A toolchain for turning passive-target designs, active coil measurements, sensor timing, runtime traces, and thermal profiles into DSE-ready CalibrationPacks.
Create passive boot, SLED rail, and coupon geometries over the Mobient coil grid, then evaluate them across arbitrary placements and sweeps over the thermally annotated coil map — using canonical context from the twin, ThermalBench, StackGuard, and CalibrationPack (read-only; Forge never owns thermal truth).
Also linked directly from the homepage as the most visual, playable tool.
ForgeImport passive-target and coupon measurements, compare predicted versus measured behavior, fit residuals, and determine whether a passive profile is ready for DSE authorization.
Characterize active coil force-current-gap behavior, current dynamics, and H01/H23 row-feed limits. Validate 190 A feed-path budgets and export active-side calibration constants.
Ingest coolant, PCM, coil, driver, baseplate, and surface-temperature measurements. Fit thermal response, define coolant-valid and PCM-limited envelopes, and export DSE thermal derate packs.
Carry the tile's mechanical package across one lifecycle: 2.5D packaging and clearance checks, requirement-to-evidence trace, and ECO impact; a DrawingVault fabrication handoff; and an AssemblyOps build + commissioning handoff.
Plan and audit PWM quiet windows, Hall / capacitive / RFID / current / VBUS / temperature sample timing, raw-vs-used traceability, and known-clear freshness.
Validate runtime traces against timing budgets, gate ordering, causal receipts, row-feed evidence, sensor validity, known-clear state, and safety invariants. A simulation / replay validator, not a live firmware gatekeeper.
Evaluate population, mission, cargo, movement, and fault scenarios against calibrated profiles and safety gates. Determine what is authorized, derated, rejected, or simulation-only.
Compile CalBench, CoilBench, RowFeed, SenseWindow, TripWire, thermal, TileProfile, and CoilMap artifacts into a versioned CalibrationPack with hashes, DSE adapters, and RunManifest provenance.
The suite turns design assumptions and bench measurements into versioned calibration artifacts. CalibrationPack Compiler then publishes DSE adapter constants and RunManifest provenance so the deterministic twin can distinguish nominal, simulated, measured, limited, and DSE-ready evidence.
DSE_READY means software-artifact readiness inside a declared validity envelope; it is not flight or safety certification.