L298N 2A Dual Motor Driver Module with PWM Control.
The L298N 2A Dual Motor Driver Module is a powerful and widely used H-bridge motor driver designed to control the speed and direction of two DC motors or one stepper motor simultaneously. It is based on the L298N integrated circuit, which can drive up to 2A per channel at voltages from 5V to 35V.
This module includes onboard 5V regulators, direction control pins, and PWM (Pulse Width Modulation) inputs for precise motor speed control. It can be easily interfaced with microcontrollers like Arduino, Raspberry Pi, ESP32, and other development boards.
The board features screw terminals for secure motor and power connections and jumpers for enabling/disabling onboard 5V logic power or motor enable pins. It also includes a large heat sink to dissipate excess heat generated during high current operation.
Key Features:
- Based on the L298N dual H-bridge motor driver IC
- Input voltage: 5V to 35V (motor supply)
- Logic voltage: 5V
- Output current: Up to 2A per channel
- Supports two DC motors or one stepper motor
- PWM control for speed adjustment
- Direction control using input pins (IN1–IN4)
- Separate enable pins (ENA, ENB) for each motor
- Onboard 5V regulator (can power logic circuit when VIN ? 12V)
- Built-in heat sink for temperature protection
- Screw terminals for easy wiring
- Compatible with Arduino, Raspberry Pi, and other microcontrollers
Pin Description:
| Pin | Function | Description |
|---|---|---|
| +12V | Motor Power | Motor supply voltage (5–35V) |
| 5V | Logic Power | Logic circuit voltage (5V) |
| GND | Ground | Common ground for power and logic |
| OUT1, OUT2 | Motor A Outputs | Connect DC Motor A |
| OUT3, OUT4 | Motor B Outputs | Connect DC Motor B |
| IN1, IN2 | Control Inputs for Motor A | Control direction of Motor A |
| IN3, IN4 | Control Inputs for Motor B | Control direction of Motor B |
| ENA | Enable Motor A | Connect PWM signal for speed control |
| ENB | Enable Motor B | Connect PWM signal for speed control |
Applications:
- Robotics Projects: To drive two DC motors for robot movement (forward, reverse, left, right).
- Automation Systems: Used in small conveyor belts, automatic door systems, and motorized platforms.
- DIY Electronics: Ideal for learning and experimenting with motor control using Arduino or Raspberry Pi.
- RC Vehicles: For controlling wheels or mechanical arms in cars, boats, or drones.
- Stepper Motor Control: Used to drive small stepper motors in precise positioning systems.
- Smart Home Devices: For controlling small motors in curtains, fans, or appliances.
- Industrial Prototypes: To test dual-motor control mechanisms in low-current applications.
*product image for illustration purposes only. actual product may vary.
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