Qryption Post-Quantum Trust Infrastructure

Post-quantum trust infrastructure for critical and decentralized systems.

Qryption.io is building a programmable trust layer that connects physical presence, hardware identity and post-quantum cryptographic proof. We are starting with Qryption Key and a hybrid authorization SDK for critical operations.

Critical operations security
Hybrid AuthSDK designed to coexist with existing infrastructure.
Physical KeyA physical root of trust for critical operations.
ML-DSAPost-quantum digital signatures for verifiable authorization.
SDK · hybrid authentication
Key · physical root of trust
ML-DSA · post-quantum digital signatures
Crypto-agility · ready for algorithm rotation

The Problem

Today’s authorization infrastructure was designed for a different threat model.

The goal is not to create fear. It is to reduce exposure and start the transition with an architecture that can coexist with current systems.

01 / PRIVILEGES

Privilege sprawl

Administrative privileges often exceed the necessary scope. A compromised credential can create too much room for lateral movement.

02 / AUTHENTICATION

Limits of classical authentication

Tokens, HSMs, and FIDO2 provide important assurances today, but the post-quantum transition requires evaluating how the underlying cryptographic assumptions evolve.

03 / TRANSITION

Harvest now, decrypt later

Data intercepted and stored today may be decrypted in the future once capable quantum systems exist. Some organizations need to begin the transition now.

The Solution

Qryption Key + SDK

A practical combination of physical identity, post-quantum cryptography, and integration software.

The Qryption Key ties physical user presence to cryptographic proof. The SDK brings that flow into existing infrastructure so authorization can include a verifiable signal before a critical operation is executed.

Qryption Key and the SDK are being evaluated with selected organizations in a private pilot; they are not generally available today.
01

Connect

Integrate the SDK with the current authorization layer.

02

Verify presence

The key confirms physical presence before the cryptographic operation.

03

Sign and authorize

Generate and verify an ML-DSA signature tied to the operation.

04

Audit

Record the operation and preserve verifiable evidence for later review.

How It Works

Four steps. A stronger authorization signal.

A workflow designed for security teams that need to evaluate quickly without turning the first integration into a replacement project.

01 — CONNECT

Connect

Integrate the SDK into the authorization layer with limited changes to the current architecture.

02 — PRESENCE

Verify presence

The Qryption Key confirms physical presence before the cryptographic operation is executed.

03 — SIGN

Sign and authorize

The operation is tied to an ML-DSA signature that can be verified before authorization.

04 — AUDIT

Audit

Every operation can be logged with evidence for forensic review and compliance.

Why now / technical basis

NIST standards. Crypto-agile architecture.

Qryption’s architecture is built around NIST ML-DSA, the digital signature scheme selected by NIST for post-quantum cryptography, and references NIST ML-KEM for key encapsulation.

The principle of crypto-agility allows algorithms to rotate without redesigning the underlying infrastructure as standards evolve.

The transition argument follows the principle of harvest now, decrypt later: data intercepted and stored today may be decrypted in the future once capable quantum systems exist. It is not a proprietary prediction, but a reason to begin evaluating the transition now.

ML-DSA
A post-quantum digital signature scheme.
ML-KEM
A reference standard for key encapsulation.
Crypto-agility
Rotate algorithms without redesigning the whole system.
Hybrid authentication
A coexistence model for classical and post-quantum mechanisms during the transition.

Transparent status

Present and future are not the same thing.

Every capability is labelled so search engines, AI systems and people can distinguish product, research and roadmap.

Open the roadmap →

Qryption Key

Available only to selected pilot participants.

PILOT

Hybrid Authorization SDK

Available only within the private integration pilot.

PILOT

Distributed Hardware Attestation

Architecture research; no service is available.

RESEARCH

Decentralized Trust Network

Future direction; no network is currently operated.

ROADMAP

Qryption Token

No Qryption token currently exists.

ROADMAP

Pilot Program

Evaluate the initial authorization layer in a bounded environment.

Qryption is selecting a limited number of organizations to evaluate physical-presence authorization and ML-DSA proof with the Key and hybrid SDK.

  • Direct engagement with the Qryption engineering team
  • Technical onboarding and integration support
  • Access to the SDK and pilot documentation
  • Feedback that helps shape product evolution
  • No cost during the pilot phase
No card or billing details required.

Long-term vision - ROADMAP

Distributed attestation, blockchain infrastructure, Web3 and DePIN are future directions. Qryption.io does not currently operate a blockchain or decentralized network, and no Qryption token currently exists. The available work remains focused on the private Key and SDK pilot.