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Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade

High Voltage CMOS sensors are a promising technology for tracking detectors in collider experiments. Extensive R&D studies are being carried out by the ATLAS Collaboration for a possible use of HV-CMOS in the High Luminosity LHC upgrade of the Inner Tracker detector. CaRIBOu (Control and Readout...

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Autores principales: Liu, H., Benoit, M., Chen, H., Chen, K., Di Bello, F.A., Iacobucci, G., Lanni, F., Peric, I., Ristic, B., Vicente Barreto Pinto, M., Wu, W., Xu, L., Jin, G.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/12/01/P01008
http://cds.cern.ch/record/2141992
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author Liu, H.
Benoit, M.
Chen, H.
Chen, K.
Di Bello, F.A.
Iacobucci, G.
Lanni, F.
Peric, I.
Ristic, B.
Vicente Barreto Pinto, M.
Wu, W.
Xu, L.
Jin, G.
author_facet Liu, H.
Benoit, M.
Chen, H.
Chen, K.
Di Bello, F.A.
Iacobucci, G.
Lanni, F.
Peric, I.
Ristic, B.
Vicente Barreto Pinto, M.
Wu, W.
Xu, L.
Jin, G.
author_sort Liu, H.
collection CERN
description High Voltage CMOS sensors are a promising technology for tracking detectors in collider experiments. Extensive R&D studies are being carried out by the ATLAS Collaboration for a possible use of HV-CMOS in the High Luminosity LHC upgrade of the Inner Tracker detector. CaRIBOu (Control and Readout Itk BOard) is a modular test system developed to test Silicon based detectors. It currently includes five custom designed boards, a Xilinx ZC706 development board, FELIX (Front-End LInk eXchange) PCIe card and a host computer. A software program has been developed in Python to control the CaRIBOu hardware. CaRIBOu has been used in the testbeam of the HV-CMOS sensor AMS180v4 at CERN. Preliminary results have shown that the test system is very versatile. Further development is ongoing to adapt to different sensors, and to make it available to various lab test stands.
id cern-2141992
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-21419922023-03-14T19:35:06Zdoi:10.1088/1748-0221/12/01/P01008http://cds.cern.ch/record/2141992engLiu, H.Benoit, M.Chen, H.Chen, K.Di Bello, F.A.Iacobucci, G.Lanni, F.Peric, I.Ristic, B.Vicente Barreto Pinto, M.Wu, W.Xu, L.Jin, G.Development of a modular test system for the silicon sensor R&D of the ATLAS Upgradehep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesHigh Voltage CMOS sensors are a promising technology for tracking detectors in collider experiments. Extensive R&D studies are being carried out by the ATLAS Collaboration for a possible use of HV-CMOS in the High Luminosity LHC upgrade of the Inner Tracker detector. CaRIBOu (Control and Readout Itk BOard) is a modular test system developed to test Silicon based detectors. It currently includes five custom designed boards, a Xilinx ZC706 development board, FELIX (Front-End LInk eXchange) PCIe card and a host computer. A software program has been developed in Python to control the CaRIBOu hardware. CaRIBOu has been used in the testbeam of the HV-CMOS sensor AMS180v4 at CERN. Preliminary results have shown that the test system is very versatile. Further development is ongoing to adapt to different sensors, and to make it available to various lab test stands.High Voltage CMOS sensors are a promising technology for tracking detectors in collider experiments. Extensive R&D studies are being carried out by the ATLAS Collaboration for a possible use of HV-CMOS in the High Luminosity LHC upgrade of the Inner Tracker detector. CaRIBOu (Control and Readout Itk BOard) is a modular test system developed to test Silicon based detectors. It currently includes five custom designed boards, a Xilinx ZC706 development board, FELIX (Front-End LInk eXchange) PCIe card and a host computer. A software program has been developed in Python to control the CaRIBOu hardware. CaRIBOu has been used in the testbeam of the HV-CMOS sensor CCPDv4 at CERN. Preliminary results have shown that the test system is very versatile. Further development is ongoing to adapt to different sensors, and to make it available to various lab test stands.arXiv:1603.07950oai:cds.cern.ch:21419922016-03-25
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Liu, H.
Benoit, M.
Chen, H.
Chen, K.
Di Bello, F.A.
Iacobucci, G.
Lanni, F.
Peric, I.
Ristic, B.
Vicente Barreto Pinto, M.
Wu, W.
Xu, L.
Jin, G.
Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade
title Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade
title_full Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade
title_fullStr Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade
title_full_unstemmed Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade
title_short Development of a modular test system for the silicon sensor R&D of the ATLAS Upgrade
title_sort development of a modular test system for the silicon sensor r&d of the atlas upgrade
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/12/01/P01008
http://cds.cern.ch/record/2141992
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