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HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL

The two variants of HGCROC are the ASICs designed to readout the more than 6 million channels of the future HGCAL of CMS, which will consist of hexagonal silicon sensors for a large part but also SiPM-on-scintillators tiles. The SiPM version of the chip was made from the silicon version by adapting...

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Detalles Bibliográficos
Autores principales: Bombardi, G, Marchioro, A, Vergine, T, Bouyjou, F, Guilloux, F, Callier, S, Dulucq, F, El Berni, M, de La Taille, C, Raux, L, Thienpont, D, Extier, S, Firlej, M, Fiutowski, T, Idzik, M, Moron, J, Swientek, K
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1109/NSS/MIC42677.2020.9508012
http://cds.cern.ch/record/2800510
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author Bombardi, G
Marchioro, A
Vergine, T
Bouyjou, F
Guilloux, F
Callier, S
Dulucq, F
El Berni, M
de La Taille, C
Raux, L
Thienpont, D
Extier, S
Firlej, M
Fiutowski, T
Idzik, M
Moron, J
Swientek, K
author_facet Bombardi, G
Marchioro, A
Vergine, T
Bouyjou, F
Guilloux, F
Callier, S
Dulucq, F
El Berni, M
de La Taille, C
Raux, L
Thienpont, D
Extier, S
Firlej, M
Fiutowski, T
Idzik, M
Moron, J
Swientek, K
author_sort Bombardi, G
collection CERN
description The two variants of HGCROC are the ASICs designed to readout the more than 6 million channels of the future HGCAL of CMS, which will consist of hexagonal silicon sensors for a large part but also SiPM-on-scintillators tiles. The SiPM version of the chip was made from the silicon version by adapting only the first amplifier stage. The first aspect is on the performance for both versions in terms of noise, charge and timing, the DAQ and Trigger paths, as well as results from irradiation qualification with total ionizing dose and heavy ions for single-event effects. The third version of HGCROC chip is a major digital release, with RadHard solutions and an additional buffer.
id cern-2800510
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-28005102022-08-09T15:20:49Zdoi:10.1109/NSS/MIC42677.2020.9508012http://cds.cern.ch/record/2800510engBombardi, GMarchioro, AVergine, TBouyjou, FGuilloux, FCallier, SDulucq, FEl Berni, Mde La Taille, CRaux, LThienpont, DExtier, SFirlej, MFiutowski, TIdzik, MMoron, JSwientek, KHGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCALDetectors and Experimental TechniquesThe two variants of HGCROC are the ASICs designed to readout the more than 6 million channels of the future HGCAL of CMS, which will consist of hexagonal silicon sensors for a large part but also SiPM-on-scintillators tiles. The SiPM version of the chip was made from the silicon version by adapting only the first amplifier stage. The first aspect is on the performance for both versions in terms of noise, charge and timing, the DAQ and Trigger paths, as well as results from irradiation qualification with total ionizing dose and heavy ions for single-event effects. The third version of HGCROC chip is a major digital release, with RadHard solutions and an additional buffer.oai:cds.cern.ch:28005102020
spellingShingle Detectors and Experimental Techniques
Bombardi, G
Marchioro, A
Vergine, T
Bouyjou, F
Guilloux, F
Callier, S
Dulucq, F
El Berni, M
de La Taille, C
Raux, L
Thienpont, D
Extier, S
Firlej, M
Fiutowski, T
Idzik, M
Moron, J
Swientek, K
HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL
title HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL
title_full HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL
title_fullStr HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL
title_full_unstemmed HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL
title_short HGCROC-Si and HGCROC-SiPM: the front-end readout ASICs for the CMS HGCAL
title_sort hgcroc-si and hgcroc-sipm: the front-end readout asics for the cms hgcal
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/NSS/MIC42677.2020.9508012
http://cds.cern.ch/record/2800510
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