Home/ Shop/ Arduino and Raspberry Accessories & Modules/ DRV8833 2 Channel Motor Driver Module - Dual H-Bridge DC Stepper Motor Controller Board, 1.5A per Channel, for Arduino Robotics and DIY Electronics
DIY-296 Arduino and Raspberry Accessories & Modules DIYKIT

DRV8833 2 Channel Motor Driver Module - Dual H-Bridge DC Stepper Motor Controller Board, 1.5A per Channel, for Arduino Robotics and DIY Electronics

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Operating Voltage
2.7 - 10.8 V
Logic Voltage
2.5 - 5.2 V
Continuous Output Current
1.5 A
Peak Output Current
2.0 A
SKU
DIY-296
Category
Arduino and Raspberry Accessories & Modules
Brand / MPN
DIYKIT
Min. order
1 pc
Barcode
DKU-000339
Full specs
10 published — see below

Overview The DRV8833 2 Channel Motor Drive Module is an integrated dual-channel motor driver solution optimized for low-voltage DC motors and stepper motors in DIY electronics, robotics, and automation projects.

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Included Components DIY-296

1x DRV8833 2 Channel Motor Drive Module with male pin headers

Operating Voltage 2.7 - 10.8 V
Logic Voltage 2.5 - 5.2 V
Continuous Output Current 1.5 A
Peak Output Current 2.0 A
Number of Channels 2
Communication Interface PWM and Logic GPIO
Dimensions 18.5 x 16.0 x 3.0 mm
Weight 2.0 g
Operating Temperature Range -40 to 85 degC
Mounting Type Through-hole header pins

Overview

The DRV8833 2 Channel Motor Drive Module is an integrated dual-channel motor driver solution optimized for low-voltage DC motors and stepper motors in DIY electronics, robotics, and automation projects. Built around the high-efficiency Texas Instruments DRV8833 chipset, this module provides a robust alternative to older driver ICs like the L298N by offering lower power dissipation, a smaller footprint, and built-in protection features. Whether you are building an obstacle-avoiding robot, an automated camera slider, or a precision miniature CNC machine, this driver board delivers the precise motor control and power efficiency required for modern microcontroller projects.

Technical Details

At the core of the module is a dual H-bridge output stage that enables bidirectional control of two separate DC motors or a single four-wire bipolar stepper motor. The H-bridge architecture allows the connected microcontroller, such as an Arduino, ESP32, or Raspberry Pi, to independently regulate motor speed and direction. Speed control is typically achieved by applying Pulse Width Modulation (PWM) signals to the control inputs, while direction is managed by pulling specific logic pins high or low. The module features integrated current regulation and internal protection diodes to absorb inductive kickback voltages generated when motors change direction or stop abruptly, protecting your microcontroller from damage.

Specifications

The operating voltage range for the motor power supply spans from 2.7V to 10.8V, making it highly compatible with single-cell lithium-ion batteries, multi-cell NiMH packs, and standard 5V USB power sources. The logic supply voltage range accommodates standard 3.3V and 5V microcontrollers directly without requiring external level shifters. Each output channel can deliver up to 1.5A of continuous current and handles peak currents up to 2.0A, accommodating a wide variety of small to medium-sized DC gear motors. The switching frequency supports standard PWM ranges used in embedded systems.

Applications

This motor driver module is exceptionally versatile and well-suited for a wide range of maker and professional applications. In robotics, it drives differential steering systems for two-wheel or four-wheel drive chassis. In home automation, it controls small DC actuators, motorized blinds, and automated pet feeders. Educational labs use it to teach motor control principles, H-bridge operation, and PWM signal generation. It is also ideal for pan-tilt camera platforms, automated miniature conveyor belts, and custom electronic toys requiring precise bidirectional movement.

Integration Notes

Integration into existing circuits is straightforward thanks to the clearly labeled pinout headers. Connect the motor power supply to the VCC and GND pins, and hook up your control logic pins to the digital and PWM outputs of your microcontroller. Ensure that the common ground between the microcontroller and the motor power source is securely established. When driving inductive loads near their maximum current limits, monitor the operating temperature and consider adding a small heatsink if sustained high-load conditions are anticipated. Always verify your wiring configuration against the module pin labels before applying power to prevent accidental short circuits.

Included Components

1x DRV8833 2 Channel Motor Drive Module with male pin headers

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