3D Force-Directed Graph is a web component for visualizing graph data in an interactive three-dimensional environment. It uses Three.js and WebGL for rendering while force simulation engines calculate node positions dynamically. Developers can customize nodes, links, labels, geometry, colors, directional arrows, particles, and other visual properties. Users can interact with graphs through dragging, clicking, selection, camera movement, and focus controls. The library supports dynamic data updates, collision handling, directed acyclic graph layouts, curved links, and external scene objects. Numerous examples demonstrate large graphs, custom visuals, post-processing effects, and interactive exploration techniques.

Features

  • Three-dimensional force-directed graphs
  • Three.js and WebGL rendering
  • Custom nodes, links, and geometries
  • Interactive dragging and node selection
  • Dynamic data and collision handling
  • DAG layouts and visual effects

Project Samples

Project Activity

See All Activity >

License

MIT License

Follow 3D Force-Directed Graph

3D Force-Directed Graph Web Site

Other Useful Business Software
Paessler: Easy to Use With Enterprise Power. Free Trial Icon
Paessler: Easy to Use With Enterprise Power. Free Trial

A low-code dashboard makes monitoring intuitive for any admin, while scripting and custom sensors give experts full control.

You shouldn't have to choose between a monitoring tool that's easy to use and one that's powerful enough for a complex environment. PRTG's low-code interface lets any admin build dashboards, set alerts and monitor devices without scripting, while custom sensors and full API access are there when your team needs deeper control. One platform, no compromise. Download a free 30-day trial now.
Get Free Download
Rate This Project
Login To Rate This Project

User Reviews

Be the first to post a review of 3D Force-Directed Graph!

Additional Project Details

Programming Language

JavaScript

Related Categories

JavaScript Data Visualization Software

Registered

2026-08-28