Mechatronics Engineering student @ IEST Anáhuac · I build flight computers, analyze what they record, and write down the physics.
- Atl-1.1: building 3 identical flight computers with parachute recovery for a controlled, triplicate water-rocket campaign (Dec 2026) with researchers at IPN's Centro de Desarrollo Aeroespacial.
- AMASA: operational-intelligence SaaS for the bakery and food industry → getamasa.com
| Project | What it is |
|---|---|
| Atl-I Flight Computer | ESP32 avionics (IMU + barometer), 7-state flight logic, 10 Hz logging. Flew 7 instrumented launches (peak 6.3 g, burnout up to 23.7 m/s). Its data exposed three barometer failure modes, now part of an IPN study. |
| Atl-I Ground Station | React + Vite dashboard: live WebSocket telemetry, 3D attitude, flight-phase tracking. |
| Energy Transport in Conductors | Technical note: why energy travels in the fields around a wire (Poynting vector), and what that means for EMI in avionics wiring. |
| MirrorLink | Smart mirror with MediaPipe gesture/face control and a React Native companion app. |
- Hardware: PCB/schematic design (EasyEDA), soldering, power design (boost converters, decoupling), I2C sensor integration
- Design & fab: SolidWorks, Onshape, OpenRocket, 3D printing (Bambu Lab P2S)
- Data: pandas, SciPy, matplotlib · computer vision (YOLO, MediaPipe)
- Infra: Linux, Proxmox VE home lab (VLANs, NAS, Pi-hole), Git
"Ad Astra per Aspera"

