- AS4C32M16SA-7TCNTR (TSOP-54) and AS4C32M16SB-7BIN (TFBGA-54) 512Mb
SDRAM symbols/footprints, imported via UltraLibrarian/SnapEDA sources
(see MANIFEST.csv for full provenance).
- Fix Lattice LFE5U-45F-8BG381 symbol's Value/manf# grade suffix.
- Import 3 castellated breakout footprints (QFP48/QFP64/SSOP8,
1.27mm castellation pitch) from coddingtonbear/kicad-castellated-breakouts
into footprints/other/castellated_breakouts.pretty/, plus the upstream
reference board projects under reference/ for future consultation.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01T5pjBJQ7tf9pwsSs8rG2sm
- Add DMT6007LFG-7 (transistor) and TPS2121RUXR (dual-input power mux) with
footprints and TPS2121RUXR's 3D model.
- Import Lattice_ECP_FPGA symbol library (ECP5U-45 CABGA256/381/554,
CSFBGA285) from mattvenn/basic-ecp5-pcb's legacy .lib, converted via
kicad-cli sym upgrade; symbol-only, footprints resolved via the standard
Package_BGA KiCad library. Add a vendor-accurate BG256 3D body
(LFE5U-25F-8BG256I) for manual per-instance assignment.
- Fix check_library.py's 3D model reference regex to strip surrounding
quotes, which KiCad 10's re-save format adds around (model "...") paths
-- was causing a false "missing 3D model" error for SJ-3506-SMT-TR after
its footprint got re-saved in the new format.
- scripts/mikilab_lib.py / mikilab_cli.py: typed Python API + JSON CLI
for add/update/remove/query, for other apps to integrate without
shelling out to add_component.py
- lib_common.py/import_component.py/import_batch.py: regenerate
sym-lib-table.global/fp-lib-table.global on every mutating call, not
just the project-local tables
- scripts/find_missing_3d_models.py: lists components with no 3D model
and search links to fill the gap
- docs/GUIDA_USO.md: practical Italian usage guide (companion to README.md)
- checkup fixes: removed orphan duplicate footprint
footprints/other/CP_20_1_ADI.kicad_mod, and a dangling
${easyeda2kicad}/tmp 3D model reference in AXP2101's footprint that
pointed at a file that never existed on disk
The auto-generated FSC-BT1058 footprint used roundrect pads with a
slightly different body outline than the physical module. Since the
FSC-BT1035 footprint (pad geometry verified against the Feasycom
datasheet perimeter walk) matches the same physical package/pinout,
FSC-BT1058.kicad_mod now reuses that geometry directly.
Also recategorized FSC-BT1058 from "other" to "rf" (symbol, footprint,
3D model), matching FSC-BT1035 and the rest of the Bluetooth/RF parts.
Regenerated sym-lib-table/fp-lib-table (project and global) and synced
the real KiCad global library tables. Added "bt1058" to the rf
classification tokens in lib_common.py so a future re-import doesn't
land back in "other".
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
FSC-BT1058 had ended up with two footprint/symbol libraries on disk
(FSC-BT1058 and MIKILAB_FSC-BT1058) after a re-import baked the
"MIKILAB_" nickname prefix into the component name itself. Since that
prefix is normally added automatically when sym-lib-table/fp-lib-table
are generated, the double-prefixed copy (MIKILAB_MIKILAB_FSC_BT1058)
was invisible to collision checks and left the original as a stale,
outdated duplicate.
Consolidated onto the single correct library (symbols/other and
footprints/other without the redundant prefix, matching the rest of
the library's naming convention), fixed the symbol's Footprint
property and the footprint's 3D model reference, and regenerated both
lib-tables from disk.
To stop this class of bug from recurring:
- lib_common.check_component_name() rejects any --name that already
starts with "MIKILAB", used by import_component.py's import_symbol/
import_footprint (and therefore also by add_component.py and the
SnapEDA/UltraLibrarian importers, which call into the same core).
- check_library.py now flags any on-disk symbol/footprint whose name
already carries that prefix as an ERROR, independent of how it got
there.
- import_component.py gains --remove to cleanly delete a component
(symbol, footprint library, 3D model) and regenerate the lib-tables
in one step, for exactly this kind of cleanup.
Errors: 0 on check_library.py after the fix.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Imports were done via import_snapeda.py for the SnapEDA parts and the new
scripts/import_ultralibrarian.py for XTAC5212IRGER (UltraLibrarian export),
mirroring import_snapeda.py but handling UL's timestamp-named symbol files
and its multiple pad-size footprint variants (nominal/-L/-M).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
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