Neuro-Symbolic AI

Stop Reacting. Start Preempting.

Cyber Startup is the world's first Zero-Trust Autonomous SOC. Utilizing Continuous-Time Graph Ordinary Differential Equations (CT-GODE) (via adaptive step continuous-time solvers), Hardware-Backed Trusted Execution Environments (TEEs) via Intel SGX, and Hardware-Enforced Static Packet Reflection, we securely trap unauthorized actors before lateral movement begins.

Secure Your Network

SECURITY ORCHESTRATION CONSOLE

Dynamic telemetry and real-time counterfactual intrusion response.

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Threats Preempted
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Nodes Saved
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Cost Avoided
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Operational Hours Saved
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Temporal Asset Graph (TAG) Grid

N0 N1 N2 N3

Causal Threat Directed Acyclic Graph (DAG)

D0 D1 D2 D3
Blast Radius Score Status
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High fragility detected. Adjust BRS slider to isolate nodes.

BRS Isolation Threshold 50

Configures the active eBPF reflection coefficient. Lower values isolate more nodes preemptively but increase local loopback latency.

EBPF_PROBE_CONSOLE v2.4.1

*Disclaimer: ROI estimates, preempted threats metrics, and operational hours saved are dynamically derived from mathematically proven continuous-time graph ODE simulations mapping potential lateral movement cascades across your asset topology.

Idle

Centralized Hardware Orchestration

Our autonomous controller manages fleets of eBPF probes seamlessly across hardware environments, providing complete oversight and unified policy enforcement.

Static Packet Reflection

Cyber Startup performs dynamic compilation of C-code into eBPF bytecode verified and injected at runtime. We forge TCP SYN-ACKs to silently reroute unauthorized actors into ephemeral containment nodes.

Permutation-Invariant Counterfactual Engine

Your defenses shouldn't sleep. Continuously as an active inline step, our Counterfactual Threat Simulation Engine (CTSE) uses a Generative Adversarial Network (GAN) synthesizing novel counterfactual embeddings to simulate threats and continuously stress-test your architecture.

Causal Threat DAG (Directed Acyclic Graph)

Mathematical proof of our preemptive capabilities. This DAG models the continuous-time evolution of lateral movement, allowing our CT-GODE models to predict and intercept threats before they materialize.

graph LR N0[Initial Access] --> N1[Privilege Escalation] N1 --> N2[Lateral Movement] N0 --> N4[Persistence] N2 --> N3[Data Exfiltration] N4 --> N3

Hardware Implementation

Inline host-CPU eBPF and PMU integration. Achieve native Zero-Trust architecture with nanosecond-precision visibility enforced without penalty, establishing an immutable micro-perimeter.

Hardware-Based Enforcement

Direct integration with native Performance Monitor Units (PMUs). Detect memory-resident side-channel precursors natively against hardware execution parameters without relying on software-only heuristics.

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Kernel-Level Enforcement

Cyber Startup leverages structural continuous-time AI to predict attacks. True Zero-Trust architecture backed by dynamically compiled eBPF probes for our enterprise tier.

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Enterprise Pricing Platforms

Tier 1 Base SaaS

$150k / year
  • Mathematical Observability
  • Predictive Blast Radius Dashboard
  • CT-GODE Predictive Engine
Secure Contract

Tier 1.5 Threat Feed API

$50k / year
  • Daily counterfactual threat database access
  • STIX Cyber Threat Intelligence Streams
  • Low-Latency REST Feed Integration
Secure API License

Platinum Enterprise

Custom Pricing
  • Full eBPF PMU Telemetry Integration
  • SGX-Enforced P4 Routing
  • Out-of-band Hardware Enforcement
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About Us

Cyber Startup was founded to bring predictive, mathematically-sound security to the modern enterprise via continuous-time simulations and eBPF integration.

Request a Demo

Contact us to learn more about our $150k/yr Tier 1 Base SaaS and secure your network preemptively.

Contact Sales