
Arduino Uno Q Cor Kit
Full-featured Uno Q board with sensors and step-by-step guided builds.
View kitBesomi Academy turns curiosity into capability — through kits, courses, workshops and a regional community of young makers.
Pick a kit by domain — from beginners to research-grade builds.

Full-featured Uno Q board with sensors and step-by-step guided builds.
View kit
Wave to control — gesture-driven car using IMU and microcontroller.
View kitCompetition-grade sumo robot kit with motor controller and chassis.
Industrial-grade PLC learning kit for automation and control programming.

Self-driving car platform powered by Raspberry Pi with computer vision.

Classic robotics project kit — build a line-tracking robot from scratch.
Production services for your hardware ideas.
Submit your engineering project brief.
Upload an STL — get prints in PLA, ABS or resin.
Acrylic, MDF, plywood — precise cuts on demand.
Schematic capture, layout and fabrication.
One day. Real hardware. You leave with a working robot.
Build a self-driving car with computer vision.
Wave to control — IMU + microcontroller fun.
Design a competition-grade pushing robot.
Quick-start with Arduino Uno and 10 builds.
Build a sensor-guided line-following robot from scratch.
Multi-week tracks in robotics, embedded and AI.
Control hardware and automate tasks using Python on embedded platforms.
Apply Python to build intelligent robotic systems and AI-driven applications.
Program a TurtleBot to navigate, map and interact with its environment.
Deep dive into sensors, motors and the feedback systems that drive robots.
Learn locomotion, kinematics and control for wheeled and legged robots.
Design and build a competition-ready sumo robot from concept to arena.
Build an autonomous maze-solving robot using algorithms and embedded systems.
Set up, code and build your first projects on Raspberry Pi from scratch.
Networking, GPIO control and multi-sensor projects on Raspberry Pi.
Advanced Pi: real-time OS, camera pipelines and complex integrations.
Build smart home and IoT systems powered by Raspberry Pi.
Image recognition and real-time CV on Pi using OpenCV and Python.
Train and deploy machine learning models directly on Raspberry Pi hardware.
Connect sensors and devices to the cloud using Raspberry Pi and IoT protocols.
Run deep learning models at the edge using NVIDIA Jetson hardware.
Full pipeline from sensors to decision-making for a miniature autonomous vehicle.
Start coding microcontrollers — LEDs, sensors and your first Arduino projects.
Build multi-sensor robots, motor drivers and servo systems with Arduino.
Connect your projects to the internet using ESP32 and Wi-Fi.
Master I2C, SPI and UART — protocols used in every embedded system.
Go from schematic to manufactured PCB — the complete hardware pipeline.
LoRa, MQTT, Bluetooth and cellular — pick the right protocol for your device.
Timers, interrupts and RTOS fundamentals for reliable embedded firmware.
Image processing, edge detection and object recognition with OpenCV and Python.
Real-time object detection using YOLO models and OpenCV pipelines.
Train classifiers and regression models on real datasets — hands-on ML.
Nodes, topics, services and actions — the building blocks of every ROS2 system.
Test robots in Gazebo and visualise data with RViz before real deployment.
Move from simulation to hardware — deploy ROS2 on real robotic platforms.
Map unknown environments and navigate them autonomously using ROS2 SLAM.
SDK setup, basic motion and first steps with Unitree hardware.
Motor control, state machines and custom gaits with the Unitree SDK.
Connect Unitree robots to ROS2 for navigation, sensing and autonomous tasks.
Add cameras and computer vision to Unitree robots for perception-driven tasks.
Build voice-commanded robots using Unitree's voice interaction stack.
Program Unitree robots to navigate complex environments autonomously.
Program PLCs and design HMI panels for industrial automation systems.
Extend automation skills with SCADA integration and advanced ladder logic.
Year-round programs that bring robotics into every classroom.
Play-based intro to robots, sensors and storytelling.
Block coding, simple circuits and team challenges.
Real engineering: Python, CAD, electronics, AI.
High-performance track for competition-level students and accelerated learners.
Where ideas become prototypes — and prototypes become products.
Full-stack hardware lab: CAD, 3D printing, CNC, electronics assembly. Linked to our R&D facility.
Custom lab equipment, didactic kits and experiment sets — designed and built for educators.
Tutorials and project files for every Besomi kit.
Join community sessions hosted across MENA.
Work alongside our engineers on real builds.
Post about Besomi and unlock community rewards.
Take a short test and we'll recommend the perfect course for you.
The region's flagship student robotics competition. Five categories, hundreds of teams, one champion.