AI Security
Control model, agent, and prompt supply chains and runtime execution paths.
AI Security · Software Validation · Critical Infrastructure Security
COONTEC designs and implements AI security, embedded software validation, and critical infrastructure security for mission-critical organizations.
What COONTEC Does
COONTEC's business is organized around three technical domains.
Control model, agent, and prompt supply chains and runtime execution paths.
Validate embedded software behavior and quality through virtualization-based test environments.
Build security visibility and controls for OT/ICS, maritime, and dedicated-network environments.
Core Platforms
COONTEC's core platforms for validation, AI security, and supply-chain security.
Product Solutions
Specialized solutions aligned with industry operating constraints and security requirements.
Applied Industries
COONTEC technologies apply across automotive, aerospace, maritime, railway, public-sector, and critical infrastructure environments.
Trust Factors
Beyond business categories, these are the execution capabilities required for mission-critical programs.
Structure requirements and validation workflows with safety standards in mind.
Reflect SBOM, supply-chain, and OT/ICS security requirements in system architecture.
Work across embedded execution environments and virtualization-based validation flows.
Design policy, traceability, and audit structures for model and agent execution.
Support staged validation and operation for systems where downtime has high impact.
Maintain documentation, communication, and technical response standards for cross-region work.
Engineering Notes
Technical perspectives on validation, security, and operations from COONTEC's product and industry work.

Secure-ALPS is an embedded self-protection platform designed to defend applications against reverse engineering, binary tampering, debugging, and runtime attacks. Combining ALPS-Shield and ALPS-Crypto, the platform delivers multi-layered protection through obfuscation, anti-debugging, integrity verification, resource encryption, Secure Boot, and white-box cryptography for mission-critical embedded systems.
In embedded projects where tests written in C, Python, Shell, and other languages coexist, fragmented test results are a familiar headache. Here's how to combine TAP — a standard protocol battle-tested over 38 years — with the FastVLabs virtual environment to build a unified, language-independent test reporting pipeline.
Project Consultation
Share your AI security, software validation, or critical infrastructure security challenge, and we will help define a practical adoption scope.
Discuss your project