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REXROTH VT-HNC100-1-22-W-08-C-0 standard axis control for control cabinet installation

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The  VT-HNC100-1-22-W-08-C-0 Digital Axis Controllers are a series of programmable controllers by Bosch Rexroth Indramat, designed specifically to control between 1 to 4 axes in hydraulics. These controllers are suitable for closed-loop control of electromechanical and electrohydraulic drives, and are built to withstand conditions such as interference, vibrations, shock, and varying climates common within harsh industrial environments.

REXROTH VT-HNC100-1-22-W-08-C-0 standard axis control for control cabinet installation,3 control loops

The VT-HNC100-1-22-W-08-C-0 Digital Axis Controllers are a series of programmable controllers by Bosch Rexroth Indramat, designed specifically to control between 1 to 4 axes in hydraulics. These controllers are suitable for closed-loop control of electromechanical and electrohydraulic drives, and are built to withstand conditions such as interference, vibrations, shock, and varying climates common within harsh industrial environments. Additionally, their modular design ensures faulty units can be easily identified and replaced, minimizing downtime and improving operational efficiency.

The VT-HNC100-1-22-W-08-C-0 main functions of the servo drive include:

1: Position control: By adjusting the position of the servo motor, high precision positioning of the drive system is achieved, which is critical for applications requiring high precision positioning.
2: Speed control: The servo drive can adjust the speed of the servo motor to achieve precise speed control, which is very useful in applications where variable speed movement is required.
3: Torque control: Some servo drivers have torque control functions to ensure that the motor outputs a specific torque or force, which is very important in applications that require control of torque, such as the torque control of robot arms.
4: Feedback control: Servo drives are usually used in combination with servo motor encoders or other position sensors to provide real-time feedback information. This allows the driver to adjust the motor’s motion to compensate for any positional errors, resulting in greater accuracy.
5: Motion configuration and parameter adjustment: Servo drives usually have user-configurable parameters to adapt to different application requirements. These parameters can adjust the performance of the motor, such as acceleration, deceleration, reaction time, etc.
6: Communication interface: The servo driver usually supports various communication interfaces, such as Modbus, CAN bus, Ethernet, etc., in order to communicate and integrate with the upper control system.

 

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