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Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN

A new Front-End electronics, based on Logarithmic Amplifiers, is currently being developed for the CERN SPS Multi Orbit POsition System (MOPOS). The aim is to resolve the multi-batch structure of the beams and cope with their large intensity range (> 70 dB). Position and intensity signals are dig...

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Detalles Bibliográficos
Autores principales: Gonzalez, J L, Bogey, T, Deplano, C, Savioz, J J
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/1637751
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author Gonzalez, J L
Bogey, T
Deplano, C
Savioz, J J
author_facet Gonzalez, J L
Bogey, T
Deplano, C
Savioz, J J
author_sort Gonzalez, J L
collection CERN
description A new Front-End electronics, based on Logarithmic Amplifiers, is currently being developed for the CERN SPS Multi Orbit POsition System (MOPOS). The aim is to resolve the multi-batch structure of the beams and cope with their large intensity range (> 70 dB). Position and intensity signals are digitized in the Front-End electronics installed in the tunnel. The data are then transmitted over a serial fibre-optic link to a VME Digital Acquisition board located in surface buildings. A first prototype, equipped with a calibration system, has been successfully tested on the SPS under different beam conditions, including single bunch, 25 ns and 50 ns bunch trains. The system architecture and the first beam measurements are reported in this paper
id cern-1637751
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-16377512019-09-30T06:29:59Zhttp://cds.cern.ch/record/1637751engGonzalez, J LBogey, TDeplano, CSavioz, J JDevelopment of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERNAccelerators and Storage RingsA new Front-End electronics, based on Logarithmic Amplifiers, is currently being developed for the CERN SPS Multi Orbit POsition System (MOPOS). The aim is to resolve the multi-batch structure of the beams and cope with their large intensity range (> 70 dB). Position and intensity signals are digitized in the Front-End electronics installed in the tunnel. The data are then transmitted over a serial fibre-optic link to a VME Digital Acquisition board located in surface buildings. A first prototype, equipped with a calibration system, has been successfully tested on the SPS under different beam conditions, including single bunch, 25 ns and 50 ns bunch trains. The system architecture and the first beam measurements are reported in this paperCERN-ACC-2013-0292oai:cds.cern.ch:16377512013-09-01
spellingShingle Accelerators and Storage Rings
Gonzalez, J L
Bogey, T
Deplano, C
Savioz, J J
Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN
title Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN
title_full Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN
title_fullStr Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN
title_full_unstemmed Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN
title_short Development of a High Dynamic Range Beam Position Measurement system using Logarithmic Amplifiers for the SPS at CERN
title_sort development of a high dynamic range beam position measurement system using logarithmic amplifiers for the sps at cern
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1637751
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AT bogeyt developmentofahighdynamicrangebeampositionmeasurementsystemusinglogarithmicamplifiersforthespsatcern
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