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The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator

TileCal is the central hadronic calorimeter of the ATLAS experiment at the Large Hadron Collider at CERN. The main upgrade of the LHC to increase the instantaneous luminosity is scheduled for 2022. The High Luminosity LHC, also called upgrade phase-2, will imply a complete redesign of the read-out e...

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Autores principales: Carrió, F, Ferrer, A, Castillo, V, Hernández, Y, Higón, E, Fiorini, L, Mellado, B, March, L, Moreno, P, Reed, R, Solans, C, Valero, A, Valls, J
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/1602005
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author Carrió, F
Ferrer, A
Castillo, V
Hernández, Y
Higón, E
Fiorini, L
Mellado, B
March, L
Moreno, P
Reed, R
Solans, C
Valero, A
Valls, J
author_facet Carrió, F
Ferrer, A
Castillo, V
Hernández, Y
Higón, E
Fiorini, L
Mellado, B
March, L
Moreno, P
Reed, R
Solans, C
Valero, A
Valls, J
author_sort Carrió, F
collection CERN
description TileCal is the central hadronic calorimeter of the ATLAS experiment at the Large Hadron Collider at CERN. The main upgrade of the LHC to increase the instantaneous luminosity is scheduled for 2022. The High Luminosity LHC, also called upgrade phase-2, will imply a complete redesign of the read-out electronics in TileCal. In the new read-out architecture, the front-end electronics aims to transmit full digitized information to the back-end system in the counting room. Thus, the back-end system will provide digital calibrated information with enhanced precision and granularity to the first level trigger to improve the trigger efficiencies. The demonstrator project has been envisaged to qualify this new proposed architecture. A reduced part of the detector, 1/256 of the total, will be upgraded with the new electronics during 2014 to evaluate the proposed architecture in real conditions.The sROD module is designed on a double mid-size AMC format and will operate under an AdvancedTCA framework. The module includes one Xilinx Kintex 7 and one Xilinx Virtex 7 for data receiving and processing, as well as the implementation of embedded systems. Related to optics, the sROD uses 4 Avago MiniPODs to receive data from the front-end electronics and 2 Avago MiniPODs to send control commands to the front-end and for communication with the first level trigger. A QSFP optical module is also included for expansion functionalities and a SFP module to maintain compatibility with the existing hardware.A complete description of the sROD module for the demonstrator including the main functionalities, circuit design and the control software and firmware will be presented.
id cern-1602005
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-16020052019-09-30T06:29:59Zhttp://cds.cern.ch/record/1602005engCarrió, FFerrer, ACastillo, VHernández, YHigón, EFiorini, LMellado, BMarch, LMoreno, PReed, RSolans, CValero, AValls, JThe sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade DemonstratorDetectors and Experimental TechniquesTileCal is the central hadronic calorimeter of the ATLAS experiment at the Large Hadron Collider at CERN. The main upgrade of the LHC to increase the instantaneous luminosity is scheduled for 2022. The High Luminosity LHC, also called upgrade phase-2, will imply a complete redesign of the read-out electronics in TileCal. In the new read-out architecture, the front-end electronics aims to transmit full digitized information to the back-end system in the counting room. Thus, the back-end system will provide digital calibrated information with enhanced precision and granularity to the first level trigger to improve the trigger efficiencies. The demonstrator project has been envisaged to qualify this new proposed architecture. A reduced part of the detector, 1/256 of the total, will be upgraded with the new electronics during 2014 to evaluate the proposed architecture in real conditions.The sROD module is designed on a double mid-size AMC format and will operate under an AdvancedTCA framework. The module includes one Xilinx Kintex 7 and one Xilinx Virtex 7 for data receiving and processing, as well as the implementation of embedded systems. Related to optics, the sROD uses 4 Avago MiniPODs to receive data from the front-end electronics and 2 Avago MiniPODs to send control commands to the front-end and for communication with the first level trigger. A QSFP optical module is also included for expansion functionalities and a SFP module to maintain compatibility with the existing hardware.A complete description of the sROD module for the demonstrator including the main functionalities, circuit design and the control software and firmware will be presented.ATL-TILECAL-SLIDE-2013-632oai:cds.cern.ch:16020052013-09-19
spellingShingle Detectors and Experimental Techniques
Carrió, F
Ferrer, A
Castillo, V
Hernández, Y
Higón, E
Fiorini, L
Mellado, B
March, L
Moreno, P
Reed, R
Solans, C
Valero, A
Valls, J
The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator
title The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator
title_full The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator
title_fullStr The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator
title_full_unstemmed The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator
title_short The sROD Module for the ATLAS Tile Calorimeter Phase-2 Upgrade Demonstrator
title_sort srod module for the atlas tile calorimeter phase-2 upgrade demonstrator
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1602005
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