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Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer

A small-strip thin gap chamber (sTGC) will be used for both triggering and precision tracking purposes in the upgrade of the ATLAS forward muon spectrometer. Both sTGC pad and strip detectors are read out by a trigger data serializer (TDS) application-specific integrated circuit (ASIC) in the trigge...

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Autores principales: Wang, Jinhong, Guan, Liang, Chapman, J.W., Zhou, Bing, Zhu, Junjie
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TNS.2017.2771266
http://cds.cern.ch/record/2278238
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author Wang, Jinhong
Guan, Liang
Chapman, J.W.
Zhou, Bing
Zhu, Junjie
author_facet Wang, Jinhong
Guan, Liang
Chapman, J.W.
Zhou, Bing
Zhu, Junjie
author_sort Wang, Jinhong
collection CERN
description A small-strip thin gap chamber (sTGC) will be used for both triggering and precision tracking purposes in the upgrade of the ATLAS forward muon spectrometer. Both sTGC pad and strip detectors are read out by a trigger data serializer (TDS) application-specific integrated circuit (ASIC) in the trigger path. This ASIC has two operation modes to prepare trigger data from pad and strip detectors, respectively. The pad mode (pad TDS) collects the firing status for up to 104 pads from one detector layer and transmits the data at 4.8 Gbps to the pad trigger extractor every 25 ns. The pad trigger extractor collects pad-TDS data from eight detector layers and defines a region of interest (ROI) along the path of a muon candidate. Data defining the ROIs is returned to the strip TDS. In the strip mode (strip TDS), the deposited charges from up to 128 strips are buffered and time-stamped, and a trigger matching procedure is performed to read out strips underneath the ROI. The strip-TDS output is also transmitted at 4.8 Gbps to the following field-programmable gate array (FPGA) processing circuits. Details of ASIC design and test results are presented in this paper.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22782382023-06-29T03:30:56Zdoi:10.1109/TNS.2017.2771266http://cds.cern.ch/record/2278238engWang, JinhongGuan, LiangChapman, J.W.Zhou, BingZhu, JunjieDesign of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometerphysics.ins-detDetectors and Experimental TechniquesA small-strip thin gap chamber (sTGC) will be used for both triggering and precision tracking purposes in the upgrade of the ATLAS forward muon spectrometer. Both sTGC pad and strip detectors are read out by a trigger data serializer (TDS) application-specific integrated circuit (ASIC) in the trigger path. This ASIC has two operation modes to prepare trigger data from pad and strip detectors, respectively. The pad mode (pad TDS) collects the firing status for up to 104 pads from one detector layer and transmits the data at 4.8 Gbps to the pad trigger extractor every 25 ns. The pad trigger extractor collects pad-TDS data from eight detector layers and defines a region of interest (ROI) along the path of a muon candidate. Data defining the ROIs is returned to the strip TDS. In the strip mode (strip TDS), the deposited charges from up to 128 strips are buffered and time-stamped, and a trigger matching procedure is performed to read out strips underneath the ROI. The strip-TDS output is also transmitted at 4.8 Gbps to the following field-programmable gate array (FPGA) processing circuits. Details of ASIC design and test results are presented in this paper.The small-strip Thin Gap Chamber (sTGC) will be used for both triggering and precision tracking purposes in the upgrade of the ATLAS forward muon spectrometer. Both sTGC pad and strip detectors are readout by a Trigger Data Serializer (TDS) ASIC in the trigger path. This ASIC has two operation modes to prepare trigger data from pad and strip detectors respectively. The pad mode (pad-TDS) collects the firing status for up to 104 pads from one detector layer and transmits the data at 4.8 Gbps to the pad trigger extractor every 25 ns. The pad trigger extractor collects pad-TDS data from eight detector layers and defines a region of interest along the path of a muon candidate. In the strip mode (strip-TDS), the deposited charges from up to 128 strips are buffered, time-stamped, and a trigger matching procedure is performed to read out strips underneath the region of interest. The strip-TDS output is also transmitted at 4.8 Gbps to the following FPGA processing circuits. Details about the ASIC design and test results are presented in this paper.arXiv:1707.05451oai:cds.cern.ch:22782382017-07-17
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Wang, Jinhong
Guan, Liang
Chapman, J.W.
Zhou, Bing
Zhu, Junjie
Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer
title Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer
title_full Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer
title_fullStr Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer
title_full_unstemmed Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer
title_short Design of a Trigger Data Serializer ASIC for the Upgrade of the ATLAS Forward Muon Spectrometer
title_sort design of a trigger data serializer asic for the upgrade of the atlas forward muon spectrometer
topic physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/TNS.2017.2771266
http://cds.cern.ch/record/2278238
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AT chapmanjw designofatriggerdataserializerasicfortheupgradeoftheatlasforwardmuonspectrometer
AT zhoubing designofatriggerdataserializerasicfortheupgradeoftheatlasforwardmuonspectrometer
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