2xE5-2630v4-i
- 2x Intel Xeon E5-2630v4
- 3.10GHz • 20C / 40T
- 64 GB RAM
- 1x 1TB SSD Storage
- Unmetered Bandwidth
- 1–10 Gbps Network
- Anti-DDoS Protection
- Sofia, Bulgaria · EU
Run high-bandwidth applications, streaming and data-heavy workloads on dedicated bare-metal servers with network options up to 10Gbps.
Compare 10Gbps dedicated server plans by CPU, RAM, storage and network capacity for bandwidth-intensive workloads and large data transfers.
Combine dedicated bare-metal resources with network options up to 10Gbps when sustained throughput, large transfers or high concurrency are part of the workload.
A faster network port delivers the most value when your server, storage, application and traffic pattern can use the additional available throughput.
Match CPU, RAM, storage performance, application design and network speed as one system so a fast port is not limited by another server resource.
A 10Gbps port provides more network headroom than 1Gbps, but real value depends on how much traffic your workload can generate and receive.
Enough for many websites, applications and general server workloads when sustained traffic stays comfortably below the port ceiling.
View all dedicated serversAdds significantly more network headroom for selected servers and traffic-heavy workloads that can make use of higher-capacity connectivity.
Compare 10Gbps-capable serversCPU, RAM, storage throughput, application design and the remote network must also keep pace before higher port capacity becomes useful.
End-to-end throughput depends on storage, CPU, application efficiency and the remote network, so each part of the path must support the speed you expect.
Plan for the full data path instead of assuming the network interface alone will make every transfer ten times faster.
Encryption, compression, application logic and high connection counts can consume processing power.
Disk read/write performance may become the limiting factor for large transfers and data-heavy services.
Software concurrency, caching and request handling determine how effectively the server uses network capacity.
Routing, latency and the destination network can limit a transfer below the local server port speed.
10Gbps is most useful for sustained or highly concurrent traffic that can approach the limits of lower-speed networking during normal or peak usage.
Large numbers of simultaneous connections can create aggregate throughput that is much higher than a single user needs.
Backups, datasets and file delivery benefit most when storage and destination networks can sustain the required transfer rate.
High aggregate bitrate across many viewers can make additional port capacity useful for properly designed streaming infrastructure.
Consider future peaks and expected expansion so the network tier does not become the first resource you outgrow.
A 10Gbps dedicated server is designed for customers who need high-bandwidth hosting on dedicated hardware. The plans on this page combine bare-metal resources, DDoS protection and listed 10Gbps unmetered bandwidth for workloads that move large amounts of data or serve many concurrent users.
Support video delivery and other high-bitrate workloads where many simultaneous viewers can create sustained aggregate network demand.
Compare 10Gbps plansUse a high-bandwidth dedicated server for origin traffic, software distribution and large downloads when storage and remote networks can keep pace.
Compare dedicated serversMove large backup sets, datasets and replicated content more efficiently when the source, destination and storage layer support multi-gigabit throughput.
View network locationGive busy applications, download services and data platforms more network headroom while retaining dedicated CPU, RAM, storage and server-level control.
Ask about your workloadGet clear answers about 10Gbps ports, unmetered bandwidth, suitable high-bandwidth workloads and the server resources that influence real throughput.
A 10Gbps dedicated server has a network interface or port option up to 10 gigabits per second. Actual throughput depends on hardware, routing, workload and remote networks.
No. Network options vary by server. This page highlights available configurations listed with 1–10 Gbps network capability.
The current 10Gbps dedicated-server plan cards list unmetered bandwidth. Review the order details and acceptable-use terms that apply to the selected server.
Higher-capacity ports can help with streaming, large file transfers, data-heavy applications and backups when the server, storage and network path can keep up.
Not automatically. Application design, CPU, RAM, storage speed, latency, routing and the destination network can all limit performance before the network port does.
Yes. The plans on this page are dedicated physical servers, so the CPU, RAM and storage resources belong to the selected machine rather than a shared VPS environment.
Usually not. 10Gbps is most useful for high traffic, large transfers or many concurrent connections when the server, storage and network path can use the extra capacity.
No. Transfers can be limited by disk speed, CPU, protocol overhead, latency, routing and the remote network. A 10Gbps port is interface capacity, not guaranteed per-connection speed.
An unmetered 10Gbps dedicated server combines dedicated physical hardware with a 10-gigabit network port where usage is not sold as a fixed monthly transfer allowance. Actual throughput still depends on the server, routing, workload, remote networks and applicable service terms.
They can be a strong fit for streaming, VOD, CDN origin traffic and large file delivery when sustained bandwidth is important. The application, storage subsystem and destination networks must also be able to use the available network capacity.