Robotime Rokr Marble Run Cyberpunk Gift 3D Puzzle Model Gaming Decoration Automatic DIY Home Decor for Men
π ROKR Cyberpunk 3D Wooden Marble Run Model Kit
Bring futuristic mechanical art to life with the ROKR Cyberpunk Marble Run 3D Wooden Puzzle. Combining precision mechanical engineering with a striking sci-fi industrial aesthetic, this automated DIY kit offers an engaging build experience and serves as a standout piece for gaming setups, home offices, and men's decor.
π Key Features
-
Futuristic Cyberpunk Design: Features intricate architectural details, multi-level elevated tracks, spiral drops, and industrial pipework that create an immersive sci-fi atmosphere.
-
Automated Cyclical Motion: Powered by an electric drive/lift system, steel marbles continuously cycle through the track layout for endless kinetic motion.
-
Dynamic Lighting Effects: Integrated LED lighting features transform the cityscape between active display and night-time lighting modes.
-
Precision Laser-Cut Craftsmanship: High-grade wooden sheets pre-cut within sub-millimeter tolerances ensure smooth assembly without needing glue.
-
The Ultimate Desk & Gaming Setup Decor: Adds a sophisticated, mechanical flair to any workspace, shelf, or gaming room.
π Technical Specifications
| Feature | Specification |
| Brand / Line | ROKR by Robotime (Parallel World Series) |
| Theme | Cyberpunk / Sci-Fi Industrial |
| Material | Eco-friendly Laser-Cut Plywood, Steel Balls, Electronic Components |
| Drive Mechanism | Electric Motor / USB / Type-C Power Link |
| Recommended Age | 14+ |
| Assembly Difficulty | β β β ββ (Moderate / Intermediate) |
| Assembly Time | Approx. 1.5 β 3 Hours |
π¦ Whatβs Included
-
Pre-cut Wooden Puzzle Sheets
-
Electric Marble Lift Module & Drive System
-
Track Components & Steel Marbles
-
Integrated LED Strip / Circuit Module
-
Sandpaper & Basic Tool Set
-
Illustrated English Assembly Manual
Note: Requires a standard USB/Type-C power supply for lighting and motor functions. Wax/lubricant for gears recommended during assembly for optimal smoothness.