TB6612FNG Wemos D1 Mini I2C Dual Motor Driver Shield

SKU: ELC4005
₹ 199.99 ₹ 399.00 -50% OFF

TB6612FNG Wemos D1 Mini I2C Dual Motor Driver Shield

SKU: ELC4005
₹ 199.99 ₹ 399.00 -50% OFF

Inclusive of 18% GST

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Description Reviews

The TB6612FNG (308k pdf) is a great dual motor driver that is perfect for interfacing two small DC motors such as our micro metal gearmotors to a microcontroller, and it can also be used to control a single bipolar stepper motor. The MOSFET-based H-bridges are much more efficient than the BJT-based H-bridges used in older drivers such as the L298N and Sanyo’s LB1836M, which allows more current to be delivered to the motors and less to be drawn from the logic supply (the LB1836 still has the TB6612 beat for really low-voltage applications). Our little breakout board gives you direct access to all of the features of the TB6612FNG and adds power supply capacitors and reverse battery protection on the motor supply (note: there is no reverse protection on the Vcc connection).

In a typical application, power connections are made on one side of the board and control connections are made on the other. All of the control inputs are internally pulled low. Each of the two motor channels has two direction control pins and a speed control pin that accepts a PWM input with a frequency of up to 100 kHz. The STBY pin must be driven high to take the driver out of standby mode. 

The distance between the header rows on the PCB is 0.1" smaller than a standard 0.6" DIP package, but the pin spacing allows it to conveniently fit in 0.1" breadboards and perfboards.

For a more advanced motor controller based on this driver, please consider the qik 2s9v1 dual serial motor controller. For a robot controller based on this driver, please consider the Baby Orangutan, Orangutan SV-328, Orangutan SVP-1284, and 3pi robot, which connect the TB6612 to a user-programmable AVR microcontroller. 

Features 

  • Dual-H-bridge motor driver: can drive two DC motors or one bipolar stepper motor
  • Recommended motor voltage (VMOT): 4.5 V to 13.5 V (can operate down to 2.5 V with derated performance)
  • Logic voltage (VCC): 2.7 V to 5.5 V
  • Output current maximum: 3 A per channel
  • Output current continuous: 1 A per channel (can be paralleled to deliver 2 A continuous)
  • Maximum PWM frequency: 100 kHz
  • Built-in thermal shutdown circuit
  • Filtering capacitors on both supply lines
  • Reverse-power protection on the motor supply
Specifications

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