Verification Layer for
Critical Storage Infrastructure

Infrastructure that generates cryptographic proof of data integrity and verified sanitization — where conventional systems rely on assumption, assertion, or logs.

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About us / Foundation

Verification layer for storage integrity & sanitization

QNFoundrix builds infrastructure primitives that enable systems to generate immutable, verifiable proof of data integrity and sanitization after erase operations.

Independent of firmware or controller-level trust assumptions, QNFoundrix technologies validate the actual storage state through residual analysis and cryptographic attestation.

This enables systems to move from assumed data deletion to independently verifiable sanitization.

01

Cryptographic Verification

Tamper-evident proof chains generated for erase operations and the resulting storage state. Each operation is cryptographically attested and cannot be retroactively altered.

02

AI-Powered Analysis

AI models trained to detect post-erase residual patterns, signal remanence, and anomalous artifacts — enabling validation beyond conventional verification techniques.

03

Post-Quantum Security

Post-quantum cryptographic primitives securing attestation artifacts, ensuring long-term verifiability against future computational advances.

Core Technology

One Verifiable Trust Outcome.

QSSE forms the core engine of the QNFoundrix platform — addressing the critical gap in verifiable data sanitization.

  • QSSE

Quantum-Safe Storage Engine

QSSE is a cryptographically verifiable storage sanitization engine designed for modern flash-based systems.

It introduces an independent validation layer that evaluates post-erase residual data signals and remanence characteristics using AI-driven analysis to produce structured, tamper-evident attestation artifacts.

 
QSSE integrates post-quantum cryptographic primitives to ensure long-term verifiability of erase proofs and supports policy-driven execution aligned with compliance and governance requirements.
 
QSSE enables storage systems to move from implicit trust to provable, auditable data sanitization.

Core Components

STORAGE MEDIA
ERASE ENGINE
AI RESIDUAL SCAN
ATTESTATION
PQC SIGNATURE
PROOF CHAIN

Key Capabilities

  •  Multi-pass secure erase with cryptographic verification
  • AI-based residual data detection post-erase
  • NIST SP 800-88 and DoD 5220.22-M compliant
  • Hardware-level attestation with post-quantum signatures
  • Tamper-evident audit trail for compliance reporting

Host / Application Layer

Controller / Storage Path


QSSE Verification Layer
Sanitize ! Validate Attest £ Record

Non-Volatile Storage Media

Verifiable Trust Outcome

Audit / Compliance / Remote Assurance

TECHNOLOGY FOUNDATIONS

Deep-Tech Foundations

Systems are built on a convergence of advanced technologies. These components operate as an integrated trust layer independent of traditional firmware assumptions.

Artificial Intelligence

AI-driven analysis integrated across NVMe, NAND, and controller architectures to detect post-erase residual signals and anomalies.

Post-Quantum Cryptography (PQC)

Post-quantum cryptographic primitives securing attestation artifacts and proof chains against future computational threats.

Storage System Integration

Deep integration across NVMe, NAND, and controller architectures enabling direct visibility into physical storage state for independent validation.

Cryptographic Attestation & Ledgering

Tamper-evident audit trails generated through cryptographic proof chains and immutable ledger records.

Policy-Driven Execution

Policy-driven execution enabling compliance-aligned validation workflows and governance enforcement.

Hardware-Software Co-Design

Co-designed validation architecture bridging storage controllers, firmware, and application layers to enable end-to-end verifiable outcomes.

Why it matters

Storage is the blind spot of security

Terabytes of sensitive data pass through storage systems daily — yet when a drive is decommissioned, repurposed, or returned to an OEM, existing security controls no longer provide assurance. Data erasure is assumed, not verified. Integrity is asserted, not proven.

This gap persists even in Zero Trust architectures, which do not extend to verifiable data sanitization at the storage layer.

QNFoundrix closes this gap with infrastructure that generates machine-readable, cryptographically binding proof — not logs, not reports. Proof.

This creates risks in:

  • Data remanence and potential leakage
  • Regulatory and compliance exposure
  • Supply chain trust gaps
  • Forensic and audit limitations

%

of decommissioned drives still contain recoverable data (Blancco 2023)

Average cost of a data breach — IBM Cost of Data Breach Report 2024

NIST deadline for post-quantum cryptography migration across critical infrastructure

%

Hardware-Rooted Attestation
Proof chains anchored in hardware-backed trust — not software-only assertions
Applications

Built for industries where failure is not an option

QNFoundrix builds infrastructure primitives that enable systems to generate immutable, verifiable proof of data sanitization and post-erase storage integrity.

Data Centers

Verified decommissioning for hyperscale infrastructure. Every retired storage unit produces cryptographic proof of complete data sanitization — eliminating liability and enabling audit-ready validation at scale.

  • Audit Trail
  • Bulk Certification

Cloud Infrastructure

Cryptographic proof of tenant data sanitization. Cloud providers can offer verifiable guarantees that previous tenant data is eliminated before storage is re-provisioned.

  • Tenant Isolation
  • API Integration

Government & Defense

Classified data sanitization with verifiable chain-of-custody. QSSE supports stringent national security requirements through cryptographic attestation and post-quantum-secured proof artifacts.

  • Post-Quantum
  • Chain of Custody

Semiconductor & Storage OEM

Embed verifiable sanitization and attestation directly into storage products. OEMs can deliver built-in QSSE capability — enabling cryptographic proof of erase outcomes as a native product feature.

  • OEM Integration
  • Hardware Attestation
Collaborate

Collaboration & Technology Partnerships

We collaborate with partners across the following domains:

Post-quantum cryptographic integration for storage systems
AI-driven validation of post-erase storage states
Storage system architecture and verification layers
Secure hardware–software co-design for attestation systems

We work with semiconductor companies, storage OEMs, cloud providers, and research institutions building next-generation secure infrastructure.

Engagements are focused on co-development, system integration, and validation of verifiable data sanitization capabilities.

For collaboration and partnership inquiries, contact us at admin@qnfoundrix.com

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Olympia Tech Park, Guindy Industrial Estate
Chennai – 600032, Tamil Nadu, India

Core Technology: QSSE (Quantum-Safe Storage Engine)

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