A rotating POV (Persistence of Vision) display built with ESP32 and APA102 LED strips, supporting image animations from flash or UDP streaming.
-
Updated
Apr 13, 2026 - C
A rotating POV (Persistence of Vision) display built with ESP32 and APA102 LED strips, supporting image animations from flash or UDP streaming.
Non-Motion MCU for Raspberry Pi Pico & Pico 2 with Klipper firmware.
A decentralized, Wi-Fi-based metro gate system using ESP32 that enables secure local ticket validation via QR codes and RFID cards without relying on the internet.
A gesture-controlled smart glove system using flex sensors, Arduino, and 8051 microcontroller for real-time hand gesture detection. The system classifies gestures like Hello, Okay, and Peace using sensor data and wireless UART communication.
Embedded parking assistant using LPC1768 and ultrasonic sensing. Real-time distance alerts with LEDs, buzzer, and LCD. Includes password and traffic simulation features
Learn register-level AVR C on the ATmega328P without the Arduino framework, covering GPIO, UART, timers, interrupts, PWM, ADC, SPI, and I2C.
This project demonstrates a Digital Stopwatch using the LPC2148 ARM7 Microcontroller. It uses a 4x4 keypad for start/stop/reset operations and displays elapsed time on a 16x2 LCD. It’s ideal for learning ARM timers, interrupt handling, and embedded application design
🚗 ESP32-based smart car with PWM speed control, Bluetooth command input, and ultrasonic obstacle detection. Built for learning and experimentation in embedded systems and robotics
Smart, low-power sensor hub for STM32F446RE with modular sensor APIs, dynamic power-mode sampling, cooperative scheduler, UART CLI, and full documentation.
Battery-powered Raspberry Pi Pico USB host that reinstalls Cesium/arTIfiCE and reloads games onto a TI-84 Plus CE at the press of a button — speaks TI's DUSB link protocol directly, no computer required.
An Arduino-based Smart Waste Management System using Ultrasonic and Force Sensors.
user configurable medicine reminder system using lpc2148 with rtc, lcd, keypad and buzzer alerts
Ce projet a pour objectif de développer un robot autonome basé sur un microcontrôleur STM32, chargé de la gestion de son comportement et de l’interaction avec les différents composants du système. L’architecture logicielle s’appuiera sur les principes d’un noyau temps réel (RTOS) afin de garantir une gestion déterministe des tâches
Add a description, image, and links to the microcontroller-project topic page so that developers can more easily learn about it.
To associate your repository with the microcontroller-project topic, visit your repo's landing page and select "manage topics."