The goal of this work is to provide an extensive analysis of the noise performances which can be attained by detector front-end integrated circuits in the 0.13 µm CMOS node. To estimate the noise limits of a front-end system in this CMOS generation, the paper presents the results of measurements carried out on NMOS and PMOS devices fabricated in a commercial process. Parameters extracted from experimental data are used to define design criteria for noise optimization in the perspective of future experimental environments.

(2006). Design criteria for low noise front-end electronics in the 0.13 µm CMOS generation [journal article - articolo]. In NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT. Retrieved from http://hdl.handle.net/10446/20142

Design criteria for low noise front-end electronics in the 0.13 µm CMOS generation

Re, Valerio;Manghisoni, Massimo;Traversi, Gianluca
2006-01-01

Abstract

The goal of this work is to provide an extensive analysis of the noise performances which can be attained by detector front-end integrated circuits in the 0.13 µm CMOS node. To estimate the noise limits of a front-end system in this CMOS generation, the paper presents the results of measurements carried out on NMOS and PMOS devices fabricated in a commercial process. Parameters extracted from experimental data are used to define design criteria for noise optimization in the perspective of future experimental environments.
journal article - articolo
2006
Re, Valerio; Manghisoni, Massimo; Ratti, Lodovico; Speziali, Valeria; Traversi, Gianluca
(2006). Design criteria for low noise front-end electronics in the 0.13 µm CMOS generation [journal article - articolo]. In NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT. Retrieved from http://hdl.handle.net/10446/20142
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/20142
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