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Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard

The new electronics of the ATLAS TileCal for the HL-LHC interfaces the on-detector and off-detector electronics by means of a Daughterboard. The Daughterboard is positioned on-detector featuring SFPs+ COTS, CERN GBTx ASICs, ProASIC FPGAs and Kintex Ultrascale FPGAs. The design minimizes single point...

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Detalles Bibliográficos
Autores principales: Valdes Santurio, Eduardo, Silverstein, Samuel, Dunne, Katherine Elaine, Clement, Christophe, Lee, Suhyun
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2835896
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author Valdes Santurio, Eduardo
Silverstein, Samuel
Dunne, Katherine Elaine
Clement, Christophe
Lee, Suhyun
author_facet Valdes Santurio, Eduardo
Silverstein, Samuel
Dunne, Katherine Elaine
Clement, Christophe
Lee, Suhyun
author_sort Valdes Santurio, Eduardo
collection CERN
description The new electronics of the ATLAS TileCal for the HL-LHC interfaces the on-detector and off-detector electronics by means of a Daughterboard. The Daughterboard is positioned on-detector featuring SFPs+ COTS, CERN GBTx ASICs, ProASIC FPGAs and Kintex Ultrascale FPGAs. The design minimizes single points of failure and and mitigates and radiation damage by means of a double-redundant scheme, Triple Mode Redundancy, Xilinx Soft Error Mitigation IP, CRC/FEC for link data transfer, and SEL protection circuitries. We present an updated summary of the TID, NIEL and SEE qualification tests, and performance studies of the Daughterboard revision 6 design.
id cern-2835896
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28358962023-06-12T08:55:47Zhttp://cds.cern.ch/record/2835896engValdes Santurio, EduardoSilverstein, SamuelDunne, Katherine ElaineClement, ChristopheLee, SuhyunRadiation studies performed on the High Luminosity ATLAS TileCal link DaughterboardParticle Physics - ExperimentThe new electronics of the ATLAS TileCal for the HL-LHC interfaces the on-detector and off-detector electronics by means of a Daughterboard. The Daughterboard is positioned on-detector featuring SFPs+ COTS, CERN GBTx ASICs, ProASIC FPGAs and Kintex Ultrascale FPGAs. The design minimizes single points of failure and and mitigates and radiation damage by means of a double-redundant scheme, Triple Mode Redundancy, Xilinx Soft Error Mitigation IP, CRC/FEC for link data transfer, and SEL protection circuitries. We present an updated summary of the TID, NIEL and SEE qualification tests, and performance studies of the Daughterboard revision 6 design.ATL-TILECAL-SLIDE-2022-530oai:cds.cern.ch:28358962022-10-06
spellingShingle Particle Physics - Experiment
Valdes Santurio, Eduardo
Silverstein, Samuel
Dunne, Katherine Elaine
Clement, Christophe
Lee, Suhyun
Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard
title Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard
title_full Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard
title_fullStr Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard
title_full_unstemmed Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard
title_short Radiation studies performed on the High Luminosity ATLAS TileCal link Daughterboard
title_sort radiation studies performed on the high luminosity atlas tilecal link daughterboard
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2835896
work_keys_str_mv AT valdessanturioeduardo radiationstudiesperformedonthehighluminosityatlastilecallinkdaughterboard
AT silversteinsamuel radiationstudiesperformedonthehighluminosityatlastilecallinkdaughterboard
AT dunnekatherineelaine radiationstudiesperformedonthehighluminosityatlastilecallinkdaughterboard
AT clementchristophe radiationstudiesperformedonthehighluminosityatlastilecallinkdaughterboard
AT leesuhyun radiationstudiesperformedonthehighluminosityatlastilecallinkdaughterboard