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Spider2000+portable two-dimensional imaging Raman spectrometer

Product ID:FGlm094

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberSpider2000+
    Brand NameRUHAIGUANGDIAN
    Payment TermsTT,PAYPAL
    Spider2000+portable two-dimensional imaging Raman spectrometer
    Introduction:
    The Spider2000+portable two-dimensional Raman imaging spectrometer adopts the research grade micro confocal Raman spectrometer RMS2000 independently developed by Hai Optoelectronics as the Raman core, which gives it high sensitivity, high resolution, strong penetration ability, and good ability to suppress fluorescence interference.
    The optimized optical path design can enable the Raman laser beam to achieve a minimum spot size of micrometer level after passing through the telephoto microscope objective, which can accurately collect Raman spectra of micrometer level samples.
    In addition, the instrument adopts a high-precision two-dimensional automated mobile platform, which can achieve automatic scanning and mapping imaging functions.
    The Spider2000+portable two-dimensional micro Raman imaging spectrometer is equipped with a telephoto microscope objective specially designed for Raman systems. The Spider2000+adds an upper light source reflective illumination imaging, which can obtain clear micro bright field imaging of the sample through a CCD camera. After passing through the objective, the laser spot approaches the diffraction limit, overcoming the problem of the focal plane collecting Raman signals slightly higher or lower than the actual optimal focal plane in ordinary Raman systems. The unique confocal design effectively suppresses the fluorescence signal of the sample, thereby improving the quality of Raman spectra.
    characteristic:
    1. High sensitivity: The characteristic peak of anhydrous ethanol with a minimum concentration of 0.3% can be detected.
    2. High resolution: 6cm-1@25 μ m slit.
    3. Powerful software features: Supports automatic mapping scanning, database recognition, and other functions.
    4. High quality objective lens, with a spot size of up to micrometers.
    5. High precision 2D automation platform.
    Technical parameters:
    Size: 200 * 350 * 295mm
    Weight: 6 kg
    Main material: Aluminum alloy
    Surface treatment: Anodized blackening
    Platform itinerary: 50 × 50 mm
    Motor positioning accuracy: 50 μ m
    Repetitive positioning accuracy: 0.1 mm
    Motor operating speed: 60 mm/s
    Excitation wavelength: 785 ± 0.5nm, linewidth ≤ 0.08nm
    Power range: 5-500MW adjustable
    Objective: 20 x achromatic telephoto objective (5 x, 10 x, 50
    Connection method: USB
    Working temperature: 0-45
    Working humidity: 5-80%

  • Introduction:
    The Spider2000+portable two-dimensional Raman imaging spectrometer adopts the research grade micro confocal Raman spectrometer RMS2000 independently developed by Hai Optoelectronics as the Raman core, which gives it high sensitivity, high resolution, strong penetration ability, and good ability to suppress fluorescence interference.
    The optimized optical path design can enable the Raman laser beam to achieve a minimum spot size of micrometer level after passing through the telephoto microscope objective, which can accurately collect Raman spectra of micrometer level samples.
    In addition, the instrument adopts a high-precision two-dimensional automated mobile platform, which can achieve automatic scanning and mapping imaging functions.
    The Spider2000+portable two-dimensional micro Raman imaging spectrometer is equipped with a telephoto microscope objective specially designed for Raman systems. The Spider2000+adds an upper light source reflective illumination imaging, which can obtain clear micro bright field imaging of the sample through a CCD camera. After passing through the objective, the laser spot approaches the diffraction limit, overcoming the problem of the focal plane collecting Raman signals slightly higher or lower than the actual optimal focal plane in ordinary Raman systems. The unique confocal design effectively suppresses the fluorescence signal of the sample, thereby improving the quality of Raman spectra.
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