Microcontrollers
ESP32 firmware, sensing, communication and the low-level logic that makes a prototype responsive.
Building the code, circuits and systems behind intelligent physical experiences.

__==--__
_--'' ______ ''--_
_--' / ____ /\ '--_
.-' || [] || | '-.
_/ ___ ||____||/ ___ \_
/ _/ \___/ || \___/ \_ \
| / / ______||______ \ \ |
|====| | / __ || __ \ | |=====|
| \___/ | | | || | | | \___/ |
\ _|__|__|_||_|__|__|_ /
'-._ / __/ \__ \ _.-'
'--/______/ \______\--''
[ ROBOTIC ARM // 01 ]
I like the moment code becomes physical. My work sits between embedded systems, AI and robotics — translating ideas into prototypes that can sense, decide and act.

ESP32 firmware, sensing, communication and the low-level logic that makes a prototype responsive.
Computer vision and AI workflows that help a system interpret its environment before it acts.
Joining mechanics, electronics and software into clear, testable robotic experiences.
A growing collection of robotics, technical experiments and digital systems — made to be tested in the real world, not just kept on a screen.
A concept space for AI automation, intelligent digital experiences and future-facing systems.
const studio = new PhoenixLab(); studio.build(ai, automation, web);

A real hardware build that brings sensors, code and mechanical movement together in one experimental system.
function prototype() {
test(); iterate(); return build;
}
Exploring the machines and workflows that turn robotics into useful, repeatable real-world systems.
if (idea.ready) {
show(idea);
}
Breadboard system
Lab workbench
OLED interface
Robot arm test
Sensor rig