Schematic
Parts chosen, nets built and a reviewable schematic drawn from a plain-language brief.
Schematic · PCB · 3D, from plain language
ElectOrchestrator reads the manufacturer datasheets, chooses the parts, wires them up, and renders the schematic, the board layout and a 3D view — in one workspace.
Illustration: a two-layer ESP32-C3 development board, turning slowly and coming apart into its five layers — components, solder mask, top copper, FR-4 core and bottom copper.
How it works
The difference is step two. Most tools ask a model to remember a pinout; this one goes and reads it.
“A 555 timer LED blinker at 2 Hz off 5 V.” No schematic capture and no part numbers required — though you can name them if you want to.
Each part is looked up on the web. If the first search does not return a real pin table, it asks a narrower question and tries again — then keeps the pins, the voltage limits and the reference circuit.
Inspect the schematic, PCB layout and 3D board, see which parts were confirmed against a document, and export the source.
Grounded in datasheets
Before a single trace is drawn, the manufacturer's datasheet is retrieved and reduced to what the design depends on. Every source is linked under the answer, so you can open it and check.
| Pin | Name | Function |
|---|---|---|
| 1 | GND | Ground reference |
| 2 | TRIG | Start of timing input |
| 3 | OUT | Output |
| 4 | RESET | Active-low reset |
| 5 | CONT | Comparator threshold control |
| 6 | THRES | End of timing input |
| 7 | DISCH | Discharge, open collector |
| 8 | VCC | Supply |
Output
Parts chosen, nets built and a reviewable schematic drawn from a plain-language brief.
Footprints placed and traces routed on a real board view you can zoom into and inspect.
Every design renders as a board-level 3D model. Rotate it and check fit before ordering.
Designs compile to standard tscircuit TypeScript. Copy it, download it, keep working.
No schematic capture, no part numbers required.
Open studio