A Bidirectional-Current CMOS Potentiostat for Fast-Scan Cyclic Voltammetry Detector Arrays

A potentiostat circuit for the application of bipolar electrode voltages and detection of bidirectional currents using a microelectrode array is presented. The potentiostat operates as a regulated-cascode amplifier for positive input currents, and as an active-input regulated-cascode mirror for nega...

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Veröffentlicht in:IEEE transactions on biomedical circuits and systems 2018-08, Vol.12 (4), p.894-903
Hauptverfasser: Dorta-Quinones, Carlos I., Huang, Meng, Ruelas, John C., Delacruz, Joannalyn, Apsel, Alyssa B., Minch, Bradley A., Lindau, Manfred
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Sprache:eng
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Zusammenfassung:A potentiostat circuit for the application of bipolar electrode voltages and detection of bidirectional currents using a microelectrode array is presented. The potentiostat operates as a regulated-cascode amplifier for positive input currents, and as an active-input regulated-cascode mirror for negative input currents. This topology enables constant-potential amperometry and fast-scan cyclic voltammetry (FSCV) at microelectrode arrays for parallel recording of quantal release events, electrode impedance characterization, and high-throughput drug screening. A 64channel FSCV detector array, fabricated in a 0.5-μm, 5-V CMOS process, is also demonstrated. Each detector occupies an area of 45 μm × 30 μm and consists of only 14 transistors and a 50-fF integrating capacitor. The system was validated using prerecorded input stimuli from actual FSCV measurements at a carbon-fiber microelectrode.
ISSN:1932-4545
1940-9990
DOI:10.1109/TBCAS.2018.2828828