Protecting What Matters Most—Across Every Environment

Reduce your attack surface using our powerful yet simple technology. Imagine if your lights off out-of-hours delivered physical disconnection as well, creating a 2/3 reduction in attack surface. Goldilock FireBreak™ gives you the new connectivity control you need, keeping networks, OT controls, facilities, and digital assets as safe as they can possibly be. With connection or disconnection-on-demand, you get up to 100% reduction in attack surface, with minimal cost and disruption to your existing technology stack.

Use Cases for Goldilock!

Goldilock Use Cases for Defense

Critical Infrastructure & OT

Keep control systems disconnected until needed or disconnect them with a moment’s notice.

Defense & Security

Complete physical segmentation of internal operations, reducing the attack surface for national security assets.

Goldilock secure backup and hard drive

Secure Backup and Archive

Complete physical segmentation of internal operations, reducing the attack surface for national security assets

Goldilock AI and Internet protection

AI & Internet protection

Deploy strategic isolation at physical connection layer for zero-day attacks, breaches or AI-based attack containment

Goldilock secures back ups

Securing Backups

Define resilience control for critical data assets in tier-2/3 backups and audit, archive and data rooms.

Time-lock Services

Rebalancing the flexibility and protection options for cold and warm storage.

Certificate and Key Management

Secure storage and access controls for keystores, HSM and certificate infrastructures.

Goldilock uses in the healthcare industry

Healthcare Facilities

Protect healthcare data and infrastructure by allowing complete physical disconnection and segregation of assets.

Goldilock use in data regulations

Data Regulation and Compliance

Ensure compliance with data protection regulations by keeping sensitive data off the internet.

Port Scheduling

Use Goldilock’s non-SNTP time keeping to granularly schedule port connectivity.