Pololu Dual DC Motor Driver 1A, 4.5V-13.5V- TB6612FNG
Description
- Dual motor driver perfect for controlling two bidirectional DC motors
- Can also be used to control a single bipolar stepper motor
- Recommended motor voltage (VMOT): 4.5 - 13.5 V
- Output current maximum: 3 A per channel
- Output current continuous: 1 A per channel
- Built-in thermal shutdown circuit
- Maximum PWM frequency: 100 kHz
The Pololu Dual DC Motor Driver 1A, 4.5V-13.5V- TB6612FNG is perfect for controlling two bidirectional DC motors or one bipolar stepper motor. This tiny board is an easy way to use Toshiba's TB6612FNG dual motor driver. A recommended motor voltage of 4.5 - 13.5 V and peak current output of 3 A per channel (1 A continuous) make this tiny board a great motor driver for low-power motors. This dual motor driver has a built-in thermal shutdown circuit and maximum PWM frequency is 100 kHz. This 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).

- Size: 0.60" x 0.80"
PDF Files
- Data Sheet (Toshiba TB6612FNG motor driver)
- Overview
- Motor driver: TB6612FNG
- Motor channels: 2
- Minimum operating voltage: 4.5 V
- Maximum operating voltage: 13.5 V
- Continuous output current per channel: 1 A
- Peak output current per channel: 3 A
- Continuous paralleled output current: 2 A
- Maximum PWM frequency: 100 kHz
- Minimum logic voltage: 2.7 V
- Maximum logic voltage: 5.5 V
- Reverse voltage protection: Y
This is an excellent driver. I have used it on a number of projects and it always performs consistently.
C'est un excellent pilote. Je l'ai utilisé sur un certain nombre de projets et il fonctionne toujours de manière cohérente.
This module works perfectly. He controls the Zumo crawler chassis from Pololu. The PWM is welcome to compensate for the difference in speed of small engines so that the robot goes straight.
This is ideal to make fancy robots using powerful DC motors. Non of the 3 I'm using has been broken so far and the alowed PWM frequency is high enough to avoid noise. One drawback is the need for individual closure of the half-bridges inside (at least for my project which is about controling a simple DC drive in 2 directions). You can however save one pin per full bridge if you use a hex-inverter to generate the input for the secondary half-bridge. All in all - very cheap, very good!
Excellent product. Using it in conjunction with a raspberry pi 3 to drive two dc motors for my first try at building a robot.
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