TB67S109 Stepper Motor Driver Module, 4A Current, 42/57 Size Motor Controller Board
TB67S109 Stepper Motor Driver Module, 4A Current, 42/57 Size Motor Controller Board
【High-Power Dual H-Bridge Stepper Motor Driver】 This high-performance stepper motor driver features the TB67S109AFTG chip, delivering up to 4A peak current per phase and 2.8A RMS with heatsink support. It’s Suitable for driving high-torque 42/57 stepping motors in 3D printers, CNC machines, and automation systems. The wide voltage input (4.5V–36V DC) ensures compatibility with both lead-acid and lithium power supplies.
【Advanced Subdivision Control for Smooth Operation】 With 128-step subdivision settings via DIP switches, this driver reduces motor vibration and noise for ultra-smooth motion control. Suitable for precision applications like 3D printing and engraving. The adjustable micro-step options (1/2 to 1/128) allow you to fine-tune performance based on your project’s needs.
【Built-In Protection for Reliable Performance】 Equipped with overcurrent, overtemperature, and undervoltage protection, this driver automatically shuts down to prevent damage. A fault indicator light alerts you to issues, ensuring safe and stable operation even under demanding conditions. Suitable for industrial and DIY projects requiring long-term reliability.
【Efficient Power Delivery with High Efficiency】 With an efficiency rating of over 92%, this driver minimizes energy loss and heat generation. Its low MOSFET resistance (0.4Ω) ensures fast and efficient power delivery, making it suitable for high-speed and high-load applications. The aluminum substrate design enhances heat dissipation for consistent performance.
【Easy Setup with Flexible Configuration Options】 The driver offers a user-friendly DIP switch setup for quick adjustment of current, subdivision, and logic voltage (3.3V–5V). Compatible with most MCUs and control systems, it’s easy to integrate into your existing setup. Whether you're building a 3D printer or upgrading a CNC machine, this driver delivers professional-grade performance with minimal effort.