DocumentCode :
1422777
Title :
Design and implementation of the STAR experiment´s DAQ
Author :
Jacobson, S. ; LeVine, M.J. ; Nguyen, Minh-Khai ; Schaefer, Emily ; Schmischke, D. ; Schulz, Markus
Volume :
45
Issue :
4
fYear :
1998
fDate :
8/1/1998 12:00:00 AM
Firstpage :
1907
Lastpage :
1912
Abstract :
The STAR experiment is one of the two large detectors currently being built at the Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Laboratory, Upton, U.S.A. The major issue of STAR´s DAQ is the large amount of data that has to be processed as fast as possible. The required data rate is of the order of 90 Gbits/s which has to be processed and scaled down to about 15 MBytes/s and stored to tape or other permanent archiving media. To be able to do so the STAR DAQ uses a custom built ASIC which preprocesses the raw data for later use by a software Level 3 trigger. The Level 3 trigger selects events to be archived depending on physics criteria based upon the particle track information extracted during Level 3 processing. The design presented is a massively parallel multiprocessor system which consists of front end microprocessors hierarchically organized within a VME crate system. Each VME crate contains 6 custom made Receiver Boards with 3 Intel I960HD processors per board for a total of 18 processors per crate. The STAR´s TPC detector uses 24 such crates and the SVT detector will use 4 crates for a total of 504 microprocessors
Keywords :
application specific integrated circuits; data acquisition; high energy physics instrumentation computing; multiprocessing systems; nuclear electronics; time projection chambers; trigger circuits; RHIC; Relativistic Heavy Ion Collider; STAR experiment; TPC detector; VME crate system; custom built ASIC; front end microprocessors; massively parallel multiprocessor system; particle track information; permanent archiving media; software Level 3 trigger; Application specific integrated circuits; Data acquisition; Data mining; Detectors; Laboratories; Microprocessors; Multiprocessing systems; Particle tracking; Physics; Process design;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.710960
Filename :
710960
Link To Document :
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