Piezoresistive 6-MNA coated microcantilevers with signal conditioning circuits for electronic nose

Gilda, Neena A. ; Patil, Sheetal ; Seena, V. ; Joshi, Sanjay ; Thaker, Viral ; Thakur, Sanket ; Anvesha, A. ; Shojaei Baghini, M. ; Sharma, D. K. ; Ramgopal Rao, V. (2011) Piezoresistive 6-MNA coated microcantilevers with signal conditioning circuits for electronic nose Proceedings of the IEEE Asian Solid-State Circuits Conference (A-SSCC) 2011, Jeju, Korea . pp. 121-124.

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Official URL: http://ieeexplore.ieee.org/xpl/freeabs_all.jsp?arn...

Related URL: http://dx.doi.org/10.1109/ASSCC.2011.6123619

Abstract

This paper presents a micro cantilever based piezo-resistive sensor and its fabrication process along with two different techniques for signal conditioning of sensor output aimed for artificial nose applications. The proposed micro-cantilevers feature a special coating of 6-Marcaptonicotonic acid (6-MNA) on one side of the cantilever which leads to a selective reaction of the target analyte molecules with the functionalized cantilever surface. Two signal conditioning schemes, a novel current excitation method and a resistance to frequency conversion (RFC) method using a new proposed circuit are implemented to precisely read the piezo-resistance changes. Current excitation method is implemented using commercial ICs while RFC method is implemented using a low-power test chip constituting of instrumentation amplifier, buffer and comparator in 180nm mixed-mode CMOS technology. It is shown that the implemented RFC method provides a resolution of 5ppm and is useful for low-cost on-chip measurements involving the piezo-resistive sensors. Implemented current excitation method provides measurement resolution of 40 parts per billion with minimum SNR value of 5 dB which is better than previously-reported values.

Item Type:Article
Source:Copyright of this article belongs to Proceedings of the IEEE Asian Solid-State Circuits Conference (A-SSCC) 2011, Jeju, Korea.
ID Code:80932
Deposited On:02 Feb 2012 14:30
Last Modified:02 Feb 2012 14:30

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