1st Place McMaster Advanced SumoBot
Achieved 1st place in designing a robot that autonomously pushes opponents out of the ring.
Achieved 1st place in designing a robot that autonomously pushes opponents out of the ring.


2026
Competitor
Solidworks
3D Modelling
Assembly
Arduino IDE
Motor Control
Electrical wiring
Sensory Integration
Design for Additive Manufacturing (DFAM) / 3D printing
Systems Engineering
Cross functional collaboration
Engineering analysis
Used Arduino Uno to wire, code, and develop different attack algorithms for a robot under strict constraints.
Used Solidworks to design the 3D printed enclosure for the bot.
Optimized the bot to be as close to the desired specifications such as weight (2900g/3000g) and size (19cm/20cm) to maximize the effectiveness. Ensured all the weight was close to the wheels and front for better tire grip.





Achieved 1st place in designing a robot that autonomously pushes opponents out of the ring.


2026
Competitor
Solidworks
3D Modelling
Assembly
Arduino IDE
Motor Control
Electrical wiring
Sensory Integration
Design for Additive Manufacturing (DFAM) / 3D printing
Systems Engineering
Cross functional collaboration
Engineering analysis
Used Arduino Uno to wire, code, and develop different attack algorithms for a robot under strict constraints.
Used Solidworks to design the 3D printed enclosure for the bot.
Optimized the bot to be as close to the desired specifications such as weight (2900g/3000g) and size (19cm/20cm) to maximize the effectiveness. Ensured all the weight was close to the wheels and front for better tire grip.





Achieved 1st place in designing a robot that autonomously pushes opponents out of the ring.


2026
Competitor
Solidworks
3D Modelling
Assembly
Arduino IDE
Motor Control
Electrical wiring
Sensory Integration
Design for Additive Manufacturing (DFAM) / 3D printing
Systems Engineering
Cross functional collaboration
Engineering analysis
Used Arduino Uno to wire, code, and develop different attack algorithms for a robot under strict constraints.
Used Solidworks to design the 3D printed enclosure for the bot.
Optimized the bot to be as close to the desired specifications such as weight (2900g/3000g) and size (19cm/20cm) to maximize the effectiveness. Ensured all the weight was close to the wheels and front for better tire grip.




