Advanced Robot Builders

LEVEL: INTERMEDIATE-ADVANCED (AGES 12–17)

Advanced Robot Builders

Engineering the Next Generation of Robots

Welcome to the Advanced Robot Builders Bootcamp, where learners take their robotics knowledge to the next level.

This programme focuses on building more complex robotic systems, integrating multiple motors, advanced sensors, and structured engineering design principles. Learners will work on sophisticated builds such as robotic arms and competition-ready robots.

This bootcamp is ideal for learners ready to transition from beginner robotics into advanced engineering thinking and innovation.

COURSE OVERVIEW

The Advanced Robot Builders Bootcamp is designed for learners who already have a basic understanding of robotics and want to advance into complex robot design, intelligent systems, and real-world engineering challenges.

Learners will design, build, and program multi-functional robots using sensors, logic, and advanced coding techniques, preparing them for high-level robotics competitions and engineering pathways.
By the end of the course, learners will build advanced robotic systems, integrate multiple sensors and automation logic, and develop semi-autonomous robots. They will also apply real engineering design principles and present a high-level robotics solution.

LEARNING OBJECTIVES

What Students Will Learn

We advance robotics, engineering, and automation skills while strengthening innovation, system design, and complex problem-solving abilities.

1. Fundamentals

Understand advanced robotics systems and system thinking.

2. Real world Skills

Apply the engineering design process to solve complex problems.

3. Problem Solving

Improve mechanical design, electronics, and system integration.

4. Logical Thinking

Develop advanced coding and multi-sensor automation logic.

5. Build Projects

Build, optimize, and create semi-autonomous robotic systems.t.

ACTIVITIES

Hands-On & Engaging Activities

Interactive activities that make learning fun, practical, and meaningful.

1. Robotics Challenge

Analyze real robot systems and define a project challenge.

2. Idea Generation

Design and improve robot structure, movement, and circuits.

3. Tech Problem Hunt

Program advanced robot behaviors using sensors and control logic.

4. Interactive Program

Build and integrate a complete advanced robotic system.

5. Testing

Test, debug, and optimize the robot for performance and challenges.

MODULE STRUCTURE (10 SESSIONS)

Learning Content:

  • Review of robotics fundamentals
  • Introduction to complex systems
  • Subsystems:
    • Mechanical
    • Electrical
    • Software
  • Introduction to Mechatronics

Learning Content:

  • Gear ratios and torque
  • Structural strength and balance
  • Efficient movement systems

Learning Content:

  • Gear ratios and torque
  • Structural strength and balance
  • Efficient movement systems

Learning Content:

  • Multi-component circuits
  • Power management
  • Sensor integration

Learning Content:

  • Variables and control logic
  • Multi-condition programming
  • Structured coding for robotics

Learning Content:

  • Combining inputs:
    • Distance + light
    • Touch + motion
  • Decision-making systems
  • Introduction to autonomous behavior

Learning Content:

  • What is autonomy?
  • Basic AI concepts in robotics
  • Decision trees

Learning Content:

  • System integration:
    • Mechanics
    • Electronics
    • Code
    • Project development

Learning Content:

  • Debugging complex systems
  • Performance optimization
  • Preparing for final challenge

Assessment Type:

Practical + Challenge + Presentation

Task:

Learners must:

  • Present their advanced robot
  • Demonstrate performance in a challenge scenario
  • Explain:
    • The engineering design
    • Coding logic
    • System integration

Challenge Examples:

  • Obstacle navigation
  • Object transport
  • Multi-task automation

Assessment Criteria:

  • Engineering complexity
  • Functionality & performance
  • Innovation
  • Coding depth
  • Presentation quality

🎓 Outcomes & Certification

Learners will receive:

  • Advanced Robot Builders Bootcamp Certificate

Progression pathways:

  • Competitive Robotics (STEMLab Robo Challenge)
  • Mechatronics Engineering
  • AI & Automation
  • Advanced Coding & Engineering Programs

SKILLS DEVELOPED:

CRITICAL THINKING

ENGINEERING CREATIVITY

PROBLEM SOLVING

TECHNOLOGY CURIOSITY

DURATION:
10 sessions | 90 minutes each
Campus:
Claremont / tygervalley
Classes:
CONTACT / online

Enquire About This Bootcamp

Interested in this bootcamp? Send us an enquiry and our team will assist you.


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