Load Cell Solutions for Force Measurement and Testing
Measure compression, tension, press force and multi-axis loads in machines, test systems, robotics and automated assembly. We support standard sensors and application-specific mechanical integration.
Discuss Your Force ApplicationMatch the Sensor to the Real Force Path
Force measurement performance depends on load direction, stiffness, alignment, fixture design, sampling rate and overload conditions. A mechanically correct installation is as important as sensor accuracy.
Typical Force Measurement Chain
- Compression, tension or multi-axis load cell
- Load buttons, fixtures or engineered adapters
- Amplifier, transmitter or data acquisition
- Display, PLC or test-software interface
- Mechanical overload and side-load protection
- Calibration in the installed measurement axis
Force Sensors for Machines and Test Systems
Press & Assembly Monitoring
Monitor pressing, insertion, riveting, clamping and forming force for process control and quality verification.
Material & Component Testing
Measure tensile and compression loads in test frames, fixtures, endurance systems and laboratory equipment.
Robotics & Compact Sensors
Miniature, button and multi-axis sensors for grippers, actuators, medical devices and restricted spaces.
Information Needed for Sensor Selection
| Parameter | Details to Confirm |
|---|---|
| Application | Pressing, testing, assembly, robotics, clamping, tension or structural monitoring |
| Force Range | Minimum, normal, maximum, peak, preload and expected overload |
| Direction | Compression, tension, bidirectional, torque or multi-axis loading |
| Performance | Accuracy, repeatability, resolution, creep, bandwidth and sampling rate |
| Installation | Available dimensions, thread or flange, load buttons, fixtures and alignment |
| Environment | Temperature, moisture, corrosion, vacuum, vibration and cable movement |
| Signal | Millivolt, amplified analog, digital output, amplifier or data-acquisition requirement |
Four Factors for Repeatable Force Data
Use appropriate fixtures to keep force centered on the sensing axis.
Prepare flat, clean surfaces and follow the intended fastening method.
Control unexpected peaks with mechanical stops or suitable capacity margin.
Calibrate the complete measurement chain under representative conditions.
Force Measurement Load Cell FAQ
What is the difference between a weighing and force load cell?
Both measure force through strain, but weighing designs emphasize stable mass measurement while force sensors may prioritize compact size, stiffness, bidirectional loading or dynamic response.
Which sensor is suitable for press-force monitoring?
Pancake, spoke, button and compression sensors are common. Selection depends on force range, available height, fixture design, accuracy and overload risk.
Can one sensor measure tension and compression?
Yes. S-type, pancake and other bidirectional designs can measure both directions when mounted with appropriate threaded or flange connections.
When is a multi-axis sensor needed?
A multi-axis sensor is useful when forces or moments in several directions must be separated, such as robotics, biomechanics or complex test fixtures.
Can dimensions and output be customized?
Application-specific capacity, dimensions, mounting, cable, connector and output can be evaluated from drawings and project quantities.
What information is required for a quotation?
Send the force range, direction, accuracy, dimensions, mounting drawing, environment, dynamic requirements, output, quantity and destination.
Need a Force Sensor for Your Machine?
Send the load case, dimensions and performance requirements.
