DESCRIPTION

High Detailed Photorealistic Giant Octopus– fully rigged –   completely UVmapped and textured.

This scene is Ready to render exactly as you see above with Arnold settings.

This model has been modeled with a clean topology.

It is FULLY RIGGED.

The model is provided with 8k high resolution textures , displacement and normal maps.

Formats included

Maya 2023

OctopusDefaultRig_maya2023 (default rig Maya .ma)

OctopusPosedRig_maya2023 (posed rig Maya .ma – as per image preview with background)

FBX

Octopus_rig_FBX.fbx (fully functional fbx exported from Maya)

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Measurement units: centimeters

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Polycount:

Total: 119186

Each tentacle consists of 212 modeled suckers for a total of 1696.

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CHECK OUT THE RIG DEMO: https://youtu.be/pm_Ocw7u1Uc

Space Switching

IKFK Controller

Stretchy Arm

Suckers shapes

Amplitude to control arm wave

Individual controllers

Animator friendly controllers

Global Scale

Colored Controllers.

And more..

BlendShapes included:

-eyes blink

-suckers size

CHECK OUT THE RIG DEMO: https://youtu.be/pm_Ocw7u1Uc

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Giant Octopus RIG 3D model

Royalty Free License (no AI)
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Native file format
MA
Size: 641 MB
Renderer: Arnold | 2023.3
Exchange formats
FBX
Autodesk FBX<br />File Size: 641 MB
PNG
PNG<br />File Size: 641 MB
EXR
EXR<br />File Size: 641 MB
JPG
JPG<br />File Size: 641 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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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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Provided by designer
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3D Features
Animated
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Rigged
The model has a skeleton or bone structure, making it ready for posing or animation.
Low-poly
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
Textures
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Materials
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123898 polygons
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/ 123842 vertices
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