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PFTL101AE-0.5kN | 3BSE004211R1 | Tension sensor | PFTL101AE-0.5kN

A tension sensor is an instrument used to measure the tension value of a coil, widely used in tension measurement and control applications in industries such as pharmaceuticals, packaging, textiles, and steel. Its working principle may be based on strain gauges or micro displacement measurement methods. Tension sensors may use different measurement principles such as strain gauges or micro displacement.

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  PFTL101AE-0.5kN 3BSE004211R1 Other names:

  Pressure gauge PFTL101AE-0.5kN 3BSE004211R1

  PFTL101AE-0.5kN 3BSE004211R1 pillow type sensor

  Operating unit PFTL101AE-0.5kN 3BSE004211R1

  PFTL101AE-0.5kN 3BSE004211R1 matching unit

  PFTL101AE-0.5kN 3BSE004211R1 tension sensor is an instrument used to measure the tension value of coil materials, widely used in tension measurement and control applications in industries such as pharmaceuticals, packaging, textiles, and steel. Its working principle may be based on strain gauges or micro displacement measurement methods.

The PFTL101AE-0.5kN 3BSE004211R1 tension sensor may use different measurement principles such as strain gauges or micro displacement. The working principle of the strain gauge type tension sensor is that the strain gauge and compression strain gauge are connected together in an electric bridge manner. When subjected to external pressure, the resistance value of the strain gauge also changes, and the amount of change will be proportional to the magnitude of the tension applied. In the strain gauge type, tension strain gauges and compression strain gauges are connected together in an electric bridge manner.

When subjected to external pressure, the resistance value of the strain gauge will change accordingly, and the amount of change will be proportional to the magnitude of the tension applied. The micro displacement type, on the other hand, applies a load through external force, causing the leaf spring to produce displacement, and then detects tension through a differential transformer.

  In addition, the PFTL101AE-0.5kN 3BSE004211R1 tension sensor may have some unique technical features, such as ABB's unique piezoelectric technology, which generates measurement signals due to magnetic field changes when subjected to mechanical forces. This signal is not affected by physical motion or deformation, and can therefore combine sensitivity with resistance to overload.

  The working principle of PFTL101AE-0.5kN 3BSE004211R1 tension sensor may be based on strain gauges or micro displacement measurement principles. A strain gauge type tension sensor is connected to a compression strain gauge through an electric bridge. When subjected to external pressure, the resistance value of the strain gauge will change accordingly, and the amount of change will be proportional to the magnitude of the tension applied. The micro displacement type, on the other hand, applies a load through external force, causing the leaf spring to produce displacement, and then detects tension through a differential transformer. Due to the extremely small displacement of the leaf spring, approximately ± 200 μ m. Therefore, this type is called a micro displacement tension detector.

  In addition, ABB's unique piezomagnetism ® The technology may also be applied to PFTL101AE-0.5kN 3BSE004211R1 tension sensors, where the sensor generates measurement signals due to changes in magnetic field when subjected to mechanical force. This technology achieves a good balance between sensitivity and overload tolerance of the weighing sensor.

  Overall, PFTL101AE-0.5kN 3BSE004211R1 tension sensors have the advantages of high precision and reliability, and are commonly used in tension measurement and control applications in industrial fields such as pharmaceuticals, printing, packaging, textiles, steel, and other fields. However, the specific measurement principles, application scope, and output signal characteristics may vary depending on the product model and version. Therefore, when selecting and using P3PFTL101AE-0.5kN 3BSE004211R1ension sensors, it is recommended to refer to the technical documentation and user manual provided by the manufacturer to ensure correct installation, configuration, and use.


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