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A Low-Noise Chopper Amplifier Designed for Multi-Channel Neural Signal Acquisition

机译:用于多通道神经信号采集的低噪声斩波放大器

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This paper proposed the design of a low-noise, low total harmonic distortion (THD) chopper amplifier for neural signal acquisition. A dc servo loop (DSL) based on active Gm-C integrator is proposed to reject the electrode-dc-offset (EDO). Architecture of a complementary input very low-transconductance (VLT) operational transconductance amplifier (OTA) was proposed and integrated in the active Gm-C integrator to improve the linearity as well as to reduce the noise, featuring a transconductance ranging from 45 pS to a few nS. The proposed amplifier was fabricated in a TSMC 0.18-mu m CMOS process, occupying an area of 0.2 mm(2), featuring a power consumption of 3.24 mu W/channel under a 1.8-V supply voltage. The THD for a 5-mVpp input is lower than -61 dB. An input-referred thermal noise power spectral density (PSD) of 39 nV/root Hz is measured. The measured input-referred noise is 0.65 mu V-rms in the 0.3-200-Hz frequency band and 2.14 mu V-rms in the 200-Hz-5-kHz frequency band, respectively, leading to a noise-efficiency factor of 2.37 (0.3-200 Hz) and 1.56 (0.2 k-5 kHz). In addition, the high-pass corner frequency can be precisely configured and linearly adjusted with the external bias current from 0.35 to 54.5 Hz.
机译:本文提出了一种用于神经信号采集的低噪声,低总谐波失真(THD)斩波放大器的设计。提出了一种基于有源Gm-C积分器的直流伺服环路(DSL),以抑制电极直流偏移(EDO)。提出了一种互补输入超低导通(VLT)运算跨导放大器(OTA)的架构,并将其集成到有源Gm-C积分器中,以改善线性度并降低噪声,其跨导范围为45 pS几nS。拟议的放大器采用台积电(TSMC)0.18微米CMOS工艺制造,占地0.2毫米(2),在1.8V电源电压下的功耗为3.24毫瓦/通道。 5-mVpp输入的THD低于-61 dB。测得的输入参考热噪声功率谱密度(PSD)为39 nV /根Hz。在0.3-200-Hz频段内测得的以输入为基准的噪声分别为0.65μV-rms和在200-Hz-5 kHz频段内为2.14μV-rms,导致噪声效率系数为2.37 (0.3-200 Hz)和1.56(0.2 k-5 kHz)。此外,可以通过0.35至54.5 Hz的外部偏置电流精确配置和线性调整高通转折频率。

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