DESCRIPTION

Step into the world of premium product design with this meticulously crafted 3D model of a cosmetic dropper bottle, designed with precision and rendered to perfection in Blender 4.4 using Cycles.

This versatile model captures the sleek transparency of glass combined with the modern minimalism of a matte-finished dropper cap, making it ideal for cosmetic, pharmaceutical, or branding visualization projects.

What’s Inside:

  • 3D file formats: .blend, .fbx, .obj, .stl, .3ds
    • Textures.zip folder with high-resolution PBR textures and UV maps included
    • Clean topology with no overlapping faces
    • Ready-to-use materials and optimized mesh for both close-up renders and real-time applications

Whether you’re showcasing skincare packaging, designing product mockups, or creating realistic advertisement visuals, this dropper bottle model provides the perfect balance of detail and usability.

Features:

  • High-quality, photorealistic 3D model created in Blender 4.4
  • Accurate glass material and transparent pipette with realistic reflections
  • UV-mapped with included texture sources for instant rendering
  • Suitable for product visualization, branding, advertising, and packaging design
  • Fully compatible with a wide range of 3D software and render engines

Bring your creative vision to life with this elegant and versatile 3D model. Perfect for designers, advertisers, and 3D artists who value quality and realism.

For any query, feel free to contact: emission3d@gmail.com](mailto:emission3d@gmail.com)

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Native file format
BLEND
Size: 5.5 MB
Renderer: Cycles | 4.4
Exchange formats
OBJ
OBJ | 2 files<br />File Size: 5.45 MB
FBX
Autodesk FBX<br />File Size: 1.91 MB
GLTF
glTF<br />File Size: 1.93 MB
ABC
Alembic<br />File Size: 3.83 MB
OTHER
Other | 5 files<br />File Size: 14.2 MB
DAE
Collada<br />File Size: 10.8 MB
PLY
Ply<br />File Size: 1.55 MB
STL
Stereolithography<br />File Size: 4.07 MB
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3D Features
Animated
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Low-poly
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
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42721 polygons
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/ 42935 vertices
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