
Network & Infrastructure Security
Dispersive Stealth Networking
Splits and continuously reroutes traffic across unpredictable paths to hide data in motion.
Dispersive Stealth Networking Overview
What it does
Dispersive Stealth Networking is a stealth networking platform that makes enterprise data in motion invisible by splitting each session into multiple streams and routing them over independent, constantly changing paths. Rather than securing a single fixed tunnel like a VPN, it applies a spread-spectrum-inspired multipath design so there is no stable route, endpoint, or identity for an adversary to find, intercept, or attack. It is bought by network teams as a zero-trust alternative to VPN and legacy secure connectivity.
How it works
At an authenticated source, data streams are split and re-addressed with a Dispersive header, then sent through software nodes called Data Deflects that relay packets along multiple simultaneous paths across any mix of internet, 5G, MPLS, satellite, and private links. New paths can be rolled mid-transmission, so routes shift continuously and reconnaissance goes stale. The destination reassembles the streams and re-requests any missing packets. The platform is delivered as DispersiveCloud, a hosted service, and DispersiveFabric, a software-defined overlay, with post-quantum cryptography using the NIST-standardized ML-KEM and ML-DSA algorithms.
Credentials and traction
SOC 2 Type II compliant and HIPAA compliant, with FIPS 140-3 compliant cryptography. Gartner cited Dispersive as an example vendor for Automated Moving Target Defense and Advanced Obfuscation in its 2025 Emerging Tech Impact Radar for Preemptive Cybersecurity. The platform is validated by the U.S. Department of Defense and Intelligence Community and used across government, defense, financial services, and critical infrastructure, with named users including the Department of Homeland Security, American Tower, and satellite operator Ovzon.
Key Capabilities
mapped to solution categoriesHides internal applications from the public internet and unauthorized users, accepting inbound connections only after the trust broker authorizes a named user and device.
Re-evaluates user and device trust signals throughout an active session, revoking or stepping down access when anomalous behavior is detected, not just at authentication time.
Grants access to individual named applications rather than network segments, users and devices can only reach explicitly authorized applications regardless of network position.
Continuously varies network paths, IP addresses, and network configurations so attackers cannot reliably map or target stable routes to protected systems, rendering previously collected reconnaissance obsolete.
Limits lateral movement and code execution even when identities or credentials are compromised, reducing the blast radius of ransomware and destructive attacks.
Schedules and triggers randomization events randomly, routinely, or on demand, including reconfiguration driven by predictive threat intelligence inputs, with AI and machine learning continuously adapting defenses in real time.
Compliance
certificationsIntegrations
compatible toolsImplementation & support
Info last updated on September 1, 2026
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