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Model 922 - ERICHSEN
Electric load cells (force transducers), 1000 kN. Delivered and supported by Cromocol.
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Advanced Sensor Technology for Precision Measurement
ERICHSEN’s Model 922 Electric Load Cells epitomize the forefront of sensor technology, blending user simplicity with a broad adaptability to diverse customer needs. The essence of these devices lies in their precision. Utilizing the stretch of high-quality foil strain gauges, they provide exact measurements of tensile and compression forces. This makes them indispensable across various domains, from materials testing, using Erichsen Tensile Testing Machines to reference equipment and R&D initiatives.
Wide-Ranging Applications
These force transducers are not just limited to laboratory environments. Their practicality extends into industrial applications like automation, control of press-in processes, and jointing technology, ensuring precise force measurement in critical processes. An extensive catalog of accessories, alongside compatibility with Measurement and Display Instruments 975 AP, 980 AP, and PHYSIMETER 906 MC via an adapter plug, underscores their versatility.
Robust Delivery and Configuration
The scope of delivery for the Electric Load Cell 922 includes a nominal force capacity of 5 kN for both tensile and pressure measurements, with open cable ends and a cable length of approximately 5m, ensuring ready integration into existing systems.
Technical Specifications
- Parameter: 2 mV/V
- Nominal Force: 5 kN
- Testing Force: 5 kN
- Sensor material: Special steel
- Measured Value 1: Force
- Protection class: IP 67
- Bridge resistance: 700 Ω
- Effective Direction: Tension/Compression
- Measuring Principle: DMS
- Insulating resistance: > 5 G Ω
- Reference temperature: 21 °C
- Nominal temperature range: -10/+50 °C
- Storage temperature range: -50/+80 °C
- Nominal range of supply voltage: 5 - 10 V
- Breaking load related to nominal force: > 200 %
- Accuracy acc. to ISO 376 and EN 10002-3: Class 1
- Max. allowable dynamic load (oscillation amplitude according to DIN 50100) related to nominal force: < 70 %
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