FN9620 Force Load Cell

Brand: American Sensor Technologies Inc

FN9620 Force Load Cell

Brand: American Sensor Technologies Inc
The FN9620 is a S-Beam load cell with ranges from 500 N to 10 kN, designed to operate in hostile environments from -40 to 90° C with IP68 ingress protection. 

It provides high stiffness for high cycle use, low off-axis load sensitivity and high level of accuracy. To ease its use for Process Control Automation equipment, the sensor’s sensitivity (in mV/V) is calibrated with 2% tolerance. On request, Instruction documents can be provided to ease the selection and use of our sensors and provide helpful tips.
Features
  • High Tensile Strength Stainless Steel
  • Metric or Imperial thread
  • Surcharge Sans Destruction 300%
  • Safe Over Load 300%
  • 3 meters Integral Cable
  • IP68-1 meter water column

Specifications

Applications

  • Laboratory & Research
  • Mechanical Resistance of Materials
  • Process Control & Automation
  • Structure Testing
  • Test Benches

Approvals & Certifications

  • CE

Cable Length

  • 9.84 feet (3 metres)

Compensated Temperature

  • -10° to 45° C (14° to 113° F)

Enclosure, Body Material

  • Stainless Steel

Environmental Protection

  • IP68

Frequency

  • 1 to 2.15 kHz - Natural Frequency

Hysteresis

  • ± 0.03 % of Full Scale

Insulation Resistance

  • > 5,000 megaohms - Insulation Under 50 Vdc

Linearization

  • ± 0.05 % of Full Scale

Load Limit

  • 100 % of Full Scale - Side Load Limit

Loop Resistance

  • 340 to 450 ohms - Bridge Resistance Min./Max.
  • 350 ohms - Bridge Resistance

Operating Temperature

  • -40° to 90° C (-40° to 194° F)

Repeatability

  • ± 0.02 %

Sensitivity

  • 0.1 %/mm - Eccentric Load Sensitivity
  • 1 % - Side Load Sensitivity
  • 1-2 mV/V ± 2 % of Full Scale Output

Supply Voltage

  • 10 Vdc
  • 2-12 Vdc - Power Supply Min./Max.

Zero Balance

  • ± 0.004 to 0.008 % of Full Scale/°C - Thermal Zero Shift

Zero Offset

  • ± 2 % of Full Scale

  • Structure Testing 
  • Test Benches 
  • Process Control & Automation 
  • Mechanical Resistance of Materials 
  • Laboratory and Research

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