OBJ Viewer
Open an OBJ mesh with selected local MTL and image resources online, then orbit and inspect the supported resolved model.
Workflow type: Interactive OBJ package viewer. Status: Functional. Expected result: Interactive viewer. Available action: Open OBJ package.
What this 3D tool provides
Open a local OBJ package online with selected MTL and image resources, resolve supported local references privately and inspect the model in an orbitable viewer.
- OBJ Viewer brings OBJ, local MTL, local image resources, ZIP package input and an interactive inspection result into one review sequence.
- Use the before-and-after labels for orientation, then confirm the selected file with the result guidance and format notes below.
- Accepted input: OBJ, selected folder or ZIP package.
- Available controls: Display mode, Background, Show ground grid.
- Orbit and inspect the loaded OBJ mesh after its selected local material and image resources resolve. This viewer does not create an export.
How to use OBJ Viewer
- Choose a supported file — Choose OBJ, selected folder or ZIP package from your device.
- Review settings — Review the available controls: Display mode, Background, Show ground grid.
- Inspect the result — Orbit, zoom and inspect the loaded 3D data and its reported details.
Preview and result review
A desk lamp package makes local material and texture references visible as a resolved model instead of an unverified flat mesh.
- Before example: A desk lamp OBJ with local material and image resources
- After example: The resolved supported OBJ package in an interactive view
Interactive OBJ package view: Orbit and inspect the loaded OBJ mesh after its selected local material and image resources resolve. This viewer does not create an export.
Supported inputs and outputs
Input
- OBJ
- local MTL
- local image resources
- ZIP package
Output
- Interactive view only
Local MTL and image files selected in the same bundle can resolve relative references. Remote URLs are blocked and missing local resources are named before the viewer opens.
Available settings
- Display mode — select; Options: Solid, Wireframe, Solid with edges; Default: solid
- Background — select; Options: Studio, Dark, Transparent; Default: studio
- Show ground grid — toggle; Default: On
Privacy and workflow limits
Supported file contents stay on this device while the selected tool runs; site analytics and the assistant are separate.
Frequently asked questions
What does OBJ Viewer do?
It resolves supported relative local material references and opens the model in an orbitable view for visual and bounds review.
Which files does OBJ Viewer support?
An OBJ file can be opened with selected local MTL and supported image resources from a folder or ZIP package.
Is my 3D file uploaded?
Supported file contents stay on this device while the selected tool runs; site analytics and the assistant are separate. The selected file is not uploaded for the supported processing workflow.
What should I review after using OBJ Viewer?
Remote references are blocked and missing selected files stop the load with a named notice. Check material appearance, scale and orientation before using the model elsewhere.
Related 3D tools
- OBJ to GLB Converter — Convert OBJ geometry to a compact GLB file online with scale and axis controls.
- OBJ to STL Converter — Convert OBJ triangle geometry to STL online while making the loss of OBJ materials and image references explicit.
- Mesh Inspector — Inspect triangle count, dimensions, open edges, duplicate points and surface direction in a 3D mesh.
- 3D Model Viewer — Open GLB, glTF, OBJ, STL and PLY models online, orbit around them and inspect dimensions.
- Gaussian Splat Viewer — Open and explore existing PLY and SPLAT scenes directly in your browser.
- Point Cloud Viewer — View PLY, XYZ and PTS point clouds online with height, color and intensity display options.
- STL to GLB Converter — Convert binary or text STL meshes to GLB online and add a clean preview material.
- GLB Compressor & Optimizer — Clean a GLB losslessly or apply an explicit balanced 16-bit geometry quantization, then compare the measured local result.