TY - GEN
T1 - Skiroc
T2 - 2007 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2007
AU - Bouchel, Michel
AU - Berni, Mowafak El
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 - 2007/1/1
Y1 - 2007/1/1
N2 - That paper describes the new front-end ASIC "SKIROC" designed to read-out the technologic prototype of Si-W calorimeter for ILC (International Linear Collider). The very high granularity of that new calorimeter designed for particle flow physics involves an unprecedented level of integration. Achieving the read-out of the 82 millions channel of the future calorimeter will be possible by using full integrated system on chip (SoC), as close as possible from the silicon detector. The SoC shall feature self trigger capability to ensure a early zero suppress and therefore avoid a huge data flow to the Data Acquisition (DAQ). SKIROC also features a power pulsing supply to fit the beam structure of ILC and save power to improve compactness on the calorimeter by avoiding active cooling. A gain of two orders of magnitude is saved on the power consumption by using idle mode on the front-end electronics. The analogue data are converted Into digital inside the ASIC and are stored in an internal RAM. The ASIC can be read out by token ring to reduce the number of lines in the detector. More than 1.3 million ASIC will be necessary to read out the whole calorimeter.
AB - That paper describes the new front-end ASIC "SKIROC" designed to read-out the technologic prototype of Si-W calorimeter for ILC (International Linear Collider). The very high granularity of that new calorimeter designed for particle flow physics involves an unprecedented level of integration. Achieving the read-out of the 82 millions channel of the future calorimeter will be possible by using full integrated system on chip (SoC), as close as possible from the silicon detector. The SoC shall feature self trigger capability to ensure a early zero suppress and therefore avoid a huge data flow to the Data Acquisition (DAQ). SKIROC also features a power pulsing supply to fit the beam structure of ILC and save power to improve compactness on the calorimeter by avoiding active cooling. A gain of two orders of magnitude is saved on the power consumption by using idle mode on the front-end electronics. The analogue data are converted Into digital inside the ASIC and are stored in an internal RAM. The ASIC can be read out by token ring to reduce the number of lines in the detector. More than 1.3 million ASIC will be necessary to read out the whole calorimeter.
UR - https://www.scopus.com/pages/publications/48349100286
U2 - 10.1109/NSSMIC.2007.4436517
DO - 10.1109/NSSMIC.2007.4436517
M3 - Conference contribution
AN - SCOPUS:48349100286
SN - 1424409233
SN - 9781424409235
T3 - IEEE Nuclear Science Symposium Conference Record
SP - 1847
EP - 1850
BT - 2007 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS-MIC
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 27 October 2007 through 3 November 2007
ER -