Accelerometer-Controlled Stepper Motor System
Budget: $250 – $750 USD
I am aiming to implement a prototype for a 12V stepper motor control system, with the motor's movements being based on detected rotational motion from an accelerometer. The anticipated project outcomes are described as follows:
- The setup should involve an Arduino platform, which will be responsible for the control system.
- When positive X-axis rotational motion is detected by the accelerometer, the motor should move 90 degrees clockwise.
- In contrast, a negative X-axis rotational motion should prompt a 90 degrees counterclockwise rotation of the motor.
The perfect candidate for this project would have ample experience in Arduino programming and in building control systems involving physical electronic components. A solid understanding of the working principles of accelerometers and stepper motors would also be greatly beneficial.
- The setup should involve an Arduino platform, which will be responsible for the control system.
- When positive X-axis rotational motion is detected by the accelerometer, the motor should move 90 degrees clockwise.
- In contrast, a negative X-axis rotational motion should prompt a 90 degrees counterclockwise rotation of the motor.
The perfect candidate for this project would have ample experience in Arduino programming and in building control systems involving physical electronic components. A solid understanding of the working principles of accelerometers and stepper motors would also be greatly beneficial.