• DocumentCode
    3041133
  • Title

    Readout hardware and firmware architecture of the HFT PXL detector at STAR

  • Author

    Schambach, Joachim ; Greiner, Leo ; Stezelberger, Thorsten ; Sun, Xinghua ; Szelezniak, M. ; Vu, C.

  • Author_Institution
    Univ. of Texas, Austin, TX, USA
  • fYear
    2012
  • fDate
    9-15 June 2012
  • Firstpage
    1
  • Lastpage
    5
  • Abstract
    The “Heavy Flavor Tracker” (HFT) is an approved micro-vertex detector upgrade to the STAR experiment at RHIC, consisting of three subsystems with various technologies of silicon sensors arranged in 4 concentric cylinders, to be installed in STAR by 2014. This new vertex detector will improve the track-pointing resolution in STAR to a DCA of ~30 μm in order to allow for a direct and full topological reconstruction of heavy quark meson decays and a better determination of the heavy quark meson spectra. The two innermost layers of the HFT close to the beam pipe, the Pixel (“PXL”) subsystem, employ CMOS monolithic active pixel sensor (MAPS) technology that integrates the sensor, front-end electronics, and zero-suppression circuitry in one silicon wafer. The PXL layers of the HFT will consist of 400 MAPS sensors arranged in 40 ladders (10 ladders at a radius of 2.5cm and 30 ladders at 8cm from the beam), each containing 10 of these sensors. This paper will present selected design characteristics of the PXL detector part of the HFT and the hardware and firmware architecture of the proposed readout system for this detector, as well as its integration into the existing STAR framework. A prototype of this readout system has recently been used at CERN to take data from a telescope consisting of 7 sensors arranged in parallel planes and shown to be fully functional.
  • Keywords
    CMOS integrated circuits; firmware; nuclear electronics; position sensitive particle detectors; readout electronics; silicon radiation detectors; CMOS monolithic active pixel sensor technology; HFT PXL detector; MAPS sensors; PXL layers; Pixel subsystem; RHIC; STAR experiment; beam pipe; firmware architecture; front-end electronics; heavy flavor tracker; heavy quark meson decays; heavy quark meson spectra; microvertex detector upgrade; readout hardware; silicon sensors; silicon wafer; size 2.5 cm; size 8 cm; telescope; zero-suppression circuitry; Data acquisition; Detectors; Hardware; Microprogramming; Optical fiber cables; Silicon;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Real Time Conference (RT), 2012 18th IEEE-NPSS
  • Conference_Location
    Berkeley, CA
  • Print_ISBN
    978-1-4673-1082-6
  • Type

    conf

  • DOI
    10.1109/RTC.2012.6418188
  • Filename
    6418188