DocumentCode :
621280
Title :
A 14-bit extended-range incremental ΣΔ ADC matlab-model based on 90nm CMOS-technology
Author :
Cavallo, D. ; De Matteis, M. ; Ronchi, M. ; Guidetti, E. ; Leggeri, G. ; Baschirotto, A.
Author_Institution :
Dept. of Phys. “G. Occhialini”, Univ. of Milan Bicocca, Milan, Italy
fYear :
2013
fDate :
29-31 May 2013
Firstpage :
143
Lastpage :
146
Abstract :
In this paper a complete Matlab-Based-Model of a high resolution second-order multi- channel incremental A-to-D-Converter is presented. The A-to-D-Converter model includes the most relevant non-idealities for future transistor- level implementation. The reference technology used for the model is the 90nm CMOS node. The analog part of the A-to-D-Converter will be implemented by switched-capacitors integrators, so that the passive components and MOS transistor matching parameters are included in the Model. CMOS Process deviation is also taken into account, since the Matlab-Based model has the feature to set the Opamp finite dc-gain and bandwidth. External slew-rate limitation is also modeled in the Opamp. The system complies with the overall specifications of the biomedical systems and combines the advantages of oversampling with resolution improvement thanks to an extended-counting-based technique. The final simulations results validate the model, with a signal-to-noise-distortion ratio of 92.1 dB within a 500 kHz bandwidth at a 16 MHz sample frequency.
Keywords :
CMOS digital integrated circuits; integrated circuit modelling; mathematics computing; sigma-delta modulation; CMOS process deviation; CMOS technology; MOS transistor matching parameters; bandwidth 500 kHz; biomedical systems; extended-counting-based technique; extended-range incremental ΣΔ ADC Matlab model; external slew-rate limitation; frequency 16 MHz; high-resolution second-order multichannel incremental A-to-D converter; opamp finite DC-gain; passive components; signal-to-noise-distortion ratio; size 90 nm; switched-capacitors integrators; transistor-level implementation; Bandwidth; CMOS integrated circuits; CMOS technology; MATLAB; Mathematical model; Modulation; Semiconductor device modeling; Analog-to-Digital conversion; CMOS analog integrated circuit; Extended Range; Incremental ΣΔ converter; Switched-Capacitor circuit;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IC Design & Technology (ICICDT), 2013 International Conference on
Conference_Location :
Pavia
Print_ISBN :
978-1-4673-4740-2
Electronic_ISBN :
978-1-4673-4741-9
Type :
conf
DOI :
10.1109/ICICDT.2013.6563323
Filename :
6563323
Link To Document :
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