Turn breach intelligence into attack paths
ShieldView monitors breach and dark-web sources for exposure tied to your organization, then connects what it finds to live, exploitable attack paths. Intelligence that drives action, not just alerts.
Knowing you're exposed isn't the same as knowing your risk
A leaked credential in a breach dump is only dangerous if it still works and leads somewhere. Most tools stop at the alert. ShieldView takes the next step, validating exposure and synthesizing the attack path an adversary would actually take.
Turn a leaked credential into an attack path
ShieldView correlates breach and dark-web exposure into the exact, MITRE-mapped path an attacker would take.
- T1110.004Credential stuffing+0mVPN portal
- T1078Valid accounts+6mOkta SSO
- T1114Email collection+22madmin mailbox
- T1098Account manipulation+51mbackdoor admin
- T1021Remote services~4hinternal hosts
What security teams get
20+ source monitoring
Continuous breach and dark-web scanning across 20+ intelligence sources, correlated to your assets and identities.
Watchlists & alerts
Track domains, identities and assets with configurable alerts, so new exposure reaches you the moment it appears.
AI attack-path synthesis
Correlated findings become AI-generated attack chains, showing exactly how exposure leads to compromise.
Fed into engagements
Exposed credentials flow straight into the credential-attack agent, turning intelligence into validated, live findings.
How security teams run ShieldView
Watch every source
Monitor breach, dark-web, IP and domain intelligence tied to your organization, continuously.
Validate the exposure
Confirm which leaked credentials and exposures are actually usable against you, not just noise.
See the attack path
Correlate findings into the exact, MITRE-mapped path an attacker would take to reach what matters.
Everything Security teams need
- Breach and dark-web monitoring across 20+ sources
- Configurable watchlists for domains and identities
- AI risk scoring and foothold identification
- Attack-path synthesis from correlated findings