Airworthiness Provenance Engine

Trust every part.
Prove every install.

Hold a private aviation parts chain where OEM attestation, custody, and credentialed maintenance records live on one Traceability Ledger. Device Attestation and the Evidence Chain make counterfeit parts detectable at receiving, while the Quality and Recall Ledger pushes airworthiness directive alerts to the exact holders.

The Foundation

The Execution Mechanics

Turn a fragmented maintenance paper trail into a continuous, tamper-evident part genealogy.

01.

OEM Attestation Anchor

Bind each part to its manufacturer at birth. The OEM signs a provenance record on the Traceability Ledger, so a component carries a cryptographic origin claim that a counterfeit cannot forge.

02.

Receiving Gate Check

Stop unapproved parts before installation. Device Attestation verifies a part's signed identity at goods-in, and a component with no valid OEM chain is rejected instead of entering the hangar.

03.

Credentialed Maintenance Log

Record who touched what. Every inspection and repair is written to the Evidence Chain under the technician's verified credential, building a maintenance history no clipboard can lose.

04.

Airworthiness Directive Alerts

Reach the right holders instantly. When the Quality and Recall Ledger flags a suspect lot, alerts route to every current custodian of an affected part rather than a stale mailing list.

05.

Instant Investigation Readout

Reconstruct history in minutes. During a safety event, an investigator queries the ledger for a part's full custody and repair genealogy instead of chasing scattered archives.

06.

Cross-Operator Custody

Preserve the record across owners. A part's provenance follows it through resale, lease return, and teardown, so its lineage survives every transfer between operators and MROs.

The Airworthiness Lifecycle

Follow a single component from OEM manufacture through receiving, maintenance, and a regulator's safety investigation.

Operational log system
cerulea_airworthiness.log

07:11:40

[SYS] Initializing Part Provenance Manifest...

07:11:40

[CMD] mintPart { pn: "7A21-4471", serial: "SN88213", oem: "OEM_0x41" }

07:11:41

[AUTH] Verifying OEM attestation signature...

07:11:41

[OK] Part SN88213 anchored at block 5120844.

Smart Contract Anatomy

Cerulea decomposes airworthiness into modular contracts. Each layer mints origin, gates receiving, seals maintenance, and exposes genealogy without any single MRO or operator owning the record.

Applicability Across the Spectrum

Airworthiness provenance is a horizontal capability. Here is how different aviation actors put the shared parts chain to work.

OEMs & Part Makers

Sign a provenance record at manufacture so genuine parts carry an unforgeable origin, protecting brand and safety reputation while making grey-market counterfeits detectable at every downstream receiving dock.

Key Asset Types

  1. 1Part Serials
  2. 2Material Certificates
  3. 3OEM Attestations

Airlines & MROs

Verify each component at goods-in and record every maintenance task under a credentialed technician, cutting counterfeit exposure and turning a scattered paper trail into an instant, auditable history.

Key Asset Types

  1. 1Maintenance Records
  2. 2Receiving Checks
  3. 3Custody Transfers

Aviation Regulators

Reconstruct the complete genealogy of any part during a safety investigation in minutes and push airworthiness directives directly to current holders instead of broadcasting to stale distribution lists.

Key Asset Types

  1. 1Investigation Trails
  2. 2Directive Registries
  3. 3Compliance Records

Network & Execution Architecture

Whether you are bridging an OEM ERP and MRO maintenance system or capturing part scans from hangar-floor devices, Cerulea routes both into one shared parts chain.

Track A: OEM & MRO System Bridging

For manufacturers and MROs on legacy ERP and maintenance software. Existing part and work-order events are translated into signed on-chain provenance records through the API gateway automatically.

Legacy ERP / MRO

Maintenance Systems

HTTPS / REST

Cerulea API Gateway

Event Hashing & Signing

WASM COMPILATION

Cerulea Private Chain

Aviation Parts Ledger

Track B: Hangar-Floor Device Capture

For receiving clerks and technicians on ruggedized devices. A signing app attests each part scan and maintenance task from a device wallet and routes it straight to the ledger.

Scanner / Device Wallet

Receiving & Tech Devices

DEVICE SIGNATURE

Consortium Validators

Provenance Consensus

STATE EXECUTION

Cerulea Ledger

Shared Part Record

Accelerated Time-to-Market Simulator

Building an aviation parts chain with OEM attestation, receiving gates, credentialed maintenance logs, and directive routing from scratch requires safety-domain engineers and long consortium integration cycles. Calculate your exact deployment speed using Cerulea.

Required Provenance & Recall Rules

48Rules
Simple (10)Enterprise (200)

Traditional Deployment

Solidity Coding & Audits

~ 13 Months

Cerulea Edge

Visual Compilation

WASM Logical Artifacts

~ 4 Weeks

>_

Technical Methodology

The legacy timeline reflects aviation safety-system integration benchmarks. Wiring each OEM and MRO system together, building custom attestation and directive-routing logic, and passing airworthiness data governance takes a baseline of 9 months. Building the same architecture on Cerulea takes a baseline of 2 weeks, because Cerulea Studio visually translates your provenance and recall rules into pre-audited WebAssembly binaries and provisions the shared parts ledger instantly.