• DocumentCode
    1294431
  • Title

    Design and implementation of the level 1 charged particle trigger for the BABAR detector

  • Author

    Berenyi, A. ; Chen, H.K. ; Dao, K. ; Dow, S.F. ; Gehrig, S.K. ; Gill, M.S. ; Grace, C. ; Jared, R.C. ; Johnson, J.K. ; Karcher, A. ; Kasen, D. ; Kirsten, EA ; Kral, J.F. ; LeClerc, C.M. ; Levi, M.E. ; Von Der Lippe, H. ; Liu, T.H. ; Marks, K.M. ; Meyer, A

  • Author_Institution
    Lawrence Berkeley Nat. Lab., CA, USA
  • Volume
    46
  • Issue
    6
  • fYear
    1999
  • Firstpage
    2006
  • Lastpage
    2010
  • Abstract
    The environment of the high-luminosity PEP-II machine poses unique design challenges for the trigger system of the BABAR detector. These led to the adoption of a real-time parallel pipelined architecture for the trigger electronics which departs significantly from previous implementations at conventional e/sup +/e/sup -/ experiments. One challenge for the trigger designer lies in detecting low multiplicity physics events with high efficiency while keeping the background rate within the data acquisition limits. To achieve this difficult task, creative and innovative high-speed trigger algorithms were designed, simulated and implemented in Field Programmable Gate Arrays, using advanced CAD/CAE tools. The simulation results indicate that these algorithms will be able to perform all required tasks quickly and efficiently. This paper describes the design of the Level 1 Drift Chamber Trigger System of the BABAR detector, including the trigger algorithms, design and test methodology of the implementation, as well as test and simulation results.
  • Keywords
    drift chambers; nuclear electronics; trigger circuits; BABAR detector; data acquisition limits; high-luminosity PEP-II machine; level 1 charged particle trigger; low multiplicity physics events; real-time parallel pipelined architecture; trigger electronics; trigger system; Algorithm design and analysis; Computer aided engineering; Data acquisition; Design automation; Design methodology; Detectors; Event detection; Field programmable gate arrays; Physics; System testing;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/23.819272
  • Filename
    819272