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Core Pain Points

Three Core Risks

As attackers evolve from opportunistic theft to targeted ransomware and tampering, traditional firewalls are no longer enough.

Data Leak

Recent international security statistics show that over 60% of major leaks stem from internal data access permission failures.

Data Tampering

Maliciously modified financial transactions, medical records, or production line parameters can be more devastating than data leaks.

Ransomware

Ransomware encrypts every locatable critical file. If data "doesn't exist in visible space," the attack chain fails.

How it works

Concealment-Based Protection

Fundamentally different from traditional "encryption + walls" — TrustONE makes critical data "invisible" from the attacker's perspective.

Traditional

Walls + Encryption

Place data in fixed locations, then build higher walls to protect it. Once breached, everything is exposed.

VS
TrustONE

Concealment + Distribution

Critical data doesn't exist in visible paths during attacker scans — only authorized processes retrieve it dynamically at runtime.

Core Features

Six Core Features

Dynamic Invisibility

Critical data is dynamically positioned within the system. Attackers can't trace its actual location via scans or path tracking.

Authorization Verification

Multi-layer permission checks. Only trusted processes can obtain decryption keys at the right moment.

File Integrity Monitoring

Real-time tampering detection. Abnormal modifications trigger immediate alerts.

Anti-Ransomware

File structure and naming are randomized from external view, preventing ransomware from targeting critical files.

Multi-Node Distribution

Critical data is fragmented across multiple nodes — a single breach doesn't compromise sensitive data overall.

Compliance Audit Logs

All access activity is recorded in tamper-proof logs, meeting financial and medical audit requirements.

Use Cases

Industry Use Cases

🏦 Finance

Protect customer transactions, KYC documents, and credit-scoring model parameters. Compliant with FSA and PCI-DSS.

🏥 Healthcare

Protect medical records, imaging results, and prescriptions. Meets PIPA and HIPAA-level privacy requirements.

🏛 Government

Protect sensitive data from defense, foreign affairs, taxation, and civil registry. Compliant with GCB government baseline.

🏭 Manufacturing

Protect production parameters, formulas, and machine settings. Prevent industrial espionage and supply-chain infiltration.

Specifications

Technical Specifications

ItemSpecification
Supported platformsWindows Server 2019/2022, Linux (RHEL/Ubuntu), Private cloud, Hybrid cloud
Integration methodsREST API, Sidecar Agent, Kernel-level driver (on demand)
Encryption algorithmsAES-256, RSA-4096, proprietary key rotation
ComplianceISO-27001, ISO-27017, GDPR, APPI, PIPA
Min. requirements4 vCPU, 8GB RAM, 100GB SSD (scaling with data volume)
LicensingAnnual subscription, priced per node
Patents

TrustONE Patent List

TrustONE's concealment-based protection is built on multiple granted invention patents, establishing strong technical credibility.

★ TBDPatent number

Method & system for dynamic invisible positioning of critical data

Through dynamic positioning algorithms, critical data has no fixed path within the system. Attackers cannot trace its actual location via scans.

★ TBDPatent number

Multi-node distributed storage and authorization verification architecture

Critical data is fragmented across multiple nodes. Only trusted processes can obtain decryption keys at the right moment.

★ TBDPatent number

Anti-ransomware file structure randomization method

File structure and naming appear randomized to external view, preventing ransomware from selectively encrypting critical files.

★ TBDPatent number

Tamper-proof audit log recording method

All data access activity is recorded in a tamper-proof log mechanism, meeting financial and medical audit requirements.

★ Full patent list (with numbers, publication dates, and titles) will be updated before official launch.

FAQ

Frequently Asked Questions

How is TrustONE different from traditional DLP?
DLP primarily monitors and blocks data flow, still assuming data is "visible." TrustONE fundamentally makes data "invisible" to attackers — a different layer of protection that complements DLP.
Do I need to rewrite my existing system to deploy TrustONE?
No. Most scenarios integrate via REST API or sidecar agents. Existing system code rarely needs modification.
What if hardware fails — could I lose access to my data?
TrustONE uses multi-node distributed storage with automatic disaster recovery — single-node failure doesn't make data inaccessible.
What's the performance impact?
Measured on a 4 vCPU environment, P99 latency increases by approximately 3–8 ms — imperceptible for most applications.
Does it support hybrid private-cloud + on-premise deployment?
Yes. Keys and indexes can stay on-premise while data fragments distribute across cloud nodes — balancing cost and data sovereignty.

Want to See How TrustONE Protects Your Data?

Get in touch — our team will walk you through concealment-based protection and tailor recommendations to your environment.

Contact Us