153 fA /√Hz , and the power consumption is 13 μW at 1-V power supply. The fabricated CMFEA has been successfully applied to the animal test for recording the seizure ECoG of Long-Evan rats.

摘要

本文提出了一种用于神经信号记录系统的新型电流模式前端放大器(CMFEA)。在所提出的CMFEA中,设计了一个具有在非常低频率下工作的有源反馈回路的电流模式前置放大器作为第一增益级,以旁路由电极 - 组织界面产生的任何直流偏置电流,并实现低于0.5 Hz的低高通截止频率。无需复位信号或超大型伪电阻。该电流模式前置放大器具有低直流工作电流,以增强低噪声性能并降低功耗。采用可编程电流增益级为自适应信号缩放提供可调增益。设计了一个后续的电流模式滤波器来调整不同神经信号的低通截止频率。所提出的CMFEA采用0.18μm CMOS技术进行设计和制造,核心电路面积为0.076 mm²。测量得到的高通截止频率低至0.3 Hz,低通截止频率可在1 kHz至10 kHz之间调节。测量得到的最大电流增益为55.9 dB。测量得到的输入参考电流噪声密度为153 fA /√Hz,在1V电源电压下功耗为13μW。所制造的CMFEA已成功应用于动物实验,用于记录Long - Evan大鼠的癫痫发作皮层脑电图。

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