







🚗 Drive Your Innovations with Confidence!
The HiLetgo 4pcs L298N Motor Driver Controller Board Module is designed for high-performance motor control in Arduino projects. Featuring a robust L298N chip, this module ensures strong driving capabilities with minimal heat generation. Its dual-channel H-bridge design enhances efficiency, while built-in protection features guarantee reliability. Ideal for DIY enthusiasts and professionals alike, this compact solution is perfect for powering your smart car and other robotics applications.
| ASIN | B07BK1QL5T |
| Box Contents | 4 L298N Motor Driver controller Boards |
| Brand Name | HiLetgo |
| Compatible Devices | Arduino, Smart Car, UNO MEGA R3, Mega2560 |
| Customer Reviews | 4.6 4.6 out of 5 stars (484) |
| Item Dimensions L x W x H | 43L x 43W x 27H millimetres |
| Manufacturer | HiLetgo |
| Manufacturer Part Number | 3-01-0032-4PCS |
| Model Name | L298N |
| Model Number | 3-01-0032-4PCS |
| Network Connectivity Technology | I2C, USB |
| Operating System | Arduino IDE, C/C++ |
| Processor Brand | Espressif |
| Processor Count | 1 |
| RAM Memory Technology | DDR3 |
| Total USB Ports | 1 |
C**N
Used the L298N to test a stepper for a CNC machine. Worked perfectly. I did need to research the pin out which waa well documented on the internet.
D**R
They arrived and what I had ordered
B**E
So far I'm only using this to drive a small linear actuator with an Arduino and it does the job well. All of the heatsinks on my units are fully connected so no obvious issues with quality from my experience. Getting 4 for this price was just a bonus.
C**E
Arrived as described, fast delivery, quality component. Used to control motors on a hobby model car. Satisfied with performance. Would buy again.
L**T
These are great little modules for the price. Easily control speed and direction of two DC motors or parallel the outputs for more current. The only problem I had was with the poor quality control of the heatsink attach. There was a significant gap between the heatsink and the thermal tab. There is also no thermal grease or thermal pad between the heatsink and the tab. This caused the part to overheat with just 30% of specified loading. Fortunately, the solution was simply to torque down the screw until the tab was pulled tight against the heat sink. There was a smaller gap on all the modules I purchased, each slightly different which indicates poor process control. Also, I recommend injecting a small amount of thermal paste in the gap prior to tightening the screw. This will significantly improve thermal conductivity to the heatsink. If not for these issues I would have rated this a 5 star.
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