TY - GEN
T1 - Skiroc
T2 - Topical Workshop on Electronics for Particle Physics, TWEPP 2007
AU - Bouchel, Michel
AU - ElBerni, Mowafak
AU - Fleury, Julien
AU - De La Taille, Christophe
AU - Martin-Chassard, Gisèle
AU - Raux, Ludovic
AU - Wicek, Francois
AU - Bohner, Gérard
AU - Gay, Pascal
AU - Lecoq, Jacques
AU - Manen, Samuel
AU - Royer, Laurent
PY - 2007/12/1
Y1 - 2007/12/1
N2 - Integration and low-power consumption of the read-out ASIC for the International Linear Collider (ILC) 82-million-channel W-Si calorimeter must reach an unprecedented level as it will be embedded inside the detector. Uniformity and dynamic range performance has to reach the accuracy to achieve calorimetric measurement. A first step towards this goal has been a 10,000-channel physics prototype of 18*18 cm which is currently in test beam in CERN. A new version of a full integrated read out chip (SKIROC) has been designed to equip the technologic prototype to be built for 2009. Based on the running physics prototype ASIC (FLC-PHY3), it embeds most of the required features expected for the final detector. The dynamic range has been improved from 500 to 2000 MIP. An auto-trigger capability has been added allowing built-in zero suppress. The number of channel has been doubled reaching 36 to fit smaller silicon pads and the lownoise charge preamplifier now accepts both AC and DC coupled detectors. After an exhaustive description, the measurement results of that new front-end chip will be presented. The results on the technological R&D concurrently conducted on the ultra-thin PCB hosting both the front-end electronic and the silicon detectors will also be described.
AB - Integration and low-power consumption of the read-out ASIC for the International Linear Collider (ILC) 82-million-channel W-Si calorimeter must reach an unprecedented level as it will be embedded inside the detector. Uniformity and dynamic range performance has to reach the accuracy to achieve calorimetric measurement. A first step towards this goal has been a 10,000-channel physics prototype of 18*18 cm which is currently in test beam in CERN. A new version of a full integrated read out chip (SKIROC) has been designed to equip the technologic prototype to be built for 2009. Based on the running physics prototype ASIC (FLC-PHY3), it embeds most of the required features expected for the final detector. The dynamic range has been improved from 500 to 2000 MIP. An auto-trigger capability has been added allowing built-in zero suppress. The number of channel has been doubled reaching 36 to fit smaller silicon pads and the lownoise charge preamplifier now accepts both AC and DC coupled detectors. After an exhaustive description, the measurement results of that new front-end chip will be presented. The results on the technological R&D concurrently conducted on the ultra-thin PCB hosting both the front-end electronic and the silicon detectors will also be described.
UR - https://www.scopus.com/pages/publications/84884172951
M3 - Conference contribution
AN - SCOPUS:84884172951
SN - 9789290833048
T3 - Proceedings of the Topical Workshop on Electronics for Particle Physics, TWEPP 2007
SP - 437
EP - 439
BT - Proceedings of the Topical Workshop on Electronics for Particle Physics, TWEPP 2007
Y2 - 3 September 2007 through 7 September 2007
ER -