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QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade

We present results on the QIE12, a custom ASIC, being developed for the ATLAS TileCal Phase 2 Upgrade. The design features 1.5 fC sensitivity, more than 17 bits of dynamic range with logarithmic response, and an on-chip TDC with one nanosecond resolution. It has a programmable shunt output for monit...

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Detalles Bibliográficos
Autores principales: Drake, Gary, Paramonov, Alexander, Proudfoot, James, Stanek, Robert, Chekanov, Sergei
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2058155
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author Drake, Gary
Paramonov, Alexander
Proudfoot, James
Stanek, Robert
Chekanov, Sergei
author_facet Drake, Gary
Paramonov, Alexander
Proudfoot, James
Stanek, Robert
Chekanov, Sergei
author_sort Drake, Gary
collection CERN
description We present results on the QIE12, a custom ASIC, being developed for the ATLAS TileCal Phase 2 Upgrade. The design features 1.5 fC sensitivity, more than 17 bits of dynamic range with logarithmic response, and an on-chip TDC with one nanosecond resolution. It has a programmable shunt output for monitoring the integrated current. The device operates with no dead-time at 40 MHz, making it ideal for calorimetry at the LHC. We present bench measurements and integration studies that characterize the performance, radiation tolerance measurements, and the design for the ATLAS TileCal detector for the Phase 2 Upgrade.
id cern-2058155
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20581552019-09-30T06:29:59Zhttp://cds.cern.ch/record/2058155engDrake, GaryParamonov, AlexanderProudfoot, JamesStanek, RobertChekanov, SergeiQIE12: A New High-Performance ASIC for the ATLAS TileCal UpgradeParticle Physics - ExperimentWe present results on the QIE12, a custom ASIC, being developed for the ATLAS TileCal Phase 2 Upgrade. The design features 1.5 fC sensitivity, more than 17 bits of dynamic range with logarithmic response, and an on-chip TDC with one nanosecond resolution. It has a programmable shunt output for monitoring the integrated current. The device operates with no dead-time at 40 MHz, making it ideal for calorimetry at the LHC. We present bench measurements and integration studies that characterize the performance, radiation tolerance measurements, and the design for the ATLAS TileCal detector for the Phase 2 Upgrade.ATL-TILECAL-SLIDE-2015-771oai:cds.cern.ch:20581552015-10-08
spellingShingle Particle Physics - Experiment
Drake, Gary
Paramonov, Alexander
Proudfoot, James
Stanek, Robert
Chekanov, Sergei
QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade
title QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade
title_full QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade
title_fullStr QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade
title_full_unstemmed QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade
title_short QIE12: A New High-Performance ASIC for the ATLAS TileCal Upgrade
title_sort qie12: a new high-performance asic for the atlas tilecal upgrade
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2058155
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AT paramonovalexander qie12anewhighperformanceasicfortheatlastilecalupgrade
AT proudfootjames qie12anewhighperformanceasicfortheatlastilecalupgrade
AT stanekrobert qie12anewhighperformanceasicfortheatlastilecalupgrade
AT chekanovsergei qie12anewhighperformanceasicfortheatlastilecalupgrade