Courses

Explore our diverse range of robotics courses designed to inspire creativity and foster critical thinking in students of all ages.

Begin Your Robotics Adventure

Our courses offer a unique blend of theoretical knowledge and practical application, perfect for nurturing young innovators and thinkers. Engage with complex problems and collaborate on solutions that could shape the future of technology.

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We collaborate with local communities, volunteers, and donors to achieve our goal of making a meaningful impact on people's lives. Our non-profit organization strives to make a positive difference in society by supporting those in need.

Proofing our impact

We are committed to transparency and accountability which is why we regularly share our impact reports with our donors. Our non-profit organization's work is evidence-based, and we consistently strive to improve our impact through innovative solutions.

VEX IQ Introduction

August, 2025

This 14-week course is designed for students aged 7-11 with no prior experience in robotics or coding. It will introduce the fundamentals of using VEX IQ motors, gears, sensors, and programming to create functional robots. Each lesson focuses on building and programming different robotic mechanisms or modules, such as claws, arms, lifts, shooting mechanisms, and intake systems, while guiding students through specific tasks step by step. Students will work in pairs to encourage collaboration, communication, and the development of essential problem-solving skills. The course will cover key concepts such as motor control, the use of Touch LED and Optical distance sensors, and basic coding. By the end of the course, students will have gained hands-on experience in building, programming, and troubleshooting robots, while learning core principles of robotics and coding.

VEX IQ Advanced Robotics

August, 2025

This VEX IQ advanced robotics course is designed for students who have completed the fundamental level and are ready to explore more complex building mechanisms and coding skills. This course prepares students for competitive robotics events and provides the foundational skills needed for further study in robotics, engineering, and computer science. In this course, students will learn more advanced mechanisms such as linear motions, cams, pneumatics, rachets and differential gears. They also learn competition rules, engineering documentation and more advanced programming skills. At the end of this course students will use the knowledge they learned to build different robots which can perform two or three tasks.

VEX V5 Introduction

August, 2025

The VEX V5 Introduction course is designed for students aged 12 and up, offering a hands-on learning experience in robotics, engineering, and programming. Students will explore key mechanical principles such as gear ratios, torque, and speed, and apply them to robot design. They will build a VEX robot using durable metal parts, gaining practical skills in assembly and customization. This course also introduces programming with C++, enabling students to control robotic systems and create complex behaviors. Additionally, students will learn to integrate sensors like optical, distance, and vision sensors to enhance robot interactions with the environment. Throughout the course, students will develop problem-solving, critical thinking, and teamwork skills while learning the importance of iteration and creative solutions.

VEX V5 advanced robotics

August, 2025

The VEX V5 Advanced Robotics Course is designed to equip students with the skills and knowledge necessary to join competitive robotics teams. It covers advanced robotics concepts, including the use of sensors, actuators, and mechanisms, and teaches C++ programming with VEXcode V5. Students gain hands-on experience building and refining robots while learning design principles like efficiency and stability. The course emphasizes teamwork, strategy development, and problem-solving under competition conditions, preparing students to navigate VEX Robotics competition rules and develop optimized strategies. By the end of the course, students will have built a previous season’s competition robot, fostering critical thinking, adaptability, and collaboration, ensuring they are ready to excel in robotics competitions.

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