rtx5000-56 by OVHcloud

rtx5000-56 is a Cloud GPU (8 vCPUs, 56 GiB RAM, 400 GB SSD, 2xQuadro RTX 5000 16 GiB VRAM) server offered by OVHcloud with 8 vCPUs, 56 GiB of memory and 400 GB of storage. The pricing starts at 0.8307 USD per hour.
8 vCPU
56 GiB Memory
400 GB Storage
2 GPU
Spare SCore
13,231
(All-cores)
1,764
(Single-core)

Specifications

Server Metadata

Vendor ID
ovh
Name
rtx5000-56
Description
Cloud GPU (8 vCPUs, 56 GiB RAM, 400 GB SSD, 2xQuadro RTX 5000 16 GiB VRAM)
Family
Cloud GPU
Hw Virt
Average Time To Start
120.5
Status
active
Observed At
2026-09-17T10:13:44.407050

Availability

REGION / IDSPOTONDEMAND
GRA9 (FR) / GRA9
- 0.8307 USD/h

Processor

vCPUs
8
Hypervisor
KVM
CPU Allocation
Dedicated
CPU Cores
8
CPU Speed
3.3 GHz
CPU Architecture
x86_64
CPU Manufacturer
Intel
CPU Family
Xeon
CPU Model
W-3235
CPU L1D Cache
32 KiB
CPU L1D Cache Total
256 KiB
CPU L1I Cache
32 KiB
CPU L1I Cache Total
256 KiB
CPU L2 Cache
4 MiB
CPU L2 Cache Total
32 MiB
CPU L3 Cache
16 MiB
CPU L3 Cache Total
128 MiB
CPU Flags
fpu, vme, de, pse, tsc, msr, pae, mce, cx8, apic, sep, mtrr, pge, mca, cmov, pat, pse36, clflush, mmx, fxsr, sse, sse2, ss, syscall, nx, pdpe1gb, rdtscp, lm, constant_tsc, arch_perfmon, rep_good, nopl, xtopology, cpuid, tsc_known_freq, pni, pclmulqdq, vmx, ssse3, fma, cx16, pdcm, pcid, sse4_1, sse4_2, x2apic, movbe, popcnt, tsc_deadline_timer, aes, xsave, avx, f16c, rdrand, hypervisor, lahf_lm, abm, 3dnowprefetch, cpuid_fault, ssbd, ibrs, ibpb, stibp, ibrs_enhanced, tpr_shadow, flexpriority, ept, vpid, ept_ad, fsgsbase, tsc_adjust, bmi1, avx2, smep, bmi2, erms, invpcid, mpx, avx512f, avx512dq, rdseed, adx, smap, clflushopt, clwb, avx512cd, avx512bw, avx512vl, xsaveopt, xsavec, xgetbv1, xsaves, arat, vnmi, umip, pku, ospke, avx512_vnni, md_clear, arch_capabilities
Ecpus
7.5
Scalability
93.75

System Resources and Accelerators

MEMORY
Memory Amount
56 GiB
Memory Amount Actual
55 GiB
GPU
GPU Count
2
GPU Memory Min
16 GiB
GPU Memory Total
32 GiB
GPU Manufacturer
NVIDIA
GPU Family
Turing
GPU Model
RTX 5000
GPUs
  • NVIDIA Turing Quadro RTX 5000 (Memory amount: 15360, Firmware version: 590.48.01, BIOS version: 90.04.B7.00.04, Clock rate: 2100)
  • NVIDIA Turing Quadro RTX 5000 (Memory amount: 15360, Firmware version: 590.48.01, BIOS version: 90.04.B7.00.04, Clock rate: 2100)
STORAGE
Storage Size
400 GB
Storage Type
ssd
Storages
  • 400 GB ssd
NETWORK
Network Speed Baseline
4 Gbps
Network Speed Max
4 Gbps
Inbound Traffic
0 GB/month
Outbound Traffic
0 GB/month
IPv4
1

CPU and System Topology

Server Description

A dedicated GPU-accelerated instance featuring dual Turing-architecture graphics cards and balanced system memory for parallel computing workloads.

GPU AcceleratedGeneral Purpose

OVHcloud rtx5000-56 is a GPU-accelerated server instance featuring an Intel Xeon W-3235 processor with 8 dedicated physical cores running at 3.3 GHz, paired with 56.0 GB of RAM and a 400 GB local SSD. The core of its hardware profile is a dual NVIDIA Quadro RTX 5000 GPU setup from the Turing family, providing 32 GB of total VRAM. While CPU-bound tasks and memory write operations show average to weak benchmark performance, the instance excels in GPU-driven workloads. It achieves top-tier results in LLM inference for small and medium models, placing in the top 10% for prompt processing and text generation. This server is qualitatively cost-effective for projects requiring dedicated parallel processing power without the expense of newer-generation enterprise GPUs, making it highly suitable for machine learning inference, ray tracing, image processing, and data science workloads.

Economics

Average Price per Region

Prices per Zone

Lowest Prices

Performance

Workload Profiles

0.758Score
Precomputed compound score for Cache Intensive workloads. A weighted average (geometric mean) of benchmark scores compared to their medians: score = ∏ (x_i / m_i)^(w_i / Σw). The score of 1.0 represents a synthetic baseline server with the median performance of each component benchmark; 0.5 means roughly half the performance; and 2.0 means twice the performance of that reference profile. Component weights: 50% Redis RPS (pipeline=1, SET), 20% Redis RPS (pipeline=16, SET), 10% PassMark Memory Mark (composite), 10% Memory bandwidth (read, 16 MB ~ L3), 10% PassMark single-thread CPU. Rationale for component selection: In-memory key-value store workload, mixing direct Redis performance metrics with memory speed and latency benchmarks, and single-core CPU performance profiles.
Component Score Weight Impact
Raw Reference Normalized Target Actual
Redis RPS (pipeline=1, SET) 1,369,675 ops/sec 1,919,696 ops/sec 0.713 50.00% 50.00% -15.60%
Redis RPS (pipeline=16, SET) 8,841,887 ops/sec 11,736,081 ops/sec 0.753 20.00% 20.00% -5.52%
PassMark Memory Mark (composite) 2,839 2,418 1.17 10.00% 10.00% +1.58%
Memory bandwidth (read, 16 MB ~ L3) 52,343 MB/sec 108,260 MB/sec 0.483 10.00% 10.00% -7.02%
PassMark single-thread CPU 2,488 Mops/s 2,365 Mops/s 1.05 10.00% 10.00% +0.49%

Memory Bandwidth

Compression

OpenSSL

Geekbench Single-Core

Score: 1,460

Geekbench Multi-Core

Score: 6,702

Passmark CPU Scores

BENCHMARKSCORE
Mark
14006
Compression
194109
Encryption
4926
Extended Instructions
14489
Floating Point Maths
27284
Integer Maths
38194
Physics
1158
Prime Numbers
86
Single Threaded
2488
String Sorting
23187

Passmark Memory Scores

BENCHMARKSCORE
Memory Mark
2839
Database Operations
6571
Memory Latency
51
Memory Read Cached
29491
Memory Read Uncached
12096
Memory Write
14059

Stress-ng Raw Scores

Stress-ng Relative Multicore Performance

LLM Inference Speed for Prompt Processing

LLM Inference Speed for Text Generation

Static Web Server

Redis

PostgreSQL heavy read-only throughput

Alternatives

Servers of the Same Family

INSTANCEvCPUsMEMORYGPUs
rtx5000-28 428 GiB1
t1-le-45 845 GiB1
t2-le-45 1545 GiB1
l40s-90 1590 GiB1
a100-180 15180 GiB1
t1-le-90 1690 GiB2
rtx5000-84 1684 GiB3

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rtx5000-56 FAQs