Who we are · Cyprus
One partner for the whole STEM journey.
ROBO Educational & Research Robotics Ltd designs hardware, develops software, creates teaching materials, and trains and supports educators.
From the first block program to advanced robotics, our connected pathway lets students build on the same hardware and skills as they grow.
An official collaborator of the Ministry of Education, with industry recognition through SEMICON · 20 Under 30.
Hardware & software
Electronics, coding and robotics in one connected ecosystem.
Curriculum & training
Structured missions, practical builds and engineering labs, backed by hands-on educator training.
Support that continues
Technical help, AI STEM Buddy, and ongoing content and firmware updates.
Five levels of education
A connected progression.
From electronics foundations to advanced control. Levels 1–4 offer an indicative 60–79 teaching hours, with an optional university extension.
Foundations
Thirty missions with Kypruino UNO+ and Studio introduce inputs, outputs, logic and state machines. Students start in blocks and see generated Arduino C++ alongside their program.
30 missionsBlocks → C++Applied STEM builds
Build, wire and program eight practical projects exploring motion, light, sound, RFID and environmental sensors. Each includes challenges, a bilingual teaching pack, open code and a 3D-printable enclosure.
8 real-world buildsHands-on electronicsRobotics in blocks
Ten Mission Red Planet missions bring RoboRover Core V3 to life, progressing from movement and sensing to closed-loop control, obstacle avoidance, line following and autonomous behaviour.
10 rover missionsSense · think · actRobotics in C++
Eleven engineering labs use Arduino IDE 2.x or PlatformIO with the RoboRoverCore3 library. Annotated sketches and Lab Explorer connect code to hardware and engineering concepts.
11 engineering labsText-based programmingAdvanced robotics and control
Explore PID tuning, odometry, custom controllers, trajectory tracking and networked telemetry. Advanced lab modules are scoped with each institution using the platform’s existing control features.
Closed-loop controlInstitution-scoped labsTeaching hours are indicative. Adjust the pace and depth to your students and teaching approach.
Three major platforms
One ecosystem. Room to grow.
The controller, programming workspace and robot work together across the learning pathway.
Kypruino
An Arduino UNO-compatible controller with onboard buttons, RGB LEDs, buzzer and analog output, ready for the first experiment and reusable for robotics.
USB-CArduino-compatibleROBO-HDIOKypruino Studio
Browser-based block programming with generated Arduino C++ alongside it. Built-in instruments include an oscilloscope and signal generator.
English & GreekNo student accountsRoboRover
RoboRover Core V3 combines motors, wheel encoders and sensors for movement, obstacle detection, light seeking and line following. Dedicated motion and sensing coprocessors keep student code readable.
Closed-loop motionMulti-sensor learningMaterials beyond hardware
Everything around the lesson.
Resources, apps and practical training help educators prepare, teach and assess each level.
Teaching packs
Lesson plans, learning objectives, differentiation, assessment rubrics and safety notes for STEM builds.
Books & teacher guides
The Kypruino book in Greek and English, plus rover kit lists, arena setup, pacing and mission notes.
Training & support
Hands-on training from the engineers who built the platform, followed by technical help and content and firmware updates.
Our apps
Kypruino Studio
Build programs, explore live signals and learn through interactive coding missions.
Open StudioLab Explorer
Explore an interactive 3D rover with component hotspots and eleven engineering lessons with source code.
Open Lab ExplorerAI STEM Buddy
24/7 learning support with knowledge of the Kypruino book, Ministry D&T textbook for Lyceum B, Quest Map and ATmega328P datasheet.
Open AI STEM BuddyPlanning and implementation
From one class to a full rollout.
Start with one class and one level, then map the pathway to your institution’s year groups.
Pilot
One class, one level. Kits, Studio access and teaching materials.
Train
Hands-on educator training, teacher notes and assessment resources.
Roll out
Levels mapped to year groups, with hardware supplied for each stage.
Support
Technical help, AI STEM Buddy, and content and firmware updates.
What does a school need?
A PC or laptop with Chrome or Edge and a USB port, kits shared by pairs of students, and floor space for the rover arena. A 3D printer is optional for STEM build enclosures.
Talk to our team about your students, year groups and teaching timetable.
Scope a school pilot