Carrier-grade datacenter interconnect: dedicated wavelengths, dark fiber, engineered routes. Metro to long-haul, sub-5ms latency, geo-diverse paths.
Use case · Metro to long-haul · 100G+ per pair

Connect your datacenters at
the speed of fiber.

Datacenter interconnect is the load-bearing link in every multi-site architecture, replication, failover, hybrid cloud, AI training clusters, and the financial cost of every millisecond of latency between facilities. CyberNet engineers the physical fiber path: dedicated wavelengths or dark fiber strands, geo-diverse routes, sub-5ms latency where the route allows, and the optics-level control your network team wants.

100G+ per pair. Sub-5ms on engineered metro paths. 31 years of fiber engineering. One accountable route engineer per build.

What It Is

Dedicated fiber paths between
your facilities. Yours to operate.

A datacenter interconnect is a dedicated, engineered fiber path between two or more of your facilities. It carries traffic at line rate, without the public internet in the middle, replication, failover, hybrid-cloud private links, AI training data movement, low-latency trading paths, and any workload where shared infrastructure can’t meet the latency, throughput, or sovereignty bar. CyberNet engineers the path, maintains the physical layer, and leaves what you light to you.

Replication & high availability

Synchronous and asynchronous replication between datacenters, database mirrors, storage replication, VM failover, disaster-recovery pairs. Latency budgets are tight, throughput is sustained, and the path can’t share fate with the production network it’s protecting.

Hybrid & multi-cloud private links

A private path from your datacenter to a cloud on-ramp facility, or between two regions of your own infrastructure. No public-internet hop, no egress surprises on the invoice, no noisy neighbors. Engineered for the throughput and consistency cloud-resident workloads expect from on-prem.

AI training & high-throughput data movement

AI training clusters, scientific computing, financial trading networks, and content distribution backbones, workloads where shared infrastructure doesn’t meet the latency, throughput, or sovereignty requirements. Dedicated wavelengths sized to the optics on each end.

What This Usually Looks Like

Three configurations,
to help you locate your own.

These aren’t pricing tiers. They’re examples of typical datacenter interconnect configurations at different scales, so you can see roughly where your build might land. Yours will be engineered to your specific endpoints, capacity, redundancy, and SLA.

01 / Metro DCI

Metro Datacenter Interconnect

Two datacenters in the same metro region. Single pair of strands or a dedicated wavelength pair, 5–25 miles apart, sub-5ms latency, redundant building entrance at each end. The configuration we deploy most often for mid-size enterprises consolidating workloads across owned facilities.

For mid-size enterprises consolidating workloads across owned facilities.
02 / Multi-Site Campus

Multi-Site Campus Network

A research institution, hospital network, or university with 4–12 buildings. Multiple strand pairs in a star or ring topology, geo-diverse routing between key buildings, 100G optics per pair. Engineered as a campus-scale physical layer for organizations that operate their own core.

For healthcare networks, R1 universities, large campus deployments, and government facilities.
03 / Long-Haul Transport

Long-Haul Transport

Carrier-grade transport between regions for a regional carrier, MSP, or hyperscale customer. Long-haul routes 100+ miles, regenerated at engineered intervals, DWDM-ready, geo-diverse and conduit-diverse paths. Built for organizations operating their own backbones.

For regional carriers, wholesale MSPs, and hyperscale customers building their own backbones.
Why CyberNet

Carrier-grade routing.
Without the carrier in your traffic.

Most providers either won’t sell dark fiber, or sell it with contractual fine print that limits what you can build on top of it. CyberNet has been engineering fiber routes since 1995. We design the path, we maintain the physical layer, and we leave everything you light to you.

Route transparency before you sign

Before you sign, you see the route map, conduit paths, splice points, regen sites, and geo-diversity proof. After you sign, you see it in Mission Control with live status and dispatch tracking for any work happening on your strands. No black-box claims about diversity that fall apart on the first audit.

The route engineer is on staff

We’ve been engineering carrier-grade fiber routes across the U.S. since 1995. The same engineers who architected our backbone are the ones who’ll engineer your route. Not an outsourced design partner. Not a vendor’s vendor. The accountable team is in our building.

A supplier that won’t compete with you

For carriers, MSPs, and large enterprises building their own networks, the wholesale terms are explicit. White-label where you need it. No-compete clauses in writing where the geography overlaps. We sell the physical layer; you keep the customer relationship.

Inside Mission Control

Your physical layer.
Watched by NikolAI. Visible to you.

Once your interconnect is in service, Mission Control gives you the same visibility into your route that we have internally. The path shows up on your Ops Center map, and NikolAI monitors the physical layer for anomalies, fiber breaks, attenuation drift, conduit work happening near your route, and surfaces them in real time.

A / Live Route Monitoring

Every strand. 24/7.

NikolAI watches every strand around the clock. Optical anomalies, attenuation changes, route incidents, flagged in Mission Control before they become outages. The first time you hear about a problem on your route is in NikolAI’s ticket, not in a 2 a.m. phone call.

Same monitoring posture as our internal NOC. Same data feed. No filtered view.
B / Dispatch Transparency

Field work, tracked like a rideshare.

Any field work on your route, maintenance, repair, neighboring construction, shows up on your Ops Center map. Tracked live. No hidden activity. When CyberNet crews are touching your fiber, you see who, where, and why before they get there.

Every dispatch is logged for audit and exportable on demand.
C / Capacity Advisory

Upgrade paths surfaced before you need them.

When you’re approaching the capacity ceiling on your optics, NikolAI suggests upgrade paths, additional waves, higher-capacity optics, or adding a parallel strand. The recommendation arrives weeks before saturation, not the day after a clinical or trading floor incident.

No emergency upgrade calls. No surprise overage on a critical path.
Commonly Deployed For

The industries we build DCI for
most often.

Datacenter interconnect is the right choice when shared infrastructure can’t meet your latency, throughput, sovereignty, or compliance requirements. Below: the industries where we deploy it most, and the operating standards we hold the route to.

Operating under
HIPAA-Ready SOC 2 FCC Part 68 Licensed CLEC since 1995 FINRA-CompliantNIST-Aligned
A / Healthcare

Hospital DC Pairs

Redundant 100G between hospital datacenters for real-time clinical applications, imaging movement, and disaster-recovery replication. HIPAA-ready private fiber. See the healthcare build →

B / Technology

AI Training & Hyperscale

High-throughput wavelengths between training clusters, storage tiers, and cloud on-ramps. Sized to the optics on both ends. Built for organizations that operate their own core network.

C / Government & Public Sector

Sovereign Routing

Sovereign control of the physical path between government facilities, research labs, and university campuses. Geo-diverse routing, route documentation, and audit-grade procurement paper.

D / Carrier & Wholesale

Wholesale Long-Haul

Long-haul transport for regional carriers, MSPs, and hyperscale customers building their own backbones. White-label terms, no-compete clauses in writing where geography overlaps.

Common questions

Common questions

What latency can you commit to?

Sub-5ms on engineered metro paths, with geo-diverse routing.

Dark fiber or wavelengths?

Either. Dedicated wavelengths or dark fiber, metro to long-haul.

What is DCI typically used for?

Replication and high availability, hybrid and multi-cloud private links, and AI training data movement.

How is CyberNet different from other carriers?

CyberNet is an engineering-led, licensed CLEC since 1995 that owns its network, 150,000+ on-net buildings and 700+ cell towers. You work directly with the engineers who design and run your service, with no level-1 layer between you and the person who can fix the problem.

What uptime does CyberNet commit to?

A 99.999% core-uptime SLA, contractually penalized when missed.

How quickly will I hear back?

Within one business day.

How do I check coverage at my address?

Submit your address through the technology configurator and we’ll check coverage at each site.

What is Mission Control?

Mission Control is the operations platform every CyberNet customer lives inside, five workspaces: Orders, Marketplace, Ops Center, Billing, and Helpdesk. See Mission Control.

Interconnect Build

Ready to engineer your interconnect?
Start with the route map.

Tell us where your facilities are and what you’re moving between them, replication, failover, training data, financial paths, and we’ll come back with an engineered route. The path, the diversity proof, the optics options, the SLA, the documentation. Reviewed by a senior route engineer. Response within one business day. No SDR layer.