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  • $19.89
  • Free 30-day Returns
  • Ships from China.
    Sold by ThermalNest

    Shipped by ThermalNest

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    AJMRTC Dual DC Motor Drive Module, 1224V 7A 160W HBridge Motor Driver Board with L298 Logic, Bidirectional Speed Control for Robot, Smart Car, DIY Industrial Automation Projects

    • Dualchannel Hbridge motor driver board based on L298 logic, supports independent forward/reverse control for two DC motors.
    • 1224V wide power input, max 7A continuous current and 160W power capacity to drive mediumpower DC motors.
    • Supports PWM speed regulation, easily adjust rotation speed of each motor separately via external controller signal.
    • Builtin freewheeling diodes absorb inductive surge, effectively protect circuit from motor backEMF damage.
    • Standard pin header terminals for simple wiring, compatible with microcontrollers for robotic car and automation builds.
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    AJMRTC dual DC motor drive module adopts classic Hbridge circuit with L298 logic, designed for driving two separate DC motors. It works under 12V24V power supply, supports maximum 7A continuous output current and 160W power rating. Each motor can realize independent forward, reverse and stop operation. PWM signal input enables stepless speed adjustment for motor rotation. Integrated freewheeling diodes suppress inductive voltage spikes generated by motor shutdown, improving circuit reliability. With clearly marked pin headers, this board can work with Arduino and other microcontrollers. Ideal for smart robot cars, mechanical models, smallscale automation equipment and various electronic DIY projects.

    Specifications
    1. Brand: AJMRTC
    2. Circuit Type: HBridge, L298 logic
    3. Channels: Dual DC motor independent drive
    4. Working Voltage: 12V24V DC
    5. Max Continuous Current: 7A
    6. Max Power: 160W
    7. Control Method: PWM speed control, forward/reverse direction control
    8. Protection: Freewheeling diode antibackEMF protection
    9. Connection: Pin header wiring
    10. Application: Robot, Smart Car, Mechanical Model, Small Automation, DIY Electronic Project


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