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Measurement sensors Panasonic HG-C1000L with IO-Link

Категория: Measurement sensors

The IO-Link technology makes the processes of collecting, processing and analyzing sensor data possible. 
Panasonic has developed a self-diagnosis function specifically for these types of sensors. This function sends sensor data via IO-Link directly to a higher-level fieldbus. Users only need to monitor the parameter value that gives information about sensor’s proper work. 
 

 

Measurement sensor Panasonic HG-C1000L with IO-Link

  • A step towards IoT - to ensure smooth operation on the production floor, it is important to keep the machine downtime to a minimum. The new IO-Link technology permanently generates data on the sensor level and transmits them to a PLC for processing. The result is a large amount of data waiting to be analysed. The right information helps to take effective measure in the case of a failure in the shortest possible time. To find out at an early stage why a component has failed is a big advantage.
  • Compact miniaturized housing - because the laser beam is deflected inside the sensor, it has been possible to reduce the housing to a minimum size. Parameters can be set directly at the device with the help of the buttons and the built-in display.

  • Connection to the field level - the standardized IO-Link technology makes connection to thefield level easier than ever before.Sensors can communicate with the defined masters viaEtherCAT, Profinet or EtherNet/IP.
  • Self-diagnosis function - all IO-Link sensors from Panasonic have an integratedself-diagnosis function. The function monitors the function parameters specific to the sensor type and automatically outputs a warning signal if deviations from the specified behavior occur. Users save time because for maintenance it is sufficient to monitor only one signal instead of a number of sensor parameters.
  • Easy configuration:
    • Perform 1-point teaching and the threshold range is set for the distance from the reference surface of the object to be detected.

    • 2-point-teaching uses threshold values. For this method, all you need to do is press TEACH once for the lower (first point) and once for the upper limit (second point). This is useful for detecting objects at different distances.

    • For the 3-point method, you set the threshold range by conducting the teaching at 3 points (detecting object A, B and C). After teaching, the reference points are automatically sorted in ascending order (reference point 1, 2 and 3). The thresholds are set at the midpoints between reference point 1 and 2, and 2 and 3, respectively. This is useful for detecting objects at different distances.