// Menu
TECHNOLOGY·ARCHITECTURE·PHYSICS-DRIVENREV 4.7
[00]//TECHNOLOGY · HOW IT WORKSEN-US

Physics-driven AI, / schematic to fab.

The foundation of PCB design — and how a model that reasons over verified physics transforms every stage of it.

[01]//PIPELINE · HOW A PCB IS DESIGNED4 STAGES

From concept to physical board.

Traditional PCB design is complex and iterative — balancing electrical performance, physical constraints, thermal limits, and manufacturability. A single board can take weeks. It all rests on accurate component data.

STAGE [01]

Schematic Design

Engineers define the electrical connections between components — a blueprint capturing logical relationships and circuit function.

STAGE [02]

Component Selection

Each part is chosen on electrical spec, physical constraint, and datasheet parameters. Accuracy here is critical to everything downstream.

STAGE [03]

Layout & Routing

Components are placed and traces routed — accounting for signal integrity, power distribution, and thermal management.

STAGE [04]

Validation & Fab

Design rules are checked and electrical constraints verified before fabrication. Every trace, via, and pad must meet physical limits.

[02]//VERIFIED DATASHEETS · 100% ACCURATE FOR AIVERIFICATION PIPELINE

Accurate data is the whole game.

Generic AI struggles with datasheet accuracy because it leans on incomplete, unverified data. GerberGPT runs a rigorous verification pipeline so every parameter is correct.

V1

Multi-Source Verification

Component specs are cross-referenced across manufacturer datasheets, distributor catalogs, and industry databases. Every parameter is verified against multiple authoritative sources.

V2

Physics-Based Validation

Parameters are checked against physical laws and engineering principles — electrical, thermal, and mechanical characteristics tested for consistency and feasibility.

V3

Continuous Updates

The system tracks revisions, errata, and manufacturer updates in real time, so the model always reasons over the latest verified information.

// the advantage

Why accuracy compounds

  • Eliminates design errors from incorrect component parameters
  • Enables physics-validated design decisions
  • Reduces design iterations and manufacturing failures
  • Ensures compliance with component specifications
  • Builds confidence in automated design generation
[03]//PLATFORM · CAPABILITIESA CLOSER LOOK
C1

Design Capabilities

Complex multi-layer boards up to 32 layers. Advanced routing handles high-speed signals, power planes, and mixed-signal designs with precision.

C2

Component Library

Millions of verified components from leading manufacturers, synchronized in real time so specs and footprints are always current.

C3

Manufacturing Integration

Export to industry-standard formats — Gerber, drill, and assembly files compatible with every major PCB fabricator.

[04]//PERFORMANCE · HAPPILY EVER FASTERBENCHMARKS
10×
Faster than traditional methods

Speed

Generate complete layouts in minutes, not weeks. The engine processes thousands of constraints simultaneously.

100%
Design rule compliance

Accuracy

Physics-validated designs aim for first-pass success. Every trace, via, and placement meets manufacturing rules.

50+
Design variants per hour

Efficiency

Parallel generation of candidates lets you explore the whole solution space in a single session.

// field report
“GerberGPT transforms how we approach PCB design. What used to take weeks now happens in hours — and the quality is consistently better than our manual process.”
Sarah Chen·Lead Hardware Engineer, Tech Innovations Inc.
[ READY ]//PHYSICS-DRIVEN AI FOR ELECTRONICSEOF

Start designing PCBs faster than ever.