Kumio provides a hierarchy of agentic AI systems that actively defend modern digital environments against evolving cyber threats. Its agents are industry‑trained to understand the specific operational constraints, regulatory requirements, and threat landscapes of API, OT, and IoT sectors, enabling protection of the full attack surface—including devices, systems, and underlying connectivity—without disrupting daily operations.
Funding
Funding not disclosed
Founders
Product
Problem
Modern digital environments that incorporate APIs, operational technology (OT), and Internet of Things (IoT) devices lack security solutions that understand their specific operational constraints, regulatory requirements, and unique threat vectors, leaving the full attack surface exposed.
Solution
Kumio deploys a hierarchy of agentic AI systems that continuously monitor and defend these environments. Each AI agent is trained on industry‑specific security intelligence for API, OT, and IoT sectors, enabling it to recognize attacker behavior while respecting operational limits. The agents protect individual components—IoT devices, OT systems, APIs, and the connectivity stack—without interrupting normal processes. By integrating contextual awareness with autonomous response capabilities, Kumio reduces the need for manual rule creation and provides ongoing protection against evolving cyber threats.
Target Audience
Primary customers are enterprises that operate critical OT and IoT infrastructures—such as manufacturing, energy, transportation, and industrial automation firms—along with organizations that expose APIs and need comprehensive, context‑aware cyber defense.
Features
- Hierarchical agentic AI architecture that assigns specialized agents to protect specific assets and layers of the attack surface
- Industry‑trained models that incorporate regulatory constraints and operational policies for API, OT, and IoT environments
- Continuous, real‑time monitoring and autonomous threat mitigation that operates without disrupting production workflows
- Deep contextual analysis of attacker tactics combined with knowledge of system constraints to prioritize and respond to incidents
- Unified protection across IoT devices, OT control systems, APIs, and underlying connectivity infrastructure