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GPU Architecture | Ampere | |
CUDA Parallel Processing cores | 10,752 | |
NVIDIA Tensor Cores | 336 | |
NVIDIA RT Cores | 84 | |
GPU Memory | 48 GB GDDR6 with ECC | |
Single-Precision Performance1 | 38.7 TFLOPS | |
RT Core Performance1 | 75.6 TFLOPS | |
Tensor Performance1 | 309.7 TFLOPS2 | |
Memory Interface | 384-bit | |
Memory Bandwidth | 768 GB/s | |
Max Power Consumption | 300 W | |
Graphics Bus | PCI Express 4.0 x16 | |
Display Connectors | DP 1.4 (4)3 | |
Form Factor | 4.4" H x 10.5" L Dual Slot | |
Product Weight | 1.179 kg | |
Thermal Solution | Active | |
Power Connector | 1x 8-pin CPU | |
vGPU Software Support4 | NVIDIA® GRID®, NVIDIA Quadro® Virtual Data Center Workstation, NVIDIA Virtual Compute Server | |
vGPU Profiles Supported | 1 GB, 2 GB, 3 GB, 4 GB, 6 GB, 8 GB, 12 GB, 16 GB, 24 GB, 48 GB | |
Frame lock | Compatible (with Quadro Sync II) | |
NVLink Interconnect | 112.5 GB/s (bidirectional) | |
NVENC | NVDEC | 1x | 2x (+AV1 decode) | |
* 1 Peak rates are based on GPU boost clock. * 2 Effective TOPS/TFLOPS using the new sparsity feature. * 3 Display ports are on by default for the RTX A6000. Display ports are not active when using vGPU software. * 4 Virtualization support for the RTX A6000 GPU will be available in an upcoming NVIDIA virtual GPU (vGPU) release. |