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A4000 vs CPU

Explore a head to head comparison of specifications, performance, and pricing.

A4000

The NVIDIA A4000 delivers high-performance computing capabilities for AI, machine learning, and data science applications.

ManufacturerNVIDIA
GPU Architecture
Average Price$1.17/hr
GPU VRAM16 GB
Cloud Availability2 clouds
System Memory215 GB
CPU Cores56
Storage1.3 TB

CPU

The n/a CPU delivers high-performance computing capabilities for AI, machine learning, and data science applications.

Manufacturern/a
GPU Architecture
Average Price$1.02/hr
GPU VRAM0 GB
Cloud Availability6 clouds
System Memory720 GB
CPU Cores180
Storage8.0 TB

A4000 vs CPU: Which Should You Choose?

The CPU is available across 6 cloud providers on Shadeform compared to 2 for the A4000, giving more options for region and pricing flexibility.

A4000 — Best Use Cases

  • General-purpose deep learning training
  • Fine-tuning models up to 13B parameters
  • AI inference at moderate throughput
  • Computer vision and NLP workloads

Choose A4000 when:

  • Your preferred provider already has availability

CPU — Best Use Cases

  • General-purpose GPU compute
  • Deep learning training and inference
  • AI model development

Choose CPU when:

  • You need flexibility across multiple cloud providers or regions

See how the A4000 & CPU compare

Compare detailed hardware specifications and average pricing for the A4000 and CPU.

Compare Hardware Specifications

A4000CPU
GPU Type
A4000
CPU
VRAM per GPU
16 GB
0 GB
Manufacturer
NVIDIA
n/a
Architecture
Ampere
N/A
Interconnect
PCIe Gen4
pcie
Memory Bandwidth
448 GB/s
N/A
FP16 TFLOPS
19.17 TFLOPS (1:1)
N/A
CUDA Cores
6144
N/A
Tensor Cores
192 (3rd Gen)
N/A
RT Cores
48 (2nd Gen)
N/A
Base Clock
735 MHz
N/A
Boost Clock
1695 MHz
N/A
TDP
140W
N/A
Process Node
TSMC 8nm
N/A
Data Formats
INT8, BF16, FP16, TF32, FP32
N/A

Compare Average On-Demand Pricing

A4000CPU
1 GPU
$0.47 /hr
N/A
2 GPUs
$0.95 /hr
N/A
4 GPUs
$1.90 /hr
N/A
8 GPUs
$1.20 /hr
N/A

Frequently Asked Questions: A4000 vs CPU

The main differences are VRAM (16 GB vs 0 GB).

The A4000 is generally better for large language model training due to its higher throughput and 16 GB of VRAM, which allows fitting larger models or larger batch sizes in a single pass. For smaller models or fine-tuning tasks where cost matters more, both GPUs can be effective.

Pricing for the A4000 and CPU varies by cloud provider, region, and contract type. Shadeform aggregates pricing from 30+ GPU cloud providers so you can compare and find the best rate. Use the instance table above to see current on-demand prices.

The A4000 has more VRAM at 16 GB, compared to 0 GB on the CPU. Higher VRAM allows you to run larger models without quantization, use longer context windows, and process larger batch sizes — all of which improve throughput and reduce latency for memory-bound workloads.

The CPU is currently available across 6 cloud providers on Shadeform's network, compared to 2 for the A4000. Shadeform lets you deploy either GPU across all available providers from a single platform, so you can always find available capacity without manually checking each cloud.

Mixing different GPU types in a single training cluster is generally not recommended, as it creates performance bottlenecks where faster GPUs wait for slower ones. For best results, use a homogeneous cluster of either A4000 or CPU. Shadeform supports on-demand clusters of up to 64 GPUs of the same type with no commitment required.

Explore A4000 & CPU Instances

Browse available instances with A4000 and CPU GPUs. Filter by provider, availability, and more to find the perfect instance for your needs.

Explore more GPU comparisons

Select any two GPUs to compare their specifications and explore pricing across providers.

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