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Fully-Differential Multichannel Integrated Neural Signal Recording Front-End 被引量:1

Fully-Differential Multichannel Integrated Neural Signal Recording Front-End
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摘要 Neural signal can be used for clinical disease diagnosis,data analysis and real-time life signal monitoring.Its analysis requires high-performance signal processors.Based on the 180 nm standard CMOS technology,a16-channel fully-differential neural recording chip is designed.The chip consists of 16-channel low-noise pre-amplifiers,a multiplexer and a successive approximation register(SAR)ADC.The result shows that the equivalent input-referred noise of recording amplifier is 3.63μV,bringing down noise efficiency factor to 4.24.At 8.5 bits effective number of bit(ENOB),the analog-to-digital converter(ADC)has an SNR of 52.6dB.The core area of the proposed neural recording front-end is about 2.46 mm^2. Neural signal can be used for clinical disease diagnosis,data analysis and real-time life signal monitoring.Its analysis requires high-performance signal processors.Based on the 180 nm standard CMOS technology,a16-channel fully-differential neural recording chip is designed.The chip consists of 16-channel low-noise pre-amplifiers,a multiplexer and a successive approximation register(SAR)ADC.The result shows that the equivalent input-referred noise of recording amplifier is 3.63μV,bringing down noise efficiency factor to 4.24.At 8.5 bits effective number of bit(ENOB),the analog-to-digital converter(ADC)has an SNR of 52.6dB.The core area of the proposed neural recording front-end is about 2.46 mm^2.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2017年第2期228-234,共7页 北京理工大学学报(英文版)
基金 Supported by the National Natural Science Foundation of China(61301006,61271113)
关键词 neuralrecording low noise operational amplifier MULTIPLEXER successive approxima-tion register (SAR) analog-to-digital converter (ADC) neuralrecording low noise operational amplifier multiplexer successive approxima-tion register (SAR) analog-to-digital converter (ADC)
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