Events7th International Electronic Conference on Sensors and Applications
Published
This submission belongs to the session D. Applications of the event 7th International Electronic Conference on Sensors and Applications
Published date
14 Nov, 2020
Citation
Daniel Cuevas-González, Miguel Bravo-Zanoguera, Eladio Altamira-Colado, Roberto L. Avitia, Juan P. García-Vázquez, Marco A. Reyna, Coping with motion artifacts by analog front-end ECG microchips under a low voltage supply, and variable digital resolution and gain., in Proceedings of 7th International Electronic Conference on Sensors and Applications, 15 November–30 November 2020, MDPI: Basel, Switzerland, doi: 10.3390/ecsa-7-08247
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Coping with motion artifacts by analog front-end ECG microchips under a low voltage supply, and variable digital resolution and gain.

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1. Universidad Autónoma de Baja California, Mexico
2. Universidad Autónoma de Baja California
Abstract

The development of portable ECG has found growing markets, from wearable ECG sensor to ambulatory ECG recorder, encountering challenges of moderately complex to tightly regulated device. This study investigates how the different modalities of ECG are affected by motion artifact and their reduction techniques, when using analog front-end (AFE) integrated circuits such as the AD823X family. It is known that the typical range of current mobile health ECG devices ADC is 10-12 bits, and sometimes 16-bits, which might be insufficient to show up the small potential amplitudes useful in diagnosis; but the interest now is on the interplay of how a digital resolution choice and variable gain can cope with motion artifacts. With our methodology for a rapid prototyping of ECG device, and using the AFE AD8232 and Bluetooth communication, multiple ECG configurations are evaluated under two microcontroller systems of different resolution: a generic Arduino Nano board which features a 10-bit ADC and the 24-bit ADC converter of Silicon Labs C8051F350 board. From the ECG configuration applications (such as: cardiac monitor, fitness, HMR in chest, diagnostic, and Holter), analog filters characteristics and gain are explored under these two different microcontroller systems, in their capacity to solve the problems of motion artifacts alongside performance of the special parameters of each application.

Keywords
motion artifacts
portable ECG
analog front-end
AD8232
high-precision microcontroller
Manuscript
Oral Presentation
Poster
036741 Coping with motion artifacts by analog front-end ECG microchips under variable digital resolution and gain.pdf
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