Technical Protocol v4.0.1

Engineered
Immutability.

How TRIVANA bridges the gap between physical lab results and digital cryptographic proof.

Blockchain Anchoring

Every COA hash is written to a decentralized ledger, creating a time-stamped proof of existence that cannot be altered.

R2 Data Isolation

Brand data is isolated in private cloud storage buckets, ensuring complete control and privacy for sensitive batch records.

NFT Authentication

We mint digital twins for physical batches, allowing for mass-authentication and secure chain-of-custody transfer.

The Verification
Lifecycle

01

Ingestion

Lab results are securely ingested via API or manual upload and instantly hashed using SHA-256.

02

Anchoring

The resulting hash is broadcast to our compliance grid and anchored to the L1 ledger.

03

Deployment

A unique QR identifier is generated, linking to the public-facing verification node.

04

Validation

The consumer scans, triggering an instant match check between the seal and the anchored hash.

Mass Minting Infrastructure

For MSOs handling thousands of SKUs, our automated minting engine allows for the creation of digital authenticity twins at scale, integrated directly with your ERP.

EXPLORE API DOCUMENTATION

Isolated Computing

Security is not an option; it's our core architecture. Every brand node runs in a logically isolated environment, preventing cross-leakage of proprietary batch data or lab history.

AES-256 Encryption
TLS 1.3 Streams
SOC 2 Compliant
Audit Logging