DESCRIPTION

Laptop 3D ModelOverviewThe Laptop 3D Model is a highly detailed and realistic digital asset, designed to provide a comprehensive representation of a modern laptop computer. Ideal for applications in product visualization, virtual environments, and multimedia projects, this model leverages advanced geometric detailing and high-resolution textures to achieve an authentic look. The model's efficient use of polygons and precise UV mapping ensures both visual fidelity and performance optimization.

Technical SpecificationsModel Type: Laptop 3D ModelMedia Type: Digital AssetGeometry Composition: A combination of quads and trianglesPolygon Count: 6,733Vertex Count: 3,953Textures: High-resolution textures are used to provide realistic visual detailMaterials: Various materials are employed to define the surface properties, including metal, plastic, and glassRigging: Not rigged; the model lacks an internal skeleton for posing or animationAnimation: No pre-defined animations are includedUV Mapping: Applied to ensure accurate texture alignment with the model's geometry, enhancing realism and detailGeometry and DetailThe Laptop 3D Model is crafted using a combination of quads and triangles, providing a balance between detailed representation and performance efficiency. This approach ensures the model captures intricate features of a laptop while maintaining a manageable polygon count for smooth integration into various applications.

Quads and Triangles: The use of quads facilitates smooth surface transitions and easy editing, while triangles are incorporated to add detail and optimize complex areas.Polygons (6,733): Distributed to accurately represent essential features such as the keyboard, screen, ports, and hinges without unnecessary complexity.Vertices (3,953): Precisely placed to outline the model's structure and support the detailed textures and materials.Textures and MaterialsTextures: High-resolution textures are applied to the laptop model, enhancing its visual realism by replicating the appearance of various materials. These textures include:Metal: For the laptop’s casing, providing a realistic metallic sheen and texture.Plastic: For the keyboard keys, touchpad, and other plastic components, simulating their unique surface characteristics.Glass: For the screen, ensuring a reflective and transparent look that mimics real glass surfaces.Materials: Multiple materials are used to define the surface properties, including:Brushed Metal: For the exterior casing, providing a sleek and professional finish.Matte Plastic: For the keyboard and internal components, offering a contrast to the glossy screen.Transparent Glass: For the display, giving it a realistic depth and reflective quality.UV MappingThe model incorporates detailed UV mapping, which ensures that textures are accurately applied to the laptop's geometry. UV mapping enhances the model's appearance by:

Ensuring textures align correctly with the 3D surfaces, minimizing distortion and stretching.Facilitating the detailed and realistic application of textures, such as the keyboard layout, logos, and surface details.Enhancing visual appeal by allowing for precise texture placement and alignment.Usage and ApplicationsThe Laptop 3D Model is versatile and well-suited for a variety of professional applications:

Product Visualization: Ideal for creating realistic renderings of laptop designs, allowing manufacturers and marketers to showcase products in a visually appealing manner.Virtual Environments: Useful for populating virtual offices, workspaces, and educational settings with detailed and realistic laptop models.Multimedia Projects: Enhances video productions, animations, and interactive media by providing a high-quality representation of a laptop.Simulation and Training: Serves as an educational tool in technical training simulations, demonstrating laptop features and components.Game Development: Suitable for inclusion in game environments, providing realistic props for scenes set in modern or futuristic settings.The Laptop 3D Model combines precise geometry, high-quality textures, and detailed materials to deliver an accurate and visually compelling representation of a modern laptop. Its detailed construction and efficient design make it an essential asset for professionals seeking a realistic and versatile laptop model for their digital projects.

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Laptop 3D Model Low-poly 3D model

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File formats
STL
Stereolithography<br />File Size: 28 MB
OBJ
OBJ | 2 files<br />File Size: 56 MB
ABC
Alembic<br />File Size: 28 MB
BLEND
Blender<br />File Size: 28 MB
DAE
Collada<br />File Size: 28 MB
FBX
Autodesk FBX | 2 files<br />File Size: 56 MB
GLTF
glTF | 2 files<br />File Size: 56 MB
PLY
Ply | 2 files<br />File Size: 56 MB
3DS
3D Studio<br />File Size: 28 MB
USDZ
USDZ<br />File Size: 28 MB
USD
USD<br />File Size: 28 MB
AC
AC3D <br />File Size: 28 MB
TEXTURES
Textures<br />File Size: 28 MB
Verified by CGTrader
Verified models are of higher quality as they have
passed CGT Standard technical and visual checks,
making them more professional-grade 3D assets.
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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.
File & scene
Binary FBX
Binary FBX file is more compact and faster to load and process.
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No unsupported objects
Unsupported objects:
- Lights
- Cameras
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Geometry
No N-gons
N-gons are polygons with five or more sides which might cause issues in certain processes like rendering or animation. Learn more
No faceted geometry
Faceted geometry uses flat surfaces without smoothing, which can look unrealistic on curves.
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Manifold geometry
Manifold geometry ensures all surfaces are properly connected, avoiding issues like edges shared by more than two faces.
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Textures & material
PBR textures
PBR textures simulate how light interacts with materials, making the model look realistic under different lighting.
Required PBR textures:
- Base Color
- Roughness
- Metalness
- Normal
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No embed textures
Embedded textures are stored inside the model file, increasing its size and sometimes causing compatibility issues.
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Square textures
Texture aspect ratio is the width-to-height ratio of a texture. Expected texture aspect ratio: 1:1
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Power of 2 texture sizes
Textures with dimensions in power of two (e.g. 512x512px, 1024x1024px) are used to optimize performance and memory usage.
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Assigned materials
Materials are applied to the 3D model to allow visualize a model's surface properties and appearance.
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UVs & naming
No UV overlaps
UVs overlap when multiple points on the 3D model's surface are mapped to the same point on the UV island causing texture stretching.
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UV unwrapped model
A UV unwrapped model means its 3D surface is flattened into 2D space, allowing textures to be applied accurately.
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Allowed characters
Allowed ASCII characters: a-zA-Z0-9-_
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Provided by designer
Information and details shared directly by the model's designer.
3D Features
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
Textures
The model includes image files (textures) that add color, patterns, or detail to its surfaces.
Materials
The model has material settings that define how surfaces look (color, shine, transparency, etc.).
UV Mapping
The model's surfaces are mapped to a 2D image, allowing textures to display correctly.
Plugins Used
Some external plugins were used to create the model. These may be required for full functionality.
3D printing
Indicates whether the designer marked this model as suitable for 3D printing.
Model is not 3D printable
The designer indicates this model is intended for digital use only (rendering, animation, or AR/VR) and not for 3D printing.
Geometry
Polygon mesh
A model built from polygons (triangles or quads) connected in a mesh.
6733 polygons
The total number of polygons (flat shapes) that make up the 3D model.
/ 3952 vertices
The number of points (corners) that define the shape of the model's polygons.
Unwrapped UVs
Publish date
Model ID
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