Extracted 52 pad records + silkscreen geometry from the raw JSON-Lines
document format inside manvalan/DigiRadio's fabricated EasyEDA Pro
project (epro2kicad couldn't handle this project's newer multi-doc
export format, so the relevant FOOTPRINT document was located and
parsed directly). Pad size/pitch independently match the official
FSC-BT1035 datasheet's mechanical spec exactly; pad numbering follows
the same perimeter walk as the datasheet's own pin table, so pad N =
pin N. The underlying component was originally a SnapEDA export for the
mechanically-compatible FSC-BT806 (same 13x26.9mm 52-pad family
package), relabeled BT1035 by the designer -- documented in README.
Validated with kicad-cli fp export + visual SVG comparison against the
datasheet's own footprint layout figure before import. No 3D model.
Realtek Gigabit Ethernet PHY, imported from a SnapEDA KiCad export zip
(symbol + QFN40P500X500X90-41N footprint + STEP 3D model, all bundled
together). This is the first real-world use of scripts/import_snapeda.py.
Self-contained KiCad library (symbols, footprints, 3D models, docs,
import/check tooling) with no dependency on kicad-personal-library.
- Fixed sym-lib-table/fp-lib-table: single (version 7) header, one entry
per library, MIKILAB_<name> nicknames, ${KIPRJMOD}-relative URIs
- Resolved the SOT95P280X145-5N footprint collision (TPS7A2012PDBVR vs
TPS7A2018PDBVR): confirmed byte-identical modulo KiCad's internal
tedit timestamp, unified into one shared footprint
- Resolved a case-insensitive filename collision between the official
Diode.kicad_sym and a custom diode.kicad_sym
- Wrapped standalone footprints (ESP32-S31-WROOM-3, IC_TPS63020DSJT,
SOT95P280X145-5N) into their own .pretty libraries so they're
actually registered in fp-lib-table
- Fixed broken symbol->footprint references (including one pointing at
a nonexistent easyeda2kicad library)
- Added scripts/check_library.py, import_component.py, add_component.py,
import_batch.py, and lib_common.py