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Nodi

Make STEM Visible and Interactive

Nodi is a hands-on STEM ecosystem that helps students explore physics, motion, coding, robotics, and engineering through real devices, digital tools, and practical challenges. Students move from abstract concepts to systems they can build, control, test, and improve.

Learn Engineering by Seeing It Work

Nodi turns complex engineering principles into visible learning experiences. Students work with motion, motion systems, sensors, coding, and robotics to understand how real engineering systems behave.

What Students Learn

From Physical Principles to Engineering Thinking

  • Electromagnetism and motion
  • Linear motion and actuators
  • Coordinate and multi-axis movement
  • Automation and control logic
  • Coding and algorithms
  • Sensors and Arduino integration
  • Robotics and navigation
  • Problem-solving and debugging
  • Engineering design and systems thinking

The Nodi Ecosystem

Four Connected Learning Systems

Stage 1

Electromagnetism & Rotation

A visual stepper motor system for exploring ratios, magnets, polarity, phase sequences, rotation, speed, and direction. Students learn how controlled movement is created through electromagnetism and programmed motor control.

Key areas

  • Magnetic fields and electromagnets
  • Rotor and stator interaction
  • Step sequences and rotation
  • Manual, programmed, and Arduino control

Stage 2

Linear Motion & Actuators

A practical system for understanding how rotational movement becomes controlled linear motion. Students explore position, speed, direction, travel distance, mechanical transformation, and actuator control.

Key areas

  • Linear movement and actuators
  • Position and travel distance
  • Direction and speed
  • Sensor-based motion control

Stage 3

Coordinated & Multi-Axis Movement

A modular system for exploring coordinated movement across one or more axes. Students learn how automated systems use coordinates, trajectories, synchronized motion, and programmed instructions.

Key areas

  • Coordinates and positioning
  • Movement and trajectories
  • Multi-axis synchronization
  • Automation and motion control

Stage 4

Programming & Robotics

A programmable educational robot for algorithmic thinking, robotics, navigation, and problem-solving. Students create instructions, test outcomes, debug errors, and complete practical missions.

Key areas

  • Sequences, loops, and conditions
  • Navigation and object interaction
  • Debugging and problem-solving
  • Robotics logic and team challenges

How Students Learn With Nodi

Observe. Connect. Code. Test. Improve.

Nodi activities follow a practical engineering cycle:

  1. Observe

    See how a physical system behaves.

  2. Connect

    Explore the scientific or engineering principle behind it.

  3. Code

    Create instructions using visual programming, logic, or blocks.

  4. Test

    Run the system, identify errors, and improve the result.

  5. Apply

    Use the concept in a challenge, project, mission, or engineering task.

Built for Classrooms

Hardware, Software, Curriculum, and Teacher Support

Nodi is designed for practical implementation in schools and learning centers.

  • Interactive engineering hardware
  • Digital control interfaces and simulation
  • Coding and Arduino activities
  • Structured lesson plans
  • Teacher guides and student activities
  • Practical experiments and project challenges
  • Implementation and demonstration support

Where Nodi Fits

Designed for a Range of Learning Environments

  • STEM classrooms
  • Physics labs
  • Robotics and coding programs
  • Engineering courses
  • Maker spaces and innovation labs
  • After-school clubs
  • School technology centers

It supports both guided lessons and project-based learning.

Why Nodi

A Connected Pathway into Engineering

Nodi helps students move from basic physical principles to more advanced engineering thinking. From motors and motion to coding, automation, and robotics, each system builds on the next.

  • Hands-on STEM learning
  • Visible physics and engineering principles
  • Real motion and control systems
  • Coding and Arduino integration
  • Robotics and algorithmic thinking
  • Curriculum and teacher support
  • Practical experiments and projects

Bring Hands-On STEM Learning to Your School

Discover how Nodi can help students explore physics, coding, robotics, motion, automation, and engineering through practical learning experiences.