Delivery Robot Dog 3D Model – Low Poly Futuristic Design, FBX, OBJ
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Delivery Robot Dog 3D Model – Low Poly Futuristic Design, FBX, OBJ

$117.6

File Formats

Native Format

.ma
206 MB

Exchange Formats

.maya mel script.blender.png.autodesk fbx.obj

Features

File & scene

No unsupported objects Binary FBX

Geometry

Polygon mesh Manifold geometry No faceted geometry No N-gons

Textures & material

Assigned materials Power of 2 texture sizes Square textures No embed textures PBR textures

UVs & naming

Allowed characters UV unwrapped model No UV overlaps

3D Features

UV Mapping Materials Textures PBR Low-poly

Unwrapped UVs

Non-overlapping

Download information

After purchase, you will receive an email within several hours with a download link to access your files.

Description

Introducing the Delivery Robot Dog 3D Model, a cutting-edge low-poly asset designed for futuristic package delivery scenarios. This quadruped robot is perfect for enhancing your sci-fi projects, robotics simulations, and gaming environments.

With a sleek industrial design and advanced sensor modules, this robotic courier features a secure top cargo compartment and mechanical legs, ready to transport packages autonomously. The model is meticulously crafted with high-quality polygonal geometry, ensuring that it is both visually appealing and efficient for your rendering needs.

  • File Formats: FBX, OBJ, Blender
  • Low-Poly, Game-Ready design
  • PBR textures in stunning 4K resolution
  • 20 texture maps including Color, Roughness, Metallic, and Normal maps
  • No N-gons or faceted geometry, ensuring manifold geometry
  • UV unwrapped with no overlaps

This model is ideally suited for game development, animation, and product visualization. Its versatile nature allows it to fit seamlessly into various digital environments, making it an essential addition to your 3D asset library.

Download now and start creating stunning visuals with this ready-to-render model!

Tags

autonomousbotcargodeliverydogdronefifoodfourfuturisticindustrialleggedmechanicalquadrupedrobotroboticssmart