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FP7002-Series

Paddlewheel Flow & Temperature Meter

  • Mesure simultanée du débit et de la température
  • Précision en débit : ±2% de pleine échelle
  • Sortie configurable 4-20mA ou 1-5Vcc
  • Boîtier du transmetteur protégé IP65/NEMA-4
FP7002-Series
Depuis C$ 966.12
Paddlewheel Flow & Temperature Meter FP7002-Series FP7002-Series
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L'aperçu du produit
  • Accuracy ± 2 %
  • Electrical Output 4 to 20 mA
  • Enclosure Ratings IP65, NEMA Type 4
  • Loop Resistance, Max Ω = (V supply–12V)/0.02 A
  • Operating Pressure, Max 150 psi
  • Operating Pressure, Min 0 psi
  • Operating Pressure Note Do not exceed maximum ratings of the piping. Depending on the material of the fitting, the operating temperature/pressure may be limited by the piping and not by the sensor. For all PVC tee fittings, do not exceed 150 psig @ 27°C (80°F), 100 psig @ 38°C (100°F), 60 psig @ 49°C (120°F) or 30 psig @ 60°C (140°F), owing to thesert the tee. FP7000 sensor: 0 to 26°C (32 to 80°F) up to 150 psig; max pressure decreases 1.1 psig per each 0.56°C (1°F) above 27°C (80°F) for a max temperature of 93°C (200°F) at 18 psig maximum
  • Operating Temperature, Max 100 °C
  • Operating Temperature, Min 0 °C
  • Output Detail current
  • Pressure Drop, Max 1.1 psi
  • Pressure Drop Note max pressure decreases 1.1 psig per each 0.56°C (1°F) above 27°C (80°F) for a max temperature of 93°C (200°F) at 18 psig maximum
  • Pressure Type Gauge
  • Process Temperature, Max 93 °C
  • Process Temperature, Min 0 °C
  • Repeatability Error ±1%
  • Supply Voltage 12 to 18 Vdc
  • Temperature Accuracy ± 1.7 °C
  • Viscosity Range 5 cPs
The FP7002 Series Paddlewheel Flow sensor/transmitter flow system provides a low cost, factory 
calibrated, simple, and easy to install solution for applications requiring a remote long distance flow 
and temperature sensor located away from the main indicating meter or controlinstrumentation. When 
ordered with an FP7000 series installation fitting, the sensor/transmitter is factory calibrated to match the 
flow rate of the fitting selected. Example: if you ordered an FP7002 sensor/transmitter with an FP7010 
PVC fitting, the analog output of the transmitter will be factory calibrated to give 20 mA output at the 
max flow rate of 50 GPM and 4 mA out at 0 GPM. The analog output can be converted to 1 to 5 Vdc output 
in the field without recalibrating the system. Also now included into the FP7002 design at no extra 
charge is an independent temperature sensor/transmitter with an industry standard 2-wire, 4 to 20 mA 
loop output scaled over a 0 to 100°C temperature range.
SPECIFICATIONS
Paddlewheel Output
Accuracy: ±2% FS
Repeatability: ±1% FS
Power: 12 to 18 Vdc @ 50 mA max
Output: 3-wire, 4 to 20 mA (1 to 5 Vdc with external 250 Ω resistor)
Max Loop Resistance: &Omega = (Vsupply–12 V)/0.02 A
Wetted Materials:
   Sensor Body: Polypropylene
   O-Ring: FKM
   Paddle: PVDF
   Locking Nut:
      FP7002: PVC
      FP7002A: Brass
Fluid Temperature/Pressure Range: Do not exceed maximum ratings of the piping. Depending on the 
material of the fitting, the operating temperature/pressure may be limited by the piping and not by 
the sensor. For all PVC tee fittings, do not exceed 150 psig @ 27°C (80°F), 100 psig @ 38°C 
(100°F), 60 psig @ 49°C (120°F) or 30 psig @ 60°C (140°F), owing to the insert in 
the tee. FP7000 sensor: 0 to 26°C (32 to 80°F) up to 150 psig; max pressure decreases 1.1 psig 
per each 0.56°C (1°F) above 27°C (80°F) for a max temperature of 93°C (200°F) 
at 18 psig max
Weight:
FP7002: 0.3 kg (0.75 lb)
FP7002A: 0.4 kg (1 lb)
Max Viscosity: 5 cps
Temperature Output
Temperature Range: 0 to 100°C (32 to 212°F)
Accuracy: ±1.7°C (3.1°F)
Power: 12 to 18 Vdc @ 30 mA
Output: 2-wire, 4 to 20 mA (1 to 5 Vdc with external 250 Ω resistor)
Max Loop Resistance: Ω = (Vsupply – 12 V)/0.02 A
 
 
 
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How do I convert to 1-5 VDC output? I do not see anything in the manual

Asked by: JABM
Thank you for your inquiry about the paddle wheel sensor. You will need to install a 250 Ohm resistor to convert to a 1 to 5 Voltage output.
Answered by: Application Engineer JC
Date published: 2023-02-17
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