Computer Engineer | Avionics, Smartphones, HPC & Interdisciplinary Problem Solving
🎓 Computer Engineering student at the University of São Paulo (USP)
✈️ Technical Degree in Avionics Maintenance from IFSP
🌍 Former Exchange Student at Hof University of Applied Sciences (Germany 🇩🇪)
🏆 USP is consistently ranked as the #1 University in Latin America
Through a multidisciplinary background — starting with a technical degree in Avionics Maintenance (IFSP) and evolving into Computer Engineering at USP (EESC/ICMC) — I have cultivated a deep understanding of how things work from the silicon up to the cloud. My expertise spans across Software and Hardware, Control Systems, Operating Systems, and Computer Organization.
- Professional Experience: Smartphone development and camera frameworks (Motorola Camera Framework Internship).
- Core Specialization: Bridging the gap between low-level hardware control, high-performance computing, and modern software architectures.
- Practical Foundation: PCB design, electronics maintenance, and end-to-end software engineering.
At the core of why I chose Computer Engineering is a relentless curiosity: a deep drive to understand how complex systems truly work from the inside out (from physical silicon up to the cloud) and a passion for solving the technical challenges surrounding them.
I am motivated by the act of creation: dissecting how things function, bridging hardware and software, and transforming raw ideas into robust, real-world solutions.
- Domains: Avionics Maintenance & Systems, Smartphone Development, Software Engineering, Hardware/Software Integration, PCB Design, Electronics Production, OS Architecture
- Languages: C/C++, Python, SQL, Bash
- HPC & Embedded: OpenMP, Pthreads, RTOS (Mbed OS), ESP32, EtherCAT, PID Control
- Architecture & Cloud: Hexagonal Architecture (SDD), Docker, Kubernetes, State Machines
- AI & Computer Vision: Agentic AI Orchestration, PyTorch, OpenCV, ResNet50, YOLOv8
Here are the top technical challenges I've solved recently, demonstrating my ability to navigate between cloud architectures, real-time control, hardware interfaces, and artificial intelligence.
Autonomous webhook platform to track cart and order lifecycles.
- Tech Stack: Python, PostgreSQL, Hexagonal Architecture (SDD), Flask, Sentry, SMTP.
- Architecture: Implements dual State Machines (STG/STC) to process asynchronous e-commerce events.
- Impact: Eliminated race conditions in highly concurrent environments using database transactional locks (
FOR UPDATE). Highly optimized to consume minimal memory, reducing cloud hosting costs to zero. Includes global telemetry for failure tracking.
Real-time control software for industrial automation.
- Tech Stack: C++, Qt Framework (QThread), SOEM (Simple Open EtherCAT Master).
- Architecture: Robust multithreaded application.
- Impact: Orchestrates physical servomotors via the EtherCAT protocol with rigorous and deterministic 4ms cycles. Successfully decoupled the critical real-time control loop from the Graphical User Interface to prevent UI freezing and ensure physical safety.
Scientific research that transformed a microcontroller into a standalone semiconductor parameter analyzer.
- Tech Stack: C++, ESP32, LittleFS, REST API, Synchronized DAC/ADC.
- Architecture: Embedded Web Server with a local filesystem.
- Impact: Accurately plots characteristic MOSFET curves. The ESP32 acts as an embedded web server, serving a dynamic graphical dashboard directly from its internal memory to the client browser without external cloud dependencies. (Presented at Chip in Sampa).
Scientific research bridging Electronics, Fluid Dynamics, and AI.
- Tech Stack: Python, Artificial Neural Networks (MLP), Data Engineering.
- Impact: Successfully replaced fragile physical polynomial equations (King's Law) with an AI capable of mapping the cooling of heated filaments directly into 3D wind velocities. Achieved an extremely high precision of 0.065 RMSE, proving resilience to environmental variations in wind tunnels. (Published at the 32nd SIICUSP Symposium).
I'm always open to discussing new opportunities, interdisciplinary engineering challenges, or exchanging ideas about systems architecture. Feel free to reach out on LinkedIn!


