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XV1100 Optical Fiber Spectrometer

Product ID:FGgx037

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Supply Ability:550 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberXV1100
    Brand NameSHANGHAIRUHAIGUANGDIAN
    Payment TermsT/T, paypal
    XV1100 Optical Fiber Spectrometer
    Introduction
    XV1100 is an optical fiber spectrometer with a spectral range of 185-1100nm. The detector uses Hamamatsu area array back-illuminated CCD, 16-bit A / D sampling and 75% quantum efficiency to provide a high signal-to-noise ratio and a large dynamic range for the spectrometer. It can be widely used in the fields of physical and chemical analysis, biological samples, semiconductor material detection, optical detection and material detection. XV1100 is at 0-40 degrees, the spectral wavelength shift is <0.1nm, has good thermal stability, and can be applied to qualitative and quantitative detection scenarios. 
    Features
    1.Wide detection range: 185 ~ 1100nm;
    2.High resolution: optical fiber with resolution <2.5nm@600μm;
    3.Good thermal stability: spectral wavelength shift <0.1nm @ 0-40 ℃, sensitivity deviation <2%;
    4.High signal-to-noise ratio and large dynamic range. 
    Technical Parameters
    Dimensions: 95 × 72 × 42mm
    Weight: ~ 380g
    Detector: Hamamatsu 10420-1106
    Wavelength: 185-1150nm
    Pixel: 2048 × 64
    Resolution: <2.5nm
    Signal to noise ratio: 450: 1
    Thermal stability: <0.3%
    A / D resolution: 16bit
    Dark noise: 50 RMS (100ms)
    Dynamic time: 10000: 1
    Integration time: 4ms-65s
    Interface: MiniUSB

  • Introduction
    XV1100 is an optical fiber spectrometer with a spectral range of 185-1100nm. The detector uses Hamamatsu area array back-illuminated CCD, 16-bit A / D sampling and 75% quantum efficiency to provide a high signal-to-noise ratio and a large dynamic range for the spectrometer. It can be widely used in the fields of physical and chemical analysis, biological samples, semiconductor material detection, optical detection and material detection. XV1100 is at 0-40 degrees, the spectral wavelength shift is <0.1nm, has good thermal stability, and can be applied to qualitative and quantitative detection scenarios. 
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