Students integrate coding, electronics, robotics and connectivity into larger working systems. The course emphasizes real project architecture: sensing, decision-making, actuation, communication and troubleshooting.
Coding with a professional-style language
Students move to Arduino's C++-based programming, writing more advanced logic to control multiple systems at once.
Combining multiple sensors into one system
Students combine ultrasonic, environmental and other sensors within a single project, learning to manage multiple data inputs.
Powering and controlling real robots
Students use motor drivers and DC motors to build robots capable of independent movement and obstacle avoidance.
Adding wireless control to projects
Students integrate Bluetooth modules to control robots wirelessly from a phone or remote device.
Connecting projects to the wider world
Students explore Wi-Fi connectivity and basic IoT concepts, learning how devices can send and receive data.
Thinking like a systems engineer
Students learn systematic troubleshooting methods to debug wiring, code and connectivity issues across larger projects.
Every student takes home models they built — and understood — themselves.
A robotic car steered wirelessly from a smartphone via Bluetooth.
An upgraded autonomous robot that senses and navigates around obstacles.
A relay-controlled system that waters plants based on sensor readings.
A project that controls lights and appliances through connected switches.
A sensor-based station that displays live environmental readings on an LCD.
The controllers behind every connected project.
Enables wireless control from a phone.
Power and control robot movement.
Feed real-world data into the system.
Switch appliances and pumps on and off.
Connects projects to IoT dashboards.
Show live sensor readings and status.
Drive real-world automation outputs.
By the end of this program, students can design and troubleshoot connected, multi-component robotic systems.
Moves from individual projects to connected systems.
Adds wireless control and IoT concepts.
Builds stronger hardware and software integration.
Give your child hands-on experience in coding, robotics, AI, electronics and IoT through engaging, project-based learning.