H8m is a H family [Memory Intensive] [Intel processor] 8 vCPUs server offered by Microsoft Azure with 8 vCPUs, 112 GiB of memory and 1.05 TB of storage. The pricing starts at 0.197 USD per hour.
H family [Memory Intensive] [Intel processor] 8 vCPUs
Family
H
Hw Virt
-
Status
inactive
Observed At
2026-07-04T21:57:13.599693
Availability
REGION / ID
SPOT
ONDEMAND
West US 2 (US) / westus2
0.197 USD/h
1.066 USD/h
South Central US (US) / southcentralus
0.2166 USD/h
1.172 USD/h
East US (US) / eastus
0.2238 USD/h
1.211 USD/h
North Central US (US) / northcentralus
0.2238 USD/h
1.211 USD/h
Southeast Asia (SG) / southeastasia
0.2288 USD/h
1.238 USD/h
UK South (GB) / uksouth
0.2354 USD/h
1.274 USD/h
North Europe (IE) / northeurope
0.2404 USD/h
1.301 USD/h
West US (US) / westus
0.2404 USD/h
1.301 USD/h
Central India (IN) / centralindia
0.2471 USD/h
1.337 USD/h
West Europe (NL) / westeurope
0.2556 USD/h
1.383 USD/h
Japan East (JP) / japaneast
0.2837 USD/h
1.535 USD/h
Australia East (AU) / australiaeast
0.2933 USD/h
1.587 USD/h
Processor
vCPUs
8
Hypervisor
Microsoft Hyper-V
CPU Allocation
Dedicated
CPU Architecture
x86_64
System Resources and Accelerators
MEMORY
Memory Amount
112 GiB
GPU
GPU Count
0
GPUs
STORAGE
Storage Size
1049 GB
Storages
1049 GB ssd (temp disk)
NETWORK
Inbound Traffic
0 GB/month
Outbound Traffic
0 GB/month
IPv4
0
Economics
Average Price per Region
Prices per Zone
Lowest Prices
Workload Profiles
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.
Precomputed compound score for CI/CD Build 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% Geekbench Clang compilation (multi-core), 10% Geekbench Clang compilation (single-core), 20% stress-ng div16 best-N cores, 5% PassMark integer math, 5% PassMark compression, 5% Brotli compression (multi-core, level 0), 5% PassMark string sorting. Rationale for component selection: Build performance is mainly driven by multi-core compilation throughput, but also bundles single-core compilation speed and general CPU performance, multi-core compression and text/scripting processing.
Precomputed compound score for Compute Heavy Applications 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: 15% stress-ng div16 best-N cores, 10% stress-ng div16 single core, 20% PassMark CPU Mark (composite), 10% Memory bandwidth (read, 64 MB), 15% PassMark floating point, 15% PassMark AVX/SSE/FMA (SIMD), 10% PassMark integer math, 5% PassMark physics simulation. Rationale for component selection: Number-crunching workload augmenting raw CPU performance stressing, general CPU performance benchmarks, memory bandwidth, and pure math computation speed like floating point, integer, SIMD (AVX/SSE/FMA) operations.
Precomputed compound score for Data Analysis 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: 70% PassMark CPU Mark (composite), 10% Gzip compression (single-core, level 5), 10% Memory bandwidth (read, 64 MB), 10% PassMark Memory Mark (composite). Rationale for component selection: Data analysis and ETL workloads are memory-bandwidth-bound and CPU-throughput-driven. The profile combines general CPU performance and memory bandwidth/latency as the primary drivers, supplemented by single-core compression speed as a proxy for serialisation-heavy ETL tasks.
Precomputed compound score for LLM Inference 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: 15% LLM text generation (SmolLM-135M, 128 tok), 15% LLM prompt processing (SmolLM-135M, 512 tok), 15% LLM text generation (Llama 7B, 128 tok), 15% LLM prompt processing (Llama 7B, 512 tok), 15% LLM text generation (Llama-3.3 70B, 128 tok), 15% LLM prompt processing (Llama-3.3 70B, 512 tok), 5% Memory bandwidth (read, 256 MB), 2% PassMark AVX/SSE/FMA (SIMD), 2% PassMark floating point. Rationale for component selection: VRAM and memory-bandwidth-bound LLM inference workload, using direct LLM speed benchmarks at three model sizes, and supplementing with raw memory bandwidth and SIMD performance benchmarks.
Precomputed compound score for Web Server 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: 30% Static web RPS (1 kB, 8 conn/vCPU), 20% Static web RPS (64 kB, 8 conn/vCPU), 20% Static web throughput (256 kB, 8 conn/vCPU), 20% OpenSSL AES-256-CBC (16 kB blocks), 5% Gzip compression (multi-core, level 5), 5% PassMark string sorting. Rationale for component selection: Primary workloads drivers are single-process static HTTP serving speed and throughput, text processing, TLS termination, and asset compression.
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H8m FAQs
H8m is a H family [Memory Intensive] [Intel processor] 8 vCPUs server offered by Microsoft Azure with 8 vCPUs, 112 GiB of memory and 1.05 TB of storage. The pricing starts at 0.197 USD per hour.
The H8m server is equipped with 8 logical CPU cores on unknown number of physical CPU core(s), 112 GiB of memory, 1.05 TB of storage, and no GPU. Additional block storage can be attached as needed.
The pricing for H8m servers starts at 0.197 USD per hour, but the actual price depends on the selected region, zone and server allocation method (e.g. on-demand versus spot pricing options): currently, we track the prices in 64 regions and zones every 5 minutes, and the maximum price stands at 1.587 USD.
The H8m server is offered by Microsoft Azure, founded in 2010, headquartered in Washington, United States. For more information, visit the Microsoft Azure homepage.
The H8m server is available in 64 availability zones of the following 12 regions: West US 2 (US), South Central US (US), East US (US), North Central US (US), Southeast Asia (SG), UK South (GB), North Europe (IE), West US (US), Central India (IN), West Europe (NL), Japan East (JP), Australia East (AU).