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These low profile load washers are our Series MIN845 compression load cells. Their thru-hole configurations are miniature, making them perfect for measuring tension on fasteners. Each unit is made from stainless-steel and comes available in a varied selection of special and standard inside and outside diameters.
Measuring range: 0~400 bar
Accuracy: ±0.3%FS
- General purpose, high accuracy pancake tension and compression load cell
- Barometric compensation
- Shock and vibration resistant
- Low profile design
- All welded stainless steel construction
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.002% FSO/°F
- Temperature effect on span ±0.002% Reading/°F
- Zero balance ±1% FSO
Measurement range: 0~25mbar, 0~700bar
Accuracy: ±0.1%PSI
- High accuracy precision miniature tension and compression load cell
- Shock and vibration resistant
- All welded stainless steel construction
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.003% FSO/°F
- Temperature effect on span ±0.003% Reading/°F
- Zero balance ±1% FSO
- Low profile, lightweight and precise pancake load cell
- Low off-axis sensitivity
- Barometric compensation
- Shock and vibration resistant
- Compact size with integral base with integral cable
- Life cycle of 10 million
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.002% FSO/°F
- Temperature effect on span ±0.002% Reading/°F
- Zero balance ±1% FSO
- Low profile, lightweight and precise pancake load cell
- Low off-axis sensitivity
- Barometric compensation
- Shock and vibration resistant
- Compact size with integral base and bolt-on flange electrical connector
- Life cycle of 10 million
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.002% FSO/°F
- Temperature effect on span ±0.002% Reading/°F
- Zero balance ±1% FSO
Measurement range: 0~30000PSI
Accuracy: ±0.1%PSI
- General purpose rod end compression and tension load cell
- High off-axis capability of up to 20% of full scale loads
- Variety of thread combinations available
- Shock and vibration resistant
- All welded stainless steel construction
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero of ±0.005% FSO/°F
- Temperature effect on span ±0.005% Reading/°F
- Zero balance ±1% FSO
- Compact, high capacity rod end compression and tension load cell
- Environmentally sealed
- Low defection
- Shock and vibration resistant
- High strength tool steel
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.005% FSO/°F
- Temperature effect on span ±0.005% Reading/°F
- Zero balance ±1% FSO
- Shackle ready, rod end load cell
- In line tension
- Variety of thread combinations
- Shock and vibration resistant
- All welded stainless steel construction
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.005% FSO/°F
- Temperature effect on span ±0.005% Reading/°F
- Zero balance ±1% FSO
The load cells of the Series CNR950 are specially designed to meet the purpose of compression force applications. These load cells incorporate a compact canister design on top of an integral spherical load button. It is made of welded stainless steel, ensuring that it is able to withstand even the harshest applications environments.
- General purpose subminiature compression load cell
- Small size
- Shock and vibration resistant
- All welded stainless steel
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.01% FSO/°F
- Temperature effect on span ±0.01% Reading/°F
- Zero balance ±3% FSO
- General purpose subminiature tension or compression load cell
- Small size
- Shock and vibration resistant
- All welded stainless steel
- 5 point calibration record traceable to NIST (0, 50%, 100%, 50%, 0)
- Temperature effect on zero ±0.01% FSO/°F
- Temperature effect on span ±0.01% Reading/°F
- Zero balance ±3% FSO
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