• DocumentCode
    3634826
  • Title

    First test results Of MIMOSA-26, a fast CMOS sensor with integrated zero suppression and digitized output

  • Author

    J. Baudot;G. Bertolone;A. Brogna;G. Claus;C. Colledani;Y. Degerli;R. De Masi;A. Dorokhov;G. Dozi?re;W. Dulinski;M. Gelin;M. Goffe;A. Himmi;F. Guilloux;C. Hu-Guo;K. Jaaskelainen;M. Koziel;F. Morel;F. Orsini;M. Specht;I. Valin;G. Voutsinas;M. Winter

  • Author_Institution
    IPHC, Universite? Louis Pasteur, CNRS/IN2P3, BP 28, F-67037 Strasbourg, France
  • fYear
    2009
  • Firstpage
    1169
  • Lastpage
    1173
  • Abstract
    The MIMOSA pixel sensors developed in Strasbourg have demonstrated attractive features for the detection of charged particles in high energy physics. So far, full-size sensors have been prototyped only with analog readout, which limits the output rate to about 1000 frames/second. The new MIMOSA 26 sensor provides a 2.2 cm2 sensitive surface with an improved readout speed of 10,000 frames/second and data throughput compression. It incorporates pixel output discrimination for binary readout and zero suppression micro-circuits at the sensor periphery to stream only fired pixel out. The sensor is back from foundry since february 2009 and has being characterized in laboratory and in test beam. The temporal noise is measured around 13-14 e- and an operation point corresponding to an efficiency of 99.5?0.1 % for a fake rate of 10-4 per pixel can be reached at room temperature. MIMOSA 26 equips the final version of the EUDET beam telescope and prefigures the architecture of monolithic active pixel sensors (MAPS) for coming vertex detectors (STAR, CBM and ILC experiments) which have higher requirements. Developments in the architecture and technology of the sensors are ongoing and should allow to match the desired readout speed and radiation tolerance. Finally, the integration of MAPS into a micro-vertex detector is addressed. A prototype ladder equipped, on both sides, with a row of 6 MIMOSA 26-like sensors is under study, aiming for a total material budget about 0.3% X0.
  • Keywords
    "Testing","Sensor phenomena and characterization","Prototypes","Computer vision","Throughput","Foundries","Laboratories","Noise measurement","Temperature sensors","Telescopes"
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium Conference Record (NSS/MIC), 2009 IEEE
  • ISSN
    1082-3654
  • Print_ISBN
    978-1-4244-3961-4
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2009.5402399
  • Filename
    5402399