A 5 μW/channel 9b-ENOB BioADC array for electrocortical recording

2015 IEEE Biomedical Circuits and Systems Conference (BioCAS)(2015)

引用 8|浏览48
暂无评分
摘要
We present a 4-channel integrated biopotential analog-to-digital converter (bioADC) for electrocortical recording in 180nm CMOS. The bioADC directly transduces microvolt biopotentials into a digital representation without a voltage-amplification stage. Each channel comprises a continuous-time first-order ΔΣ modulator with OTA input and current feedback, followed by a second-order comb-filter decimator. Powered from a 1.5V supply, the analog and digital circuits in each channel draw 2.1uA and 1.4uA of supply current, respectively. The bioADCs achieve an SNR of 57dB and a SFDR or 63.5dB, for 9-b ENOB. Intracranial EEG recordings from an anesthetized rat are shown and compared to simultaneous recordings from a commercial reference system to validate performance in-vivo. The micropower operation and direct digital readout make this circuit ideally suited for closed-loop neuromodulation applications.
更多
查看译文
关键词
9b-ENOB bioADC array,electrocortical recording,4-channel integrated biopotential analog-to-digital converter,CMOS technology,microvolt biopotentials,continuous-time first-order ΔΣ modulator,second-order comb-filter decimator,intracranial EEG recordings,micropower operation,direct digital readout,closed-loop neuromodulation applications,transconductance operational amplifier,size 180 nm,voltage 1.5 V,current 2.1 muA,current 1.4 muA
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要