Title
Electromagnetic Compatibility Modeling in Low-Noise Medical Sensor Interfaces
Abstract
Investigations on the electromagnetic behaviour of a low-power amplifier are led using the extended-integrated circuit emission model (ICEM). This modeling approach is proposed on a mixed-signal (analog/digital) CMOS 0.18 mum circuit dedicated to neural signal recording. This ICEM allows coarse and fast studies of the electromagnetic compatibility of CMOS devices especially in characterizing the coupling phenomena that occurs at each building block inside the whole chip. ICEM simulations of power and ground bounces are more than 500 times faster than complete SPICE ones with a correct accuracy for first electromagnetic compatibility investigations. This quick modeling method allows for checking many different design or simulation configurations. For example, some simulation results show that substrate interactions and power/ground crosstalk increase the noise level of the low-noise amplifier, in particular in its low frequency domain.
Year
DOI
Venue
2007
10.1109/ISCAS.2007.378706
New Orleans, LA
Keywords
Field
DocType
CMOS integrated circuits,amplifiers,bioelectric potentials,biomedical electronics,electromagnetic compatibility,low-power electronics,mixed analogue-digital integrated circuits,sensors,0.18 micron,CMOS devices,SPICE,analog CMOS circuit,bioamplifier,digital CMOS circuit,electromagnetic behaviour,electromagnetic compatibility modeling,extended-integrated circuit emission model,ground crosstalk,low-noise medical sensor interfaces,low-power amplifier,mixed-signal CMOS circuit,neural signal recording,power crosstalk,quick modeling method,substrate interactions,substrate noise,Electromagnetic compatibility,ICEM,bioamplifier,power/ground noise,substrate noise
Computational electromagnetics,Semiconductor device modeling,Computer science,Digital recording,Electronic engineering,CMOS,Chip,Electromagnetic compatibility,Electrical engineering,Amplifier,Low-power electronics
Conference
ISSN
ISBN
Citations 
0271-4302
1-4244-0921-7
1
PageRank 
References 
Authors
0.43
4
4
Name
Order
Citations
PageRank
Olivier Valorge193.56
B Gosselin235360.22
Louis-François Tanguay311.11
Mohamad Sawan4774172.87