This paper presents the approach used to characterize an Associative Memory Chip (AMChip) designed for the trigger systems of high-energy physics experiments in the Large Hadron Collider (LHC) at CERN. Pattern recognition is performed with Associative Memories (AM). A dedicated integrated circuit has been designed, fabricated and tested to verify that the proposed solution meets area, speed and current consumption requirements.
Characterisation of an associative memory chip for high-energy physics experiments / A. Andreani, A. Annovi, R. Beccherle, M. Beretta, N. Biesuz, M. Citterio, F. Crescioli, P. Giannetti, V. Liberali, S. Shojaii, A. Stabile (CONFERENCE PROCEEDINGS - IEEE INSTRUMENTATION/MEASUREMENT TECHNOLOGY CONFERENCE). - In: 2014 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) ProceedingsPiscataway : IEEE, 2014 May. - ISBN 9781467363853. - pp. 1487-1491 (( Intervento presentato al 12. convegno International instrumentation and measurement technology conference (I2MTC) tenutosi a Montevideo nel 2014 [10.1109/I2MTC.2014.6860993].
Characterisation of an associative memory chip for high-energy physics experiments
A. AndreaniPrimo
;V. Liberali;S. ShojaiiPenultimo
;A. StabileUltimo
2014
Abstract
This paper presents the approach used to characterize an Associative Memory Chip (AMChip) designed for the trigger systems of high-energy physics experiments in the Large Hadron Collider (LHC) at CERN. Pattern recognition is performed with Associative Memories (AM). A dedicated integrated circuit has been designed, fabricated and tested to verify that the proposed solution meets area, speed and current consumption requirements.File | Dimensione | Formato | |
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