I am a self-driven engineering student with a strong foundation in embedded systems, avionics, and data-driven applications. In high school, I independently developed a PID-based thrust vector control (TVC) system using a microcontroller and IMU. With no formal training, I self-taught control theory and successfully implemented real-time attitude correction using custom C++ code and low-cost hardware-achieving precise control with minimal resources. More recently, I served as avionics lead in a national university rocketry competition. I implemented realtime data logging, sensor fusion, and a ground control interface. The system enabled post-flight analysis and improved launch reliability while remaining compact and budget-friendly. With strong self-learning ability, hands-on experience, and a creative mindset, I aim to contribute to innovative teams that value systems thinking, data-driven solutions, and smart manufacturing.