ee-autopilot

Automate electronics design across 12 phases from architecture to DFMEA.

Updated Aug 23, 2026
One-click install
npx skills add https://github.com/6987zshmpy-bot/electrical-engineering-plugin --skill ee-autopilot
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: ee-autopilot
Source: https://github.com/6987zshmpy-bot/electrical-engineering-plugin/tree/main/skills/ee-autopilot
Command: npx skills add https://github.com/6987zshmpy-bot/electrical-engineering-plugin --skill ee-autopilot

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Autonomous electronics development after requirements are completed, enabling faster iteration toward production-readiness.

Core Features & Use Cases

  • Orchestrates 12 design phases (architecture to DFMEA) with gate-based reviews.
  • Self-corrects through iterative loops until quality gates pass, with human intervention as fallback.
  • Use case: after capturing requirements, trigger autopilot to generate architecture, select components, draft schematics, run thermal and signal integrity checks, and prepare manufacturing-ready documentation.

Quick Start

Say "start autopilot" to begin the full design loop from the prepared requirements.

Frequently Asked Questions about ee-autopilot

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I automate electronics design from architecture to manufacturing documentation?

You can automate electronics development by triggering an autonomous design loop that orchestrates 12 phases from architecture to DFMEA, generating schematics, running integrity checks, and preparing manufacturing-ready documentation.

What is an autonomous design loop for production-ready electronics?

An autonomous design loop is a self-correcting workflow that iterates through design phases, applying gate-based quality checks and DRBFM change logging until the electronics design reaches production readiness.

How do gate-based quality checks work during iterative electronics design?

Gate-based quality checks evaluate the electronics design at specific milestones, forcing self-review loops that correct errors until gates pass, with human intervention as a fallback for unresolved issues.

Can I run thermal and signal integrity checks automatically after schematic generation?

Yes, the autopilot workflow drafts schematics and automatically runs thermal and signal integrity checks as part of the iterative design phases before finalizing production documentation.

Do I need completed requirements before starting autonomous electronics development?

Yes, you must capture and prepare complete requirements beforehand, then trigger the autopilot to begin the full design loop from those prepared specifications.

When should I use DRBFM change logging in electronics design automation?

DRBFM change logging is applied throughout the autonomous design loop to track revisions, manage design changes, and drive the electronics hardware toward production readiness.