S Type Load Cell, Load Cell
S Type Load Cell, Load Cell
Overview
S-shaped stainless steel structure measures bidirectional tension and compression forces
Capacity ranges from 1kg to 50 tons to suit various industrial applications
±0.02-0.05% F.S. accuracy class with nonlinearity and hysteresis below 0.02%
IP67/IP68 environmental sealing protects against dust, water, and corrosion
2.0 mV/V sensitivity from 350Ω strain gauge bridge for standard amplification
Temperature compensation maintains stability across -30°C to +70°C range
150-200% safe overload limit prevents damage from shock loading
Threaded mounting ends enable quick installation in cranes and hoppers
Low creep error under 0.02% ensures long-term measurement reliability
4/6-wire configuration simplifies integration with PLCs and data loggers
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S Type Load Cell – High-Precision Tension & Compression Load Sensor for Scales, Automation & Testing
Product Description
The S Type Load Cell is a versatile, high-precision transducer shaped like the letter “S” for reliable tension and compression force measurement. Unlike basic sensors, it features a rugged stainless steel body that withstands harsh industrial environments while delivering stable, linear output through integrated strain gauges.
Designed to solve common pain points like inaccurate readings under dynamic loads or difficult installations, this sensor provides plug-and-play compatibility with PLCs, data loggers, and weighing controllers. Its compact form eliminates complex mounting issues, making it ideal for overhead cranes, batching systems, and force testing setups.
With factory calibration and hermetic sealing, the S Type Load Cell ensures long-term reliability, helping engineers and manufacturers avoid downtime from sensor drift or environmental damage.
Advantages of S Type Load Cell
High-precision strain gauge technology for accurate force readings
S-shaped design handles both tension and compression loads
Stainless steel construction resists corrosion and overloads
Wide capacity range: 1kg to 50kN for diverse applications
Typical accuracy ±0.02% F.S. with low nonlinearity
IP67/IP68 waterproof rating for harsh environments
Simple mounting via threaded ends for quick installation
Temperature compensated for stable performance
Analog output (mV/V) compatible with standard amplifiers
Cost-effective solution for industrial weighing and monitoring
S Type Load Cell Specifications
| Parameter | Specification |
|---|---|
| Capacity Range | 1kg, 5kg, 10kg, 20kg, 50kg, 100kg, 200kg, 500kg, 1t, 2t, 5t, 10t, 20t, 50t |
| Accuracy Class | C2/C3 (OIML) or ±0.02%/±0.03% F.S. |
| Nonlinearity | ≤0.015% F.S. |
| Hysteresis | ≤0.015% F.S. |
| Creep (30 min) | ≤0.02% F.S. |
| Sensitivity | 2.0 mV/V ±0.1% |
| Input Impedance | 350~1000 Ω |
| Output Impedance | 350~1000 Ω |
| Excitation Voltage | 5-12V DC (standard), up to 18V |
| Insulation Resistance | ≥5000 MΩ (50V DC) |
| Operating Temperature | -30°C to +70°C |
| Safe Overload | 150% F.S. |
| Material | Stainless steel 17-4PH |
| Protection Class | IP67/IP68 |
| Cable Length | 3m/5m (standard), customizable |
| Weight | 0.2kg to 5kg (capacity dependent) |
Typical Applications of S Type Load Cell
Industrial Weighing Systems
Overhead cranes and hoist load monitoring
Hanging scales and batching hoppers
Platform scales and truck weighbridges
Process Control & Automation
Force measurement in filling machines
Tension control in conveyor systems
Material testing and quality assurance
Safety & Monitoring
Overload protection for lifting equipment
Rope tension monitoring in elevators
Structural load testing in construction
Laboratory & OEM Integration
Custom force measurement rigs
Medical equipment force feedback
Robotics end-effector load sensing
Related Sensor Products
Single Point Load Cell
Beam Load Cell
Compression Load Cell
Tension Load Cell
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Strict Production Process
Engineers develop optimized electronic circuits and structural designs based on real application needs.
High-quality components and materials are carefully selected from trusted suppliers to ensure long-term reliability.
Automated SMT and precision soldering technologies are used to build stable and high-performance circuit boards.
Sensor elements or connector terminals are assembled with the PCB and housing to ensure accurate operation and strong mechanical stability.
Each product undergoes strict calibration and functional testing to guarantee accuracy and stable performance.
Every unit is carefully inspected, labeled, and securely packaged to ensure it arrives safely and performs reliably for your applications.
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