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PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT

Digital CMOS monolithic pixels sensors have been chosen for the upgrades of internal trackers of the ALICE experiment at CERN, namely MFT (Muon Forward Tracker) and ITS (Inner Tracking System). The existing mature rolling shutter mode CMOS sensor architecture needs several improvements in terms of r...

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Autores principales: Değerli, Yavuz, Flouzat, Christophe, Guilloux, Fabrice, Orsini, Fabienne, Venault, Philippe
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1109/NSSMIC.2014.7431047
http://cds.cern.ch/record/2285957
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author Değerli, Yavuz
Flouzat, Christophe
Guilloux, Fabrice
Orsini, Fabienne
Venault, Philippe
author_facet Değerli, Yavuz
Flouzat, Christophe
Guilloux, Fabrice
Orsini, Fabienne
Venault, Philippe
author_sort Değerli, Yavuz
collection CERN
description Digital CMOS monolithic pixels sensors have been chosen for the upgrades of internal trackers of the ALICE experiment at CERN, namely MFT (Muon Forward Tracker) and ITS (Inner Tracking System). The existing mature rolling shutter mode CMOS sensor architecture needs several improvements in terms of readout speed and power dissipation in order to fulfill the requirements of ALICE upgrades. In the framework of the current ALICE-MFT project, the proposed architecture consists in one hand to integrate the discriminator inside the pixel and on the other hand to activate several rows at the same time. The prototype sensor chip presented in this paper represents a FSBB (Full Scale Building Block) ASIC which gathers all validated architecture concepts in a large size chip of 10 mm × 6.9 mm (~1/3 of final sensor size). This chip, named PIXAM (PIXel sensor for Alice Mft), includes in each pixel of 25 μm × 25 μm: charge collection diode, amplification, CDS (Correlated Double Sampling) circuitry, and auto-zeroed discrimination. A digital sequencer generates and distributes the timing sequence needed for the pixels. In addition, zero suppression block has been designed on this chip to allow the data compression by keeping only addresses and data of hit pixels. The digital part has been hardened against SEU effects. A SPI slow control unit permits to program reference and bias values, configuration registers and the digital timing sequence.
id oai-inspirehep.net-1498712
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14987122019-09-30T06:29:59Zdoi:10.1109/NSSMIC.2014.7431047http://cds.cern.ch/record/2285957engDeğerli, YavuzFlouzat, ChristopheGuilloux, FabriceOrsini, FabienneVenault, PhilippePIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFTDetectors and Experimental TechniquesDigital CMOS monolithic pixels sensors have been chosen for the upgrades of internal trackers of the ALICE experiment at CERN, namely MFT (Muon Forward Tracker) and ITS (Inner Tracking System). The existing mature rolling shutter mode CMOS sensor architecture needs several improvements in terms of readout speed and power dissipation in order to fulfill the requirements of ALICE upgrades. In the framework of the current ALICE-MFT project, the proposed architecture consists in one hand to integrate the discriminator inside the pixel and on the other hand to activate several rows at the same time. The prototype sensor chip presented in this paper represents a FSBB (Full Scale Building Block) ASIC which gathers all validated architecture concepts in a large size chip of 10 mm × 6.9 mm (~1/3 of final sensor size). This chip, named PIXAM (PIXel sensor for Alice Mft), includes in each pixel of 25 μm × 25 μm: charge collection diode, amplification, CDS (Correlated Double Sampling) circuitry, and auto-zeroed discrimination. A digital sequencer generates and distributes the timing sequence needed for the pixels. In addition, zero suppression block has been designed on this chip to allow the data compression by keeping only addresses and data of hit pixels. The digital part has been hardened against SEU effects. A SPI slow control unit permits to program reference and bias values, configuration registers and the digital timing sequence.oai:inspirehep.net:14987122016
spellingShingle Detectors and Experimental Techniques
Değerli, Yavuz
Flouzat, Christophe
Guilloux, Fabrice
Orsini, Fabienne
Venault, Philippe
PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT
title PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT
title_full PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT
title_fullStr PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT
title_full_unstemmed PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT
title_short PIXAM: A full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the ALICE MFT
title_sort pixam: a full scale building block prototype sensor with in-pixel discrimination and improved rolling shutter architecture for the alice mft
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/NSSMIC.2014.7431047
http://cds.cern.ch/record/2285957
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