The Browser Is Hidden
The Wire Is Not

Every managed attribution platform protects the analyst's browser fingerprint. None of them protect what happens below it. Dispersive® Stealth Networking sits beneath the browser and above the wire, completing the attribution stack from endpoint to egress with no workflow changes and no rip-and-replace.

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No Tunnel to Fingerprint

Dispersive fragments each session across multiple independent encrypted paths, producing traffic indistinguishable from routine web browsing, with no VPN signature for machine-learning classifiers to detect.

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No Pool to Burn

Dispersive operates no shared egress IP pool, so when one analyst's activity triggers adversary detection, the blast radius stays contained to that operation and no other analyst inherits the compromise.

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No Session to Lose

Because traffic transits multiple simultaneous paths, the failure of any single path does not drop the session. Collection continues through network attacks, outages, and contested environments that would immediately terminate a VPN connection.

The Unsolved Layer of OSINT Tradecraft

The browser is protected, but the network is not.

The IC OSINT Strategy 2024-2026 calls open source intelligence the INT of First Resort. Federal programs have responded by investing heavily in managed attribution: hardened browsers, isolated workstations, application-layer fingerprint control, but the network layer has not kept pace.

Every managed attribution platform in use today still egresses through a single tunnel, from a single point of presence, with a single source IP. That is precisely the artifact adversaries fingerprint, correlate, and burn. Machine-learning classifiers identify VPN traffic with accuracy exceeding 95% from encrypted handshake characteristics alone. Once a vendor's IP pool is identified, every analyst on it inherits the compromise, past and future.

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Invisible by Design
Safe by Architecture

Dispersive® Stealth Networking is the network-layer foundation that existing managed attribution platforms were never designed to provide. Browser-layer MA controls the digital persona. Dispersive controls how data moves through the network. Together they address the full attribution surface. Either layer alone leaves the analyst partially exposed.

Dispersive architecture originates from U.S. Department of Defense programs, engineered for environments where detection equals mission failure. Dispersive operates transparently beneath leading Secure Enterprise Browsers including Seraphic Security (CrowdStrike), Kasm, and Tehama, requiring no changes to analyst tools, procedures, or training. 

Invisible

Traffic protected by Dispersive cannot be identified as intelligence activity. There is no tunnel signature for classifiers to flag, no consistent source address for adversaries to log, no traffic pattern that distinguishes collection from routine web browsing. Invisibility is the architecture itself, not a feature added on top of it.

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Resilient

Operations continue under active disruption without session loss. Data transits multiple simultaneous paths across 40+ global egress regions. If a path is degraded, jammed, or attacked, fragments reroute dynamically. The session never drops.

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Sovereign

Each organization controls its own transport plane. No shared pool. No external dependency on vendor egress infrastructure. Gateways operate in outbound-only mode, presenting no listening surface to the internet. An adversary cannot discover, probe, or target what they cannot find.

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Quantum-Resilient 

Dispersive is quantum-resilient by design, with automated per-stream key rotation aligned to NIST post-quantum cryptography guidance. VPN sessions captured today are a future intelligence asset for the adversary. Dispersive removes that risk by architecture, not by policy.

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Deployment Options

Deployment is available as DispersiveCloud, a fully managed SaaS platform that is SOC 2 Type II certified and operational in any region within minutes. DispersiveFabric supports on-premises and air-gapped environments for organizations requiring full transport-plane sovereignty. The Dispersive Client deploys as an endpoint sidecar across Windows, macOS, Linux, iOS, and Android, requiring no inbound ports.

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Dispersive® Stealth Networking Workspaces for Kasm

Watch how Dispersive establishes protection for teams doing the most sensitive work on the web: researchers, analysts, and OSINT professionals who can't afford to be seen. Traffic fragments across multiple deflects, paths rotate dynamically, and attribution is managed and obfuscated at every hop.

Aligned to the Strategy
Built for the Threat Environment Ahead

Dispersive's architecture aligns directly with three of the IC OSINT Strategy's four focus areas: next-generation workforce and tradecraft, OSINT innovation on unclassified systems, and external partnerships with American innovators. Network-layer stealth is the logical next evolution of managed attribution tradecraft. Browser-layer obfuscation was the first generation. Transport-layer invisibility is the second.

Dispersive is a U.S. company with technology lineage from DoD programs, hyperscaler partnerships with AWS and Azure, and SOC 2 Type II certification. A classified federal intelligence program has deployed Dispersive to protect OSINT analyst traffic across contested network environments (detailed outcomes pending declassification approval). Adopting Dispersive is not adding a tool, it is advancing the tradecraft baseline.

Dispersive® Stealth Networking Solutions

Fortifying Networks with Secure, Resilient, and High-Performance Connectivity

DispersiveCloud

DispersiveCloud™ is a hosted SAAS SOC 2 Type II-compliant solution that brings the power of our groundbreaking network fabric that simplifies the deployment and management process without compromising performance or security. We operate on state-of-the-art cloud networks, partnering with various vendors, including Amazon Web Services and Azure to enable global high availability.

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DispersiveFabric

DispersiveFabric™ is our robust, flexible solution designed for larger, more complex environments. A software-defined overlay network, DispersiveFabric™ utilizes a microservices architecture to provide unparalleled security, reliability, and performance. Deployable on any type of infrastructure with infinite scale- public cloud, private cloud, containers, VMs, dedicated hardware.

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Architect the Mission Network
That Can't Be Found

Start with a Mission and Attribution Assessment: a focused review of your OSINT collection architecture, managed attribution stack, and network-layer exposure, completed in two to three weeks with no commitment required. A Technical Proof of Value then validates stealth transport capability against your actual operational environment and threat profile, typically within four to six weeks.