Alpha Release v0.1.0

Hardware design
reimagined by AI.

Generate schematic diagrams and route complex PCBs in minutes. Wire AI empowers hardware engineers with the next generation of design tools.

iwr https://wireai.dev/wireai-cli-installer.ps1 -useb | iex
❯_ wire-cli
D:\MyProject>
WIRE AI
v0.1.0
ctrl+p commands
Type your message...
0.1.0

From prompt to
production.

Wire AI handles the tedious parts of hardware engineering. Here is how the engine transforms your requirements into reality.

INPUT
user_prompt

"Design a flight controller with STM32F405, IMU, Baro, and 4 PWM outputs. 4S LiPo input. Needs USB-C for programming."

Step 1

Requirement Analysis

The LLM parses your natural language, understands the requirements, and extracts voltage domains, protocols (I2C, SPI, UART), and mechanical constraints.

Step 2

System Planning

Before picking parts, we generate a system architecture plan. This logic flow is rendered as a Mermaid diagram for easy verification.

architecture.mmdPower MgtBuck ConverterMCU CoreSTM32F4SensorsSPI BusUSB-C
BOM.json Synced
"MCU": {
  "mpn": "STM32F405RGT6",
  "price": $6.42,
  "stock": 14052,
  "package": "LQFP-64"
},
"IMU": {
  "mpn": "ICM-42688-P",
  "stock": "High"
}
Step 3

Intelligent BOM

Wire AI queries live distributor APIs (DigiKey, Mouser) to select components that are currently in stock and cost-effective.

Step 4

Schematic & Netlist

Components are logically connected. Pin multiplexing is optimized by the AI. We generate a downloadable netlist compatible with major EDA tools.

schematic.sch Netlist Generated
STM32IMU3V3
IN DEVELOPMENT
SPICE Engine
Coming Soon

Simulation

Verify power integrity and signal logic before routing. The AI runs standard test benches against the generated netlist.

Coming Soon

PCB Placement & Routing

AI-driven placement and routing that adheres to DRC, manages impedance, and optimizes for thermal performance.

Ready to build the future?

Start Designing Now