Free CNC Tool Library: Feeds and Speeds for Vectric and Fusion
Every bit in this library is already loaded with the manufacturer's own published chipload — so you import once instead of typing tools in one at a time and guessing at feeds.
What's in it
293 LMT Onsrud and Amana Tool router bits, expanded into 9,279 tool definitions — because a single bit gets a separate entry for each material and diameter the manufacturer published data for. Materials covered: softwood, hardwood, plywood, MDF, particleboard, acrylic, soft plastics and aluminum.
Every row carries the chipload range from the manufacturer's catalogue, the resulting feed rate, a plunge rate, a depth of cut, a stepover, and a link back to the product page.
How the numbers were worked out
| Value | How it's derived |
|---|---|
| Chipload | Midpoint of the manufacturer's published range for that bit, diameter and material. The full range is included so you can see the room either side. |
| Feed rate | RPM × flutes × chipload. Nothing invented. |
| Spindle speed | The bit's own rated maximum, capped by diameter — larger cutters are limited to lower RPM because rim speed climbs with diameter. |
| Plunge rate | 40% of feed — a conservative starting point, not a manufacturer figure. |
| Depth of cut | One bit diameter, capped at 1/2″. Reduce it for hard material, long reach or a light machine. |
| Stepover | 40% of diameter for roughing. |
Read this before you cut
- These are starting points, not guarantees. Chipload is a property of the tool and material. Feed, depth and stepover also depend on your machine's rigidity, spindle power and hold-down — none of which we can see from here.
- Verify on scrap first. Especially for depth of cut, which is the value most sensitive to your particular setup.
- Feeds may be higher than you expect. That is usually correct. Under-feeding is the most common cause of burning, melting and fuzzy edges, because a bit taking too thin a chip rubs instead of cutting.
- If your machine can't reach the feed, lower the RPM rather than crawling the feed. Chipload depends on the ratio, so both drop together and the chip stays the right size.
- Bearing-guided profile bits cut to the profile's own depth, not to a programmed pass depth — treat the depth column as advisory for those.
Prefer to work it out for one cut?
The feed rate calculator does the same maths for a single bit and material. If something is already going wrong on the machine, the Cut Doctor will diagnose it from your parameters, and the Bit Finder will match a bit to the job.