Comprehensive comparison for AI, machine learning, and high-performance computing workloads.
Hopper Architecture
Ampere Architecture
| Specification | NVIDIA H200 | NVIDIA RTX 3090 |
|---|---|---|
| Architecture | Hopper | Ampere |
| Release Year | 2023 | 2020 |
| VRAM | 141 GB+487.5% | 24 GB |
| Memory Type | HBM3e | GDDR6X |
| Memory Bandwidth | 4800 GB/s+412.8% | 936 GB/s |
| FP32 Performance | 67 TFLOPS+88.2% | 35.6 TFLOPS |
| FP16 Performance | 134 TFLOPS+88.7% | 71 TFLOPS |
| INT8 Performance | 2680 TOPS+843.7% | 284 TOPS |
| Tensor Cores | 16896 | 10496 |
| CUDA Cores | 16896 | 10496 |
| TDP | 700W | 350W |
| Form Factor | SXM | Consumer |
| NVLink Support | Yes | Yes |
| Avg. Price/Hour | $2.25+922.7% | $0.22 |
Single-precision floating-point performance for general compute workloads
NVIDIA H200 is 88.2% faster
Half-precision performance optimized for deep learning training
NVIDIA H200 is 88.7% faster
Integer performance for efficient model inference and deployment
NVIDIA H200 is 843.7% faster
Data transfer speed between GPU and memory
NVIDIA H200 is 412.8% faster
NVIDIA H200
NVIDIA H200
NVIDIA RTX 3090
NVIDIA RTX 3090
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