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A migration this big needs a plan this specific.

A sequenced roadmap to ML-KEM, ML-DSA and hybrid schemes, prioritized by data lifetime and system risk.

Let's Build Together

One call with a senior engineer. A straight answer on what it would take.

Illustration: Post-quantum algorithm migration planning

Where you are. Where you’ll be.

You need this if

  • You have an inventory and need to know what's next
  • Key systems use hardware security modules or embedded devices
  • You're signing multi-year vendor contracts this year

What changes for your business

  • A realistic, budgeted path to quantum-safe encryption
  • No performance surprises in production
  • New purchases quantum-ready by default

What we hand over

  1. Target cryptographic architecture and standards
  2. Hybrid transition design and performance testing
  3. Sequenced, costed migration roadmap
  4. PQC requirements for vendor procurement

What it is

Post-quantum cryptography (PQC) is encryption and signing designed to resist attacks by future quantum computers. NIST standardized the first algorithms in 2024. Migration planning sets the target architecture, the order of systems, and the transition approach, often hybrid, across protocols, hardware and suppliers.

Swapping algorithms touches protocols, hardware, performance budgets and vendor contracts. We design the target architecture using the NIST post-quantum standards (ML-KEM, ML-DSA, SLH-DSA), choose where hybrid classical-plus-quantum schemes make sense during transition, test performance impact, and sequence the work by data sensitivity and system dependencies. Vendor requirements go into procurement now, so new purchases don't add to the backlog.

Why now
2030 NIST begins deprecating RSA and ECC; both are disallowed by 2035. NIST IR 8547 (opens in a new tab)
Last reviewed

How it runs

  1. 01

    Diagnose

    Typically 2–4 weeks

    We map the problem, your data and your systems, and agree the one number that defines success.

  2. 02

    Prove

    Typically 4–8 weeks

    A working pilot on your real data, measured against that number. Not a slide demo.

  3. 03

    Ship

    Scoped to the outcome

    Production build with security, monitoring, cost controls and documentation included, not upsold.

  4. 04

    Run

    Ongoing, optional

    We operate what we built against clear service levels, or train your team to. Your call. No lock-in.

Questions you’ll ask

What are ML-KEM, ML-DSA and SLH-DSA?
The post-quantum algorithms NIST standardized in 2024: ML-KEM for key establishment, ML-DSA and SLH-DSA for digital signatures. They replace RSA and elliptic-curve cryptography, which a large quantum computer could break.
What is hybrid cryptography?
Combining a classical algorithm with a post-quantum one, so a connection stays secure if either holds. It's a common transition approach while post-quantum implementations mature and interoperability settles.
Why include vendor contracts in the plan?
Because products you buy this year will still be running after 2030. Adding post-quantum support and crypto-agility to procurement requirements now stops new purchases from adding to the migration backlog.

Sound familiar? Let’s fix it.

One call with a senior engineer. You’ll leave with a straight answer on what it would take.

Let's Build Together