• DocumentCode
    1697856
  • Title

    A 2/3-inch 2M-pixel CMD image sensor with multi-scanning function

  • Author

    Nomoto, T. ; Hyuga, R. ; Nakajima, S.-I. ; Takayanagi, I. ; Isokawa, T. ; Ohta, R. ; Matsumoto, K. ; Nakamura, T.

  • Author_Institution
    Olympus Opt. Co. Ltd., Nagano, Japan
  • fYear
    1993
  • Firstpage
    196
  • Lastpage
    197
  • Abstract
    A charge-modulation device (CMD) image sensor that has active pixels and an X-Y addressing scheme is described. The X-Y address type image sensors have the capability of performing various scanning schemes and, with the CMD pixel size, can be reduced without degrading sensor performance. The 2/3-in optical format 2-M-pixel CMD image sensor, equipped with an electronic shutter, operates in both the interlaced and the progressive scan mode. The performance of the sensor in the progressive scan mode is described. The saturation signal and sensitivity are 28 mu A and 760 nA/1*, respectively. The blooming level is less than -110 dB with a V/10 exposure. Image lag is under the detectable limit (0.1% of saturation signal). Power dissipation is 160 mW. Dynamic range, defined as a shot noise of dark current, is estimated at 64 dB.<>
  • Keywords
    CCD image sensors; random noise; semiconductor device noise; X-Y addressing scheme; active pixels; blooming level; charge-modulation device; dark current; dynamic range; electronic shutter; image lag; interlaced mode; multi-scanning function; power dissipation; progressive scan mode; saturation signal; sensitivity; sensor performance; shot noise; Clocks; Degradation; HDTV; Image sensors; Optical sensors; Pixel; Power dissipation; Signal resolution; Spatial resolution; TV;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Solid-State Circuits Conference, 1993. Digest of Technical Papers. 40th ISSCC., 1993 IEEE International
  • Conference_Location
    San Francisco, CA, USA
  • Print_ISBN
    0-7803-0987-1
  • Type

    conf

  • DOI
    10.1109/ISSCC.1993.280050
  • Filename
    280050