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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...
Autores principales: | , , , , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2835896 |
_version_ | 1780975710400151552 |
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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 |