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    • Electromagnetic high-frequency vibrating screening machine
    • DHSF-200
    • Motion mode: Three-dimensional throwing motion; Sample characteristics: Powder, loose granules, suspension.
    • DHSF-200
    • Electromagnetic high-frequency vibrating screening machine
    • Motion mode: Three-dimensional throwing motion; Sample characteristics: Powder, loose granules, suspension.
    DHSF-200 Electromagnetic high-frequency vibrating screening machine is a new generation of laboratory vibrating screen. It adopts international leading technology to generate a three-dimensional throwing motion effect using electromagnetic drive, and is equipped with analysis screens of different specifications. It can meet the particle size classification and measurement requirements for powders, granular materials, bulk materials, suspensions, etc. It has the advantages of high measurement accuracy, reproducibility of screening results, low noise, and so on.
    Product Introduction
    DHSF-200 Electromagnetic high-frequency vibrating screening machine is a new generation of laboratory vibrating sieve. It uses internationally leading technology to produce three-dimensional throwing motion through electromagnetic drive. It is equipped with different sizes of analysis sieves and can meet the particle size classification and measurement of powders, granules, bulk materials, suspensions and other materials. It has the advantages of high measurement accuracy, reproducible screening results, and low noise.
    It is widely used in particle analysis in industries such as soil, pharmaceuticals, metallurgy, geology, coal, and grain. The screening results are efficient and reliable, making it an ideal choice for research and development, quality control, and production.


    Technical Features
    | Efficient electromagnetic drive, with electronic control of amplitude and frequency
    | Suitable for dry and wet sieving
    | High sieving accuracy and efficiency
    | Quiet instrument operation and easy maintenance
    | Memory storage for 9 sieving programs
    | Adjustable sieving time and vibration frequency
    | Three-dimensional throwing motion ensures uniform sample distribution across entire mesh surface


    Working Principle
    The main body of DHSF-200 Electromagnetic high-frequency vibrating screening machine is composed of an electronically controlled electromagnet, which has a vibration transmission component. This driving component can generate a three-dimensional throwing motion, which allows the sample to be uniformly distributed over the entire screen surface, resulting in a faster and more efficient filtering process, and thus achieving extremely high screening accuracy. At the same time, it brings high load capacity, quiet operation, and high efficiency, which can produce higher separation accuracy in a shorter period of time, and ensure the reproducibility of the screening results.


    Table of commonly used mesh sizes and corresponding micrometers  
    Mesh Size Micrometer
    20 850
    25 710
    30 600
    35 500
    40 425
    45 355
    50 300
    60 250
    70 212
    80 180
    100 150
    120 125
    140 106
    170 90
    200 75
    230 63
    270 53
    325 45
    400 38
    450 32
    500 25
    635 20


    Technical Parameters  
    Model: DHSF-200
    Sample Characteristics: Powder, loose granules, suspensions
    Motion Form: Three-dimensional throwing motion
    Time Display: 1-99min
    Measurement Range: 20μm-30mm
    Amplitude: 0-3mm continuous adjustment
    Dry/Wet Screening: Both available
    Intermittent Operation: 0-99s
    Maximum Load: 3kg
    Maximum Number of Sieves: 9
    Sieve Material: Stainless steel, nylon
    Analytical Sieve Diameter: 100/150/200/300 mm
    Weight: 25 kg
    Power Supply: AC 220V±10% 50Hz


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    Electromagnetic high-frequency vibrating screening machine DHSF-200 Vortexer Download
    Product List
    DHSF-200 Unit
    Host Machine Unit
    Sieve frame layer
    Power cord piece
    User manual copy
    Warranty card copy
    Certificate of qualification copy
    Description
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