Skip to main navigation menu Skip to main content Skip to site footer

ELECTRONIC SYSTEM FOR EXPERIMENTATION IN AC ELECTROGRAVIMETRY II: IMPLEMENTED DESIGN

ELECTRONIC SYSTEM FOR EXPERIMENTATION IN AC ELECTROGRAVIMETRY II: IMPLEMENTED DESIGN



Open | Download


Section
Articles

How to Cite
ELECTRONIC SYSTEM FOR EXPERIMENTATION IN AC ELECTROGRAVIMETRY II: IMPLEMENTED DESIGN. (2013). Revista EIA, 4(7), 63-73. https://eiaupgrade.metarevistas.org/index.php/reveia/article/view/171

DOI
license
Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Copyright statement

The authors exclusively assign to the Universidad EIA, with the power to assign to third parties, all the exploitation rights that derive from the works that are accepted for publication in the Revista EIA, as well as in any product derived from it and, in in particular, those of reproduction, distribution, public communication (including interactive making available) and transformation (including adaptation, modification and, where appropriate, translation), for all types of exploitation (by way of example and not limitation : in paper, electronic, online, computer or audiovisual format, as well as in any other format, even for promotional or advertising purposes and / or for the production of derivative products), for a worldwide territorial scope and for the entire duration of the rights provided for in the current published text of the Intellectual Property Law. This assignment will be made by the authors without the right to any type of remuneration or compensation.

Consequently, the author may not publish or disseminate the works that are selected for publication in the Revista EIA, neither totally nor partially, nor authorize their publication to third parties, without the prior express authorization, requested and granted in writing, from the Univeridad EIA.

Róbinson Torres
Antonio Arnau
Hubert Perrot
José Edinson Aedo

Róbinson Torres,

Ingeniero Electrónico, Universidad de Antioquia. Profesor Investigador, Grupo Gibec, Ingeniería Biomédica, Escuela de Ingeniería de Antioquia e Instituto de Ciencias de la Salud. Estudiante de Maestría en Ingeniería, Universidad de Antioquia, Grupo Microe.

Antonio Arnau,

Ingeniero Electrónico y Doctor en Ingeniería Electrónica. Departamento Ingeniería Electrónica, Universidad Politécnica de Valencia.

Hubert Perrot,

ngénieur Chimist, École Supérieure de Chimie Industrielle de Lyon. Docteur, École Centrale de Lyon. UPR 15 du CNRS, Physique des Liquides et Électrochimie, Université Pierre et Marie Curie, Paris. LISE (Laboratoire Interfaces et Systèmes Electrochimiques), Université P. et M. Curie.

José Edinson Aedo,

MSc. PhD. Universidade de São Paulo, Brasil. Departamento de Ingeniería Electrónica. Director Grupo de Microelectrónica y Control Microe, Universidad de Antioquia.

A detailed description of the electronic system designed to improve the measurements in an experimental AC electrogravimetry setup is presented. This system is committed to acquire appropriated data for determining the Electrogravimetric Transfer Function (EGTF) and provide information regarding the mass transfer in an electrochemical cell in the AC Electrogravimetry Technique, but maintaining a good trade-off between the locking frequency bandwidth and the resolution in the frequency tracking, that is, enlarging the bandwidth of the system to follow signals with frequency as higher as 1 kHz, but maintaining an accurate and continuous tracking of this signal. The enlarged bandwidth allows the study of fast kinetic process in electrochemical applications and the continuous tracking let to achieve a precise measurement with good resolution rather than average frequency records obtained by conventional frequency meters. The system is based on an Analogue-Digital Phase Locked Loop (A-D PLL).

Resumen: En este artículo se presenta una descripción detallada del sistema electrónico diseñado para mejorar las medidas en un sistema experimental de electrogravimetría AC. El sistema diseñado se encarga de adquirir los datos adecuados para determinar la función de transferencia electrogravimétrica (EGTF) y proveer información relacionada con la transferencia de masa en una celda electroquímica en la técnica de electrogravimetría AC, pero manteniendo un buen compromiso entre el ancho de banda de enganche y la resolución en el seguimiento de la frecuencia, es decir, el sistema incrementa el ancho de banda para permitir el seguimiento de señales con frecuencias hasta de 1 kHz, pero conservando un exacto y continuo seguimiento de esta señal. El aumento del ancho de banda permite el estudio de procesos con una cinética rápida en aplicaciones electroquímicas y el seguimiento continuo de la señal permite la obtención de medidas precisas con buena resolución en contraste con los datos de frecuencia promediados entregados por los frecuencímetros convencionales. El sistema se basa en un bucle de enganche de fase analógico-digital (A-D PLL).


Article visits 257 | PDF visits 164


Downloads

Download data is not yet available.