Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform

A low power and low noise reconfigurable analog front-end (AFE) system on a chip (SoC) for biosignal acquisition is presented. The presented AFE can be reconfigured for use in electropotential, bioimpedance, electrochemical, and photoelectrical modes. The advanced healthcare services based on multip...

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Main Authors: Jongpal Kim, Hyoungho Ko
Format: Article
Language:English
Published: MDPI AG 2016-11-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/16/12/2002
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spelling doaj-5c97794578e54088a0ec9431118222012020-11-25T02:34:42ZengMDPI AGSensors1424-82202016-11-011612200210.3390/s16122002s16122002Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable PlatformJongpal Kim0Hyoungho Ko1Samsung Electronics Inc., Suwon 16678, KoreaDepartment of Electronics Engineering, Chungnam National University, Daejeon 34134, KoreaA low power and low noise reconfigurable analog front-end (AFE) system on a chip (SoC) for biosignal acquisition is presented. The presented AFE can be reconfigured for use in electropotential, bioimpedance, electrochemical, and photoelectrical modes. The advanced healthcare services based on multiparameter physiological biosignals can be easily implemented with these multimodal and highly reconfigurable features of the proposed system. The reconfigurable gain and input referred noise of the core instrumentation amplifier block are 25 dB to 52 dB, and 1 μVRMS, respectively. The power consumption of the analog blocks in one readout channel is less than 52 μW. The reconfigurable capability among various modes of applications including electrocardiogram, blood glucose concentration, respiration, and photoplethysmography are shown experimentally.http://www.mdpi.com/1424-8220/16/12/2002biosignal acquisitionreconfigurable circuitanalog front-endelectrocardiogramphotoplethysmographyblood glucose concentrationbioimpedance
collection DOAJ
language English
format Article
sources DOAJ
author Jongpal Kim
Hyoungho Ko
spellingShingle Jongpal Kim
Hyoungho Ko
Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform
Sensors
biosignal acquisition
reconfigurable circuit
analog front-end
electrocardiogram
photoplethysmography
blood glucose concentration
bioimpedance
author_facet Jongpal Kim
Hyoungho Ko
author_sort Jongpal Kim
title Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform
title_short Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform
title_full Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform
title_fullStr Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform
title_full_unstemmed Reconfigurable Multiparameter Biosignal Acquisition SoC for Low Power Wearable Platform
title_sort reconfigurable multiparameter biosignal acquisition soc for low power wearable platform
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2016-11-01
description A low power and low noise reconfigurable analog front-end (AFE) system on a chip (SoC) for biosignal acquisition is presented. The presented AFE can be reconfigured for use in electropotential, bioimpedance, electrochemical, and photoelectrical modes. The advanced healthcare services based on multiparameter physiological biosignals can be easily implemented with these multimodal and highly reconfigurable features of the proposed system. The reconfigurable gain and input referred noise of the core instrumentation amplifier block are 25 dB to 52 dB, and 1 μVRMS, respectively. The power consumption of the analog blocks in one readout channel is less than 52 μW. The reconfigurable capability among various modes of applications including electrocardiogram, blood glucose concentration, respiration, and photoplethysmography are shown experimentally.
topic biosignal acquisition
reconfigurable circuit
analog front-end
electrocardiogram
photoplethysmography
blood glucose concentration
bioimpedance
url http://www.mdpi.com/1424-8220/16/12/2002
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AT hyounghoko reconfigurablemultiparameterbiosignalacquisitionsocforlowpowerwearableplatform
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