CAM

From the model to the machine.

Setups, tools and operations on the same model you designed — simulated by material removal, estimated with their assumptions, and posted as G-code your machine reads.

A gimbal mount plate programmed in one setup: toolpaths over the stock, cut by the material-removal simulation.

Setups

Stock, offsets, posts

A work offset, a post-processor and an ordered list of operations per setup.

Tools

A tool library

Flat, ball, bull and drill, with their geometry and cutting data — and what uses each one.

Strategies

2.5D and 3D

Facing, 2D contour, pocket, adaptive clearing, drilling, engraving and 3D parallel finishing.

Simulation

Material removal

Removed volume, time per operation, tool engagement, and gouges and collisions naming the operation that caused them.

Posts

GRBL, LinuxCNC, Fanuc

Described by data, not code — write your own — and verified by reading their own G-code back.

Limits

Three axes, top-down

The simulator is a Z-map: undercuts are not represented. No five-axis machining.

Timber and steel have their own machines. The Timber module writes BTLx for joinery centres, the Steel module DSTV NC1 for beam lines, and Light-gauge steel the Howick format for roll-formers.

The modules

Try it on a part you already have.

Import a STEP file, push a face, put a dimension on it. 5 days, every tool, nothing to pay until you decide.