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VLSI Potentiostat Array With Oversampling Gain Modulation for Wide-Range Neurotransmitter Sensing

机译:具有宽采样增益调制的VLSI恒电位仪阵列,可实现大范围神经递质传感

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A 16-channel current-measuring very large-scale integration (VLSI) sensor array system for highly sensitive electrochemical detection of electroactive neurotransmiters like dopamine and nitric-oxide is presented. Each channel embeds a current integrating potentiostat within a switched-capacitor first-order single-bit delta-sigma modulator implementing an incremental analog-to-digital converter. The duty-cycle modulation of current feedback in the delta-sigma loop together with variable oversampling ratio provide a programmable digital range selection of the input current spanning over six orders of magnitude from picoamperes to microamperes. The array offers 100-fA input current sensitivity at 3.4-muW power consumption per channel. The operation of the 3 mm times3 mm chip fabricated in 0.5-mum CMOS technology is demonstrated with real-time multichannel acquisition of neurotransmitter concentration
机译:提出了一种用于高灵敏度电化学检测多巴胺和一氧化氮等电活性神经递质的16通道电流测量超大规模集成(VLSI)传感器阵列系统。每个通道将电流积分稳压器嵌入到实现增量式模数转换器的开关电容器一阶单比特delta-sigma调制器中。 delta-sigma环路中电流反馈的占空比调制以及可变的过采样率可为输入电流提供可编程的数字范围选择,其范围从皮安到微安超过六个数量级。该阵列提供100fA的输入电流灵敏度,每通道功耗为3.4μW。通过实时多通道采集神经递质浓度展示了采用0.5微米CMOS技术制造的3毫米乘3毫米芯片的工作原理

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