ABKW-10Pcs Stepper Motor Driver Board Stepstick DRV8825 Stepping Driver Controller Step Engine Module Radiator Heat Sink Vue CN

10-Pack DRV8825 Stepper Motor Driver Module with Heat Sinks

CN
Sale price  $41.99 Regular price $50.99
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ABKW-10Pcs Stepper Motor Driver Board Stepstick DRV8825 Stepping Driver Controller Step Engine Module Radiator Heat Sink Vue CN

10-Pack DRV8825 Stepper Motor Driver Module with Heat Sinks

Sale price  $41.99 Regular price $50.99
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10-Pack DRV8825 Stepper Motor Driver Modules with Radiator Heat Sinks

Upgrade your CNC machine, 3D printer, or robotics project with this value-packed set of 10 DRV8825 Stepper Motor Driver Boards. Each module features a simple step-and-direction control interface, thermal and over-current protection, and direct compatibility with both 3.3V and 5V systems — making them an ideal drop-in solution for makers, engineers, and electronics hobbyists alike.

Key Features

  • DRV8825 Chipset: Industry-standard stepper driver IC widely used in 3D printers, CNC routers, and laser engravers
  • Broad Voltage Compatibility: Interfaces directly with both 3.3V and 5V control systems without additional level-shifting hardware
  • Built-In Protections: Over-temperature thermal shutdown, over-current shutdown, and under-voltage lockout keep your build safe
  • Short-Circuit Protection: Short-to-ground and short-to-supply load protection for added reliability
  • Included Heat Sinks: Radiator heat sinks included to help manage operating temperatures during extended use
  • Simple Step/Direction Interface: Easy to integrate with popular microcontrollers such as Arduino, RAMPS 1.4, and similar platforms
  • PCB Construction: Durable printed circuit board material built to handle demanding hobby and prototyping environments
  • Pack of 10: Great value — stock up for multiple builds or replace worn drivers quickly

Technical Specifications

  • Driver IC: DRV8825
  • Logic Voltage: 3.3V / 5V compatible
  • Motor Type: Bipolar Stepper Motor
  • Interface: Step / Direction control
  • Material: PCB
  • Accessories Included: Radiator heat sinks
  • Package Contents: 10 × DRV8825 Stepper Motor Driver Boards
  • Country of Origin: Made in China

Important Usage Notes

  • Always observe correct power polarity and driver orientation before powering on.
  • Do not connect or disconnect motors while the system is powered.
  • Disconnect all motors before adjusting the driver current trim potentiometer.
  • Minor color variation between product photos and actual items may occur due to lighting and display differences.
  • Measurement tolerance: ±1–3 mm.

Ideal Applications

  • 3D printers (RAMPS, SKR, and similar controller boards)
  • CNC routers and laser engravers
  • Robotics and automation projects
  • DIY electronics and prototyping

For general guidance on electrical component safety and best practices in electronics projects, visit the U.S. Consumer Product Safety Commission (CPSC).

Frequently Asked Questions

Q: Are these DRV8825 stepper motor driver modules compatible with Arduino and RAMPS 1.4 boards?

A: Yes. The DRV8825 driver modules use a standard step/direction interface and are pin-compatible with popular platforms including Arduino-based RAMPS 1.4 boards, making them a direct replacement for A4988 drivers in most 3D printer and CNC builds.

Q: Do the heat sinks come pre-attached, or do I need to install them?

A: The radiator heat sinks are included in the package but will need to be attached to the driver IC on each board. They typically attach with thermal adhesive tape for easy installation.

Q: What protection features do these DRV8825 modules include?

A: Each module includes over-temperature thermal shutdown, over-current shutdown, under-voltage lockout, and short-to-ground/short-to-supply load protection — helping safeguard both the driver and your connected stepper motors during operation.

Q: How do I set the current limit on the DRV8825 driver?

A: The current limit is adjusted via the onboard trim potentiometer. Always disconnect your stepper motors before making any adjustments to avoid damaging the driver IC or motor windings.

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