Aevum quantum random number generator appliance
Quantum Random Number Generation

Aevum

Available now

Verifiable quantum entropy for enterprise cryptography. Three capacity tiers, an ascending measurement architecture.

Overview

An ascending measurement architecture.

Aevum is a single-photon architecture whose measurement technique builds tier by tier. Aevum 1 uses heralded detection: each random bit originates in an individually heralded quantum event. Aevum 2 measures photon time-of-arrival. Aevum 3 combines both, heralded time-of-arrival, for the highest rate and the strongest verifiability.

Every tier is redundant and offers discrete and continuous output modes.

FIG. 05 — AEVUM MEASUREMENT ARCHITECTURE Aevum 1 HERALD SIGNAL 1 0 1 1 Heralded detection — every bit is a confirmed quantum event Aevum 2 ARRIVAL TIME 0 1 1 0 1 0 Time-of-arrival — the timing itself is the randomness Aevum 3 1 1 0 1 0 0 1 0 Heralded time-of-arrival — both techniques combined for the highest rate and strongest verifiability
Key features

Verifiable quantum entropy

Entropy output that can be audited.

Ascending technique architecture

Heralding, then time-of-arrival, then both combined.

Redundant architecture

No single point of failure in the entropy path.

Discrete + continuous output modes

Serve request-based and streaming consumers.

Live entropy health monitoring

The source proves its quality while it runs.

Designed for NIST SP 800-90B compliance

Entropy-source compliance designed in from the start.

Specifications
SpecificationAevum 1Aevum 2Aevum 3
Entropy rateUp to 100 MbpsUp to 700 MbpsUp to 1.6 Gbps
Measurement techniqueHeralded single-photon detectionPhoton time-of-arrivalHeralded time-of-arrival (combined)
Output modesDiscrete + continuous
ClusteringUp to 8 devices
Form factor6U rack chassis
Interfaces2x RJ45 + 4x SFP4x RJ45 + 4x SFP6x SFP
Management1x RJ45 management port; 1x USB
Entropy validationContinuous health monitoring; Trevisan randomness extraction; designed for NIST SP 800-90B compliance
Power2x 450 W hot-swappable PSUs
Operating temperature0 to 40 °C

Specifications subject to change.

Use cases

Key generation for PQC systems

Feed post-quantum key agreement with entropy of provable origin.

HSM and PKI entropy feed

Seed hardware security modules and certificate authorities.

Telecommunications

Session keys at carrier scale.

Defense & government

Sovereign entropy for classified estates.

Resources

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