Database queries
Higher L3 cache means more data fits in CPU cache. Fewer expensive memory reads. Faster query execution for MySQL, PostgreSQL, and Redis.
AMD EPYC 7C13 · ENTERPRISE CPU · DELHI DC
RupeeCloud VPS run on AMD EPYC 7C13 — a 64-core enterprise processor from 2021. Not budget Xeons from 2013. Your VPS gets the same silicon used in enterprise datacenters worldwide.
Deploy on EPYC now| Processor | AMD EPYC 7C13 |
| Cores per node | 64 physical cores |
| Threads per node | 128 (SMT enabled) |
| Boost clock | 3.5 GHz |
| L3 cache | 256 MB |
| Memory type | DDR4 ECC |
| Launch year | 2021 |
| Architecture | Zen 3 (Milan) |
Higher L3 cache means more data fits in CPU cache. Fewer expensive memory reads. Faster query execution for MySQL, PostgreSQL, and Redis.
Better IPC means more requests per second from Nginx or Apache on the same vCore count versus older Xeon hardware.
Single-thread performance matters more than core count for most game server software. EPYC 7C13's Zen 3 IPC delivers here.
| Spec | EPYC 7C13 (RupeeCloud) | Budget Xeon E5 |
|---|---|---|
| Architecture year | 2021 (Zen 3) | 2013–2016 (Haswell/Broadwell) |
| L3 cache | 256 MB | 16–30 MB typical |
| Memory bandwidth | ~200 GB/s | ~60–80 GB/s |
| PCIe generation | PCIe 4.0 | PCIe 3.0 |
| ECC memory | Yes | Yes (varies) |
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AMD EPYC 7C13, a 64-core enterprise processor released in 2021. Each server node has 64 physical cores and 128 threads.
vCores are allocated to your VPS and not oversold. For guaranteed physical core allocation with no hypervisor-level sharing, see our VDS plans.
AMD EPYC 7C13 has better IPC (instructions per clock), more L3 cache (256MB vs typical 16-32MB on budget Xeons), and higher memory bandwidth than comparable Intel Xeon E5 chips from 2013-2016 that many budget VPS providers still use.
DDR4 ECC (Error-Correcting Code) RAM on all nodes. ECC memory detects and corrects single-bit memory errors, improving stability for long-running server workloads.
Yes. AMD EPYC uses SMT (Simultaneous Multi-Threading). Each physical core provides 2 threads, giving 128 threads per 64-core node.