Load Pin Load Cell with Temperature Compensation
600 lbf, ±0.5%, Linearity, 1 mV/V Output, MIL-26482-I 10-6P
Volume discounts available
Volume Discount Schedule
Quantity | Price each |
---|---|
1-4 | $1,018.00 |
5-9 | $967.10 |
10-24 | $946.74 |
25-49 | $906.02 |
50-99 | $885.66 |
100+ | $865.30 |
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- Dual Shear Beam Technology
- High 0.50% Accuracy Class
- All Stainless Steel Construction
- Standard PTIH-10-6P Connector
LCP375-600 Model Options
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*Highlighted options are not compatible. Please select a different combination.
Weight Capacity
OD
Length
Connection Type
Measurement Units
Force direction
Linearity
Electrical Output (nominal)
- Hysteresis ±0.50% FSO
- Input Resistance 350 Ω nominal
- Accuracy Value 0.50%
- Linearity ±0.50% FSO
- Load Cell Material Stainless Steel
- Maximum Ambient Temperature 121 {C} (250 {F})
- Maximum Compensation Temperature 71 {C} (160 {F})
- Measurement Type Load
- Minimum Compensation Temperature 16 {C} (60 {F})
- Repeatability ±0.15% FSO
- Output Voltage 1 mV/V nominal
- Safe Overload 200% of Capacity
- Ultimate Overload 300 % of Capacity
- Temperature Effects Zero: ±0.009% FSO/°C (±0.005% FSO/°F)
- Zero Balance ±1.0% FSO
LCP Load Pin Series are compact size load pins designed for tension and compression measurements. They can be applied on clevis pin shackles, loading cranes, lifting fittings, sprockets and pulley axles by replacing existing shear pins, clevis bolts, clevis pins, shear axles and many other types of pinned joints to control or monitor reaction load on the pins.
Load Pin Applications
Applications include measuring of cable tension, structural testing, aerospace and construction, force calibration, lifting systems, mooring systems, hydraulic presses and crane load systems. LCP Series are temperature compensated.
Load Pin Applications
Applications include measuring of cable tension, structural testing, aerospace and construction, force calibration, lifting systems, mooring systems, hydraulic presses and crane load systems. LCP Series are temperature compensated.
In this post how a load cell works is explained.


