Robotic Ben 10 Watch Prototype -- 2
Budget: $1,500 – $3,000 USD
I want to turn the on-screen Omnitrix into a real, wrist-sized device that does more than flash LEDs. My top priority is the robotic functionality: a single press should trigger an automated sequence—lights, sounds, and an interactive display—without bulky external controls.
Scope of work
• Engineer a compact internal layout that fits motors, micro-controller, speaker, battery, and display into a true watch form factor.
• Recreate the exact shape, color accents, and button layout seen in the show while hiding all hardware.
• Program the firmware so one manual command starts a self-running animation cycle with synchronized lighting effects, sound cues, and on-dial graphics.
• Produce a working prototype I can strap on my wrist, plus schematics, code, and a parts list so I can iterate later.
Key challenges you’ll tackle
– Minimizing footprint without sacrificing performance.
– Ensuring smooth hinge/lift or rotation for the display module.
– Power management for bright LEDs, speaker, and small screen in a limited battery cavity.
Ideal skills
Embedded robotics, compact PCB design, micro-servo mechanics, 3D modeling, and a feel for prop accuracy.
If you love fusing cosplay accuracy with real engineering, let’s build the most authentic Ben 10 watch ever worn.
Scope of work
• Engineer a compact internal layout that fits motors, micro-controller, speaker, battery, and display into a true watch form factor.
• Recreate the exact shape, color accents, and button layout seen in the show while hiding all hardware.
• Program the firmware so one manual command starts a self-running animation cycle with synchronized lighting effects, sound cues, and on-dial graphics.
• Produce a working prototype I can strap on my wrist, plus schematics, code, and a parts list so I can iterate later.
Key challenges you’ll tackle
– Minimizing footprint without sacrificing performance.
– Ensuring smooth hinge/lift or rotation for the display module.
– Power management for bright LEDs, speaker, and small screen in a limited battery cavity.
Ideal skills
Embedded robotics, compact PCB design, micro-servo mechanics, 3D modeling, and a feel for prop accuracy.
If you love fusing cosplay accuracy with real engineering, let’s build the most authentic Ben 10 watch ever worn.
Related categories:
Electronics
Microcontroller
Mechanical Engineering
Product Design
Robotics
Arduino
Embedded Systems
Prototyping