If the site is 600km from the nearest city and the link drops, operations still need to run. We design for the remote site, not the head office.
Satellite, LTE, and MPLS links to remote sites are unreliable and bandwidth-constrained. Infrastructure has to operate independently, not just degrade gracefully when the link goes down.
SCADA and operational technology networks are increasingly connected to corporate IT. That creates an attack surface most IT teams aren't equipped to understand or secure.
Standard rack equipment isn't rated for mine sites. Hardware that fails in heat, dust, or vibration doesn't get replaced quickly when the nearest depot is hours away.
Local compute and storage that runs independently of WAN connectivity and synchronises when links are available, not when they feel like it.
Industrial-rated compute and networking for harsh physical environments: heat, dust, vibration, and power instability included.
Isolated OT networks with controlled IT/OT bridging, continuous monitoring, and incident response capability built for operational technology.
SD-WAN with satellite failover and traffic prioritisation. Operational data takes precedence over everything else when bandwidth is constrained.
Centralised visibility of all remote infrastructure through a single monitoring platform, with alerting and automated remediation before on-site engineers are dispatched.
Reliable synchronisation of operational and safety data between remote sites and central infrastructure, with conflict resolution for intermittent connectivity.
Threat detection, access control, and incident response for SCADA and industrial control environments that can't tolerate IT-style patching cycles.
Infrastructure for environments where connectivity is unreliable and failure is expensive. We've designed for it before.