Brand: ROKR (ROBOTIME)

Product: Mars Outpost 

Model: MR05S

Pieces: 194

Material: ABS, PC, Metal

Assembly Time: Approx. 2 hours

Difficulty Level: ★★★

Assembled Size: 18 x 7.7 x 23.1 cm

Video: Click here to see more details

Delivery: Free UK shipping


Travel to the Red Planet with the ROKR Mars Outpost Marble Run Mechanical 3D Puzzle (MR05S), an immersive DIY model that combines futuristic design with dynamic mechanical movement. Inspired by a Martian frontier base, this miniature outpost features winding orbital rails, a funnel helipad, enclosed terminal, tunnel corridor and relay station, creating an exciting journey for every marble. The electric lift continuously carries marbles back to the top, while sound-reactive lighting adds a dramatic rhythm to the scene. With its red-orange structures, detailed surface finishes and modular design, the Mars Outpost makes a striking display and an engaging building experience for sci-fi and mechanical puzzle enthusiasts.

Futuristic Mars Outpost – Build a detailed Martian base with red-orange structures, futuristic architecture and an atmospheric sci-fi-inspired landscape.

Dynamic Marble Run – Watch marbles travel through winding paths, tunnels, drops and orbital rails before completing their journey through the outpost.

Electric Marble Lift – The motorised lift automatically carries marbles upward, creating continuous movement for an engaging mechanical display.

Sound-Reactive Lighting – Integrated lighting responds to surrounding sounds, adding flashing blue and yellow illumination that brings the Mars Outpost to life.

Modular & Display-Ready – Built with connected modules and intricate details, the finished model can stand alone or combine with other Parallel World series models to create a larger futuristic scene.


📌 Children under 14 should assemble this with adult supervision. This kit does not include wax, paint, or batteries. Candles can be used as an alternative if preferred. We support eco-friendly practices by using recyclable or repurposed packaging materials and reducing packaging whenever possible to minimize environmental impact. 📌