AMD EPYC 7301 Dedicated Server
Bare-metal AMD EPYC 7301 dedicated servers with full root access and dedicated hardware in United Kingdom. 2 configurations covering 16 cores, 32–128GB RAM, deployed with unmetered bandwidth and 24/7 support.
- 99.99%Network Uptime
- UnmeteredBandwidth
- InstantSetup
- 24/7Expert Support

- AMD7301
- Up to128 GB
- Up to2x 2TB SATA

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Available AMD EPYC 7301 Servers
| Selected | Server | Location | CPU | RAM | Storage | Bandwidth / Port | Price /mo | Action |
|---|---|---|---|---|---|---|---|---|
| HP DL325 G10 (4LFF) 1x AMD EPYC 7301 | Single x AMD EPYC 7301 (16 cores) | 128 GB | 2x 2TB SATA | — | Out Of Stock | |||
| HP DL325 G10 (4LFF) 1x AMD EPYC 7301 UHB | Single x AMD EPYC 7301 (16 cores) | 32 GB | 2x 2TB SATA | — | Out Of Stock |
AMD EPYC 7301 use cases and scoring
MonoVM Server Score
4.3/10
Hardware index from 16 cores, 128 GB max RAM, 1 location. Not a customer rating.
Best For
- Parallel background jobs whose active data can remain in RAM.
- Backup or file services using the paired HDD capacity.
- Internal application consolidation with the larger-memory configuration.
- Migration testing for workloads already validated on the EPYC 7001 platform.
Not Ideal For
- High-IOPS VM storage or transactional databases expecting NVMe-like latency from HDDs.
- Single-thread-bound services chosen only for the sixteen-core total.
- Assuming all listed EPYC 7301 plans include the same RAM allocation.
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AMD EPYC 7301 Specifications
- Processor
- AMD EPYC 7301
- Vendor
- AMD
- Product line
- EPYC
- Cores
- 16
- Memory
- 32–128 GB
- Storage options
- 2x 2TB SATA
- Configurations
- 2
- Locations
- 1
- Root access
- Full root / administrator
Network & Locations
Every AMD EPYC 7301 ships on a dedicated uplink with unmetered bandwidth, DDoS filtering and 24/7 monitoring.
United Kingdom
Frequently Asked Questions
Answers to common questions about AMD EPYC 7301 servers.
The EPYC 7301 has sixteen physical cores. Listed single-CPU configurations include different RAM allocations and two 2 TB HDDs. This combines multi-core CPU capacity with capacity-oriented storage, which matters for applications that perform frequent random disk access.
The CPU is a candidate for multiple guests, but the listed HDD layout may limit guests with active databases or frequent small writes. Check hypervisor support, choose enough RAM and measure aggregate disk latency before deciding how many VMs to consolidate.
Choose an array layout based on recovery and usable-capacity needs. A mirror generally provides about one drive of usable capacity before overhead. For active application data, verify whether a suitable SSD configuration is available rather than assuming the CPU model determines storage performance.
The EPYC 7302P is a later sixteen-core single-socket option with different platform capabilities and a broader mix of listed storage configurations. Compare it when storage latency or migration away from the older platform is a priority.