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  4. A Time-Based, Digitally Intensive Circuit and System Architecture for Wireless Neural Recording with High Dynamic Range
 
conference paper not in proceedings

A Time-Based, Digitally Intensive Circuit and System Architecture for Wireless Neural Recording with High Dynamic Range

Hsu, Wen-Yang  
•
Cao, Chen
•
Schmid, Alexandre  
2016
IEEE 59th International Midwest Symposium on Circuits and Systems (MWSCAS)

A new type of wireless neural recording front-end with PWM modulation and VCO-based ADC is proposed. The target signal is first encoded into binary levels with varying pulse width by PWM modulation, which intrinsically has much higher dynamic range compared with conventional voltage-mode instrumentation amplifiers. The front-end is thus not saturated by stimulation artifacts, enabling simultaneous recording and stimulation. A VCO-based ADC then digitizes the front-end output. The nonlinearity issue in VCO quantizers is resolved by the binary output since only two operation points are used. The inherent sinc anti-aliasing filter and first-order noise shaping are exploited to reject supply ripples and enhance resolution. The proposed architecture is digitally intensive, hence can achieve low-power and low-voltage operation in scaled technology. The theoretical analysis and simulation based on behavior models are presented in this paper.

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Type
conference paper not in proceedings
DOI
10.1109/MWSCAS.2016.7869940
Author(s)
Hsu, Wen-Yang  
Cao, Chen
Schmid, Alexandre  
Date Issued

2016

Subjects

Implantable microelectronic devices

•

multichannel neural recording

•

analog-to-digital converter (ADC)

•

delta-sigma modulator

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSM  
Event nameEvent placeEvent date
IEEE 59th International Midwest Symposium on Circuits and Systems (MWSCAS)

Abu Dhabi, UAE

October 16-19, 2016

Available on Infoscience
March 10, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/135158
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