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  • CCD Technology
    position remains the same it will result in an output change. This is the net effect when you have a change in color in your target. Fig. 3. CCD (Charged Couple Device). The first general purpose high speed CCD (charged coupled device) lasers were introduced in Europe in 1993. They have evolved over
  • CCD Technology
    is that if the light intensity changes while the spot position remains the same it will result in an output change. This is the net effect when you have a change in color in your target. Fig. 3. CCD (Charged Couple Device). The first general purpose high speed CCD (charged coupled device) lasers were
  • High Precision Optical Fiber Array Connector and Method
    of the semiconductor integrated circuitry. To this end, arrays of optical fibers need to be coupled precisely and reliably to semiconductor laser and detector arrays on a chip. Already, various groups throughout the world have demonstrated feasibility of high speed optoelectronic VLSI switching and two dimensional
  • A CMOS Active Pixel Image Sensor with In-pixel CDS for High-Speed Cameras (.pdf)
    the CCD. In the photoelectric conversion cell of CMOS image sensor, a 3-transistor pixel circuitry is generally favored. However, the greatest challenge in the high-speed image sensor is the high reset noise level due to the larger photocell. area and the difficulty of reducing random noise by the global
  • Study of Magnetic Helicity Injection via Plasma Imaging Using a High-Speed Digital Camera
    and its role in causing instabilities are poorly understood. The goal of this research is to study the process of magnetic helicity injection in a simple laboratory experiment. ./cb2907be-9aee-4cc6-862d-e76879141e28 Study of Magnetic Helicity Injection Via Plasma Imaging Using a. High-Speed Digital
  • Electron Multiplication CCDs Offer a Flexible Solution
    to the camera. higher speed readouts at reduced. ventional CCD would be approxi-. manufacturer’s dark current noise. resolutions for high frame rates —. mately 50:1. If one amplifies the. specification (typically in e per pixel. ideal for kinetic applications that do. charge by 20 (20,000 e
  • HR2000 Spectrometer OEM Data Sheet
    , PLCs and other embedded controllers through either USB or RS-232 communications. The information included in this data sheet provides detailed instructions on the connection and operation of the HR2000. The detector used in the HR2000 spectrometer is a high-sensitivity 2048-element CCD array from
  • HR4000 Spectrometer OEM Data Sheet
    and other embedded controllers through USB 2.0 or RS-232 communications. The information included in this guide provides detailed instructions on the connection and operation of the HR4000. The detector used in the HR4000 spectrometer is a high-sensitivity 3648-element CCD array from Toshiba, product

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