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● Key Specifications of the 101 H Beam Load Cell
● Applications of the 101 H Beam Load Cell
● Troubleshooting Common Issues
● FAQ
>> 1. What types of loads can the 101 H Beam Load Cell measure?
>> 2. What is the maximum safe overload capacity for this load cell?
>> 3. How does temperature affect the performance of the load cell?
>> 4. What materials are used in constructing the 101 H Beam Load Cell?
>> 5. How often should I calibrate my load cell?
The 101 H Beam Load Cell is a vital component in various industrial applications, particularly in load testing, weighing systems, and force measurement. This article delves into its key specifications, functionalities, and applications while providing a comprehensive understanding of its importance in tension and compression measurements.
Load cells are devices that convert a force into an electrical signal. They are essential in measuring weight and force in various applications, including industrial scales, material testing machines, and load testing setups. The 101 H Beam Load Cell is specifically designed to handle both tension and compression loads, making it versatile for many applications.
The 101 H Beam Load Cell boasts several critical specifications that enhance its performance and reliability. Below are the detailed specifications:
- Material: Alloy Steel
- Rated Capacities: Available in various capacities ranging from 1kg to 30kg.
- Full Scale Output: 2 mV V±10%
- Zero Balance: ±0.02 mV V
- Non-linearity: < ±0.017%
- Repeatability: < ±0.017%
- Hysteresis Error: < ±0.017%
- Creep in 30 minutes: < ±0.023%
- Input Resistance: 400Ω±20Ω
- Output Resistance: 350Ω±3Ω
- Recommended Excitation: 10V (Maximum 15V)
- Insulation Resistance: > 2GΩ(50VDC)
- Temperature Effect on Sensitivity: < ±0.0012% of Cn/k
- Temperature Effect on Zero Balance: < ±0.0040% of Cn/k
- Compensated Temperature Range: -10°C to 50°C (14°F to 122°F)
- Service Temperature Range: -30°C to 70°C (-20°F to 160°F)
- Storage Temperature Range: -50°C to 85°C (-58°F to 185°F)
- Safe Overload: 150% of full scale
- Breaking Overload: 300% of full scale
- Seal Type: Environmentally sealed
- IP Rating: IP65
These specifications make the 101 H Beam Load Cell suitable for various applications, including industrial automation, robotics, and material testing.
The versatility of the 101 H Beam Load Cell allows it to be used in numerous applications:
- Load Testing: Essential for determining the load-bearing capacity of structures and materials.
- Weighing Systems: Utilized in scales for accurate weight measurement.
- Tension Measurement: Ideal for applications requiring precise tension readings.
- Compression Testing: Used in testing materials under compressive forces.
Proper installation is crucial for ensuring accurate measurements with load cells. Here are some best practices:
1. Ensure that the load cell is mounted securely to prevent movement during operation.
2. Align the load cell correctly to avoid side loads that can affect accuracy.
3. Use appropriate fixtures or mounts that accommodate the specific design of the load cell.
4. Regularly inspect the load cell for signs of wear or damage.
Even with robust designs, issues can arise with load cells. Here are some common problems and their solutions:
- Unstable Readings: This may be caused by improper installation or environmental factors such as vibrations. Ensure that the installation is stable and free from external disturbances.
- Zero Balance Drift: This can occur due to temperature changes or mechanical stress. Regular calibration may be necessary to maintain accuracy.
The 101 H Beam Load Cell is a reliable and versatile device suitable for various applications involving tension and compression measurements. Its robust specifications ensure accurate readings, making it an essential tool in load testing and weighing systems across multiple industries.
The 101 H Beam Load Cell can measure both tension and compression loads, making it versatile for various applications.
The maximum safe overload capacity for the 101 H Beam Load Cell is 150% of its full scale.
Temperature can affect both sensitivity and zero balance; thus, it is essential to operate within the specified temperature ranges to maintain accuracy.
The load cell is constructed from alloy steel, which provides durability and reliability in various environments.
Calibration frequency depends on usage conditions; however, it is generally recommended to calibrate annually or whenever there are significant changes in environmental conditions or after repairs.
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