TB6600 for 10-45V Hybrid Stepper Motor Driver Single Axis Controller Modules
Product Features:
– Intelligent DC motor driver module that integrates drive, subdivision, and anti-shake functions.
– Suitable for driving two-phase and four-phase hybrid stepping motors.
– Provides 16 subdivision settings, ranging from 1 to 256 microsteps.
– Built-in anti-shake algorithm to effectively suppress motor vibration.
– Supports single-axis control with pulse, direction, and enable signals.
– Wide input voltage range of 10-45V DC.
– Capable of delivering up to 4.5A peak current and 2.5A RMS current.
– Provides short-circuit, over-current, and over-voltage protection.
– Easy-to-use terminal block for convenient wiring.
– Compact and efficient design for space-saving applications.
Benefits:
– High performance and reliability for industrial automation and CNC machines.
– Enhanced motor control with anti-shake technology, reducing vibrations and improving precision.
– Versatile operation with adjustable subdivision settings, allowing optimization for different motor types.
– Robust design with multiple protection mechanisms, ensuring system safety and reliability.
– Convenient installation with terminal block connectivity, simplifying wiring and maintenance.
Applications
– Industrial automation systems
– CNC machines
– Robotics
– Precision motion control applications
Detailed Specifications:
Input Voltage: 10-45V DC
Output Current: 4.5A peak, 2.5A RMS
Subdivision Settings: 1-256 microsteps
Step Pulse Frequency: 0-200kHz
Protection: Short-circuit, over-current, over-voltage
Operating Temperature: -10-60°C
Humidity: <90% RH
Additional Features:
– Anti-resonance control for smooth and stable motor operation.
– High-speed operation capability, supporting up to 200kHz step pulse frequency.
– Maintenance-free design for long-term reliability.
Note:
For more information on the TB6600 Stepper Motor Driver Module, please refer to the following resources:
TB6600 Stepper Motor Driver Module with Heat Sink
Using the TB6600 for a CNC Controller