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High-Resolution Fiber Optic Spectrometer H Series

  • Goptica's H-series linear array fiber optic spectrometer adopts a Hamamatsu CMOS detector, with performance meeting industrial and entry-level research applications. It also features high-speed spectral response and high resolution, making it highly suitable for applications requiring high-speed response monitoring and high-resolution demands, such as laser performance testing, gas absorption measurements, and atomic emission line analysis, among others.



    Product Specifications and Manual

    H Series High-Resolution Spectrometer

       格物PDF.png

      Product格物H系列光谱仪

     Wavelength range

     Wavelength from 200nm-1100nm

      Detector

      Hamamatsu S1349

      Optical Path Design

      Symmetrical Czerny-Turner

      Wavelength Range

      190-1100 nm

      Slit

      0um, 25um, 50um, 100um, 200um optional

      Fiber holder

      SMA905

      Wavelength resolution  0.02 nm FWHM or higher
      Signal-to-Noise Ratio  500:1
      Integration Time  22.5 μs ~ 59 s
      Incident focal length  100 mm
      Exit focal length  100 mm
      Stray light  <0.3%
      Linearity  >99.5%

      A/D

      16 bit

      Power Consumption

      5V DC@200 mA

      Output method

      10 pin 2.54

      Trigger mode  Free running, external hardware trigger, external synchronization trigger, rising edge trigger
      Computer Interface  USB2.0,USB-B  USB2.0, USB-B
      Detector Model

      Hamamatsu S13496

      Pixel  4096
      Pixel size  7x200 μm
      Pixel well depth

      ~19.2 Me- / column

      Sensitivity

      ~25.6 Me- / column











    Wavelength, Slit and Optical Resolution Specifications

    Technical Parameters of H Series


     

    Model

    Wavelength 

    Range

    Grating Lines

    /Blaze Wavelength

    Slit width

    10um

    25um

    50um

    100um

    200um

    H/200-1100

    200-1100nm

    300/300nm & 550nm

    0.7nm

    1.0nm

    1.4nm

    2.5nm

    4nm

    H/400-1000

    400-1000nm

    400/500nm

    1.1nm

    1.3nm

    1.4nm

    2.2nm

    3.5nm

    H/350-800

    350-800nm

    600/500nm

    0.6nm

    0.8nm

    1.0nm

    1.3nm

    2.5nm

    H/190-410

    190-410nm

    1200/200nm

    0.15nm

    0.2nm

    0.3nm

    0.5nm

    1.1nm

    H/300-430

    300-430nm

    1800/500nm

    0.1nm

    0.15nm

    0.2nm

    0.35nm

    0.7nm

    H/400-530

    400-530nm

    1800/500nm

    0.1nm

    0.15nm

    0.2nm

    0.35nm

    0.7nm

    H/530-645

    530-645nm

    1800/500nm

    0.1nm

    0.15nm

    0.2nm

    0.35nm

    0.7nm

    H/400-600

    400-600nm

    1200/600nm or 1200/750nm

    0.15nm

    0.2nm

    0.3nm

    0.5nm

    1.5nm

    H/530-720

    530-720nm

    1200/600nm or 1200/750nm

    0.15nm

    0.2nm

    0.3nm

    0.5nm

    1.5nm

    H/630-820

    630-820nm

    1200/600nm or 1200/750nm

    0.15nm

    0.2nm

    0.3nm

    0.5nm

    1.5nm

    H/710-1100

    710-1100nm

    600/800nm

    0.6nm

    0.8nm

    1.0nm

    1.3nm

    2.5nm

    H/780-1060

    780-1060nm

    830/900nm

    0.25nm

    0.35nm

    0.45nm

    0.7nm

    1.4nm




    Multi-channel S Series upgrade options


    Do you need to perform more precise measurements in a wider wavelength range? Our multi-channel spectrometer upgrade options provide a solution. Select the desired spectrometer wavelength range, and we can integrate them into a single system with single-fiber or multi-fiber output options. Contact us for more information.





    Product Dimensions


    H Series

    格物H系列光谱仪尺寸



  • Due to the limited number of pixels in the spectrometer detector, at high spectral resolution, only a few pixels form a single spectral peak, resulting in no smooth peak, as shown in the following figure.

    This figure shows an example of peak position drift caused by temperature drift of the spectrometer at different temperatures. The spectral peak is not symmetrical because the number of pixels that make up the spectral peak is very small, and under the influence of temperature drift, the highest pixel of the spectral peak moves one pixel from left to right.


    At this point, we have two methods to evaluate the drift of this peak position.

    1. Check the position of the highest pixel point. Obviously, the peak position has shifted by one pixel, which means approximately 0.15 nm.

    2. Fit the peak values before and after drift, and find the fitted peak point between two pixels. The drift of the fitted peak point is about 0.07nm

     

    So which of these two methods is correct? We believe the second one is correct, reflecting the true drift of the peak position. The reasons are as follows.

    1.High resolution results in a low pixel sampling rate for spectral peaks, and directly observing the shape of a pixel does not reflect the actual shape of the peak.

    2.The spectral peak is physically closer to a symmetrical distribution, and the shift in peak position will not cause a change in peak shape.

    3.By fitting all the pixels that make up the spectral peak, the peak shape obtained is closer to the physical reality of the peak.


    Therefore, using fitted peak shapes to determine peak positions and evaluate spectrometer drift is the correct method.


    Is it necessary to do so in practice? It depends on the actual situation. If

     

    1.Low spectral resolution and high sampling rate of spectral peaks require more pixels to form a peak, and these pixels themselves are connected in a smoother and more symmetrical peak shape. Then, the position of the highest pixel or between two pixels can be directly found, and the peak position can be confirmed through visual evaluation.


    2.With high spectral resolution and the need to accurately know peak values, the above fitting method is required. Fitting can be achieved through spline algorithm or Gaussian or Lorentz fitting, and one can choose based on the spectral properties of the tested sample. If you don't know how to choose, please use spline curves.


  • parts

    For more information about customized accessories, please contact us sales@goptica.com

    ModelCategoryWavelengthCore DiameterLength# Number of coresInterface
    I1000-S/S-L2fiber optic360~2500nm1000um2m1SMA905-SMA905
    V1000-S/S-L2200 ~ 1100 nm1000um2m1SMA905-SMA905
    DV600-S/S-L2190~1100 nm600um2m1SMA905-SMA905
    I600-S/S-L2360~2500nm600um2m1SMA905-SMA905
    V600-S/S-L2200 ~ 1100 nm600um2m1SMA905-SMA905
    DV400-S/S-L2190~1100 nm400um2m1SMA905-SMA905
    I400-S/S-L2360~2500nm400um2m1SMA905-SMA905
    V400-S/S-L2200 ~ 1100 nm400um2m1SMA905-SMA905
    DV200-S/S-L2190~1100 nm200um2m1SMA905-SMA905
    I200-S/S-L2360~2500nm200um2m1SMA905-SMA905
    V200-S/S-L2200 ~ 1100 nm200um2m1SMA905-SMA905
    DV100-S/S-L2190~1100 nm100um2m1SMA905-SMA905
    I100-S/S-L2360~2500nm100um2m1SMA905-SMA905
    V100-S/S-L2200 ~ 1100 nm100um2m1SMA905-SMA905
    I1000-Y*2-S/S-L2

    Forked optical fiber,

     Y-shaped fiber: 2 fibers

    360~2500nm1000um2mA-2 core, B1-1 core, B2-1 coreA-SMA905 / B1-SMA905 / B2-SMA905
    V1000-Y*2-S/S-L2200 ~ 1100 nm1000um2mA-2 core, B1-1 core, B2-1 coreA-SMA905 / B1-SMA905 / B2-SMA905
    DV600-Y*7-S/S-L2190~1100 nm600um2mA-7 core, B1-1 core, B2-6 coreA-SMA905 / B1-SMA905 / B2-SMA905
    I600-Y*7-S/S-L2360~2500nm600um2mA-7 core, B1-1 core, B2-6 coreA-SMA905 / B1-SMA905 / B2-SMA905
    DV600-1*7-S/S-L2multi-core optical fiber190~1100 nm600um2m7SMA905-SMA905
    I600-1*7-S/S-L2360~2500nm600um2m7SMA905-SMA905



    Integral ball

    Wavelength 250 - 2500 nm

    Output ports can be customized

    Black anodized aluminum alloy shell

    Gilded Integral Ball

    Wavelength 1000 - 5000 nm

    Electrochemical Coating with Diffuse Reflective Film

    Halogen light source

    Wavelength 360 - 2500 nm

    Long service life, usually 10000 hours

    SMA905 interface

    Deuterium lamp light source

    Wavelength 190 - 400 nm

    Long service life, usually 1500 hours

    SMA905 interface

    Sample holder for transmittance measurementSample holder with reflectivity measurement bracket
    Colorimetric dish rackOptical support for measuring transmission and reflection samples

    Fiber optic attenuator

    Wavelength 200 - 2500 nm

    Adjustable slit for attenuation

    Fiber collimator

    Wavelength 185 - 2500 nm

    Numerical aperture 0.22 - 0.37 NA,

    Core diameter ≥ 100 µm



12 products in total Add Contrast
Product Picture Product Model Drawings And Specifications Operation
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/200-1100

H/200-1100,Wavelength Range: 200-1100nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/400-1000

H/400-1000,Wavelength Range: 400-1000nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/350-800

H/350-800,Wavelength Range: 350-800nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/190-410

H/190-410,Wavelength Range: 190-410nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/300-430

H/300-430,Wavelength Range: 300-430nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/400-530

H/400-530,Wavelength Range: 400-530nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/530-645

H/530-645,Wavelength Range: 530-645nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/400-600

H/400-600,Wavelength Range: 400-600nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/530-720

H/530-720,Wavelength Range: 530-720nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/630-820

H/630-820,Wavelength Range: 630-820nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/710-1100

H/710-1100,Wavelength Range: 710-1100nm

Drawings And Specifications: Operation:inquiry
Product Picture: Product Model:High-Resolution Fiber Optic Spectrometer H Series:H/780-1060

H/780-1060,Wavelength Range: 780-1060nm

Drawings And Specifications: Operation:inquiry

Please contact us for more information

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  • Demo application

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