Organic lattice bracket
Load-path-driven structure grown directly inside the implicit field.
In-house implicit engine · On-prem AI cluster
We generate, refine, and print organic, load-optimized geometry with a proprietary volumetric engine built on OpenVDB — driven by generative AI models running entirely on our own GPU cluster. No cloud. No compromise on complexity.
The Engine
Every design starts as a signed distance field inside a sparse OpenVDB grid — not a triangle mesh. Boolean unions, TPMS lattices, graded infill, and organic blends happen natively at voxel resolution, without the topology errors that break traditional CAD kernels.
The Cluster
Our design models run on a private GPU cluster we own and operate — trained on manufacturing constraints, not stock imagery. Every part shown here was proposed, scored, and iterated by AI before a human ever opened a viewer.
Gallery
A growing collection of pieces generated end-to-end through the AI cluster and implicit engine. Renders are being captured as prints come off the machines — check back often.
Load-path-driven structure grown directly inside the implicit field.
Graded TPMS shell balancing stiffness and weight.
Internal channels impossible to draw in parametric CAD.
Local lattice density tuned to thermal simulation results.
AI-explored variants scored on stiffness-to-mass ratio.
A single monolithic part replacing a multi-piece assembly.
Process
Function, loads, material, and process constraints define the design space.
Our cluster proposes and scores thousands of geometric variants against the brief.
The best candidates are refined inside the OpenVDB engine: lattices, shells, blends, supports.
Field data is sliced directly — no intermediate mesh cleanup — ready for the machine.
Tell us about the geometry, the constraints, and the process. We'll show you what the cluster comes up with.