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The PreAmplifier ShAper for the ALICE TPC-Detector

In this paper the PreAmplifier ShAper (PASA) for the Time Projection Chamber (TPC) of the ALICE experiment at LHC is presented. The ALICE TPC PASA is an ASIC that integrates 16 identical channels, each consisting of Charge Sensitive Amplifiers (CSA) followed by a Pole-Zero network, self-adaptive bia...

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Autores principales: Soltveit, H.K., Stachel, J., Braun-Munzinger, P., Musa, L., Gustafsson, H.A., Bonnes, U., Oeschler, H., Osterman, L., Lang, S.
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2012.02.012
http://cds.cern.ch/record/1432692
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author Soltveit, H.K.
Stachel, J.
Braun-Munzinger, P.
Musa, L.
Gustafsson, H.A.
Bonnes, U.
Oeschler, H.
Osterman, L.
Lang, S.
author_facet Soltveit, H.K.
Stachel, J.
Braun-Munzinger, P.
Musa, L.
Gustafsson, H.A.
Bonnes, U.
Oeschler, H.
Osterman, L.
Lang, S.
author_sort Soltveit, H.K.
collection CERN
description In this paper the PreAmplifier ShAper (PASA) for the Time Projection Chamber (TPC) of the ALICE experiment at LHC is presented. The ALICE TPC PASA is an ASIC that integrates 16 identical channels, each consisting of Charge Sensitive Amplifiers (CSA) followed by a Pole-Zero network, self-adaptive bias network, two second-order bridged-T filters, two non-inverting level shifters and a start-up circuit. The circuit is optimized for a detector capacitance of 18-25 pF. For an input capacitance of 25 pF, the PASA features a conversion gain of 12.74 mV/fC, a peaking time of 160 ns, a FWHM of 190 ns, a power consumption of 11.65 mW/ch and an equivalent noise charge of 244e + 17e/pF. The circuit recovers smoothly to the baseline in about 600 ns. An integral non-linearity of 0.19% with an output swing of about 2.1 V is also achieved. The total area of the chip is 18 mm$^2$ and is implemented in AMS's C35B3C1 0.35 micron CMOS technology. Detailed characterization test were performed on about 48000 PASA circuits before mounting them on the ALICE TPC front-end cards. After more than two years of operation of the ALICE TPC with p-p and Pb-Pb collisions, the PASA has demonstrated to fulfill all requirements.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-14326922023-03-14T18:30:41Zdoi:10.1016/j.nima.2012.02.012http://cds.cern.ch/record/1432692engSoltveit, H.K.Stachel, J.Braun-Munzinger, P.Musa, L.Gustafsson, H.A.Bonnes, U.Oeschler, H.Osterman, L.Lang, S.The PreAmplifier ShAper for the ALICE TPC-DetectorDetectors and Experimental TechniquesIn this paper the PreAmplifier ShAper (PASA) for the Time Projection Chamber (TPC) of the ALICE experiment at LHC is presented. The ALICE TPC PASA is an ASIC that integrates 16 identical channels, each consisting of Charge Sensitive Amplifiers (CSA) followed by a Pole-Zero network, self-adaptive bias network, two second-order bridged-T filters, two non-inverting level shifters and a start-up circuit. The circuit is optimized for a detector capacitance of 18-25 pF. For an input capacitance of 25 pF, the PASA features a conversion gain of 12.74 mV/fC, a peaking time of 160 ns, a FWHM of 190 ns, a power consumption of 11.65 mW/ch and an equivalent noise charge of 244e + 17e/pF. The circuit recovers smoothly to the baseline in about 600 ns. An integral non-linearity of 0.19% with an output swing of about 2.1 V is also achieved. The total area of the chip is 18 mm$^2$ and is implemented in AMS's C35B3C1 0.35 micron CMOS technology. Detailed characterization test were performed on about 48000 PASA circuits before mounting them on the ALICE TPC front-end cards. After more than two years of operation of the ALICE TPC with p-p and Pb-Pb collisions, the PASA has demonstrated to fulfill all requirements.In this paper the PreAmplifier ShAper (PASA) for the Time Projection Chamber (TPC) of the ALICE experiment at LHC is presented. The ALICE TPC PASA is an ASIC that integrates 16 identical channels, each consisting of Charge Sensitive Amplifiers (CSA) followed by a Pole-Zero network, self-adaptive bias network, two second-order bridged-T filters, two non-inverting level shifters and a start-up circuit. The circuit is optimized for a detector capacitance of 18-25 pF. For an input capacitance of 25 pF, the PASA features a conversion gain of 12.74 mV/fC, a peaking time of 160 ns, a FWHM of 190 ns, a power consumption of 11.65 mW/ch and an equivalent noise charge of 244e + 17e/pF. The circuit recovers smoothly to the baseline in about 600 ns. An integral non-linearity of 0.19% with an output swing of about 2.1 V is also achieved. The total area of the chip is 18 mm$^2$ and is implemented in AMS's C35B3C1 0.35 micron CMOS technology. Detailed characterization test were performed on about 48000 PASA circuits before mounting them on the ALICE TPC front-end cards. After more than two years of operation of the ALICE TPC with p-p and Pb-Pb collisions, the PASA has demonstrated to fulfill all requirements.arXiv:1203.3564oai:cds.cern.ch:14326922012-03-19
spellingShingle Detectors and Experimental Techniques
Soltveit, H.K.
Stachel, J.
Braun-Munzinger, P.
Musa, L.
Gustafsson, H.A.
Bonnes, U.
Oeschler, H.
Osterman, L.
Lang, S.
The PreAmplifier ShAper for the ALICE TPC-Detector
title The PreAmplifier ShAper for the ALICE TPC-Detector
title_full The PreAmplifier ShAper for the ALICE TPC-Detector
title_fullStr The PreAmplifier ShAper for the ALICE TPC-Detector
title_full_unstemmed The PreAmplifier ShAper for the ALICE TPC-Detector
title_short The PreAmplifier ShAper for the ALICE TPC-Detector
title_sort preamplifier shaper for the alice tpc-detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2012.02.012
http://cds.cern.ch/record/1432692
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