A fast, agile wireless robot built for robot-soccer matches — designed to push, dribble, and score.

Dual-motor soccer bot chassis & dribbler mechanism
Built for inter-college robo-soccer competitions, this bot pairs a low, aggressive chassis with high-torque geared motors and responsive wireless control.
Balancing speed against control meant iterating on wheel choice, weight distribution, and motor gearing.
Competed in campus robo-soccer events and held its own against heavier, more expensive builds.

Dual-motor soccer bot chassis & dribbler mechanism
Legged RoboticsA hexapod-style walking robot with articulated legs that crawls, turns, and adapts its gait over uneven ground.
Why we built this
We built this with low-cost 3D-printed parts and affordable servos so local schools could replicate multi-legged robotics without expensive machinery.
Free technical report & Drive guide available
Aerial RoboticsA hand-built fixed-wing RC aircraft designed, balanced, and flown by the team.
Why we built this
Aeromodelling kits are expensive; we used foam board and locally sourced motors so flight becomes accessible to every curious student.
Free technical report & Drive guide available
ElectronicsA slayer-exciter Tesla coil that produces visible high-voltage arcs and wirelessly lights bulbs.
Why we built this
High-voltage demos inspire curiosity; we designed ours with safety cut-offs so we can bring electromagnetism to any classroom.
Free technical report & Drive guide available