DESCRIPTION

This realistic full-body male 3D character was created using high-resolution 3D scanning technology, preserving genuine human anatomy, accurate body mass distribution, natural stance, facial proportions, realistic clothing wrinkles, and subtle asymmetry that occurs in real people. Unlike stylized or AI-generated humanoids, this model preserves real-human micro-details, body weight distribution, natural asymmetry, and authentic anatomical proportions, making it suitable for creative or professional projects requiring realistic human characters.

The character is depicted in a relaxed standing posture holding a smartphone near the ear, dressed in modern casual clothing (polo shirt, jeans, shoes), making it an excellent asset for scenes requiring everyday realism.

Recommended Use Cases (CG)

• Architectural visualization interior or exterior crowd population• Corporate presentation, office or business communication scenes• Advertising, promotional storyboards, lifestyle visualization• Cinematic still renders or cut-scene background population• Education & workplace simulation projects• Product showcase scenes involving gadgets or accessories

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000384 Male Character Holding Smartphone Low-poly 3D model

Royalty Free License
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File formats
STL
Stereolithography<br />File Size: 17.9 MB
OBJ
OBJ | 3 files<br />File Size: 30.6 MB
FBX
Autodesk FBX<br />File Size: 7.28 MB
JPG
JPG | 2 files<br />File Size: 11.3 MB
BLEND
Blender<br />File Size: 2.3 MB
WRL
VRML | 2 files<br />File Size: 54.8 MB
PNG
PNG<br />File Size: 27.4 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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- 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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Assigned materials
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UVs & naming
No UV overlaps
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UV unwrapped model
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Allowed characters
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Provided by designer
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3D Features
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PBR
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3D printing
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Geometry
Polygon mesh
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80000 polygons
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/ 40000 vertices
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Unwrapped UVs
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