NEW Multi-Region Anycast Mesh v4.8 Released

High-Performance Edge Compute & Global Infrastructure

Engineered for mission-critical enterprise workloads. Sub-millisecond packet routing, automated DDoS neutralization, and elastic bare-metal clusters across 40+ Tier-IV datacenters worldwide.

99.999%
SLA Guaranteed Uptime
< 14 ms
Average Global RTT
48 Tbps
Backbone Capacity
120+ PoPs
Connected Edge Nodes
nexus-core-daemon --telemetry-stream // anycast-nl-ams01
LIVE TELEMETRY
$ nexus-netctl probe --target=ams-ix.nl --samples=1000 --bbr-v3
[INFO] Initiating TLS 1.3 cryptographic session (X25519, AES-256-GCM)
[INFO] BBR congestion algorithm locked: pacing_rate=10.2Gbps, rtt=0.48ms
[STATUS] Multi-homed uplink 100GbE QSFP28: Port 1 [UP], Port 2 [UP]
[SUCCESS] Zero packet loss verified across 4,200,000 UDP/TCP datagrams
Core Architecture

Built for Unyielding Speed & Reliability

Every layer of our software and hardware stack is purpose-designed for high throughput and resilient packet transport.

BGP Anycast Routing

Traffic automatically routes through the mathematically closest and healthiest node, ensuring automatic failover within 200 milliseconds.

AI Edge Shielding

State-of-the-art volumetric DDoS mitigation capable of absorbing multi-terabit attacks seamlessly without elevating synthetic latency.

Kernel BBR & eBPF Acceleration

Optimized Linux kernel network sockets with BBR congestion control and eBPF packet filters to prevent buffer bloat under peak congestion.

Global Interconnect

Direct peering at tier-1 internet exchanges including AMS-IX, DE-CIX, MSK-IX, and LINX for unthrottled cross-border transport.

Isolated Virtual Private Cloud

End-to-end encrypted transport tunnels connecting distributed microservices without exposing endpoints to public address probes.

Compliance & Sovereignty

ISO/IEC 27001, SOC 2 Type II, and GDPR compliant nodes with strictly isolated cryptographic telemetry streams.

Ready to Scale Your Critical Workloads?

Connect with our solutions architects to benchmark throughput or deploy dedicated nodes across our low-latency edge topology.