DESCRIPTION

This is a highly detailed PBR (Physically Based Rendering) 3D model of a beautiful, transitional style bathroom vanity unit. The design successfully blends classic furniture elements with modern fixtures, making it suitable for a wide range of interior projects.

The Vanity Cabinet features a simple, elegant structure with two large, full-width drawers, rendered in a light, pale wood finish (such as bleached oak or a light painted wood). It stands on four small, tapered, classic-style legs. The top is a luxurious slab of white marble with subtle grey veining, which provides a rich contrast to the light wood base.

A modern circular vessel sink sits atop the marble counter, complementing the clean lines of the design. The unit is completed by a set of wall-mounted fixtures in a matte black finish, consisting of two cross-handle valves and a central spout, which adds a contemporary, industrial touch against the classic vanity.

The PBR materials ensure accurate light interaction, capturing the reflectivity and veining of the marble, the fine grain of the wood, and the matte texture of the sink and black fixtures, guaranteeing high visual fidelity in your renders. This model is ideal for architectural visualizations, interior design projects, and virtual scene staging.

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Classic Transitional Bathroom Vanity with Vessel Sink 3D model

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File formats
OBJ
OBJ | 2 files<br />File Size: 2.41 MB
OTHER
Other<br />File Size: 4.6 MB
FBX
Autodesk FBX<br />File Size: 667 KB
BLEND
Blender<br />File Size: 10.1 MB
JPG
JPG<br />File Size: 10.4 MB
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FBX
This FBX file has successfully passed the CGT Standard technical and visual checks. The verification results are detailed in the section below.
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Binary FBX
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No unsupported objects
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Geometry
No N-gons
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No faceted geometry
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Manifold geometry
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Textures & material
PBR textures
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Required PBR textures:
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- Roughness
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- Normal
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No embed textures
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Square textures
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Power of 2 texture sizes
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No UV overlaps
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UV unwrapped model
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3D Features
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PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
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31047 polygons
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/ 15904 vertices
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