AMD Radeon Pro W6000X Colored Die Product Image

Exceptional Performance for Creators

The AMD Radeon™ Pro W6000X series graphics cards powered by AMD RDNA™ 2 architecture, featuring up to 80 powerful enhanced Compute Units and all new AMD Infinity Cache™, engineered to deliver exceptional performance to power through a wide variety of demanding professional applications and workloads. Now available in Mac Pro® computers.

AMD Radeon Pro Vega II 7nm

7NM

Smaller transistors compared to previous gen

memory icon

GDDR6 Memory

Up to 512GB/s bandwidth

AMD Radeon Pro Vega II Infinity Fabric

Infinity Fabric™ Link

High-bandwidth, low latency, direct connection for Peer-to-Peer communication

AMD RDNA 2 Logo

AMD RDNA™ 2

2nd Generation AMD RDNA™2 architecture, higher performance with more power efficiency over 1st generation AMD RDNA .1

AMD Radeon Pro W6000X Colored Die Product Image

All New, Award-Winning AMD RDNA™ 2 Architecture

New level of performance, efficiency and advanced visualization features enabled by the advanced AMD RDNA™ 2 architecture.

Up to 4- Peer Communication Through Infinity Fabric™ Link

Enable an elevated degree of workload distribution between up to 4 GPUs to power through demanding professional workflows.

Mac Pro photo realistic drawing

*Screen images simulated

Mac Pro video editing

*Screen images simulated

8k Video Compositing and Editing

Unleash new level of creativity for professional workflows with exceptional capabilities delivered by 8K and HDR support.

AMD Radeon™ PRO W6900X (Single GPU Spec)

Up to 22.2 TF

Peak Single Precision TF (FP32)

Up to 44.4 TF

Peak Half Precision TF (FP16)

Up to 512GB/s

Peak Memory Bandwidth

80

CU

5120

Stream Processors

Up to 84GB/s

Infinity Fabric™ Link

Up to 2171MHz

Peak Engine Clock2

256-bit

Memory Interface


 

AMD Radeon™ PRO W6800X (Single GPU Spec)

Up to 16.0 TF

Peak Single Precision TF (FP32)

Up to 32.0 TF

Peak Half Precision TF (FP16)

Up to 512GB/s

Peak Memory Bandwidth

60

CU

3840

Stream Processors

Up to 84GB/s

Infinity Fabric™ Link

Up to 2087MHz

Peak Engine Clock2

256-bit

Memory Interface


 

AMD Radeon™ PRO W6800X Duo

Up to 15.1 TF (per GPU)

Peak Single Precision TF (FP32)

Up to 30.2 TF (per GPU)

Peak Half Precision TF (FP16)

Up to 512GB/s (per GPU)

Peak Memory Bandwidth

120 (total)

CU

7680 (total)

Stream Processors

Up to 84GB/s

Infinity Fabric™ Link

Up to 1979MHz

Peak Engine Clock2

256-bit (per GPU)

Memory Interface


 

AMD Radeon™ PRO W6600X GPU

Up to 9.8 TF

Peak Single Precision TF (FP32)

Up to 19.6 TF

Peak Half Precision TF (FP16)

Up to 256GB/s

Peak Memory Bandwidth

32

CU

2048

Stream Processors

Up to 8GB

GDDR6 Memory

Up to 2479MHz

Peak Engine Clock2

128-bit

Memory Interface

©2022 Advanced Micro Devices, Inc.  All rights reserved. AMD, the AMD Arrow logo, Infinity Cache, Infinity Fabric, Radeon, RDNA, Ryzen, and combinations thereof are trademarks of Advanced Micro Devices, Inc. Apple, iMac, Mac Pro, and Macbook Pro are trademarks of Apple Inc., registered in the U.S. and other countries. Other product names used in this publication are for identification purposes only and may be trademarks of their respective owners. 

  1. Testing done by AMD performance labs October 18 2020 on RX 6800 XT (20.45-201013n driver) , RTX 3080 (456.71 driver), AMD Ryzen 9 5900X (3.70GHz) CPU, 16GB DDR4-3200MHz, Engineering AM4 motherboard, Win10 Pro 64. Following games were tested at 4K with each cards best API: Battlefield V DX11 Ultra, Borderlands 3 DX11/DX12 Badass, Call of Duty: MW DX12 Ultra, Division 2 DX12 Ultra, Doom Eternal Vulkan Ultra Nightmare, Forza Horizon 4 DX12 Ultra, Gears 5 DX12 Ultra, Resident Evil 3 DX11 Ultra, and Shadow of the Tomb Raider DX12 Highest, Wolfenstein: Young Blood Vulkan Mein Leben. Performance may vary. RX-550 
  2. Peak engine clock is the maximum frequency achievable on the GPU running a bursty workload. Peak clock achievability, frequency, and sustainability will vary based on several factors, including but not limited to: thermal conditions and variation in applications and workloads. GD-206