arXiv · 2011.03581
A Bidirectional Current-Mirror Based Potentiostat Using a Slice-Based Class-AB Amplifier
Abstract
A pico-ampere sensitive electrochemical sensor signal acquisition chain consisting of a multi-channel bidirectional current-mirror based potentiostat and a multiplexed current-input delta-sigma ($ΔΣ$) ADC is presented. Slice-based class-AB amplifiers with output stage current replication using reconfigurable current-mirrors enable bidirectional current sensing over a range of five decades. The replicated current is digitized by the ADC. The proposed circuit achieves a minimum detectable current of 91.7 pA, resulting in a dynamic range of 147 dB for sensor currents up to $\pm$1 mA. The potentiostat is operated at a 3 V supply, the ADC at 1.5 V. The static power consumption of a single interface channel depends on the number of active amplifier slices and is between 14.1 $μ$W and 39.3 $μ$W. The highest power efficiency among similar systems and the low voltage headroom consumption of less than 500 mV enables a versatile use of the interface for multiple sensing applications.
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Markus Haberler, Inge Siegl, Christoph Steffan, Mario Auer. 2020-10-27. A Bidirectional Current-Mirror Based Potentiostat Using a Slice-Based Class-AB Amplifier. https://doi.org/10.1109/lssc.2020.3013667
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