A test project following master zen's "How to make a keyboard from scratch" to make a gmmk pro 75% layout style keybord using KiCad and FreeCad.
Fifth semester final project github for Farm Bureau flooding diorama. Contributors: Chris Zakrevski, Noah Holloway, and Jacob Horsley.
Automatisierte Steuerung diverser Gerätschaften, um im Terrarium möglichst das gewünschte Klima zu erreichen
This is a Raspberry Pi HAT for RS485 communication with external devices and it should fit into any Raspberry Pi like Zero/Zero2W/3/4
This is a Raspberry Pi HAT for RS485 communication with external devices and it should fit into any Raspberry Pi like Zero/Zero2W/3/4
This is a Raspberry Pi HAT for RS485 communication with external devices and it should fit into any Raspberry Pi like Zero/Zero2W/3/4
This is a Raspberry Pi HAT for RS485 communication with external devices and it should fit into any Raspberry Pi like Zero/Zero2W/3/4
This is a Raspberry Pi HAT for RS485 communication with external devices and it should fit into any Raspberry Pi like Zero/Zero2W/3/4
This is a Raspberry Pi HAT for RS485 communication with external devices and it should fit into any Raspberry Pi like Zero/Zero2W/3/4
PSM Major Project: A modular smart parking system combining AI (ANPR/OCR), real-time control (Zephyr/STM32), and FPGA-based motor management (LiteX RISC-V SoC), all coordinated via MQTT for seamless access control and monitoring.
PSM Major Project: A modular smart parking system combining AI (ANPR/OCR), real-time control (Zephyr/STM32), and FPGA-based motor management (LiteX RISC-V SoC), all coordinated via MQTT for seamless access control and monitoring.
PSM Major Project: A modular smart parking system combining AI (ANPR/OCR), real-time control (Zephyr/STM32), and FPGA-based motor management (LiteX RISC-V SoC), all coordinated via MQTT for seamless access control and monitoring.
PSM Major Project: A modular smart parking system combining AI (ANPR/OCR), real-time control (Zephyr/STM32), and FPGA-based motor management (LiteX RISC-V SoC), all coordinated via MQTT for seamless access control and monitoring.
Secondary home of the Open-Source Modular Infusion (OSMI) anesthesia pump. Credit of initial progress to Mitchell Boucher, Tyler Koopman, and Jimmy Zhang. This repository builds off their original design.