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Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs

For the upgrade in the Ring-Imaging Cherenkov Detector (RICH) in the LHCb detector, Xilinx Kintex-7 FPGAs are projected to be taken into operation as data acquisition devices for the measurement taken by the photosensors. They will be placed in the immediate surrounding area of the particle collisio...

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Autor principal: Arnold, Lukas
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2232049
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author Arnold, Lukas
author_facet Arnold, Lukas
author_sort Arnold, Lukas
collection CERN
description For the upgrade in the Ring-Imaging Cherenkov Detector (RICH) in the LHCb detector, Xilinx Kintex-7 FPGAs are projected to be taken into operation as data acquisition devices for the measurement taken by the photosensors. They will be placed in the immediate surrounding area of the particle collision and hence have to face severe radiation. In order to have a prediction on the working reliability of the devices, irradiation tests will be performed to determine upset probability and effectiveness of mitigation techniques. The thesis deals with the question of designing an irradiation resistivity and mitigation measurement FPGA, its simulation, implementation and verification. To ensure reliable communication during radiation tests between the device-under-test and the DAQ module despite radioactive environment and limited cable resources, a custom protocol is examined and defined.
id cern-2232049
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-22320492019-09-30T06:29:59Zhttp://cds.cern.ch/record/2232049engArnold, LukasIrradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAsDetectors and Experimental TechniquesFor the upgrade in the Ring-Imaging Cherenkov Detector (RICH) in the LHCb detector, Xilinx Kintex-7 FPGAs are projected to be taken into operation as data acquisition devices for the measurement taken by the photosensors. They will be placed in the immediate surrounding area of the particle collision and hence have to face severe radiation. In order to have a prediction on the working reliability of the devices, irradiation tests will be performed to determine upset probability and effectiveness of mitigation techniques. The thesis deals with the question of designing an irradiation resistivity and mitigation measurement FPGA, its simulation, implementation and verification. To ensure reliable communication during radiation tests between the device-under-test and the DAQ module despite radioactive environment and limited cable resources, a custom protocol is examined and defined.CERN-THESIS-2015-372oai:cds.cern.ch:22320492016-11-11T20:26:16Z
spellingShingle Detectors and Experimental Techniques
Arnold, Lukas
Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs
title Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs
title_full Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs
title_fullStr Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs
title_full_unstemmed Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs
title_short Irradiation Resistivity and Mitigation Measurement Design for Xilinx Kintex-7 FPGAs
title_sort irradiation resistivity and mitigation measurement design for xilinx kintex-7 fpgas
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2232049
work_keys_str_mv AT arnoldlukas irradiationresistivityandmitigationmeasurementdesignforxilinxkintex7fpgas