3E400 Axis Force Sensor

Features:

  • The 3-axis force load cell measures forces simultaneously on 3 mutually perpendicular axes: and interference between channels.
  • Each axis provides a complete bridge output and requires no mathematical manipulation.
  • The 3-axis load cell is built to minimize eccentric loading effects and interference between channels.
  • This 3-axis load cell is ideal for many industrial and scientific applications such as aerospace, robotics, automotive and medical research (orthopedics and biomechanics).

Application Areas:

  • Force application control in robotics
  • Automotive crash test
  • Industrial test benches
  • Grinding force control, etc.
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1 kg loadcell is a type of loadcell designed for precise weight measurements. This loadcell is used in many different areas such as industrial measurement applications, devices used in the medical field, and laboratory tests. Thanks to its high sensitivity, 1 kg loadcell can be used not only in the measurement of small weights, but also in many different applications since it has the low hysteresis required for weight measurement.

1 kg loadcell can be made from many different materials. These materials include options such as aluminum, stainless steel, nickel-plated steel, and zinc-plated steel. The selection made may vary depending on the area of ​​use. For example, load cells used in the food industry are made of stainless steel. In this way, they are ensured to be hygienic and durable.

The working principle of 1 kg loadcell is to apply the load as mechanical force. The loadcell is usually designed as a tension type sensor to measure this force. The strain sensor inside the load cell measures the deformation occurring at the point where the load is applied. This deformation creates a change in the bridge circuit in the strain sensor. This change is detected as a signal that helps determine the measuring range.

1 kg loadcellis mostly designed in a double-wiring or four-wire structure. The four-wire structure ensures the correct operation of the load cell and ensures more accurate measurement results. In this structure, one pair of cables is used to power the load cell, while the other pair of cables is used to read measurement signals.

1 kg loadcell can be used in many different applications. These include different areas such as precision weighing applications, material tests, industrial control systems, medical devices and laboratory measurements. The selection of the load cell should be made according to the intended use.

Another factor to consider when choosing a load cell is the level of accuracy. The accuracy level determines how accurate a load cell's measurement results are. Accuracy level is generally expressed as how precisely the load cell can measure within a certain load range. The level of accuracy is an important factor that determines how much the measurement results of the load cell will differ from other measuring devices.

Also, another factor to consider when choosing a load cell is the temperature tolerance of the load cell. Load cells are affected by temperature changes, which may affect measurement results. Therefore, the temperature tolerance of the load cell is important especially in industrial applications. While some load cells can operate in wide temperature ranges, others can operate in narrower temperature ranges.

As a result, correct load cell selection is important to ensure measurement accuracy and reliability. Load sensors are available in many different sizes and capacities and can be customized for different applications. Load cell selection should be made in accordance with your measurement requirements and application. In addition, load cell assembly and calibration must be done correctly, so that you can obtain accurate measurement results.

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