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3.
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Pixel readout electronics development for the ALICE pixel vertex and LHCb RICH detector
/ Snoeys, W ; Campbell, M ; Cantatore, E ; Cencelli, V ; Dinapoli, R ; Heijne, Erik H M ; Jarron, Pierre ; Lamanna, P ; Minervini, D ; O'Shea, V et al.
The ALICE1LHCB pixel readout chip emerged from previous experience at CERN. The RD-19 collaboration provided the basis for the installation of a pixel system in the WA97 and NA57 experiments. [...]
Geneva : CERN, 2001
- Published in : Nucl. Instrum. Methods Phys. Res., A 465 (2001) 176-189
Fulltext: PDF;
In : International Workshop on Semiconductor Pixel Detectors for Particles and X-Rays, Genoa, Italy, 5 - 8 Jun 2000, pp.176-189
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4.
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Silicon pixel devices as a slow neutron precise position detector
/ Campbell, M ; Heijne, Erik H M ; Kubasta, J ; Middelkamp, P ; Pospísil, S ; Sícho, P ; Snoeys, W ; Vrba, V
1997
In : 3rd International Workshop on Semiconductor Pixel Detectors for Particles and X-rays, Bari, Italy, 24 - 27 Mar 1996, pp.457-458
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6.
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The influence of a magnetic field on the performance of a binary pixel detector system
/ Scharfetter, L H H ; Campbell, M ; Cantatore, E ; Heijne, Erik H M ; Howard, A ; Middelkamp, P ; Snoeys, W
1997
In : 3rd International Workshop on Semiconductor Pixel Detectors for Particles and X-rays, Bari, Italy, 24 - 27 Mar 1996, pp.369-371
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7.
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Use of silicon and GaAs pixel detectors for digital autoradiography
/ Amendolia, S R ; Beccherle, R ; Bertolucci, Ennio ; Bisogni, M G ; Bottigli, U ; Campbell, M ; Chesi, Enrico Guido ; Ciocci, M A ; Conti, M ; Da Vià, C et al.
1996
In : 43rd IEEE Nuclear Science Symposium and Medical Imaging Conference, Anaheim, CA, USA, 3 - 9 Nov 1996, pp.929-938 43rd IEEE Nuclear Science Symposium, Anaheim, CA, USA, 2 - 9 Nov 1996, pp.835-839
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8.
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A pixel readout chip with an internal tunable delay and binary output for an LHC vertex detector
/ Snoeys, W ; Antinori, Federico ; Barberis, D ; Becks, K H ; Beker, H ; Beusch, Werner ; Burger, P ; Campbell, M ; Cantatore, E ; Catanesi, M G et al.
1995
In : 1st Workshop on electronics for LHC Experiments, Lisbon, Portugal, 11 - 15 Sep 1995, pp.144-149
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11.
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Pixel readout chips in deep submicron CMOS for ALICE and LHCb tolerant to 10 mrad and beyond
/ Snoeys, W ; Burns, M ; Campbell, M ; Cantatore, E ; Cencelli, V ; Dinapoli, R ; Heijne, Erik H M ; Jarron, Pierre ; Lamanna, P ; Minervini, D et al.
The ALICE1LHCB chip is a mixed-mode integrated circuit designed to read out silicon pixel detectors for two different applications: particle tracking in the ALICE Silicon Pixel Detector and particle identification in the LHCb Ring Imaging Cherenkov detector. To satisfy the different needs for these two experiments, the chip can be operated in two different modes. [...]
Geneva : CERN, 2001
- Published in : Nucl. Instrum. Methods Phys. Res., A 466 (2001) 366-75
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12.
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An analog front-end in standard $0.25\mu m$ CMOS for silicon pixel detectors in ALICE and LHCb
/ Dinapoli, R ; Campbell, M ; Cantatore, E ; Cencelli, V ; Heijne, Erik H M ; Jarron, Pierre ; Lamanna, P ; Shea, V O ; Quiquempoix, V ; San Segundo-Bello, D et al.
Geneva : CERN, 2000
Fulltext: PDF; Published version from CERN: PDF;
In : 6th Workshop on Electronics for LHC Experiments, Krakow, Poland, 11 - 15 Sep 2000, pp.110-114 (CERN-2000-010)
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14.
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The LHC1 pixel detector studied in a 120 GeV/c pion test beam
/ Ropotar, I ; Cantatore, E ; Antinori, Federico ; Becks, K H ; Beker, H ; Buis, E J ; Burger, P ; Campbell, M ; Casagrande, L ; Catanesi, M G et al.
Geneva : CERN, 2000
- Published in : Nucl. Instrum. Methods Phys. Res., A 439 (2000) 536-46
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15.
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Integrated circuits for particle physics experiments
/ Snoeys, W ; Anelli, G ; Campbell, M ; Cantatore, E ; Faccio, F ; Heijne, Erik H M ; Jarron, Pierre ; Kloukinas, Kostas C ; Marchioro, A ; Moreira, P et al.
High energy particle physics experiments investigate the nature of matter through the identification of subatomic particles produced in collisions of protons, electrons, or heavy ions which have been accelerated to very high energies. Future experiments will have hundreds of millions of detector channels to observe the interaction region where collisions take place at a 40 MHz rate. [...]
Geneva : CERN, 2000
- Published in : IEEE J. Solid State Circuits 35 (2000) 2018-30 (digest)
In : IEEE International Solid-State Circuits Conference, San Francisco, CA, USA, 4 - 6 Feb 2002, pp.184-185
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17.
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Performance of hybrid photon detector prototypes with 80% active area for the RICH counters of LHCb
/ Albrecht, E ; Alemi, M ; Barber, G J ; Bibby, J H ; Campbell, M ; Duane, A ; Gys, Thierry ; Montenegro, J ; Piedigrossi, D ; Schomaker, R et al.
We report on the ongoing work towards a hybrid photon detector with integrated Si pixel readout for the ring imaging Cherenkov detectors of the LHCb experiment at the Large Hadron Collider at CERN. The photon detector is based on an electrostatically focussed image intensifier tube geometry where the image is de-magnified by a factor of ~5. [...]
Geneva : CERN, 2000
- Published in : Nucl. Instrum. Methods Phys. Res., A 442 (2000) 164-70
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18.
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A pixel readout chip for tracking at ALICE and particle identification at LHCb
/ Wyllie, Ken H ; Burns, M ; Campbell, M ; Cantatore, E ; Cencelli, V ; Dinapoli, R ; Formenti, F ; Grassi, T ; Heijne, Erik H M ; Jarron, Pierre et al.
Geneva : CERN, 1999
Published version from CERN: PDF;
In : 5th Conference on Electronics for LHC Experiments, pp.93-97
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19.
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Layout techniques to enhance the radiation tolerance of standard CMOS technologies demonstrated on a pixel detector readout chip
/ Snoeys, W ; Faccio, F ; Burns, M ; Campbell, M ; Cantatore, E ; Carrer, N ; Casagrande, L ; Cavagnoli, A ; Dachs, C ; Di Liberto, S et al.
A new pixel readout prototype has been developed at CERN for high- energy physics applications. This full mixed mode circuit has been implemented in a commercial 0.5 mu m CMOS technology. [...]
Geneva : CERN, 2000
- Published in : Nucl. Instrum. Methods Phys. Res., A 439 (2000) 349-60
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21.
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Development of hybrid photon detectors with integrated silicon pixel readout for the RICH counters of LHCb
/ Alemi, M ; Campbell, M ; Formenti, F ; Gys, Thierry ; Piedigrossi, D ; Puertolas, D ; Rosso, E ; Snoeys, W ; Wyllie, Ken H
We report on the ongoing work towards a hybrid photon detector with integrated silicon pixel readout for the ring imaging Cherenkov detectors of the LHCb experiment at the Large Hadron Collider at CERN. The photon detector is based on a cross-focussed image intensifier tube geometry where the image is de-magnified by a factor of 4. [...]
1999
- Published in : IEEE Trans. Nucl. Sci. 46 (1999) 1901-1906
In : 45th IEEE Nuclear Science Symposium and Medical Imaging Conference, Toronto, Canada, 8 - 14 Nov 1998, pp.182-188
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22.
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A pixel readout chip for 10-30 MRad in standard 0.25 mu m CMOS
/ Campbell, M ; Anelli, G ; Burns, M ; Cantatore, E ; Casagrande, L ; Delmastro, M ; Dinapoli, R ; Faccio, F ; Heijne, Erik H M ; Jarron, Pierre et al.
A radiation tolerant pixel detector readout chip has been developed in a commercial 0.25 mu m CMOS process. The chip is a matrix of two columns of 65 identical cells. [...]
Geneva : CERN, 1999
- Published in : IEEE Trans. Nucl. Sci. 46 (1999) 156-160
In : 45th IEEE Nuclear Science Symposium and Medical Imaging Conference, Toronto, Canada, 8 - 14 Nov 1998, pp.827-831
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23.
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Radiation tolerance beyond 10-mrad for a pixel readout chip in standard submicron CMOS
/ Snoeys, W ; Burns, M ; Campbell, M ; Cantatore, E ; Dinapoli, R ; Faccio, F ; Heijne, Erik H M ; Jarron, Pierre ; Marchioro, A ; Martinengo, P et al.
1998
Fulltext: PDF;
In : 4th Workshop on Electronics for LHC Experiments, Rome, Italy, 21 - 25 Sep 1998, pp.114-118
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24.
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First operation of a hybrid photon detector prototype with electrostatic cross-focussing and integrated silicon pixel readout
/ Alemi, M ; Campbell, M ; Gys, Thierry ; Mikulec, B ; Piedigrossi, D ; Puertolas, D ; Rosso, E ; Schomaker, R ; Snoeys, W ; Wyllie, Ken H
/TA2 Collaboration
We report on the first operation of a hybrid photon detector prototype with integrated silicon pixel readout for the ring imaging Cherenkov detectors of the LHCb experiment. The photon detector is based on a cross-focussed image intensifier tube geometry where the image is de-magnified by a factor of 4. [...]
CERN-EP-99-110.-
Geneva : CERN, 2000 - 29 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 449 (2000) 48
Fulltext: PS.GZ;
- CERN library copies
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