• DocumentCode
    1169052
  • Title

    Noise Performance of 0.13 \\mu m CMOS Technologies for Detector Front-End Applications

  • Author

    Manghisoni, Massimo ; Ratti, Lodovico ; Re, Valerio ; Speziali, Valeria ; Traversi, Gianluca

  • Author_Institution
    Dipt. di Ingegneria Industriale, Universita di Bergamo, Dalmine
  • Volume
    53
  • Issue
    4
  • fYear
    2006
  • Firstpage
    2456
  • Lastpage
    2462
  • Abstract
    Submicron CMOS technologies provide well-established solutions to the implementation of low noise front-end electronics for a wide range of detector applications. In recent years high performance mixed signal circuits were fabricated in 0.35 mum and 0.25 mum processes. Presently the IC designers´ effort is gradually shifting to 0.13 mum technologies, following the trend of commercial silicon foundries. Since commercial CMOS processes maintain a steady trend in device scaling, it is essential to monitor the impact of these technological advances on the noise parameters of the devices. To estimate the noise limits of a front-end system in the 0.13 mum node, this work presents the results of noise measurements carried out on NMOS and PMOS devices in two commercial processes from different foundries. The behavior of the 1/f and white noise terms is studied as a function of the device polarity and of the gate length and width to account for different detector requirements. The study is focused on low current density applications where devices are biased in weak or moderate inversion. Data obtained from the measurements provide a powerful tool to model noise parameters and establish front-end design criteria in a 0.13 mum CMOS process
  • Keywords
    1/f noise; CMOS integrated circuits; nuclear electronics; semiconductor device noise; silicon radiation detectors; white noise; 0.13 micron; 1/f noise; IC designers; NMOS device; PMOS device; biased device; commercial silicon; current density; detector front-end application; device polarity; device scaling; gate length; gate width; low noise front-end electronics; mixed signal circuit; submicron CMOS technologies; white noise term; CMOS process; CMOS technology; Circuit noise; Detectors; Foundries; Integrated circuit noise; MOS devices; Noise measurement; Signal processing; Silicon; CMOS; deep submicron; front-end electronics; noise;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2006.876472
  • Filename
    1684127