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TB6612FNG / TB6612 Dual Motor Driver 1A

SKU: ELC4020

₹ 189.99 ₹ 235.00

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TB6612FNG / TB6612 Dual Motor Driver 1A₹ 189.99
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The TB6612FNG Motor Driver can control up to two DC motors at a constant current of 1.2A (3.2A peak). Two input signals (IN1 and IN2) can be used to control the motor in one of four function modes: CW, CCW, short-brake and stop. The two motor outputs (A and B) can be separately controlled, and the speed of each motor is controlled via a PWM input signal with a frequency up to 100kHz. The STBY pin should be pulled high to take the motor out of standby mode.

Logic supply voltage (VCC) can be in the range of 2.7--5.5VDC, while the motor supply (VM) is limited to a maximum voltage of 15VDC. The output current is rated up to 1.2A per channel (or up to 3.2A for a short, single pulse).

This little board comes with all components installed as shown. Decoupling capacitors are included on both supply lines. All pins of the TB6612FNG are broken out to two 0.1" pitch headers; the pins are arranged such that input pins are on one side and output pins are on the other.

How many motors can be driven with this module and what is the current rating?
It can drive up to two DC motors. Each output channel can supply up to 1.2 A continuous (3.2 A peak) and motor speed is controlled by PWM up to 100 kHz.
What voltages are required for logic and for the motor power?
Logic supply VCC is 2.7 to 5.5 V. The motor supply VM is limited to a maximum of 15 V.
How do I enable the outputs and select motor direction?
Pull STBY high to take the device out of standby. Use IN1 and IN2 to select CW, CCW, short brake, or stop. The A and B outputs can be controlled independently.
Is this module ready to use right out of the box?
Yes, the board ships with all components installed and includes decoupling capacitors on both supply lines. Pins are broken out to two 0.1 inch headers with input pins on one side and outputs on the other.
What are common use cases and important limitations to consider?
Ideal for projects that require two DC motors with PWM control. Ensure VM does not exceed 15 V and each channel does not exceed 1.2 A continuous (3.2 A peak), with PWM frequency up to 100 kHz.
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Description
Ask AI about this product

The TB6612FNG Motor Driver can control up to two DC motors at a constant current of 1.2A (3.2A peak). Two input signals (IN1 and IN2) can be used to control the motor in one of four function modes: CW, CCW, short-brake and stop. The two motor outputs (A and B) can be separately controlled, and the speed of each motor is controlled via a PWM input signal with a frequency up to 100kHz. The STBY pin should be pulled high to take the motor out of standby mode.

Logic supply voltage (VCC) can be in the range of 2.7--5.5VDC, while the motor supply (VM) is limited to a maximum voltage of 15VDC. The output current is rated up to 1.2A per channel (or up to 3.2A for a short, single pulse).

This little board comes with all components installed as shown. Decoupling capacitors are included on both supply lines. All pins of the TB6612FNG are broken out to two 0.1" pitch headers; the pins are arranged such that input pins are on one side and output pins are on the other.

FAQ
How many motors can be driven with this module and what is the current rating?
It can drive up to two DC motors. Each output channel can supply up to 1.2 A continuous (3.2 A peak) and motor speed is controlled by PWM up to 100 kHz.
What voltages are required for logic and for the motor power?
Logic supply VCC is 2.7 to 5.5 V. The motor supply VM is limited to a maximum of 15 V.
How do I enable the outputs and select motor direction?
Pull STBY high to take the device out of standby. Use IN1 and IN2 to select CW, CCW, short brake, or stop. The A and B outputs can be controlled independently.
Is this module ready to use right out of the box?
Yes, the board ships with all components installed and includes decoupling capacitors on both supply lines. Pins are broken out to two 0.1 inch headers with input pins on one side and outputs on the other.
What are common use cases and important limitations to consider?
Ideal for projects that require two DC motors with PWM control. Ensure VM does not exceed 15 V and each channel does not exceed 1.2 A continuous (3.2 A peak), with PWM frequency up to 100 kHz.
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