Realistic Sci-Fi Medical Bay 3D Model Low-poly 3D model
Home Catalog Realistic Sci-Fi Medical Bay 3D Model Low-poly 3D model

Publication date: 2026-05-09

Buy Realistic Sci-Fi Medical Bay 3D Model Low-poly 3D model

$4.99

License: Royalty Free

Rigged PBR Realtime Animated Free
author:

Bolt-3D-Studio

Renders and source materials belong to the author Bolt-3D-Studio.
Specifications
Platform
cgtrader
Animated
Rigged
3D Print ready
VR / AR / Low-poly
PBR
Textures
Materials
UV Mapping
Polygons
0
Vertices
0
Geometry
No N-gons | No faceted geometry | Manifold geometry |
Plugins used
Usage recommendations
Realtime rendering
PC Game development
Mobile Game Development
VR/AR applications
Visualisation
Cinema
Advertising
3D Printing
CAD Engineering
E-Commerce & Interactive 3D Web
FAQ
Is this a free 3D model?

No, this model costs $4.99.

How do I download this 3D model?

This model is available through the "Go to purchase" button on this page.

What license applies to this model?

The Royalty Free license applies to this model. More details are available via the "Go to purchase" button.

Does it include rigging and animation?

This model has no rig or animation. It is a static 3D object.

Does this model have UV mapping?

Yes, this model has UV mapping. See the Specifications block for more information.

What textures and materials does this 3D model include?

This model has textures and materials, including PBR. See the Specifications block for more information.

Can I use it for 3D printing?

No, this model is not intended for 3D printing.

Additional information
Asset BreakdownThe Overall ConceptThis asset is a high-fidelity, 3D-modeled realistic sci-fi medical bay 3D model designed as a primary diagnostic or surgical prop for futuristic laboratory environments, cinematic hospital sequences, or advanced research visualizations. Focusing on a high-tech-clinical aesthetic, this model features an automated surgical platform integrated with dual robotic arms and a central monitoring hub, making it an ideal choice for high-end environment renders, medical-intervention quest objectives, or as a flagship functional asset in realistic 3D games.

Sleek Grey and Neon Pink FinishThe medical bay features a primary body finish of matte industrial grey and glowing neon pink LED lighting strips, meticulously modeled with authentic sharp surface reflections, clean composite paneling, and prominent cyber-clinical highlights. This professional and advanced appearance provides a clear visual story of cutting-edge healthcare technology, providing a sharp visual contrast against the deep obsidian-black of the dual monitoring screens and the textured conveyor-style bed surface.

High-Fidelity Robotic Arms and Sensor GeometryA primary feature of this model is the integrated dual multi-jointed robotic arms and overhead sensor array. Every individual detail, from the realistic mechanical layering of the surgical grippers and optical scanners to the hydraulic pistons and various cameras mounted to the upper frame, is modeled with significant surface depth, providing a clear visual indicator of specialized medical engineering and adding incredible tactile detail for close-up inspection.

Integrated Control Hub and Technical ConfigurationThe unit is characterized by its high-detail structural configuration featuring a centralized console with multiple touchscreens and tactile buttons. The structural design—complete with various technical components like the reinforced U-shaped frame, integrated cooling vents, and the adjustable patient platform showing some floor-level grime—reinforces the asset's status as a functional and complete piece of professional-grade, high-performance medical hardware.

Optimized High-Fidelity GeometryThe entire realistic sci-fi medical bay 3D model is composed of efficient geometry designed for high-performance real-time rendering. Every element, from the individual panel lines to the solid composite body and robotic assemblies, is modeled as solid, opaque geometry to maintain a consistent realistic look without the need for complex, resource-heavy transparency shaders.

Technical NotesFiles Included: FBX, GLB, OBJ, STL, ZIP (Textures).

Quick Tip: To enhance the realism in a dimly lit laboratory or a bright sterile hospital wing, apply a high-detail Emissive Map specifically to the neon pink LED strips. This will create a realistic internal glow that casts light onto the surrounding grey paneling and the floor under dynamic lighting, emphasizing the asset's diverse material quality and premium industrial design.
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