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Description
High capacity compression load cells.
Features- High capacity compression load cells
- Material: nickel plated steel (3115) or stainless steel (3110)
- Protection IP 65
- Available options (non exhaustive list):
- High service temperature (up to 180° C)
- ATEX intrinsic safety Ex II 1GD Ex ia IIC T6 or T4 Ga Ex ia IIIC T80° C Da
- Redundant dual Wheatstone bridge
- Amplified (0-10 V, 4 to 20 mA) and digital output signal (RS-232C, RS-485, USB)
- Also available as standard reference load cells following ISO 376 (EN10002/3) (Class "0.5" and "00"’)
Configure
Specifications
Specifications
Brand
Accuracy
- 0.05% of Full Scale
- 0.1% of Full Scale
- 0.25% of Full Scale
Applications
- Calibration Standards
- Force Measurement
- Process Control
- Weighing
Approvals & Certifications
- ATEX Intrinsic Safety Ex II 1 GD Ex Ia IIC T6 or T4 Ga Ex Ia IIIC T80° C Da
- CE
Cable Length
- 19 to 39 feet (6 to 12 meters)
Capacity
- 30 KN to 30 MN
Communication
- RS-232C
- RS-485
- USB
Electrical Connectors
- Female/Male DIN 45322
Enclosure, Body Material
- Nickel-Plated Steel (3115)
- Stainless Steel (3110)
Environmental Protection
- IP65
Excitation Voltage
- 10 Vdc
- 3-12 Vdc - Nominal Range
Insulation Resistance
- > 5,000 MegaOhms at 50 V
Linearity
- Error: <± 0.25% to <± 0.04% of Full Scale
Load
- > 300% of Full Scale - Breaking
- 50% of Full Scale - Dynamic Loading
Load Limit
- 150% of Full Scale
Operating Temperature
- 180° C (356° F) - High Service Temperature
Repeatability
- Error: <± 0.1% to <± 0.02% of Full Scale
Resistance
- Input/Output: 350 to 702 ± 2 ohms
Sensitivity
- <± 0.3% - Tolerance
- 1.5 mV/V
Service Temperature
- -30 to 70° C (-22° to 158° F)
Static Lateral Force
- 15% of Full Scale
Storage Temperature
- -50 to 85° C (-58° to 185° F)
Temperature Coefficient
- <± 0.03% of Full Scale/10° C (18° F) - Zero Signal
- <± 0.035% of Full Scale/10° C (18° F) - Sensitivity, Zero Signal
- <± 0.05% of Full Scale/10° C (18° F) - Sensitivity
Temperature Range
- -10° to 45° C (14° to 113° F) - Nominal
Zero Balance
- ± 0.02 mV/V