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The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors

This manuscript describes the optimization of the front-end readout electronics for high granularity hybrid pixel detectors. The theoretical study aims at minimizing the noise and jitter. The model presented here is validated with both circuit post layout simulations and measurements on the Timepix4...

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Autores principales: Ballabriga, R, Alozy, J A, Bandi, F N, Blaj, G, Campbell, M, Christodoulou, P, Coco, V, Dorda, A, Emiliani, S, Heijhoff, K, Heijne, E, Hofmann, T, Kaplon, J, Koukab, A, Kremastiotis, I, Llopart, X, Noy, M, Paterno, A, Piller, M, Sallesse, J M, Sriskaran, V, Tlustos, L, van Beuzekom, M
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2022.167489
http://cds.cern.ch/record/2839986
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author Ballabriga, R
Alozy, J A
Bandi, F N
Blaj, G
Campbell, M
Christodoulou, P
Coco, V
Dorda, A
Emiliani, S
Heijhoff, K
Heijne, E
Hofmann, T
Kaplon, J
Koukab, A
Kremastiotis, I
Llopart, X
Noy, M
Paterno, A
Piller, M
Sallesse, J M
Sriskaran, V
Tlustos, L
van Beuzekom, M
author_facet Ballabriga, R
Alozy, J A
Bandi, F N
Blaj, G
Campbell, M
Christodoulou, P
Coco, V
Dorda, A
Emiliani, S
Heijhoff, K
Heijne, E
Hofmann, T
Kaplon, J
Koukab, A
Kremastiotis, I
Llopart, X
Noy, M
Paterno, A
Piller, M
Sallesse, J M
Sriskaran, V
Tlustos, L
van Beuzekom, M
author_sort Ballabriga, R
collection CERN
description This manuscript describes the optimization of the front-end readout electronics for high granularity hybrid pixel detectors. The theoretical study aims at minimizing the noise and jitter. The model presented here is validated with both circuit post layout simulations and measurements on the Timepix4 Application Specific Integrated Circuit (ASIC). The analog front-end circuit and the procedure to optimize the dimensions of the main transistors are described with detail. The Timepix4 is the most recent ASIC designed in the framework of the Medipix4 Collaboration. It was manufactured in 65nm CMOS process, and consists of a four side buttable matrix of 448 × 512 pixels with 55µm pitch. The analog front-end has a gain of ∼36mV/ke- when configured in High Gain Mode, and ∼20mV/ke- when configured in Low Gain Mode. The Equivalent Noise Charge (ENC) is ∼68e-rms and ∼80e-rms in High Gain Mode and in Low Gain Mode respectively. In event driven mode the incoming hits can be time stamped within a ∼ 200ps time bin and the chip can deal with a maximum flux of ∼ 3.6MHzmm−2s−1. In photon counting mode, the chip can deal with up to ∼ 5GHzmm−2s−1. The routine designed to optimize the Timepix4 front-end is then used to analyze the performance limits in terms of jitter and noise for Charge Sensitive Amplifiers in pixel detectors.
id cern-2839986
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28399862023-03-28T13:15:01Zdoi:10.1016/j.nima.2022.167489http://cds.cern.ch/record/2839986engBallabriga, RAlozy, J ABandi, F NBlaj, GCampbell, MChristodoulou, PCoco, VDorda, AEmiliani, SHeijhoff, KHeijne, EHofmann, TKaplon, JKoukab, AKremastiotis, ILlopart, XNoy, MPaterno, APiller, MSallesse, J MSriskaran, VTlustos, Lvan Beuzekom, MThe Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectorsDetectors and Experimental TechniquesThis manuscript describes the optimization of the front-end readout electronics for high granularity hybrid pixel detectors. The theoretical study aims at minimizing the noise and jitter. The model presented here is validated with both circuit post layout simulations and measurements on the Timepix4 Application Specific Integrated Circuit (ASIC). The analog front-end circuit and the procedure to optimize the dimensions of the main transistors are described with detail. The Timepix4 is the most recent ASIC designed in the framework of the Medipix4 Collaboration. It was manufactured in 65nm CMOS process, and consists of a four side buttable matrix of 448 × 512 pixels with 55µm pitch. The analog front-end has a gain of ∼36mV/ke- when configured in High Gain Mode, and ∼20mV/ke- when configured in Low Gain Mode. The Equivalent Noise Charge (ENC) is ∼68e-rms and ∼80e-rms in High Gain Mode and in Low Gain Mode respectively. In event driven mode the incoming hits can be time stamped within a ∼ 200ps time bin and the chip can deal with a maximum flux of ∼ 3.6MHzmm−2s−1. In photon counting mode, the chip can deal with up to ∼ 5GHzmm−2s−1. The routine designed to optimize the Timepix4 front-end is then used to analyze the performance limits in terms of jitter and noise for Charge Sensitive Amplifiers in pixel detectors.oai:cds.cern.ch:28399862023
spellingShingle Detectors and Experimental Techniques
Ballabriga, R
Alozy, J A
Bandi, F N
Blaj, G
Campbell, M
Christodoulou, P
Coco, V
Dorda, A
Emiliani, S
Heijhoff, K
Heijne, E
Hofmann, T
Kaplon, J
Koukab, A
Kremastiotis, I
Llopart, X
Noy, M
Paterno, A
Piller, M
Sallesse, J M
Sriskaran, V
Tlustos, L
van Beuzekom, M
The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
title The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
title_full The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
title_fullStr The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
title_full_unstemmed The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
title_short The Timepix4 analog front-end design: Lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
title_sort timepix4 analog front-end design: lessons learnt on fundamental limits to noise and time resolution in highly segmented hybrid pixel detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2022.167489
http://cds.cern.ch/record/2839986
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