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Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors

The Level-1 Calorimeter Trigger is a digital pipelined system, reducing the 40 MHz bunch-crossing rate down to 75 kHz. It consists of a Preprocessor, a Cluster Processor (CP), and a Jet/Energy-sum Processor (JEP). The CP and JEP receive digitised trigger-tower data from the Preprocessor and produce...

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Detalles Bibliográficos
Autores principales: Mahout, Gilles, Achenbach, R, Andrei, V, Bauss, B, Barnett, B M, Bohm, C, Booth, J R A, Brawn, I P, Charlton, D G, Curtis, C J, Davis, A O, Edwards, J, Eisenhandler, E F, Faulkner, P J W, Föhlisch, F, Gee, C N P, Geweniger, C, Gillman, A R, Hanke, P, Hellman, S, Hidvégi, A, Hillier, S J, Kluge, E E, Landon, M, Mahboubi, K, Meier, K, Perera, V J O, Qian, W, Rieke, S, Rühr, F, Sankey, D P C, Staley, R J, Schäfer, U, Schmitt, K, Schultz-Coulon, H C, Silverstein, S, Stamen, R, Tapprogge, S, Thomas, J P, Trefzger, T, Typaldos, D, Watkins, P M, Watson, A, Weber, P, Woerling, E E
Lenguaje:eng
Publicado: CERN 2007
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2007-001.391
http://cds.cern.ch/record/1028145
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author Mahout, Gilles
Achenbach, R
Andrei, V
Bauss, B
Barnett, B M
Bohm, C
Booth, J R A
Brawn, I P
Charlton, D G
Curtis, C J
Davis, A O
Edwards, J
Eisenhandler, E F
Faulkner, P J W
Föhlisch, F
Gee, C N P
Geweniger, C
Gillman, A R
Hanke, P
Hellman, S
Hidvégi, A
Hillier, S J
Kluge, E E
Landon, M
Mahboubi, K
Meier, K
Perera, V J O
Qian, W
Rieke, S
Rühr, F
Sankey, D P C
Staley, R J
Schäfer, U
Schmitt, K
Schultz-Coulon, H C
Silverstein, S
Stamen, R
Tapprogge, S
Thomas, J P
Trefzger, T
Typaldos, D
Watkins, P M
Watson, A
Weber, P
Woerling, E E
author_facet Mahout, Gilles
Achenbach, R
Andrei, V
Bauss, B
Barnett, B M
Bohm, C
Booth, J R A
Brawn, I P
Charlton, D G
Curtis, C J
Davis, A O
Edwards, J
Eisenhandler, E F
Faulkner, P J W
Föhlisch, F
Gee, C N P
Geweniger, C
Gillman, A R
Hanke, P
Hellman, S
Hidvégi, A
Hillier, S J
Kluge, E E
Landon, M
Mahboubi, K
Meier, K
Perera, V J O
Qian, W
Rieke, S
Rühr, F
Sankey, D P C
Staley, R J
Schäfer, U
Schmitt, K
Schultz-Coulon, H C
Silverstein, S
Stamen, R
Tapprogge, S
Thomas, J P
Trefzger, T
Typaldos, D
Watkins, P M
Watson, A
Weber, P
Woerling, E E
author_sort Mahout, Gilles
collection CERN
description The Level-1 Calorimeter Trigger is a digital pipelined system, reducing the 40 MHz bunch-crossing rate down to 75 kHz. It consists of a Preprocessor, a Cluster Processor (CP), and a Jet/Energy-sum Processor (JEP). The CP and JEP receive digitised trigger-tower data from the Preprocessor and produce electron/photon, tau, and jet trigger multiplicities, total and missing transverse energies, and Region-of-Interest (RoI) information. Data are read out to the data acquisition (DAQ) system to monitor the trigger by using readout driver modules (ROD). A dedicated backplane has been designed to cope with the demanding requirements of the CP and JEP sub-systems. A number of pre-production boards were manufactured in order to fully populate a crate and test the robustness of the design on a large scale. Dedicated test modules to emulate digitised calorimeter signals have been used. All modules, cables and backplanes on test are final versions for use at the LHC. This test rig represents up to one third of the Level-1 digital processor system. Real-time data between modules were processed and time-slice readout data was transferred to the ROD at a trigger rate up to 100 kHz. Intensive testing consisted of checking the readout data by comparing to hardware simulations of the trigger. Domains of validity of the boards were also measured and dedicated stressful data patterns were used to check the reliability of the system. Tests results have been successful and the Level-1 calorimeter trigger system is proceeding to full production.
id cern-1028145
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
publisher CERN
record_format invenio
spelling cern-10281452019-09-30T06:29:59Zdoi:10.5170/CERN-2007-001.391http://cds.cern.ch/record/1028145engMahout, GillesAchenbach, RAndrei, VBauss, BBarnett, B MBohm, CBooth, J R ABrawn, I PCharlton, D GCurtis, C JDavis, A OEdwards, JEisenhandler, E FFaulkner, P J WFöhlisch, FGee, C N PGeweniger, CGillman, A RHanke, PHellman, SHidvégi, AHillier, S JKluge, E ELandon, MMahboubi, KMeier, KPerera, V J OQian, WRieke, SRühr, FSankey, D P CStaley, R JSchäfer, USchmitt, KSchultz-Coulon, H CSilverstein, SStamen, RTapprogge, SThomas, J PTrefzger, TTypaldos, DWatkins, P MWatson, AWeber, PWoerling, E EProduction Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital ProcessorsDetectors and Experimental TechniquesThe Level-1 Calorimeter Trigger is a digital pipelined system, reducing the 40 MHz bunch-crossing rate down to 75 kHz. It consists of a Preprocessor, a Cluster Processor (CP), and a Jet/Energy-sum Processor (JEP). The CP and JEP receive digitised trigger-tower data from the Preprocessor and produce electron/photon, tau, and jet trigger multiplicities, total and missing transverse energies, and Region-of-Interest (RoI) information. Data are read out to the data acquisition (DAQ) system to monitor the trigger by using readout driver modules (ROD). A dedicated backplane has been designed to cope with the demanding requirements of the CP and JEP sub-systems. A number of pre-production boards were manufactured in order to fully populate a crate and test the robustness of the design on a large scale. Dedicated test modules to emulate digitised calorimeter signals have been used. All modules, cables and backplanes on test are final versions for use at the LHC. This test rig represents up to one third of the Level-1 digital processor system. Real-time data between modules were processed and time-slice readout data was transferred to the ROD at a trigger rate up to 100 kHz. Intensive testing consisted of checking the readout data by comparing to hardware simulations of the trigger. Domains of validity of the boards were also measured and dedicated stressful data patterns were used to check the reliability of the system. Tests results have been successful and the Level-1 calorimeter trigger system is proceeding to full production.CERNATL-DAQ-CONF-2007-016ATL-COM-DAQ-2007-022CERN-ATL-COM-DAQ-2007-022oai:cds.cern.ch:10281452007
spellingShingle Detectors and Experimental Techniques
Mahout, Gilles
Achenbach, R
Andrei, V
Bauss, B
Barnett, B M
Bohm, C
Booth, J R A
Brawn, I P
Charlton, D G
Curtis, C J
Davis, A O
Edwards, J
Eisenhandler, E F
Faulkner, P J W
Föhlisch, F
Gee, C N P
Geweniger, C
Gillman, A R
Hanke, P
Hellman, S
Hidvégi, A
Hillier, S J
Kluge, E E
Landon, M
Mahboubi, K
Meier, K
Perera, V J O
Qian, W
Rieke, S
Rühr, F
Sankey, D P C
Staley, R J
Schäfer, U
Schmitt, K
Schultz-Coulon, H C
Silverstein, S
Stamen, R
Tapprogge, S
Thomas, J P
Trefzger, T
Typaldos, D
Watkins, P M
Watson, A
Weber, P
Woerling, E E
Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors
title Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors
title_full Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors
title_fullStr Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors
title_full_unstemmed Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors
title_short Production Test Rig for the ATLAS Level-1 Calorimeter Trigger Digital Processors
title_sort production test rig for the atlas level-1 calorimeter trigger digital processors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.5170/CERN-2007-001.391
http://cds.cern.ch/record/1028145
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