An 8×16 array of sensing micro-sites employs a fully-electrical label-free technique for DNA recognition using capacitance measurement and is fabricated in 0.5μm CMOS with added noble metal. Repeatability and parallel detection capability have been demonstrated. The DNA-chip is suitable for low-cost, fully-integrated point-of-care applications.

C. Stagni Degli Esposti, C. Guiducci, C. Paulus, M. Schienle, M. Augustyniak, G. Zuccheri, et al. (2006). Fully electronic CMOS DNA detection array based on capacitance measurement with on-chip analog-to-digital conversion. IEEE [10.1109/ISSCC.2006.1696035].

Fully electronic CMOS DNA detection array based on capacitance measurement with on-chip analog-to-digital conversion

STAGNI DEGLI ESPOSTI, CLAUDIO;GUIDUCCI, CARLOTTA;ZUCCHERI, GIAMPAOLO;SAMORI', BRUNO;BENINI, LUCA;RICCO', BRUNO;
2006

Abstract

An 8×16 array of sensing micro-sites employs a fully-electrical label-free technique for DNA recognition using capacitance measurement and is fabricated in 0.5μm CMOS with added noble metal. Repeatability and parallel detection capability have been demonstrated. The DNA-chip is suitable for low-cost, fully-integrated point-of-care applications.
2006
Digest of Technical Papers - IEEE International Solid-State Circuits Conference
69
78
C. Stagni Degli Esposti, C. Guiducci, C. Paulus, M. Schienle, M. Augustyniak, G. Zuccheri, et al. (2006). Fully electronic CMOS DNA detection array based on capacitance measurement with on-chip analog-to-digital conversion. IEEE [10.1109/ISSCC.2006.1696035].
C. Stagni Degli Esposti; C. Guiducci; C. Paulus; M. Schienle; M. Augustyniak; G. Zuccheri; B. Samorì; L. Benini; B. Riccò; R. Thewes...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/114991
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