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vhp-12c-24gb-amd by Vultr

vhp-12c-24gb-amd is a High Performance (12 vCPUs, 24.0 GiB RAM, 500 GB NVMe) server offered by Vultr with 12 vCPUs, 24 GiB of memory and 500 GB of storage. The pricing starts at 0.197 USD per hour.
12 vCPU
24 GiB Memory
500 GB Storage
Spare SCore
27275
(All-cores)
2219
(Single-core)

Specifications

Server Metadata

Vendor ID
vultr
Name
vhp-12c-24gb-amd
Description
High Performance (12 vCPUs, 24.0 GiB RAM, 500 GB NVMe)
Family
High Performance
Hw Virt
Average Time To Start
138.67
Status
active
Observed At
2026-07-20T18:54:12.456715

Availability

REGION / IDSPOTONDEMAND
Amsterdam (NL) / ams
- 0.197 USD/h
Atlanta (US) / atl
- 0.197 USD/h
Bangalore (IN) / blr
- 0.197 USD/h
Mumbai (IN) / bom
- 0.197 USD/h
Paris (FR) / cdg
- 0.197 USD/h
Delhi NCR (IN) / del
- 0.197 USD/h
Dallas (US) / dfw
- 0.197 USD/h
New Jersey (US) / ewr
- 0.197 USD/h
Frankfurt (DE) / fra
- 0.197 USD/h
Seoul (KR) / icn
- 0.197 USD/h
Osaka (JP) / itm
- 0.197 USD/h
Johannesburg (ZA) / jnb
- 0.197 USD/h
Los Angeles (US) / lax
- 0.197 USD/h
London (GB) / lhr
- 0.197 USD/h
Madrid (ES) / mad
- 0.197 USD/h
Manchester (GB) / man
- 0.197 USD/h
Melbourne (AU) / mel
- 0.197 USD/h
Mexico City (MX) / mex
- 0.197 USD/h
Miami (US) / mia
- 0.197 USD/h
Tokyo (JP) / nrt
- 0.197 USD/h
Chicago (US) / ord
- 0.197 USD/h
Santiago (CL) / scl
- 0.197 USD/h
Seattle (US) / sea
- 0.197 USD/h
Singapore (SG) / sgp
- 0.197 USD/h
Silicon Valley (US) / sjc
- 0.197 USD/h
Stockholm (SE) / sto
- 0.197 USD/h
Sydney (AU) / syd
- 0.197 USD/h
Tel Aviv (IL) / tlv
- 0.197 USD/h
Warsaw (PL) / waw
- 0.197 USD/h
Toronto (CA) / yto
- 0.197 USD/h
São Paulo (BR) / sao
- 0.296 USD/h

Processor

vCPUs
12
CPU Allocation
Shared
CPU Cores
6
CPU Speed
2 GHz
CPU Architecture
x86_64
CPU Manufacturer
AMD
CPU Family
EPYC
CPU L1D Cache
32 KiB
CPU L1D Cache Total
192 KiB
CPU L1I Cache
32 KiB
CPU L1I Cache Total
192 KiB
CPU L2 Cache
512 KiB
CPU L2 Cache Total
3 MiB
CPU L3 Cache
16 MiB
CPU L3 Cache Total
16 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, ht, syscall, nx, mmxext, fxsr_opt, pdpe1gb, rdtscp, lm, rep_good, nopl, cpuid, extd_apicid, tsc_known_freq, pni, pclmulqdq, ssse3, fma, cx16, sse4_1, sse4_2, x2apic, movbe, popcnt, aes, xsave, avx, f16c, rdrand, hypervisor, lahf_lm, cmp_legacy, cr8_legacy, abm, sse4a, misalignsse, 3dnowprefetch, osvw, topoext, perfctr_core, ssbd, ibpb, stibp, vmmcall, fsgsbase, bmi1, avx2, smep, bmi2, clflushopt, clwb, sha_ni, xsaveopt, clzero, xsaveerptr, wbnoinvd, arat, umip, rdpid
Ecpus
12.3
Scalability
205

System Resources and Accelerators

MEMORY
Memory Amount
24 GiB
Memory Amount Actual
24 GiB
GPU
GPU Count
0
GPU Memory Min
0 MiB
GPU Memory Total
0 MiB
GPUs
    STORAGE
    Storage Size
    500 GB
    Storage Type
    nvme ssd
    Storages
      NETWORK
      Inbound Traffic
      0 GB/month
      Outbound Traffic
      12288 GB/month
      IPv4
      1

      CPU and System Topology

      Server Description

      A shared-core AMD EPYC virtual server with twelve vCPUs and local NVMe storage, optimized for multi-threaded workloads.

      Compute OptimizedBurstable & Budget

      The Vultr vhp-12c-24gb-amd is a High Performance virtual server featuring 12 shared vCPUs powered by an AMD EPYC processor running at 2.0 GHz, paired with 24.0 GB of RAM and 500 GB of NVMe SSD storage. Built on the x86_64 architecture, this instance includes 16 MB of L3 cache and supports AVX, AES, and SHA_NI instruction sets. Benchmark results indicate average multi-core CPU performance, static web serving throughput, and Redis SET operations, though single-threaded compression tasks and memory scores are relatively weak. Due to its shared CPU allocation, this server provides a cost-effective option for multi-threaded workloads that do not require dedicated CPU cores. It is well-suited for static web serving, caching, and light multi-threaded processing.

      Economics

      Average Price per Region

      Prices per Zone

      Lowest Prices

      Performance

      Workload Profiles

      0.495Score
      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) 669,718 ops/sec 1,895,870 ops/sec 0.353 50.00% 50.00% -40.60%
      Redis RPS (pipeline=16, SET) 5,830,581 ops/sec 11,503,938 ops/sec 0.507 20.00% 20.00% -12.70%
      PassMark Memory Mark (composite) 1,623 2,410 0.674 10.00% 10.00% -3.87%
      Memory bandwidth (read, 16 MB ~ L3) 135,017 MB/sec 107,331 MB/sec 1.26 10.00% 10.00% +2.34%
      PassMark single-thread CPU 1,751 Mops/s 2,363 Mops/s 0.741 10.00% 10.00% -2.95%

      Memory Bandwidth

      Compression

      OpenSSL

      Passmark CPU Scores

      BENCHMARKSCORE
      Mark
      17154
      Compression
      185154
      Encryption
      10762
      Extended Instructions
      13120
      Floating Point Maths
      38525
      Integer Maths
      51952
      Physics
      2045
      Prime Numbers
      111
      Single Threaded
      1751
      String Sorting
      24133

      Passmark Memory Scores

      BENCHMARKSCORE
      Memory Mark
      1623
      Database Operations
      3551
      Memory Latency
      99
      Memory Read Cached
      13434
      Memory Read Uncached
      9712
      Memory Write
      10638

      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

      Alternatives

      Servers of the Same Family

      INSTANCEvCPUsMEMORYGPUs
      vhp-1c-1gb-amd 11 GiB0
      vhp-1c-1gb-intel 11 GiB0
      vhp-1c-2gb-amd 12 GiB0
      vhp-1c-2gb-intel 12 GiB0
      vhp-2c-2gb-amd 22 GiB0
      vhp-2c-2gb-intel 22 GiB0
      vhp-2c-4gb-amd 24 GiB0

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      vhp-12c-24gb-amd FAQs