• DocumentCode
    1424282
  • Title

    Design and Characteristics of a Multichannel Front-End ASIC Using Current-Mode CSA for Small-Animal PET Imaging

  • Author

    Ollivier-Henry, N. ; Wu Gao ; Xiaochao Fang ; Mbow, N.A. ; Brasse, D. ; Humbert, B. ; Hu-Guo, Christine ; Colledani, C. ; Yann Hu

  • Author_Institution
    Inst. Pluridisciplinaire Hubert CURIEN, Strasbourg, France
  • Volume
    5
  • Issue
    1
  • fYear
    2011
  • Firstpage
    90
  • Lastpage
    99
  • Abstract
    This paper presents the design and characteristics of a front-end readout application-specific integrated circuit (ASIC) dedicated to a multichannel-plate photodetector coupled to LYSO scintillating crystals. In our configuration, the crystals are oriented in the axial direction readout on both sides by individual photodetector channels allowing the spatial resolution and the detection efficiency to be independent of each other. Both energy signals and timing triggers from the photodetectors are required to be read out by the front-end ASIC. A current-mode charge-sensitive amplifier is proposed for this application. This paper presents performance characteristics of a 10-channel prototype chip designed and fabricated in a 0.35-μm complementary metal-oxide semiconductor process. The main results of simulations and measurements are presented and discussed. The gain of the chip is 13.1 mV/pC while the peak time of a CR-RC pulse shaper is 280 ns. The signal-to-noise ratio is 39 dB and the rms noise is 300 μV/√(Hz). The nonlinearity is less than 3% and the crosstalk is about 0.2%. The power dissipation is less than 15 mW/channel. This prototype will be extended to a 64-channel circuit with integrated time-to-digital converter and analog-to-digital converter together for a high-sensitive small-animal positron emission tomography imaging system.
  • Keywords
    amplifiers; analogue-digital conversion; application specific integrated circuits; biomedical electronics; current-mode circuits; medical signal processing; photodetectors; positron emission tomography; solid scintillation detectors; LYSO scintillating crystals; analog-to-digital converter; application-specific integrated circuit; charge-sensitive amplifier; crosstalk; current-mode CSA; energy signals; integrated time-to-digital converter; multichannel front-end ASIC; multichannel-plate photodetector; nonlinearity; photodetector channels; positron emission tomography; power dissipation; signal-to-noise ratio; small-animal PET imaging; timing triggers; Application specific integrated circuits; Crystals; Detectors; Gain; Impedance; Positron emission tomography; Charge-sensitive amplifiers (CSA); front-end application-specific integrated circuit (ASIC); multichannel plate (MCP); photomultiplier tubes (PMT); positron emission tomography (PET); regulated cascade (RGC);
  • fLanguage
    English
  • Journal_Title
    Biomedical Circuits and Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1932-4545
  • Type

    jour

  • DOI
    10.1109/TBCAS.2010.2095847
  • Filename
    5686884