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The transmitter of the car contains gyroscopic sensors which track our hand's gestures and transmit the signal to the receiver of the car and then the car works accordingly to it.
Read the full arduino project tutorial: Follow TutorialIn this project, the robotic arm will execute actions corresponding to the commands received from the sensors.
Read the full arduino project tutorial: See Project DetailsThis Obstacle Avoiding Car project leverages advanced sensing and mobility to create an autonomous robot capable of navigating complex environments. The core of this smart car is an Arduino Uno microcontroller, which processes sensor data and controls vehicle movement.
Read the full arduino project tutorial: See Project DetailsIn this project, we will use an Ultrasonic Sensor to measure distances. Based on the detected distance, the car will take appropriate actions.
Read the full arduino project tutorial: Follow TutorialThis human following will be having a ultrasonic sensor which will work as a medium of tracking the object that comes in front of it.
Read the full arduino project tutorial: Follow TutorialWhen you CALP Once the car will go Forward, When you CALP Thrice the car will go Left, When you CALP for the Fourth Time the car will go Right.
Read the full arduino project tutorial: Follow TutorialThis car uses a very working principle that is as follows: ~ When the car reaches the end of the table i.e. the edge of the table the ultrasonic sensor detects its depth of it and it makes the car go back.
Read the full arduino project tutorial: Follow TutorialThe project makes use of an IR receiver to receive the signal from our TV remote and then, as per the command received from the remote, the car performs the task.
Read the full arduino project tutorial: Follow Tutorial