Chip Fetcher Lite

Install

Lightweight wiki-first component staging area. Add a component, check the Adom wiki for KiCad/Altium/Fusion files, upload what's missing, then file the symbol + footprint + 3D model straight into your EDA libraries — with library destinations matched per manufacturer and a clean 5-field symbol.

adom-wiki pkg install adom/chip-fetcher-lite

Latest: v1.1.1, published

Contents

Chip Fetcher Lite

A fast, low-context staging area for component CAD — the lightweight companion to the full chip-fetcher. When you just want to know "is this part on the Adom wiki, and do I have the KiCad / Altium / Fusion files?" — and then file the good ones straight into your libraries — this is the tool.

What it does

  1. Add a component (by MPN, or a description like 100nF 0402 capacitor). It's added to a list and checked against the Adom wiki. Descriptions resolve to the real MPN page.
  2. See file availability at a glance. Each row has four status boxes — KiCad · Altium · Fusion · JLC — that colour independently:
    • KiCad/Altium/Fusion: red (0 of symbol/footprint/3D) · yellow (1–2) · green (all 3). Hover for the breakdown.
    • JLC: green if a JLCPCB/LCSC part number is known, red otherwise. Click to set one.
  3. Upload what's missing. Drop a .kicad_sym / .kicad_mod / .step etc. onto a row; it's held in a local staging area and the box turns green.
  4. Probe your libraries. With one click the app scans your machine (via adom-desktop) for your KiCad/Altium/Fusion libraries and shows, per row, exactly where each file will go:
    • Symbol → your JLC category library (JLC_Capacitors_BLT.kicad_sym, JLC_MCUs_BLT, …)
    • Footprint → the manufacturer .pretty (or the KiCad stock footprint for generic passives — locked, marked KiCad default)
    • 3D → the manufacturer subfolder under your 3D/ directory
    • New libraries are flagged new and created on send. The folder/file name is shown; hover for the full path.
  5. Send to library. Files the symbol (merged into the category lib, trimmed to the 5 standard fields + LCSC), the footprint, and the 3D model onto your machine, creating and registering any missing libraries. A live progress bar shows each step.

Rows are grouped under category headers (Resistor, Capacitor, LED, …). Multi-select + Select all, and pick which EDA targets to send to.

How it stays "lite"

It does not scrape vendors, generate symbols, or run cross-source validation. It reads the wiki, stages files, and files them — nothing heavier. Adding 138 basic parts at once checks the wiki for all of them (bounded to 4 concurrent lookups) without breaking a sweat.

Architecture

  • Runtime: Node.js, zero native dependencies (pure http).
  • Frontend: a single public/index.html, vanilla JS, dark Adom theme (Familjen Grotesk / Satoshi / JetBrains Mono).
  • Storage: data/data.json + data/staging/<id>/ for uploaded files (runtime only — not shipped).
  • Wiki: adompkg search + wiki.adom.inc/api/v1/pages/<slug> + /blob/component/<slug>/<file>.
  • Desktop: library probe + file delivery go through the adom-desktop bridge.

Run

node server.js            # listens on :7821  (CFL_PORT to override)
node cli.js app           # open as a Hydrogen webview

See SKILL.md for how an AI agent drives it, and DEVELOPING.md for the architecture notes and hard-won gotchas (start there if you're extending it).