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This controller allows independent control of three DC motors using a single I²C bus. It supports motor supply voltages ranging from 4.5 to 44 V and currents up to 0.8 A continuous per channel, making it suitable for a wide range of robotic and mobile applications. I²C communication eliminates the need to generate PWM signals and significantly saves microcontroller pins. The ability to connect multiple controllers on a single bus allows for easy scaling of the system to larger motor counts. Pololu 5084
Motoron M3T453 Triple I²C Motor Controller is a compact controller that enables independent control of three DC motors using a single I²C bus. This solution is ideal for robotics projects, automation, and mobile systems where saving microcontroller pins and easy expandability are important. Thanks to the ability to connect multiple Motoron controllers on a single I²C bus, the system can be easily scaled to control a larger number of motors.

The module supports a wide motor supply voltage range from 4.5 V to 44 V, allowing compatibility with various power supplies and batteries. Each channel provides up to 0.8 A continuous and 2 A peak current, which is sufficient for many light and medium-duty applications. Unlike traditional motor drivers, Motoron does not require generating PWM signals—communication is handled entirely digitally via I²C. The device offers advanced features such as configurable acceleration and braking, reverse-polarity protection, and motor supply voltage monitoring. Built-in LEDs simplify diagnostics of operation and motor rotation direction. Thanks to its small dimensions and low weight, the controller is ideal for space-constrained projects. This version is equipped with soldered 2.54 mm connectors.
Data sheet
Manufacturer BTC Korporacja sp. z o. o. Lwowska 5 05-120 Legionowo Poland sprzedaz@kamami.pl 22 767 36 20
Responsible person BTC Korporacja sp. z o. o. Lwowska 5 05-120 Legionowo Poland sprzedaz@kamami.pl 22 767 36 20
This controller allows independent control of three DC motors using a single I²C bus. It supports motor supply voltages ranging from 4.5 to 44 V and currents up to 0.8 A continuous per channel, making it suitable for a wide range of robotic and mobile applications. I²C communication eliminates the need to generate PWM signals and significantly saves microcontroller pins. The ability to connect multiple controllers on a single bus allows for easy scaling of the system to larger motor counts. Pololu 5085
This controller allows independent control of three DC motors using a single I²C bus. It supports motor supply voltages ranging from 4.5 to 44 V and currents up to 0.8 A continuous per channel, making it suitable for a wide range of robotic and mobile applications. I²C communication eliminates the need to generate PWM signals and significantly saves microcontroller pins. The ability to connect multiple controllers on a single bus allows for easy scaling of the system to larger motor counts. Pololu 5084
This controller allows independent control of three DC motors using a single I²C bus. It supports motor supply voltages ranging from 4.5 to 44 V and currents up to 0.8 A continuous per channel, making it suitable for a wide range of robotic and mobile applications. I²C communication eliminates the need to generate PWM signals and significantly saves microcontroller pins. The ability to connect multiple controllers on a single bus allows for easy scaling of the system to larger motor counts. Pololu 5083
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This controller allows independent control of three DC motors using a single I²C bus. It supports motor supply voltages ranging from 4.5 to 44 V and currents up to 0.8 A continuous per channel, making it suitable for a wide range of robotic and mobile applications. I²C communication eliminates the need to generate PWM signals and significantly saves microcontroller pins. The ability to connect multiple controllers on a single bus allows for easy scaling of the system to larger motor counts. Pololu 5084