Built by One Engineer.
Backed by a Real Manufacturing Line.
Robotix Lab is an R&D engineering practice specializing in robotics, AI perception, and custom hardware — every project designed, built, and validated in-house, from first constraint sketch to finished functional part.
Engineering Without Hand-Off Friction
Complex automation fails when mechanical, electrical, firmware, and software decisions are made in silos. At ROBOTIXLAB, each engagement is treated as one coordinated operating system rather than a relay race between disconnected vendors.
The practice combines research-grade reasoning with production discipline. Assumptions get documented, failure modes get stress-tested on real hardware, and every part meets verified physical tolerances before delivery.
Systems Thinking
Full-stack engineering solutions, designed and integrated together — not isolated components thrown over the fence.
Research-Backed
Every solution is informed by academic depth and validated by real-world physical and electrical deployment.
Practical Delivery
Working prototypes and production hardware ship — not just presentations or theoretical CAD models.
Single Accountability
Robotics, AI, electronics, and mechanical design — one accountable engineer covering the whole stack, no hand-offs.
The Hardware Laboratory & Metrology Cell
Every project is prototyped and debugged directly on the laboratory bench with calibrated digital storage oscilloscopes, logic analyzers, precision micrometers, and in-house all-metal 3D manufacturing cells.

Full-Stack Technical Capabilities
One engineering practice covering the complete stack — from embedded logic to mechanical parts.

Robotics & Autonomy
Autonomous systems, sensing, kinematics, and safety-critical integration, treated as one coordinated operating system rather than isolated modules.

Machine Learning & Vision
Computer vision, neural network deployment, and low-latency ML inference pipelines for automated defect detection and robot guidance.

Hardware & Firmware
Multi-layer PCB layout, STM32 real-time motor control firmware, and deterministic RTOS — the reliable bridge between silicon and physical motion.

CAD & Additive Manufacturing
Turning engineering concepts into tolerance-aware, testable physical prototypes and production-ready parts in 5 certified polymer families.