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IEEE Trans Biomed Circuits Syst ; 14(4): 903-917, 2020 08.
Article in English | MEDLINE | ID: mdl-32746358

ABSTRACT

Electrochemical micro-sensors made of nano-graphitic (NG) carbon materials could offer high sensitivity and support voltammetry measurements at vastly different temporal resolutions. Here, we implement a configurable CMOS biochip for measuring low concentrations of bio-analytes by leveraging these advantageous features of NG micro-sensors. In particular, the core of the biochip is a discrete-time ∆Σ modulator, which can be configured for optimal power consumption according to the temporal resolution requirements of the sensing experiments while providing a required precision of ≈ 13 effective number of bits. We achieve this new functionality by developing a design methodology using the physical models of transistors, which allows the operating region of the modulator to be switched on-demand between weak and strong inversion. We show the application of this configurable biochip through in-vitro measurements of dopamine with concentrations as low as 50 nM and 200 nM at temporal resolutions of 100 ms and 10 s, respectively.


Subject(s)
Electrochemical Techniques/instrumentation , Graphite/chemistry , Lab-On-A-Chip Devices , Dopamine/analysis , Equipment Design , Nanostructures/chemistry , Semiconductors
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