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Resilient connectivity engineered for AI-scale data centres and the broader Southeast European digital ecosystem — carrier diversity, internet exchange peering, private interconnects and out-of-band management paths that survive failure.
A data centre without resilient connectivity is an island — and AI workloads cannot operate on islands. The network infrastructure that connects NOVACORE facilities to the internet, to customers, to cloud providers and to each other is as critical as the power and cooling inside the building. Our network architecture is built on three principles: carrier diversity with physically separate fibre routes entering the facility from multiple providers; internet exchange peering at major European exchange points to reduce latency and transit costs; and private interconnection options — VPN, dedicated wavelength and dark fibre — for customers who require guaranteed throughput, encrypted transport and no exposure to the public internet. Every connectivity layer is designed with redundancy: diverse physical paths, automatic failover, capacity headroom and 24/7 monitoring. The out-of-band management network runs on an entirely separate physical infrastructure so that engineers can reach equipment even when the production network is compromised.
Multiple fibre carriers with physically diverse routes entering the facility through separate entry points. Each carrier provides independent transit and transport services, ensuring that a single fibre cut, carrier outage or routing failure does not isolate the facility. Carrier-neutral model allows customers to bring their own network providers alongside NOVACORE's selected carriers.
Direct peering at major European internet exchange points including Frankfurt, Amsterdam, London and Bucharest. Peering reduces latency by eliminating intermediate transit hops, lowers bandwidth costs by exchanging traffic directly with content providers and cloud platforms, and improves resilience by providing multiple traffic paths to major destinations.
Neutral connection points within the facility where customers, carriers, cloud providers and service providers can interconnect directly. Cross-connects between participants eliminate the cost and latency of hair-pinning traffic through remote peering points. A structured patching and documentation system ensures every cross-connect is traceable and auditable.
Volumetric and application-layer DDoS mitigation engineered into the network boundary — not bolted on as an afterthought. Inline scrubbing centres, traffic analysis and rate limiting at the edge protect customer workloads and NOVACORE infrastructure from volumetric attacks, protocol exploits and application-layer floods. Mitigation capacity is sized to handle attacks well beyond expected baseline traffic.
Dedicated links between customer sites, NOVACORE facilities and cloud provider on-ramps. Options include IPsec and WireGuard VPNs for encrypted overlay networks, MPLS and VPLS for guaranteed quality of service, dedicated wavelengths for high-bandwidth point-to-point circuits, and dark fibre for customers who require full control over the optical layer. Every private connection is deployed with redundant paths and automatic failover.
Independent management paths that survive production network failure. A physically separate network infrastructure — switches, routers, firewalls and uplinks — provides IPMI, serial console, remote KVM and PXE boot access to every server, switch and storage device. This network remains reachable even during a total production network outage, enabling remote diagnosis and recovery without physical site access.
Network resilience is built in layers — from physical infrastructure through routing policy to operational procedures. Each layer provides a fallback that activates automatically when the layer below it fails.
Secure AI and high-performance computing for enterprises, governments and research.