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SICK DLS40E-S3RV00400 Compact and slim incremental encoder

SICK DLS40E-S3RV00400 Compact and slim incremental encoder

  • Product Item : DLS40E-S3RV00400
  • Product Brand : Sick
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SICK DLS40E-S3RV00400 is an incremental encoder launched by SICK. Here are some of its features and application information:

Electrical characteristics:

Output signal: It belongs to the TTL/RS422 differential signal output type. This output method has strong anti-interference ability and relatively long signal transmission distance. It can adapt to complex industrial electromagnetic environments and can stably transmit the signals collected by the encoder to the upper control device.

Resolution: The resolution is 400 pulses/turn, which can meet some industrial application scenarios that do not require extremely high position or speed measurement accuracy but require a certain measurement accuracy, such as general conveyor belt speed monitoring, ordinary motor speed measurement, etc.

Mechanical characteristics:

Shaft diameter: It uses a universal 6mm solid shaft. This shaft diameter specification can be well connected with the output shafts of common motors, reducers and other equipment on the market, which is easy to install and adapt.

Protection level: The protection level is IP50, which can prevent dust from entering and can meet the use requirements of general industrial environments, but cannot be used in harsh environments with large amounts of water or dust intrusion.

Environmental adaptability:

Working temperature: The working temperature range is -10℃~70℃, which can adapt to the temperature changes of most conventional industrial sites, and can work stably in some scenes such as workshops and warehouses where the ambient temperature does not change much.

Application areas:

It can be used to measure the length of packaging bags for cutting. The length of the packaging bags is determined by accurately measuring the number of pulses of the encoder, so as to control the cutting device for accurate cutting.

Monitor the conveying speed of the conveyor belt, install the encoder on the drive shaft or roller of the conveyor belt, and monitor the running speed of the conveyor belt in real time by detecting the pulse frequency of the encoder to ensure the stability and accuracy of the conveying process.

It can also be used in scenes such as textile machine speed monitoring, textile length control, and speed monitoring of printing equipment to avoid affecting product quality or causing material waste due to improper speed control.