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Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS

The upgrade of the ATLAS tracking detector for the High-Luminosity Large Hadron Collider at CERN requires the development of novel radiation hard silicon sensor technologies.The MALTA Monolithic Active Pixel Sensor prototypes have been developed with the 180 nm TowerJazz CMOS imaging technology. Thi...

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Autores principales: Freeman, Patrick Moriishi, Allport, P, Asensi Tortajada, I, Barbero, M, Bhat, S, Bortoletto, D, Berdalovic, I, Bespin, C, Buttar, C, Caicedo, I, Cardella, R, Dachs, F, Dao, V, Denizli, H, Dyndal, M, Flores Sanz De Acedo, L, Gonella, L, Habib, A, Hemperek, T, Hirono, T, Maneuski, D, Metodiev, K, Mironova, M, Moustakas, K, Munker, M, Oyulmaz, K Y, Pangaud, P, Pernegger, H, Piro, F, Riedler, P, Sandaker, H, Schioppa, E J, Schwemling, P, Sharma, A, Shipsey, I, Argemim, L Simon, Solans Sanchez, C, Snoeys, W, Suligoj, T, Wang, T, Weatherill, D, Wennlöf, H, Wermes, N, Wood, D, Worm, S
Lenguaje:eng
Publicado: SISSA 2020
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.373.0020
http://cds.cern.ch/record/2747749
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author Freeman, Patrick Moriishi
Allport, P
Asensi Tortajada, I
Barbero, M
Bhat, S
Bortoletto, D
Berdalovic, I
Bespin, C
Buttar, C
Caicedo, I
Cardella, R
Dachs, F
Dao, V
Denizli, H
Dyndal, M
Flores Sanz De Acedo, L
Gonella, L
Habib, A
Hemperek, T
Hirono, T
Maneuski, D
Metodiev, K
Mironova, M
Moustakas, K
Munker, M
Oyulmaz, K Y
Pangaud, P
Pernegger, H
Piro, F
Riedler, P
Sandaker, H
Schioppa, E J
Schwemling, P
Sharma, A
Shipsey, I
Argemim, L Simon
Solans Sanchez, C
Snoeys, W
Suligoj, T
Wang, T
Weatherill, D
Wennlöf, H
Wermes, N
Wood, D
Worm, S
author_facet Freeman, Patrick Moriishi
Allport, P
Asensi Tortajada, I
Barbero, M
Bhat, S
Bortoletto, D
Berdalovic, I
Bespin, C
Buttar, C
Caicedo, I
Cardella, R
Dachs, F
Dao, V
Denizli, H
Dyndal, M
Flores Sanz De Acedo, L
Gonella, L
Habib, A
Hemperek, T
Hirono, T
Maneuski, D
Metodiev, K
Mironova, M
Moustakas, K
Munker, M
Oyulmaz, K Y
Pangaud, P
Pernegger, H
Piro, F
Riedler, P
Sandaker, H
Schioppa, E J
Schwemling, P
Sharma, A
Shipsey, I
Argemim, L Simon
Solans Sanchez, C
Snoeys, W
Suligoj, T
Wang, T
Weatherill, D
Wennlöf, H
Wermes, N
Wood, D
Worm, S
author_sort Freeman, Patrick Moriishi
collection CERN
description The upgrade of the ATLAS tracking detector for the High-Luminosity Large Hadron Collider at CERN requires the development of novel radiation hard silicon sensor technologies.The MALTA Monolithic Active Pixel Sensor prototypes have been developed with the 180 nm TowerJazz CMOS imaging technology. This combines the engineering of high-resistivity sub- strates with on-chip high-voltage biasing to achieve a large depleted active sensor volumes, to meet the radiation hardness requirements of the outer barrel layers of the ATLAS ITK Pixel de- tector (1.5× 10$^{15}$ 1 MeV n$_{eq}$/cm$^{2}$ and 80 MRad TID). MALTA combines low noise (ENC < 20 e$^{-}$) and low power operation (1 uW / pixel) with a fast signal response (25 ns bunch crossing) in small pixel size (36.4 $\times$ 36.4 $\mu m^{2}$), and a small collection electrode (3$\mu$m), with a novel high- speed asynchronous read out architecture to cope with the high hit rates expected at HL-LHC. The latest developments, embedded in so-called Mini-MALTA chip, address the issues observed in previous designs to meet the desired radiation hardness requirements. This contribution will summarize the design and recent improvements of this technology, together with the measure- ments of analog and digital performance, as obtained in test beams and lab and radioactive source tests.
id oai-inspirehep.net-1816959
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
publisher SISSA
record_format invenio
spelling oai-inspirehep.net-18169592021-02-09T08:52:42Zdoi:10.22323/1.373.0020http://cds.cern.ch/record/2747749engFreeman, Patrick MoriishiAllport, PAsensi Tortajada, IBarbero, MBhat, SBortoletto, DBerdalovic, IBespin, CButtar, CCaicedo, ICardella, RDachs, FDao, VDenizli, HDyndal, MFlores Sanz De Acedo, LGonella, LHabib, AHemperek, THirono, TManeuski, DMetodiev, KMironova, MMoustakas, KMunker, MOyulmaz, K YPangaud, PPernegger, HPiro, FRiedler, PSandaker, HSchioppa, E JSchwemling, PSharma, AShipsey, IArgemim, L SimonSolans Sanchez, CSnoeys, WSuligoj, TWang, TWeatherill, DWennlöf, HWermes, NWood, DWorm, SRecent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLASDetectors and Experimental TechniquesThe upgrade of the ATLAS tracking detector for the High-Luminosity Large Hadron Collider at CERN requires the development of novel radiation hard silicon sensor technologies.The MALTA Monolithic Active Pixel Sensor prototypes have been developed with the 180 nm TowerJazz CMOS imaging technology. This combines the engineering of high-resistivity sub- strates with on-chip high-voltage biasing to achieve a large depleted active sensor volumes, to meet the radiation hardness requirements of the outer barrel layers of the ATLAS ITK Pixel de- tector (1.5× 10$^{15}$ 1 MeV n$_{eq}$/cm$^{2}$ and 80 MRad TID). MALTA combines low noise (ENC < 20 e$^{-}$) and low power operation (1 uW / pixel) with a fast signal response (25 ns bunch crossing) in small pixel size (36.4 $\times$ 36.4 $\mu m^{2}$), and a small collection electrode (3$\mu$m), with a novel high- speed asynchronous read out architecture to cope with the high hit rates expected at HL-LHC. The latest developments, embedded in so-called Mini-MALTA chip, address the issues observed in previous designs to meet the desired radiation hardness requirements. This contribution will summarize the design and recent improvements of this technology, together with the measure- ments of analog and digital performance, as obtained in test beams and lab and radioactive source tests.SISSAoai:inspirehep.net:18169592020
spellingShingle Detectors and Experimental Techniques
Freeman, Patrick Moriishi
Allport, P
Asensi Tortajada, I
Barbero, M
Bhat, S
Bortoletto, D
Berdalovic, I
Bespin, C
Buttar, C
Caicedo, I
Cardella, R
Dachs, F
Dao, V
Denizli, H
Dyndal, M
Flores Sanz De Acedo, L
Gonella, L
Habib, A
Hemperek, T
Hirono, T
Maneuski, D
Metodiev, K
Mironova, M
Moustakas, K
Munker, M
Oyulmaz, K Y
Pangaud, P
Pernegger, H
Piro, F
Riedler, P
Sandaker, H
Schioppa, E J
Schwemling, P
Sharma, A
Shipsey, I
Argemim, L Simon
Solans Sanchez, C
Snoeys, W
Suligoj, T
Wang, T
Weatherill, D
Wennlöf, H
Wermes, N
Wood, D
Worm, S
Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS
title Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS
title_full Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS
title_fullStr Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS
title_full_unstemmed Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS
title_short Recent measurements on MiniMALTA, a radiation hard CMOS sensor with small collection electrodes for ATLAS
title_sort recent measurements on minimalta, a radiation hard cmos sensor with small collection electrodes for atlas
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.22323/1.373.0020
http://cds.cern.ch/record/2747749
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