Quantum-Safe Networking

Quantum computers will break today's encryption. Your keys need to survive.

Pramatra Space delivers quantum-generated cryptographic keys from satellite orbit to banks, grid operators and government networks -- using photon physics that no compute power can defeat.

The Physics

How quantum key distribution works

Three stages -- governed by quantum mechanics, not software assumptions.

01 / Transmission

Orbital photon transmission

As the satellite passes within line-of-sight, it fires a stream of single photons, each polarized according to the BB84 protocol. Any interception attempt disturbs the quantum states and is immediately detectable.

02 / Key Exchange

Quantum key reconciliation

Ground stations capture photon polarization events during the pass window. After the pass, classical reconciliation over an authenticated channel distills a shared random bit string -- provably known only to the two endpoints and unguessable by any third party.

Photon Alice basis Bob basis Measurement Key bit?
1 + + 0 KEEP
2 + x 1 DISCARD
3 x x 1 KEEP
4 x + 0 DISCARD
03 / Delivery

Encrypted key delivery

The reconciled key is forwarded to your integration endpoint via mutual-TLS API within the same orbital pass window. Your application consumes quantum-randomness-derived key material without modifying existing cryptographic infrastructure.

By the Numbers

What the pilot numbers show

256-bit
Quantum entropy per key delivery

AES-256 equivalent, quantum-random number generator verified per delivery cycle

< 24h
Integration to first key delivery

Pilot programme average, existing PKI infrastructure

3
Critical infrastructure verticals

Financial services, energy grid operations, government networks

Sector Coverage

Built for the sectors that cannot wait

Three buyer verticals with distinct regulatory exposure and threat profiles.

"The quantum threat to our settlement networks is not a ten-year problem. Adversaries are archiving our traffic today. Pramatra Space gave our CISO a credible path to post-quantum readiness on a deployment timeline the board could approve."

Head of Information Security, regional private bank -- early access pilot cohort
Explore financial services solution

"Our SCADA authentication infrastructure was built when RSA-2048 was considered unbreakable. That assumption no longer holds. The pilot integration required no changes to our existing operational technology -- only the key source changed."

Network Operations Lead, national energy grid operator -- proof-of-concept participant
Explore infrastructure solution

"Sovereign key material that originates outside any terrestrial network boundary is a category requirement for us. Satellite-based QKD is the only distribution method that satisfies it without reliance on a foreign infrastructure layer."

Senior network architect, national government agency -- technical evaluation programme
Explore government solution
Pilot Cohort

From the organisations in early access

"The quantum threat to encryption is not theoretical -- nation-state actors have already begun harvesting encrypted traffic. Pramatra Space gave our board a concrete implementation path to post-quantum readiness without waiting for new hardware standards to mature."

Head of Information Security Regional private bank -- early access pilot cohort

"Our operational technology networks were designed in an era when public-key cryptography was considered mathematically unbreakable. The Pramatra Space pilot showed us a practical migration path that did not require ripping out existing infrastructure or retraining operations staff."

Network Operations Lead National energy grid operator -- proof-of-concept participant
Act Now

The quantum transition timeline is not negotiable.