A 64-channel neuron recording system.

EMBC(2011)

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摘要
This paper presents a fully integrated low-power neuron recording front-end system in TSMC 65 nm 1p6m CMOS technology. The proposed system is comprised of two recording modules, each containing 32 recording channels with tunable bandwidth and gain, a 32-to-1 multiplexer, one differential successive approximation register (SAR) analog-to-digital converter (ADC) with programmable sampling rate on each channel, and a digital control module to govern the signal digitization as well as to encode and serialize the digitized neuron signal from two ADCs. The recording amplifier presents a low power and low noise merits of 6 μW and input-referred noise of 3.8 μV(rms). The ADC digitizes the neural signal at a sampling rate of 40 kS/s with 9-bit resolution. The overall power consumption of the entire system is 2.56 mW and occupies an area of 3 × 4mm(2).
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关键词
tsmc cmos technology,bioelectric potentials,power consumption,programmable sampling rate,neurophysiology,recording modules,size 65 nm,recorders,signal digitization,successive approximation register,64-channel neuron recording system,digitized neuron signal,cmos integrated circuits,integrated low-power neuron recording front-end system,analog-to-digital converter,lab-on-a-chip,multiplexer,biomedical electronics,digital control module,power 2.56 mw,lab on a chip,band pass filter,front end,impedance,band pass filters,bandwidth,gain,digital control,noise
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