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HX-750 (CCD) full spectrum direct reading spectrometer

Product ID:FGgdzd027

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Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberHX-750 (CCD)
    Brand NameNANJINGHUAXIN
    Payment TermsT/T, paypal
    HX-750 (CCD) full spectrum direct reading spectrometer
     
    Introduction:
    HX-750 (CCD) full-spectrum direct-reading spectrometer is a high-performance, streamlined new-design desktop full-spectrum direct-reading spectrometer. The instrument adopts international standard design, manufacturing process technology and digital technology; adopts unique vacuum light chamber design, all-digital excitation light source; adopts CCD detector, adopts high-speed data exchange system, and is widely used in metallurgy, casting, machinery, metal, automobile , Shipbuilding, electric power, aviation and other fields, can meet the various analysis requirements of users.
    Features:
    1. Using high-performance optical system design and high-precision optical components, it can accurately determine the content of non-metallic elements C, P, S, N and various alloy elements, with accurate results, good reproducibility and long-term stability.
    2. The unique structure design of the vacuum optical chamber makes the volume of the vacuum chamber smaller.
    3. The optical system automatically performs spectral line scanning and automatic optical path calibration to ensure the correctness of spectral line reception.
    4. The sample excitation stage is made of alloy material with good heat dissipation performance, which is sturdy and durable. The design of the electrode self-purge function creates a good environment for excitation and also makes it easier for the excitation table to clean the electrodes.
    5. The design of the light path adopts the Luolan Garden structure, and the CCD is arranged alternately up and down to ensure that all the spectral lines are received.
    6. Adopting internationally advanced jet electrode technology and using tungsten material electrodes, greatly reducing the amount of argon used.
    7. The instrument uses high-performance CCD devices, high-performance FPGA, DSP and ARM processors.
    8. Fully digital plasma excitation light source, ultra-stable energy is released to excite the sample in an argon atmosphere.
    9. The TCP/IP protocol of the Ethernet card is used between the computer and the spectrum analyzer to avoid electromagnetic interference and fiber aging.
    10. The dedicated spectrum operation software is fully compatible with the windows system.
    Technical Parameters:
    Analysis matrix: Fe, Cu, Al, Ni, Ti, Co, Zn, Sn, Mg, Pb, etc.
    Optical structure: Paschen-Longelowland circular full-spectrum vacuum optical system
    Wavelength range: 130-800nm
    Focal distance: 400mm
    Grating engraved line: 3000 lines/mm
    Detector: high performance CCD array
    Electrode: tungsten jet electrode
    Analysis gap: sample stage analysis gap: 3.4mm
    Light source type: new adjustable digital light source, high energy pre-ignition technology (HEPS)
    Excitation frequency: 100-1000Hz
    Discharge current: 400A
    Vacuum system: automatic control and monitoring by vacuum software
    Detection time: generally about 25S
    Temperature of light chamber: 34±0.3
    Working environment: Power supply: AC220V±10% 50Hz Temperature: 10-30 Humidity: ≤80%
    Working argon gas: purity 99.999%, inlet pressure 0.5MPa, excitation flow rate 3.5L/min
  • Introduction:
    HX-750 (CCD) full-spectrum direct-reading spectrometer is a high-performance, streamlined new-design desktop full-spectrum direct-reading spectrometer. The instrument adopts international standard design, manufacturing process technology and digital technology; adopts unique vacuum light chamber design, all-digital excitation light source; adopts CCD detector, adopts high-speed data exchange system, and is widely used in metallurgy, casting, machinery, metal, automobile , Shipbuilding, electric power, aviation and other fields, can meet the various analysis requirements of users.
     
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