SM241

  NIR Laser CCD Spectrometer



• Inexpensive alternative to Ge or InGaAs Systems

 

• Allows Spectral Measurement Between 900nm and

 1700nm for Laser




SM241-4.png


  • Specifications

      Detectors

        Sony ILX511 (IR Enhanced Coated)

      Pixel Number

        2048 (Effective)

      Wavelength Range

        Full Range : 900 ~ 1700nm

      Optical Resolution

        5nm with standard slit configuration

      Dark Noise RMS

        < 50 RMS counts @ 35msec exposure time

      ADC Resolution

        16bit

      Interface

        USB 1.1/2.0 compatible

      Operationg System

        Window® XP / VISTA / Win7(32 / 64bit) / Win8.1 (32 / 64bit)

      SDK Support

        Visual C++ / Visual Basic / LabVIEW

      Dimensions / Weight

        121mm X 121mm X 54mm / 0.7Kg 

  • description

      The Choice for Spectral Applications

      The SM241 is a compact CCD based Spectrometer designed for NIR laser applications. Spectral Products' IR up-conversion phosphor CCD coating breaks the standard Silicon-based CCD detectors array sensitivity barrier of 1100nm to allow spectral measurements up to 1700nm. This technology makes the SM241 a lower cost alternative to Germanium or InGaAs systems. The SM241 optical bench includes oversized gold plated mirrors and gratings to accommodate NIR light collection and analysis.

      Maximum spectral coverage with this spectrometer is 900 nm to 1700 nm (reduced coverage window size within 900-1700nm will increase spectral resolution and light sensitivity). But although the SM241 can measure up to 1700nm, due to its low sensitivity, it is limited only to use in the applications measuring very narrow band-width and strong lights like lasers in this NIR range.

      Standard interfaces include a USB 2.0 interface and a PCI card interface with a 16-bit extended dynamic range. Software support includes a SDK and DLLs for dedicated applications development and our SM32Pro windows based spectral acquisition and analysis software. Both standard and legacy interface designs provide support for advanced acquisition programming and external triggering.

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