A 155-dB Dynamic Range Current Measurement Front End for Electrochemical Biosensing

Shanshan Dai(Brown University), Rukshan T. Perera(Brown University), Zi Yang(Brown University), Jacob K. Rosenstein(Brown University)
IEEE Transactions on Biomedical Circuits and Systems
October 1, 2016
Cited by 52

Abstract

An integrated current measurement system with ultra wide dynamic range is presented and fabricated in a 180-nm CMOS technology. Its dual-mode design provides concurrent voltage and frequency outputs, without requiring an external clock source. An integrator-differentiator core provides a voltage output with a noise floor of 11.6 fA/ [Formula: see text] and a -3 dB cutoff frequency of 1.4 MHz. It is merged with an asynchronous current-to-frequency converter, which generates an output frequency linearly proportional to the input current. Together, the voltage and frequency outputs yield a current measurement range of 155 dB, spanning from 204 fA (100 Hz) or 1.25 pA (10 kHz) to 11.6 μA. The proposed architecture's low noise, wide bandwidth, and wide dynamic range make it ideal for measurements of highly nonlinear electrochemical and electrophysiological systems.


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