Military Robot Dog Armored Reconnaissance model pack Low-poly 3D model
Home Catalog Military Robot Dog Armored Reconnaissance model pack Low-poly 3D model

Publication date: 2025-03-15

Buy Military Robot Dog Armored Reconnaissance model pack Low-poly 3D model

$55

License: Royalty Free

author:

vfxcgartist

All content related to this 3D asset—including renders, descriptions, and metadata — is credited to its original author, «vfxcgartist». CGhub does not claim copyright ownership over the content used.
  • Description
  • Formats

Each model has 3 levels of detail: low-poly, middle-poly, and high-poly, which allows for the use of this model in production rendering (such as 3ds Max, Maya, Cinema4D, Blender, Vray/Corona/Cycles and all others), game engines (Unity and Unreal compatible), and interactive presentations, providing a choice of detail based on the LOD System principle.

This Military Robot Dog model is perfect for simulations, futuristic game environments, and military strategy presentations. Its armored body and reconnaissance modules offer a realistic portrayal for strategic simulation scenarios.

The model's textures are PBR, Diffuse, NormalMap, and reflection/roughness/metallic, suitable for any modern rendering engine. All models are accurately unwrapped with no overlapping UV.

All textures are 4096*4096 in size.

If you like the model, please leave a comment and like it!

STL (Stereolithography, filesize: 142 MB), OBJ (OBJ, filesize: 142 MB), OTHER (Other, filesize: 4.15 MB), PNG (PNG, filesize: 142 MB), FBX (Autodesk FBX, filesize: 142 MB), ABC (Alembic, filesize: 142 MB), BLEND (Blender, filesize: 142 MB), MAX (Autodesk 3ds Max, filesize: 142 MB), C4D (Cinema 4D, filesize: 142 MB), MA (Autodesk Maya, filesize: 142 MB), GLTF (glTF, filesize: 142 MB)

3D Model details

  • cgtrader Platform
  • Animated
  • Rigged
  • Ready for 3D Printing
  • VR / AR / Low-poly
  • PBR
  • Textures
  • Materials
  • UV Mapping
  • Polygons: 0
  • Vertices: 0
  • Geometry: No N-gons | No faceted geometry | Manifold geometry |