Connectivity for Logistics and Warehousing

Symmetric dedicated circuits and private site-to-site paths for distribution centres and logistics operations along the Interstate 5 and State Route 99 corridors — sized for the outbound traffic warehouses actually generate.

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Logistics & Warehousing runs on the network.

Warehouse networks are upload machines. Warehouse management systems, handheld scanning, yard and gate automation, and camera fleets all push data out of the building continuously, and increasingly facilities replicate to each other directly. It is the traffic profile that shared business plans handle worst, and the reason so many distribution operations run on a connection that benchmarks well and fails during a shift.

The Central Valley corridors carry a very large share of California's goods movement, and connecting facilities along them is routine work on this network. The usual engagement is not a single circuit but a coherent multi-site design: dedicated capacity where it is needed, private paths between the facilities that exchange data directly, and one provider accountable when something breaks at three in the morning.

Engineered for the work.

The capabilities our logistics & warehousing customers rely on every day.

Upload-sized capacity

Symmetric circuits sized against outbound scanning, inventory, and video traffic rather than a download tier.

Camera and access-control backhaul

Capacity engineered against real encoder settings rather than a nominal camera count.

Site-to-site replication

Private paths between facilities so replication never crosses the public internet.

Round-the-clock support

Monitored circuits and an escalation path that works on a night shift, not just in business hours.

Reliability you can build on.

Owned infrastructure and local engineering — not a reseller routing you offshore.

Privately owned fiber

5,000+ miles of underground fiber engineered in California.

Carrier-grade uptime SLA

Financially-backed service levels on every dedicated circuit.

24/7 local NOC

Monitored around the clock by California-based engineers.

California backbone

Low-latency routes across the Central Valley and statewide.

Logistics & Warehousing connectivity questions

How much bandwidth does a distribution centre need?

Considerably more upstream and less downstream than most plans are built for. Count cameras at their real bitrate rather than a datasheet figure, plus scanning and inventory traffic, replication, hosted applications, and voice, then size the circuit against the outbound total during the busiest shift.

Why does our fast plan still struggle?

Almost always because the upstream allocation is a small fraction of the advertised download figure, and warehouse traffic is overwhelmingly outbound. A symmetric circuit at a lower headline rate typically outperforms a much larger asymmetric plan for this workload.

Can facilities be connected to each other privately?

Yes, and where two sites replicate continuously it is usually the better architecture. A point-to-point circuit gives the pair a dedicated Layer 2 path with predictable latency and no exposure to the public internet, which also simplifies the security posture at both ends.

What about facilities outside the built-up corridors?

Reaching sites that other carriers skipped is core work for this network, and it is an engineered build rather than a standard order. Distance and route determine feasibility and timeline, and the review says plainly when a build is not practical.

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