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FINESIZER-5100 Study Grade Laser Particle Sizer Analyzer for Powdery material analysis

Product ID:WLjg042

Price: Please inquire PDF Format
Supply Ability:20SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberFINESIZER-5100
    Brand NameYIMA
    Payment TermsT/T, paypal
    Introduction
      The classic method of grain size analysis is small angle light scattering particle size measurement that based on the international ISO-13320. But we inherit and extend this method to get the final particle size distribution by some proprietary technologies to measure the particle group, such as folded laser, laser, laser, distributed solid Detector layout patent technology. If we need to measure some small particles, we would like to choose the short wavelength blue light, however it we need to measure large particles, we would like to choose the red light that has longer wavelengths.Folded laser technology and laser gathering technology can significantly reduce the size of equipment, and make the miniaturization of products as well.
    Three-dimensional detector layout technology is a significant way to improve the measure of the resolution. 4 We can get the more accurate distribution of particle by collecting many light scattering signals through the more numbers of detector distribution.
    Features
    1 Based on Mie theory
    2 Dry and wet integration, convenient change
    3 Inner ultrasonic dispersion, big power circulation
    4 Digital controlled stirring, circulation and distribute effect
    5 Dynamic window monitoring displaying the graph real time
    6 Powerful diagram function, data exporting available
    7 Green and safe laser source, higher resolution ratio for granule
     8 Open type for more convenient scientific study              
     9 Can detect fineness distribution and shoot the appearance of drop or powder dusty
    10 High speed collect card can realize detection online
     11 Report can lead to excel
     Technical Parameter
    1 SIZE L980,H420,D360 mm
    2 Weight  40 Kg
    3 Power  AC220V 50/60Hz
    4 Operational Environment  0-50 C, 5%-95%Rh
    5 Measure Range  0.02-2000um *
    6 Precision  3%
    7 Measure Parameters  Size distribution,mid value Grain size(D50),average Grain size (Dav),size distribution
    8 Communication Mode  RS-485, upgraded to the USB or network interface
    9 Built-in Detector  Photodiode array, Qty.120pcs
    10 Optical architecture  One-piece casting alum optical guide rail, temperature deformation small
    11 Optical System  Folded path, Fourier optical lens group
    12 Laser Source  He-Ne laser, Blue semiconductor laser, UV light source etc.
    13 Laser Safety  Class II laser
    14 Frequency of Sampling  1ms/time
    15 Disperse  100W ultrasound disperse, 2KW cell smash disperse
    16 Pattern Analysis  Online pattern analysis, Correct the max error of the particles
    17 Operational Process  SOP (Standard Operational Process)
    18 Sample Cell  200mL
    19 Sample Window  Coating type quartz material, fluid tank1mm
    20 Liquid Switch  Long-life solenoid valve
    21 Software  Windows platform Software
    22 Data Export  Support TXT text output,exchange data with Origin
     
     
  • Introduction
      The classic method of grain size analysis is small angle light scattering particle size measurement that based on the international ISO-13320. But we inherit and extend this method to get the final particle size distribution by some proprietary technologies to measure the particle group, such as folded laser, laser, laser, distributed solid Detector layout patent technology. If we need to measure some small particles, we would like to choose the short wavelength blue light, however it we need to measure large particles, we would like to choose the red light that has longer wavelengths.Folded laser technology and laser gathering technology can significantly reduce the size of equipment, and make the miniaturization of products as well.
    Three-dimensional detector layout technology is a significant way to improve the measure of the resolution. 4 We can get the more accurate distribution of particle by collecting many light scattering signals through the more numbers of detector distribution.
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