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Item# FP1402

  • Polypropylene or PVDF Models
  • 29 Engineering Units (Including User Defined)
  • Two Programmable Totalizers
  • Programmable Alarms
  • Isolated Analog 0 to 5 Vdc or 4 to 20 mA
  • RS232 Communications Standard
  • Local Key Pad and 2 x 16 Characters LCD Display
  • Free Communication Software with Data Logging Capability
Housing Material
Connection Type
Port Size
Output Signal Type
Communications Protocol
Minimum Flow
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Quantity Price each
1-4 $597.40
5-9 $567.53
10-24 $555.58
25-49 $531.69
50-99 $519.74
100+ $507.79

In stock

Lead Time ( If not in Stock): 4 weeks

Product Specs

  • Compatible Media Liquid
  • Bearing Material Sapphire jewels
  • Accuracy Value ±1% of FS
  • Connection Gender Female
  • Electrical Connection Built-in female 12-pin M16
  • LID Material Acrylic or PVDF
  • Maximum Ambient Temperature 60 {C} (140 {F})
  • Maximum Pressure 10 bar (150 psig)
  • Maximum Temperature Measurement 60 {C} (140 {F})
  • Maximum Viscosity 1 cSt (water) can be used for liquids up to 50 cSt with field calibration (max flow range may be affected)
  • Minimum Ambient Temperature -10 {C} (14 {F})
  • O-ring Material EPDM
  • Paddlewheel Material PVDF
  • Shaft Material Nickel tungsten carbide
  • Repeatability ±0.25% of FS
  • Power 11 to 26 Vdc
  • Response Time Approx 1 sec (above 10% of full scale flow)

FP1400 Series flowmeters support various functions including two independently programmable flow totalizers, user programmable low, high or range flow and temperature alarm, two sets of user programmable optically isolated outputs, self diagnostic alarm, and flow pulse output. The flow rate can be displayed in 29 different volumetric or mass flow engineering units. Flowmeter parameters and functions can be programmed locally via optional key pad and LCD or remotely via the RS232/RS485 interface. Local 2 x 16 LCD readout with adjustable backlight provides flow rate, temperature, total volume reading in currently selected engineering units, diagnostic events indication and feature a password protected access to the process parameters to ensure against tampering or resetting. Liquid flowing through the unit causes the paddlewheel to spin. As the magnets embedded in the paddle spin past the sensor, electrical pulses are produced in which frequency is proportional to the flow rate. The number of pulses per desired time interval and the Kfactor (number of pulses/gal) make it is possible to calculate the flow rate and volume passing through the unit. On board CPU and signal conditioner circuitry perform accurate flow and total computation, digital communication and analog 0 to 5 Vdc or 4 to 20 mA output signals. Non-volatile memory stores all hardware specific and user programmable variables, including flow linearization table.

  • CE Icon CE

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