Skip to main content

KiCad MCP Pro

Drive KiCad schematic, PCB, DRC/ERC, DFM, and manufacturing review from any MCP-capable AI agent.

Documentation · Installation · Quick Start · Tool Reference · AI Agent Setup · AI discovery

PyPI Version npm Version Python Version MIT License DOI

CI GUI CI CodeQL OpenSSF Scorecard OpenSSF Best Practices: Silver

PyPI total downloads npm total downloads

KiCad programmatic parity

Buy me a coffee

KiCad MCP Pro is a Model Context Protocol server for KiCad EDA workflows. It exposes tools, resources, and prompts for schematic, PCB, validation, DFM, and manufacturing export automation.

The server now starts with the bounded default profile: 24 read-only review tools instead of the complete expert catalog. Use build with write mode for controlled edits, release with manufacturing mode for human-gated handoff, or expert/full only for advanced trusted clients. Current catalog counts and context-size estimates come from docs/evidence/progressive-disclosure-profile-snapshot.json; see docs/agents/progressive-disclosure.md.

Telemetry and error reporting are disabled by default. Opt-in OpenTelemetry configuration is documented in docs/configuration.md, and privacy rules are documented in docs/privacy.md.

Scope and honesty

KiCad MCP Pro is a professional first-pass design and review assistant, not an automated sign-off authority. ERC/DRC and the export pipeline drive KiCad's own engines. The signal-integrity, power-integrity, EMC, and thermal tools are first-order, closed-form estimates (typically ~5–10% accuracy) — fast first-pass review, not a substitute for a 2D/3D field solver, EM/FEA simulation, or formal sign-off. Live component sourcing uses the JLCPCB public catalog by default; Nexar, DigiKey, and Mouser are available only when their API credentials are configured. What fraction of KiCad's programmatic surface the server drives is tracked openly in the capability-parity matrix. Raw tool count and capability coverage are inventory metrics, not the headline product-quality measure. End-to-end task outcome, mutation recovery, corruption, required DRC execution, and manufacturing reproducibility are the outcome KPIs. The committed native-live example evidence intentionally reports insufficient_evidence; representative-corpus target attainment remains separate until the qualification work in #730 is complete.

Project identity

Field Value
Canonical repository oaslananka/kicad-mcp-pro
PyPI package kicad-mcp-pro
npm wrapper kicad-mcp-pro
MCP Registry name io.github.oaslananka/kicad-mcp-pro
Version 3.34.3
OSS maturity report docs/repo-maturity-report.md
OpenSSF evidence docs/openssf-evidence.md

Quick Start

Desktop App

Download the latest installer from the GitHub releases page. The Tauri desktop app starts the Python dashboard server automatically and opens the GUI at http://127.0.0.1:3334/ui. Desktop releases launch the matching exact backend version and verify its desktop compatibility handshake before use; see Installation.

CLI

uvx kicad-mcp-pro init
uvx kicad-mcp-pro tray
uvx kicad-mcp-pro dashboard --open
uvx kicad-mcp-pro --transport streamable-http --port 3334

Web Dashboard

uvx kicad-mcp-pro dashboard --host 127.0.0.1 --port 3334 --open
# http://127.0.0.1:3334/ui

Documentation

The documentation is organized from setup to operation:

  1. Installation
  2. Client configuration
  3. Runtime configuration
  4. Tool reference
  5. Workflows
  6. Release process
  7. Security and privacy
  8. KiCad capability parity — how much of KiCad's programmatic surface this server drives
  9. Error code catalog — stable error codes, retry classes, and recovery
  10. Work-order audit — current status of the hardening work order

The kicad_capability_parity() tool reports, per workflow domain, what fraction of KiCad's programmatically reachable surface this server can drive (currently 76.3%), keeping genuine gaps distinct from gui-only-no-api items that KiCad exposes no headless API for.

The published documentation site is available at https://oaslananka.github.io/kicad-mcp-pro/.

Transports

KiCad MCP Pro supports stdio and Streamable HTTP. Streamable HTTP is served at /mcp by default and can be moved with KICAD_MCP_MOUNT_PATH.

uvx kicad-mcp-pro --transport streamable-http --host 127.0.0.1 --port 3334

Streamable HTTP clients must send:

  • Accept: application/json, text/event-stream
  • Content-Type: application/json
  • MCP-Protocol-Version: 2025-11-25 after initialization
  • MCP-Session-Id on follow-up requests when KICAD_MCP_STATEFUL_HTTP=1

By default Streamable HTTP is stateless, so ChatGPT-style connectors can initialize and call tools/list without a session-header injection proxy. Set KICAD_MCP_STATEFUL_HTTP=1 to require session IDs after initialize.

The deprecated HTTP+SSE fallback routes are disabled by default. Set KICAD_MCP_LEGACY_SSE=1 only for older clients that cannot use Streamable HTTP.

Install

Published packages:

uvx kicad-mcp-pro --help
npx kicad-mcp-pro --help

Fresh source checkout on supported Linux hosts:

./scripts/bootstrap-dev.sh
source .dev-env.sh
pnpm run dev:doctor -- --ci

The repository bootstrap installs checksum-pinned Python, uv/uvx, Node.js, pnpm, Task, and Rust tooling into ignored checkout-local roots and performs frozen dependency installation. It does not modify global tool directories. See the reproducible bootstrap guide for --core-only, --check, cleanup, upgrade, and KiCad capability modes.

Package metadata

The canonical metadata inputs are pyproject.toml for package version and repository identity, and compatibility.yaml for KiCad and MCP support policy. server.json is the generated registry manifest. pnpm run metadata:sync renders the public surfaces, and pnpm run metadata:check verifies them in CI and release validation.

Usage

Use kicad-mcp-pro --help to inspect CLI commands and docs/client-configuration.md to configure an MCP client. The generated tool catalog is available in docs/tools-reference.generated.md.

Agent plugin and skills

This repository owns the product-level agent plugin and KiCad-specific skills for KiCad MCP Pro. The central agent-tools repository should catalog this plugin, but the manifest and workflow instructions live here so they stay synchronized with the actual MCP server tools.

File Purpose
.claude-plugin/plugin.json Product-level plugin manifest for compatible agent runtimes and marketplace catalogs.
.mcp.json Claude Code project-local MCP server configuration.
.codex/config.example.toml Codex CLI MCP configuration example.
.vscode/mcp.example.json VS Code / GitHub Copilot workspace MCP configuration example.
opencode.example.jsonc OpenCode project MCP configuration example.
.opencode/skills/ OpenCode-native mirrored skill definitions.
docs/agent-runtime-config.md Agent runtime setup and validation matrix.
skills/kicad-design-review/SKILL.md Comprehensive KiCad design review skill.
skills/pcb-design/SKILL.md PCB design, layout inspection, placement, routing, stackup, and board-quality workflow.
skills/drc-check/SKILL.md ERC/DRC execution, triage, waiver review, and revalidation workflow.
skills/fabrication-output/SKILL.md Manufacturing export, DFM, release evidence, and fabrication-package workflow.
skills/schematic-review/SKILL.md Schematic inspection, ERC, connectivity, power, symbol, and readability workflow.

Agent setup

KiCad MCP Pro can be launched with the published Python package, npm wrapper, or the container metadata declared in server.json. Common local starts are:

uvx kicad-mcp-pro --transport stdio
uvx kicad-mcp-pro --transport streamable-http --host 127.0.0.1 --port 3334
npx kicad-mcp-pro --help

For source checkouts, run the normal repository validation path before publishing plugin changes:

corepack pnpm run metadata:check
python3 -m json.tool .claude-plugin/plugin.json >/dev/null

Validation workflow

Before listing this plugin as active from agent-tools, verify at least one compatible agent runtime can:

  1. Discover .claude-plugin/plugin.json.
  2. Launch or connect to kicad-mcp-pro over stdio or Streamable HTTP.
  3. Call kicad_get_server_info or kicad_get_project_info.
  4. Load a skill from skills/ and follow the workflow without referencing missing tools.
  5. Report ERC, DRC, DFM, export artifacts, assumptions, and human-review requirements separately.

KiCad MCP Pro is an engineering assistant, not an autonomous manufacturing sign-off authority. Generated PCB and fabrication outputs require qualified human review before fabrication or assembly.

Development

New contributors should start with ARCHITECTURE.md, which maps the five layers (transport → MCP protocol → orchestration → KiCad adapter seam → pure domain) and shows exactly how to add a new tool. The runtime model and quality-gate stack are documented in docs/development/architecture.md.

The project uses a Taskfile.yml for common development commands. After cloning the repository:

task install     # Install all dependencies (pnpm + uv)
task verify      # Run the local quality gate: lint → format → typecheck → test → build
task test        # Run unit tests only
task lint        # Run lint and metadata checks
task format      # Auto-format the codebase
task typecheck   # Run strict static type checking
task build       # Build release artifacts
task ci          # Run the local equivalent of the full CI pipeline
task hooks       # Install local git hooks

All changes must pass task verify before opening a pull request.

Contributing

Read CONTRIBUTING.md before opening a pull request. All changes must pass the repository's format, lint, type-check, test, workflow, security, and package metadata gates.

Cite this software

If you use KiCad MCP Pro in research or a technical publication, cite the archived release via its DOI (see CITATION.cff for full metadata):

@software{aslan_kicad_mcp_pro,
  author  = {Aslan, Osman},
  title   = {KiCad MCP Pro},
  license = {MIT},
  url     = {https://github.com/oaslananka/kicad-mcp-pro},
  doi     = {10.5281/zenodo.21283791}
}

Every GitHub release is archived on Zenodo under this concept DOI, which always resolves to the most recent version.

License

KiCad MCP Pro is available under the MIT License.

Release files for kicad-mcp-pro 3.34.3

For a detailed explanation of source distributions (sdists) and built distributions (wheels), please see the package formats documentation.

Source distribution (sdist)

Source distribution for kicad-mcp-pro 3.34.3
File Size Uploaded
kicad_mcp_pro-3.34.3.tar.gz 790.1 kB Details

Built distribution (wheel)

Table of built distributions (wheels) for kicad-mcp-pro 3.34.3
File Interpreter ABI Platform
kicad_mcp_pro-3.34.3-py3-none-any.whl Python 3 none any Details

Total release size: 1.7 MB

Release files / kicad_mcp_pro-3.34.3.tar.gz

Download URL kicad_mcp_pro-3.34.3.tar.gz
Size 790.1 kB
Tags Source
SHA-256 checksum
How to use checksums
e487f82ba4d4639e544a5e9b98bea34a73ec79080b93a911e645ef487ab74b85
BLAKE2b-256 checksum
How to use checksums
cbc461e0b4646ea863fdc92fe829d3cb0afe2c3f2d7036b425a0619788c36501
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 10, 2026.

Transparency log

Release files / kicad_mcp_pro-3.34.3-py3-none-any.whl

Download URL kicad_mcp_pro-3.34.3-py3-none-any.whl
Size 941.9 kB
Tags Python 3
SHA-256 checksum
How to use checksums
701508ff64a83ad4332883f9dfb52c21069f2d39608effb58060519c3b65081e
BLAKE2b-256 checksum
How to use checksums
e86dc0312f7619438bcd1f0c6904694adfece8f6b843b31d5816bbf9ea1ed5f6
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 10, 2026.

Transparency log

Release history Release notifications | RSS feed

3.35.0

2 release files

3.34.8

2 release files

3.34.7

2 release files

3.34.6

2 release files

3.34.5

2 release files

3.34.4

2 release files

This release

3.34.3 This release

2 release files

3.33.3

2 release files

3.33.2

2 release files

3.33.1

2 release files

3.33.0

2 release files

3.32.0

2 release files

3.31.0

2 release files

3.29.2

2 release files

3.29.1

2 release files

3.29.0

2 release files

3.28.0

2 release files

3.27.0

2 release files

3.26.0

2 release files

3.25.0

2 release files

3.15.1

2 release files

3.15.0

2 release files

3.14.1

2 release files

3.14.0

2 release files

3.13.0

2 release files

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page