• DocumentCode
    45752
  • Title

    Design of the Front-End Readout Electronics for ATLAS Tile Calorimeter at the sLHC

  • Author

    Tang, Fen ; Anderson, Kyle ; Drake, Gryphon ; Genat, J. ; Oreglia, M. ; Pilcher, J. ; Price, L.

  • Author_Institution
    Enrico Fermi Inst., Univ. of Chicago, Chicago, IL, USA
  • Volume
    60
  • Issue
    2
  • fYear
    2013
  • fDate
    Apr-13
  • Firstpage
    1255
  • Lastpage
    1259
  • Abstract
    We present a detailed upgrade design of the analog front-end electronics for the ATLAS Tile Calorimeter (TileCal) at the sLHC. Here we use the latest commercial off-the-shelf (COTS) components. We believe that with the latest technology based COTS devices, significant improvements in radiation tolerance are possible. The front-end analog electronics provides 17-bit dynamic range for readout of the PMT signals. Each PMT signal is processed with a 7-pole passive LC shaper, followed by a pair of bi-gain amplifiers and two 40 Msps sampling ADCs. The readout system is capable of measuring energy deposition from ~ 220 MeV to 1.3 TeV in a single calorimeter cell and providing input to a fully digital Level-1 trigger. Other on-board features include a slow current integrator used for detector calibration with a cesium source to normalize the PMT gains and charge injectors for calibrating linearity and dynamic range of the readout electronics. A total of ~ 10, 000 upgraded readout channels are needed to replace the current system at the LHC.
  • Keywords
    calibration; nuclear electronics; particle calorimetry; readout electronics; transition radiation detectors; 17-bit dynamic range; 7-pole passive LC shaper; ATLAS Tile Calorimeter; COTS devices; PMT gains; PMT signal readout; analog front-end electronics; bi-gain amplifiers; charge injectors; commercial off-the-shelf components; detector calibration; electron volt energy 220 MeV to 1.3 TeV; energy deposition; front-end readout electronics; fully digital Level-1 trigger; radiation tolerance; readout channels; readout system; sLHC; single calorimeter cell; Bandwidth; Calibration; Detectors; Dynamic range; Large Hadron Collider; Readout electronics; Analog-digital conversion; analog processing circuits; circuit noise; pulse measurements;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2012.2215053
  • Filename
    6308745