Errors caught as you draw
Trace width, clearance, vias, silkscreen over pads, floating nets — the rule check runs while you work and points at the exact spot, so the fab house doesn't have to send it back.
What it actually does
- Width, clearance, annular ring, drill size and edge distance checked live
- Floating nets, duplicate designators and unconnected pins listed separately
- Every finding points at a specific component and coordinate — click to jump there
- Rules follow your fab house's capability, not one hard-coded set of numbers
How it works
- 1
1. Describe the board you need
One sentence covering the MCU, how it is powered, and what it drives. A hand sketch or a photo of a reference board works too.
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2. AI handles parts and layout
Part selection, schematic, nets, placement and routing in one pass, with DRC/ERC run over it — you get a real, editable board, not a design write-up.
- 3
3. Export and get it made
Export Gerber, Drill, BOM, and CPL and send them straight to a fab house for a quote. Every version is archived, so you can always go back.
FAQ
No. DRC checks manufacturability, not whether the circuit design is correct — pick the wrong resistor value or the wrong chip and the rule check is still green. Review the circuit yourself before ordering.
Yes. Minimum trace width, clearance and drill size follow the process class you pick; capabilities differ between houses, and using the wrong class shows up as a rejected order.
They are graded: anything that makes the board unmanufacturable comes first, the rest are advisories. You can also ask AI to fix them one by one — it explains what it changed at each spot.
More things it can do
Lay out a whole board from one sentence → Every part can be changed by AI → Or just change it yourself → Start from a finished board → The parts list comes with it → 2D board view and 3D preview → Free address, share instantly → Shared pages come with SEO → See who came by → Manufacturing files in one click →