Industrial shackle load cell for sale, an integrated weighing and load-bearing solution for dynamic force monitoring, engineered for direct replacement of traditional shaft pins in lifting equipment, reducing mechanical complexity while enhancing operational efficiency and long-term structural reliability.
Specification
| Model |
ATO-DYZX-002 |
| Capacity |
0–150 ton |
| Rated Output Sensitivity |
2.0/3.0±0.05mV/V |
| Zero Balance |
±1%F.S. |
| Non-linearity |
0.1%F.S. |
| Hysteresis |
0.03%F.S. |
| Repeatability |
0.1%F.S. |
| Creep (30 min) |
0.03%F.S. |
| Temperature Effect on Sensitivity |
0.05%F.S./10°C |
| Temperature Effect on Zero Balance |
0.05%F.S./10°C |
| Response Frequency |
10kHz |
| Material |
Alloy steel |
| Impedance |
7002 |
| Insulation Resistance |
>5000MQ/100VDC |
| Excitation Voltage |
5-15v |
| Operating Temperature Range |
-20-60°C |
| Safe Overload |
150% |
| Ultimate Overload |
200% |
| Wireless Transmission Distance |
200m(obstacle-free) |
| Battery Life |
6 hours |
Feature
- Wide Capacity Range: Available in capacities from 2 ton to 150 ton, suitable for crane systems, hoisting equipment, pulley assemblies, and industrial load monitoring applications.
- High Accuracy Load Measurement: Shackle load cell is built with precision sensing technology featuring excellent repeatability, low hysteresis, and stable zero balance for reliable force measurement.
- Superior Resistance to Side Load and Torsion: Specially engineered to withstand eccentric loads, twisting forces, and long-term fatigue in harsh industrial operating environments.
- Integrated Structural Replacement Design: Wireless shackle load cell functions as both a load-bearing shaft and a weighing sensor, reducing additional mechanical components and simplifying installation.
- Durable Alloy Steel Construction: Manufactured from high-strength alloy steel to ensure long service life, impact resistance, and dependable performance under heavy-duty conditions.
- Wireless Monitoring Capability: High precision shackle load cell supports wireless transmission up to 200 meters in open environments, enabling convenient remote load monitoring and safer operations.
- Fast Dynamic Response: With a response frequency of 10kHz, the sensor can quickly capture changing load conditions in real-time lifting applications.
- Reliable Performance in Industrial Environments: ATO shackle load cell is designed for operation in temperatures from -20°C to 60°C, making it suitable for outdoor construction sites, ports, and industrial facilities.
- Rechargeable Portable System: Equipped with a Type-C charging interface and rechargeable battery supporting up to 6 hours of continuous operation.
Detail

Size (unit: mm)

| Measuring Range (ton) |
A |
B |
C |
D |
E |
| 2 |
Φ16 |
Φ25 |
20.6 |
Φ64 |
125 |
| 3.25 |
Φ19.1 |
Φ35 |
26.9 |
Φ64 |
140 |
| 4.75 |
Φ22.4 |
Φ35 |
31.8 |
Φ64 |
157 |
| 6.5 |
Φ25.4 |
Φ38 |
36.6 |
Φ64 |
168 |
| 8.5 |
Φ28.7 |
Φ48 |
42.9 |
Φ64 |
197 |
| 9.5 |
Φ31.8 |
Φ58 |
46 |
Φ64 |
205 |
| 12 |
Φ35.1 |
Φ64 |
51.6 |
Φ64 |
209 |
| 13.5 |
Φ38.1 |
Φ66 |
57.2 |
Φ75 |
240 |
| 17 |
Φ41.4 |
Φ75 |
60.5 |
Φ75 |
260 |
| 25 |
Φ50.8 |
Φ85 |
73.2 |
Φ75 |
300 |
| 35 |
Φ57.2 |
Φ95 |
82.6 |
Φ100 |
325 |
| 55 |
Φ70 |
Φ115 |
104.9 |
Φ100 |
380 |
| 85 |
Φ83.8 |
Φ150 |
127 |
Φ140 |
520 |
| 120 |
Φ95.5 |
Φ170 |
133.4 |
Φ150 |
580 |
| 150 |
Φ108.2 |
Φ190 |
139.7 |
Φ150 |
600 |
Application
Shackle load cell is widely used in heavy-duty lifting and weighing applications, including port container handling, dock cranes, overhead cranes, tower cranes, rack and pinion construction hoists, and sluice gate systems. Designed for harsh industrial environments, this shackle load cell offers high resistance to side loads, excellent anti-fatigue performance, stable weighing accuracy, and reliable long-term operation for cranes, hoists, and industrial lifting equipment.

Tips: How does shackle load cell improve lifting system efficiency?
By combining load-bearing and weighing functions into one compact component, the shackle load cell reduces the number of mechanical parts required in the system. This not only simplifies equipment design and maintenance but also improves installation efficiency and operational reliability.