Electrochemical Instrumentation of an Embedded Potentiostat System (EPS) for a Programmable-System-On-a-Chip

Fecha de publicación

2019-01-18T15:50:55Z

2019-01-18T15:50:55Z

2018-12-18

2019-01-18T15:50:56Z

Resumen

Under the main features required on portable devices in electrochemical instrumentation is to have a small size, low power consumption, economically affordable and precision in the measurements. This paper describes the development of a programmable Embedded Potentiostat System (EPS) capable of performing electrochemical sensing over system-on-a-chip platforms. Furthermore, the study explains a circuit design and develops some validation of the entire system. The hardware validation is performed by electrochemical experiments such as Double Step Chronoamperometry (DSC), Linear Sweep Voltammetry (LSV) and Cyclic Voltammetry (CV); moreover, a comparison of the experimental signals between a commercial potentiostat and the EPS was done by analysis of errors on the response signal. Results illustrate that the EPS is capable of handling currents in the range of absolute values of 86.44 to 3000 nA and having control voltages in the range of ± 2 V. The device can support from 50 to 2000 samples per second. The EPS capabilities were compared with other compact potentiostats. The programmable EPS is an original approach which hugely reduces the hardware complexity and leads the way to create new applications for Point-of-Care or industrial developments with a reusable full electronics module.

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Inglés

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MDPI

Documentos relacionados

Reproducció del document publicat a: https://doi.org/10.3390/s18124490

Sensors, 2018, vol. 18, num. 12, p. 4490

https://doi.org/10.3390/s18124490

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Derechos

cc-by (c) Muñoz-Martínez, Adrián Iván et al., 2018

http://creativecommons.org/licenses/by/3.0/es

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