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12V/ 24V Mini Peristaltic Pump, 130 mL/min Flow Rate

Mini peristaltic pump with DC 12 volt or 24 volt power supply. Pump with 130 mL/min flow rate, 3 roller low pulse design of peristaltic pump, compatible with tube 14#, 16# and 25#. Option colors transparent cover enables visual checking mini peristaltic pump operation status.
SKU: CCHN-PP-MN2ZL
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Delivery date: 6-25 days

Mini peristaltic pump at affordable price for sale. Peristaltic pump has complete drive control, installation and tubing connection. Food machinery, detergent delivery and laundry equip can be applied.

Features:

  • Mini peristaltic pump with compact, small and exquisite structure.
  • Option colors transparent cover enables visual checking pump operation status.
  • 3 roller low pulse design,compatible with tube 14#, 16# and 25#.
  • Provide complete drive control, installation and tubing connection.
  • The peristaltic pump body base is designed with threaded mounting holes, which can be directly fixed to the user equipment.

Specification:

  • Model: CCHN-MN2/ZL
  • Rated Power: DC 12V, 24V
  • Tube Type: 14#, 16#, 25#
  • Flow Rate: ≤130 mL/min
  • Net Weight: 176g
  • Noise: ≤65 dB
  • Outlet Pressure: ≤0.17 MPa
  • Operating Environment: Temperature 0-60 ℃, relative humidity less than 85%

Dimension (Unit: mm)

Peristaltic pump mn2zl dimensionApplication:

Peristaltic pump applications

Tips: What is Flow Rate?

The flow rate is an important parameter for a pump. The flow rate in a peristaltic pump is determined by many factors, such as:

  • Tube inner diameter, higher flow rate with larger inner diameter.
  • Pump head outer diameter, higher flow rate with larger outer diameter.
  • Pump head rotational speed, higher flow rate with higher speed.
  • Inlet pulsation, the pulse reduces the filling volume of the hose.

Increasing the number of rollers does not increase the flow rate, instead it will decrease the flow rate somewhat by reducing the effective circumference of the head. Increasing rollers does tend to decrease the amplitude of the fluid pulsing at the outlet by increasing the frequency of the pulsed flow.