Robert Robot 3D Model Low-poly 3D model
Home Catalog Robert Robot 3D Model Low-poly 3D model

Publication date: 2023-07-13

Robert Robot 3D Model Low-poly 3D model

$10

License: Royalty Free

author:

SherkhanNabi

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

Introducing Ding Dong #4 1947 ME Robert Robot 3D Model! This charming retro-inspired robot is meticulously crafted in Blender, a powerful 3D modeling software. The model features a delightful low-poly design, combining a nostalgic aesthetic with modern techniques.

With carefully implemented physically-based rendering (PBR) materials, every surface of Robert Robot comes to life with realistic textures, allowing for stunning visuals and immersive experiences. The PBR materials ensure that the robot interacts with light in a lifelike manner, providing depth and authenticity to its appearance.

Moreover, Ding Dong #4 1947 ME Robert Robot is not limited to Blender. The model is also available in various other formats, making it easily accessible and compatible with a wide range of 3D software and platforms. Whether you're a game developer, animator, or hobbyist, this versatile 3D model is ready to be incorporated into your creative projects.

Embrace the nostalgia and futuristic charm of Ding Dong #4 1947 ME Robert Robot 3D Model, perfect for adding a touch of whimsy and personality to your virtual worlds!

OBJ (OBJ, filesize: 1.32 MB), BLEND (Blender, filesize: 129 MB), FBX (Autodesk FBX, filesize: 19.9 MB), TEXTURES (Textures, filesize: 20.5 MB), ZTL (Zbrush, filesize: 7.91 MB), MAX (Autodesk 3ds Max, filesize: 2.12 MB), GLTF (glTF, filesize: 36.9 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 |
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