Rexroth HDD02.2-W040N-HD12-01-FW Servo drive
Delivery time 3 days
Product origin New/used
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Rexroth HDD02.2-W040N-HD12-01-FW Servo driver is a high performance drive device
Rexroth HDD02.2-W040N-HD12-01-FW Servo driver is a high performance drive device, the following is a detailed explanation of its features and key information:
Technical features:
Control unit: Using digital signal processor (DSP) as the control core, to achieve complex control algorithms, to achieve digital, networked and intelligent control level.
Power device: The drive circuit designed by intelligent power module (IPM) is generally used, and the drive circuit and a variety of fault detection and protection circuits (such as overvoltage, overcurrent, overheating, undervoltage, etc.) are integrated inside to ensure the stable operation of the driver.
Soft start circuit: The soft start circuit is added to the main circuit to effectively reduce the impact of the start process on the driver.
How it works:
The power drive unit first rectifies the input three-phase or mains through the three-phase full-bridge rectifier circuit to obtain direct current.
The rectified DC is then converted by a three-phase sinusoidal PWM voltage inverter to drive the AC servo motor.
The whole process can be simply described as the conversion process of AC-DC-AC.
Control mode:
Position control: through the external input pulse frequency to determine the rotation speed, the number of pulses to determine the rotation Angle, to achieve accurate positioning control.
The servo drive supports three main control modes: position control, torque control and speed control.
Communication and Configuration:
Support a variety of communication protocols and interfaces to facilitate data exchange and instruction transmission with other control systems or host computers.
Users can flexibly configure the driver according to the specific application requirements, including parameter setting and motion mode selection.
Performance and Reliability:
High performance driver: Advanced control algorithms and hardware design are used to achieve fast and accurate response.
High reliability: The use of high-quality components and strict production process to ensure long-term, high-load operating conditions of stability and reliability.