The Mission
Driven by curiosity and a hands-on building ethos.
Driven by curiosity and a hands-on building ethos.
Pursuing Plus One Computer Science while building robotic prototypes.
Successfully engineered and managed five stable firmware releases for an electromagnetic induction prototype, ensuring hardware–software stability.
Currently expanding expertise in C++ and ESP32 architectures while applying machine learning principles, including the architectural design of a specialized model for detecting malicious bots within web environments.
Developing stability-focused control systems using C++ for Arduino and ESP32 architectures.
Utilizing hands-on experimentation to bridge the gap between theoretical models and functional hardware.
Expanding mastery in sensor-fusion and real-time data handling for autonomous prototypes.
Implementing precise motor and actuator logic to manage movement and physical interaction in hardware systems.
Achieved more than five stable releases for a hardware project based on electromagnetic induction, maintaining a disciplined development and documentation cycle.
Open-sourced physics-based flight control logic and embedded systems code for aeronautical prototypes, focusing on stability and real-world application.
Optimized a professional portfolio that secured over 1,185% increase in active users and over 2,000% growth in views over a six-month period, monitored via Google Analytics 4.
The core firmware is currently a stable single-file system utilizing Newtonian physics to balance thrust and stability. Future updates will transition the project into a modular flight stack capable of being remotely controlled via a custom webpage.
View on GitHub →A mechatronics project utilizing electromagnetic induction and solenoid actuators. Developed over five stable GitHub releases, it emphasizes precise hardware-software timing and the transition from theoretical physics to functional mechanical firing systems.
View on GitHub →VigiLight is an Arduino-based visual alert system for people with hearing loss. It uses a PIR motion sensor to detect movement and activates flashing LEDs to signal nearby presence.
View on GitHub →Basic Arduino Projects.
View on GitHub →An Arduino toll gate that uses an ultrasonic sensor to detect cars and open/close the gate automatically; RFID could be added with more components.
View on GitHub →Have a project, idea, or feedback? Drop a message below.