• DocumentCode
    1127012
  • Title

    Master-slice monolithic integration design and characteristics of LD/LED transmitters for 100-400 mbit/s optical transmission systems

  • Author

    Yamashita, Kiichi ; Takasaki, Yoshitaka ; Maeda, Minoru ; Maeda, Narimichi

  • Author_Institution
    Hitachi Ltd., Kokubunji-shi, Tokyo, Japan
  • Volume
    4
  • Issue
    3
  • fYear
    1986
  • fDate
    3/1/1986 12:00:00 AM
  • Firstpage
    353
  • Lastpage
    359
  • Abstract
    Monolithic integration of LD and LED transmitters operating at 100-400 Mbit/s is investigated using a 3-μm Si-bipolar process as a first step in the establishment of a master-slice IC technology for optical communication systems. An LD transmitter IC is developed as a master IC, which includes a differential current switch and an input buffer circuit for high-speed modulation and a current stabilizer and an APC circuit for the stabilization of the output optical power, An LED transmitter is fabricated by the minor change of wiring of the master IC. The former exhibits 0.5-ns rise and 0.7-ns fall times at the signal current of 40 mA. Also the latter exhibits 0.4-ns rise and 0.6-ns fall times at the signal current of 100 mA. Characteristics of LD and LED transmitters are estimated in order to prove the usefulness of the fabricated IC´s. As a result, it is confirmed that both transmitters using the fabricated IC´s operate at the modulation speed of 300-400 Mbit/s and output optical power fluctuations of less than ±0.5 dB over the ranges of 5V ±5 percent supply voltage and 0-50°C temperature. From these results, it is proven that the master-slice monolithic integration is feasible and will be very useful for reduction of the turn-around time in IC development.
  • Keywords
    Bipolar integrated circuits; Light-emitting diodes (LED´s); Optical fiber transmitters, lasers; High speed integrated circuits; High speed optical techniques; Integrated optics; Light emitting diodes; Monolithic integrated circuits; Optical buffering; Optical design; Optical modulation; Optical transmitters; Photonic integrated circuits;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.1986.1074705
  • Filename
    1074705