Inline Low Flow Rotameter, 100, 250 or 600 lph

Regular price $39.00
Sale price $39.00 Regular price $39.00
Unit price
Tax included.
10-100 LPH
25-250 LPH
60-600 LPH
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  • Estimated Delivery:Sep 10 - Sep 14

  • Next Day Dispatch

Inline Low Flow Rotameter, 100, 250 or 600 lph

Inline Low Flow Rotameter, 100, 250 or 600 lph

Industrial reverse osmosis

Bulk Pricing Available

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Product Information

Low Flow Inline Water Rotameter, Plastic Tube Type

  • Flow Range: 10-100 LPH | 25-250 LPH | 60-600 LPH
  • Low Flow Inline Plastic Tube VA Flow Meter, Long Tube Type.
  • Connection: 1/2″ BSP Threaded Female.

  • Inline Variable Area Flow Meter or Plastic Tube Rotameter which has been designed to offer an economical solution for liquid flow measurements.
  • Flow Range:
    • 10 to 100 LPH (liter per hour).
    • 25 to 250 LPH (liter per hour)
    • 60 to 600 LPH (liter per hour)
  • Connection: Standard 1/2″ BSP Threaded Female.
  • Simple installation.
  • Type: Tube Mounted, Pipe Mounted, Long Tube Type.
  • Body (Tube): Clear Plastic AS.
  • Float: Plastic ABS (read the max diameter of float).
  • Fittings: Plastic ABS.
  • O-ring: Silicon rubber.
  • Max Working Pressure: 600 KPA / 6 Bar / 87 PSI.
  • Max Working Temperature: 60 C.
  • Light weight, low cost and excellent readability rotameter.
  • Used for industrial and domestic application, Widely used in water treatment & filtration industry, reverse osmosis units, irrigation ...etc.
  • Indoor use for water and non corrosive liquids.
  • More sizes and types are available.
  • FREE delivery Australia wide.

 

  • Measurement Principle: Variable area flow using a float in a tapered tube made from special plastic materials.
  • Operation: The fluid flows up through the tapered tube forcing the float to a position with sufficient free area to enable the flow to pass. This free area is related to the flow rate, the weight of the float and the density and viscosity of the fluid. The pressure drop across the flow meter remains constant over the entire flow range. This occurs because the pressure drop is related to the fluid velocity and area of flow, the area of flow increases as the flow rate increases.

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