• DocumentCode
    968566
  • Title

    An instantaneous response CMOS optical receiver IC with wide dynamic range and extremely high sensitivity using feed-forward auto-bias adjustment

  • Author

    Nakamura, Makoto ; Ishihara, Noboru ; Akazawa, Yukio ; Kimura, Hideaki

  • Author_Institution
    NTT LSI Labs., Kanagawa, Japan
  • Volume
    30
  • Issue
    9
  • fYear
    1995
  • fDate
    9/1/1995 12:00:00 AM
  • Firstpage
    991
  • Lastpage
    997
  • Abstract
    An instantaneous response CMOS optical-receiver IC is described with wide input dynamic range and high sensitivity. In a TCM (time compression multiplexing)-TDMA (time division multiple access) fiber-optic subscriber system, a receiver should be able to handle burst-data packets with different amplitude. This requires quick response and a wide dynamic range. Instantaneous response is achieved with a new feed-forward auto-bias adjustment technique. In addition, multistaged offset compensation provides a wide dynamic range without any external elements and adjustments. Using these design techniques, an optical receiver IC was fabricated in a standard 0.8-μm CMOS technology. The receiver has a wide dynamic range of more than 25 dB for burst-mode optical input at 29 Mb/s. It has high transimpedance gain of 150 dBΩ and high sensitivity of -42 dBm with stable operation for FET threshold voltage and power supply voltage fluctuation
  • Keywords
    CMOS analogue integrated circuits; compensation; digital communication; feedforward; optical fibre subscriber loops; optical receivers; time division multiple access; 0.8 micron; 29 Mbit/s; CMOS optical receiver IC; TCM-TDMA fiber-optic subscriber system; burst-data packets; extremely high sensitivity; feed-forward auto-bias adjustment; instantaneous response; multistaged offset compensation; time compression multiplexing; time division multiple access; wide dynamic range; CMOS integrated circuits; CMOS technology; Dynamic range; Feedforward systems; Optical design; Optical receivers; Optical sensors; Photonic integrated circuits; Threshold voltage; Time division multiple access;
  • fLanguage
    English
  • Journal_Title
    Solid-State Circuits, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9200
  • Type

    jour

  • DOI
    10.1109/4.406398
  • Filename
    406398