POST-QUANTUM DATA PROTECTION

Protect valuable data.
Prepare for quantum attacks.

Scope protection for the archives, exports and backups your business must keep confidential. Our paid services connect post-quantum design, independent key control and documented implementation checks.

Initial focus: database exports and backups.
A Robotics programPOST-QUANTUM · DATA PROTECTION · INDEPENDENT CONTROLScoped commercial engagements

01THE REASON TO ACT

Your data has a longer life than your cryptography.

Confidential information can be collected today and attacked years later. Protecting it means addressing vulnerable key exchange, authentication and key storage before those copies are taken.

Robotics Quantum Assurance connects post-quantum cryptography with control over who can obtain the keys—and under which verified conditions.

Read NIST's explanation
01 / TODAY

Data is copied.

A stolen archive can be kept for as long as its contents have value.

02 / OVER TIME

Capabilities change.

Future quantum capabilities threaten widely used public-key cryptography.

03 / OUR FOCUS

Protect before exposure.

Cover the data, its keys and the complete path to authorized access.

02HOW THE PROTECTION IS DESIGNED

One compromise should not unlock everything.

Explore the access rules behind distributed key custody. The first model uses three independent domains and requires two valid shares.

CHOOSE A SCENARIO

Architecture illustration. These scenarios explain access rules; they are not a live security test.

ENCRYPTED BACKUPENCRYPTED
7C4F A921 03BD E618
9E20 B74A 65CD F102
0A93 D812 4E7B C650
Independent custody domainsQuorum 2 of 3
AHELD
BHELD
CHELD

Contents remain encrypted.

Copying the backup does not authorize key release.

01

Protect the cryptography.

AES-256 for data encryption, with ML-KEM and ML-DSA for post-quantum key establishment and signatures.

02

Separate the authority.

Independent custody and operation-specific approvals bind access to the intended data and recipient.

03

Verify the conditions.

Current path and implementation evidence govern release, migration and recovery.

03PAID SERVICES

Buy a defined protection outcome.

Start with an assessment, build a protection pilot and agree recurring checks. Scope, deliverables and fees are defined in writing.

01

Quantum Exposure Assessment

Review one selected workflow or asset group: cryptographic dependencies, confidentiality horizon and key-access paths. Identify the actions that come first.

DELIVERABLEExposure map, migration priorities and written findings.
FEE MODELFixed fee for an agreed scope
Request an assessment quote ↗
03

Ongoing Quantum Assurance

After a validated pilot, agree periodic checks of defined versions, communication paths and software changes, with migration support.

DELIVERABLEVersioned evidence, periodic reporting and change review.
FEE MODELRecurring contract after a validated pilot
Discuss a recurring agreement ↗

Paid B2B engagements. The written quote specifies the selected assets, deliverables, acceptance criteria and fees.

04EVIDENCE BUILT INTO THE PROCESS

Make protection inspectable.

A credible security outcome comes with a defined threat model, reproducible tests and a record of what was checked.

  • Document the compromises the system must tolerate.
  • Test altered requests, replay, downgrade and recovery paths.
  • Compare against existing post-quantum configurations.
  • Review the protocol and implementation independently.

Independent research supports the engineering. Cryptographic standards, a defined threat model and documented checks form the basis of each engagement.

COMMERCIAL TERMS

Defined work. Agreed fees.

Assessments are quoted at a fixed fee for a defined scope. Protection pilots are priced as projects with agreed milestones. Ongoing assurance uses a recurring contract specifying the checks and reporting to be delivered.

A quotation request creates no payment commitment. Work begins under an agreed written engagement.

05REQUEST YOUR QUOTE

Tell us what you need to protect.

Choose a service and describe the first archive or workflow. We will define the scope and prepare a written commercial proposal.

info@robotics.it

Please describe the environment without including confidential records, credentials or encryption keys.

Your responses stay in this browser. Nothing is sent until you send the email.

CLEAR ANSWERS

Before we begin.

Do we need a quantum computer?

No. Post-quantum cryptography runs on conventional computers. It uses algorithms designed to withstand known classical and quantum attacks.

What can we purchase first?

A fixed-fee exposure assessment for an agreed workflow or asset group. A scoped protection pilot can follow. Recurring assurance is agreed after a validated pilot; every engagement has written deliverables and pricing.

What are the important limits?

A compromised authorized device can expose readable data. Two shares of the same key version can defeat a two-of-three custody model. Earlier copies captured under vulnerable protection cannot be recalled. Every pilot documents its assumptions and limits.

How does the pilot demonstrate protection?

Through a documented threat model, authorized attack tests, comparisons and independent review. Providing testers with compromised legacy credentials checks whether the system still relies on them; it does not simulate quantum cryptanalysis.

Can we discuss a partner integration?

Yes. Software, cybersecurity and managed service providers can discuss a scoped integration or co-development engagement. Describe the intended environment in the quotation request.

Privacy

Your quotation request stays with you.

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For questions about information you share with Robotics, contact info@robotics.it.