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The AM43A model load cell, the weight range is 10-500N, 17-4PH Stainless steel material, Measuring tension and compression, The micro size, low altitude, the deformation is small two-way cylindrical shape.
| Accuracy | ±0.05%F.S |
|---|---|
| Model | AM43A |
| Capacity | 20~500N |
| Certificate | RoHS, CE |
| Creep | ±0.05%F.S/3min |
| Material | Stainless steel |
| Sensitivity | 2.0±10%mV/V |
| Size | dia15*22mm |
It is Also known as shear beam weighing sensor, its shape is mostly rectangular, and the strain zone is located in the middle of the sensor. The cantilever beam weighing sensor has the characteristics of simple structure, easy installation, reliable use, long service life, and high cost-effectiveness.
Cantilever beam weighing sensors are used in highway scales such as automobile scales, main axle load gauges, small weighing scales, and flat scales in industrial scales Platform scales, steel cylinder scales, and other fields have been widely used, generally using three or four sensors as a group.
- High precision with the principle of resistance strain type.
- Two-direction force structure.
- Good temperature characteristics with self-compensated strain gauge.
- Tiny crosstalk error, strong long-term stability.
- Overload protection.
- Stable structure and high rigidity.
- High precision with the principle of resistance strain type.
- Crosstalk error, strong long-term stability.
- Good temperature characteristics with self-compensated strain gauge.
- Upper and lower flange surfaces, stable structure, high rigidity.
- Large range of measurement.
- Two-direction force structure.
- Quick response.
- High precision with the principle of resistance strain type.
- Compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error.
- Small size, low height, suitable for small-volume applications.
- Quick response.
- High precision with the principle of resistance strain type.
- Upper and lower flange surfaces, stable structure, high rigidity.
- Tiny crosstalk error, strong long-term stability.
- Good temperature characteristics with self-compensated strain gauge.
- Quick response.
- High precision with the principle of resistance strain type.
- Tiny crosstalk error, strong long-term stability.
- Quick response.
- High precision with the principle of resistance strain type.
- Good temperature characteristics with self-compensated strain gauge.
- Small size, low height, suitable for small volume applications.
- Decoupled structure, tiny long-term crosstalk error, strong long-term stability.
- Quick response.
- High precision with the principle of resistance strain type.
- Good temperature characteristics with self-compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error, strong long-term stability.
- Quick response.
- High precision with the principle of resistance strain type.
- Good temperature characteristics with self-compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error, strong long-term stability.
- Quick response.
- High precision with the principle of resistance strain type.
- Compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error.
- Quick response.
- High precision with the principle of resistance strain type.
- Good temperature characteristics with self-compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error, strong long-term stability.
- Quick response.
- High precision with the principle of resistance strain type.
- Good temperature characteristics with self-compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error, strong long-term stability.
- Quick response.
- High precision with the principle of resistance strain type.
- Good temperature characteristics with self-compensated strain gauge.
- Decoupled structure, tiny long-term crosstalk error, strong long-term stability.
















