Electronic system for experimentation in ac electrogravimetry II: implemented design

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...

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Autores:
Torres-Villa, R. A. (Róbinson Alberto)
Arnau, A. (Antonio)
Perrot, H. (Hubert )
Aedo-Cobo, J. E. (José Edinson)
Tipo de recurso:
Article of journal
Fecha de publicación:
2007
Institución:
Universidad EIA .
Repositorio:
Repositorio EIA .
Idioma:
spa
OAI Identifier:
oai:repository.eia.edu.co:11190/579
Acceso en línea:
https://repository.eia.edu.co/handle/11190/579
Palabra clave:
REI00059
ENERGÍA
ENERGY
ELECTRÓLISIS
ELECTROLYSIS
ELECTROGRAVIMETRÍA AC
AC ELECTROGRAVIMETRY
QUARTZ CRYSTAL MICROBALANCE
MICROBALANZA DE CRISTAL DE CUARZO
PHASE LOCKED LOOPS
BANDWIDTHRESOLUTION TRADE - OFF
COARSE AND FINE TUNING
BUCLES DE ENGANCHE DE FASE
COMPROMISO ANCHO DE BANDA - RESOLUCIÓN
AJUSTE GRUESO Y FINO
Rights
openAccess
License
Derechos Reservados - Universidad EIA, 2020
Description
Summary: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).