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A CMOS frontend chip for implantable neural recording with wide voltage supply range

机译:用于宽电压范围的可植入神经记录的CMOS前端芯片

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A design for a CMOS frontend integrated circuit (chip) for neural signal acquisition working at wide voltage supply range is presented in this paper. The chip consists of a preamplifier, a serial instrumental amplifier (IA) and a cyclic analog-to-digital converter (CADC). The capacitive-coupled and capacitive-feedback topology combined with MOS-bipolar pseudo-resistor element is adopted in the preamplifier to create a –3 dB upper cut-off frequency less than 1 Hz without using a ponderous discrete device. A dual-amplifier instrumental amplifier is used to provide a low output impedance interface for ADC as well as to boost the gain. The preamplifier and the serial instrumental amplifier together provide a midband gain of 45.8 dB and have an input-referred noise of 6.7 μV_(rms) integrated from 1 Hz to 5 kHz. The ADC digitizes the amplified signal at 12-bits precision with a highest sampling rate of 130 kS/s. The measured effective number of bits (ENOB) of the ADC is 8.7 bits. The entire circuit draws 165 to 216 μA current from the supply voltage varied from 1.34 to 3.3 V. The prototype chip is fabricated in the 0.18-μm CMOS process and occupies an area of 1.23 mm2 (including pads). In-vitro recording was successfully carried out by the proposed frontend chip.
机译:本文提出了一种用于在宽电压范围内工作的神经信号采集的CMOS前端集成电路(芯片)的设计。该芯片包括一个前置放大器,一个串行仪表放大器(IA)和一个循环模数转换器(CADC)。前置放大器采用了电容耦合和电容反馈拓扑结构,并结合了MOS双极伪电阻元件,从而在不使用繁琐的分立器件的情况下,可产生小于1 Hz的–3 dB上限频率。双放大器仪表放大器用于为ADC提供低输出阻抗接口并提高增益。前置放大器和串行仪表放大器共同提供45.8 dB的中频带增益,并在1 Hz至5 kHz的范围内具有6.7μV_(rms)的输入参考噪声。 ADC以12位精度将放大后的信号数字化,最高采样率为130 kS / s。 ADC的测得有效位数(ENOB)为8.7位。整个电路从1.34至3.3 V的电源电压汲取165至216μA的电流。原型芯片采用0.18μmCMOS工艺制造,占地1.23 mm2(包括焊盘)。所提出的前端芯片成功地进行了体外记录。

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