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Built on the NVIDIA Ada Lovelace GPU architecture
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The NVIDIA RTX™ 6000 Ada Generation delivers the features, capabilities, and performance to meet the challenges of today’s professional workflows. Built on the NVIDIA Ada Lovelace™ GPU architecture, the RTX 6000 combines third-generation RT Cores, fourth-generation Tensor Cores, and next-gen CUDA® cores with 48GB of graphics memory for unprecedented rendering, AI, graphics, and compute performance. NVIDIA RTX 6000-powered workstations provide what you need to succeed in today’s ultra-challenging business environment.
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NVIDIA CUDA Cores
Double-speed processing for single-precision floating point (FP32) operations provides significant performance improvements for graphics and simulation workflows, such as complex 3D computer-aided design (CAD) and computer-aided engineering (CAE), on the desktop.
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Third-Generation RT Cores
With up to 2X the throughput over the previous generation, third-generation RT Cores deliver massive speedups for workloads like photorealistic rendering of movie content, architectural design evaluations, and virtual prototyping of product designs. This technology also accelerates the rendering of ray-traced motion blur with greater visual accuracy.
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Fourth-Generation Tensor Cores
Fourth-generation Tensor Cores provide faster AI compute performance, delivering more than 2X the performance of the previous generation. These new Tensor Cores support acceleration of the FP8 precision data type and provide independent floating-point and integer data paths to speed up execution of mixed floating point and integer calculations.
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48 Gigabytes (GB) of GPU Memory
With 48GB GDDR6 memory, the RTX 6000 gives data scientists, engineers, and creative professionals the large memory necessary to work with massive datasets and workloads like rendering, data science, and simulation.
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Virtualization-Ready
Support for NVIDIA RTX Virtual Workstation (vWS) software allows a personal workstation to be repurposed into multiple high-performance virtual workstation instances, enabling remote users to share resources to drive high-end design, AI, and compute workloads.
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PCIe Gen 4
PCI Express Gen 4 support provides double the bandwidth of PCIe Gen 3, improving data-transfer speeds from CPU memory for data-intensive tasks like AI and data science.
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To learn more about the NVIDIA RTX 6000, visit www.nvidia.com/en-us/design-visualization/rtx-6000/
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Best Optimized Workstations for NVIDIA RTX 6000 Ada GPU
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NVIDIA RTX 6000 Ada Generation specs at a glance
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| GPU Architecture |
NVIDIA Ada Lovelace Architecture |
| GPU Memory |
48 GB GDDR6 with error-correcting code (ECC) |
| CUDA Cores |
18176 |
| Tensor Cores |
568 Gen-4 |
| RT Cores |
142 Gen-3 |
| Memory Interface |
384-bit |
| Display Ports |
4x DisplayPort 1.4* |
| Max Power Consumption |
300 W |
| Graphics Bus |
PCI Express Gen 4 x 16 |
| Form Factor |
4.4" (H) x 10.5" (L) dual slot |
| Auxiliary Power Connector |
1x PCIe CEMS 16-pin w/Adapter to two 8-pin PCIe, Req. 850W PSU min. |
| Thermal |
Active Fansink |
| vGPU Software Support |
NVIDIA vPC/vApps, NVIDIA RTX Virtual Workstation |
| vGPU Profiles Supported |
See the Virtual GPU Licensing Guide at www.nvidia.com/en-us/design-visualization/rtx-6000/ |
| AR/MR/VR/XR Capable |
Yes |
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*Display ports are on by default for RTX 6000. Turn display ports off when using vGPU software.
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*Published Prices. Prices shown (provided by way of a Quotation or a Pre-Configured List) are subject to change without prior notice to the prices in effect at the time of Quotation or placing an Order. Seller reserves the right to make any corrections to prices quoted due to availability, clerical errors or errors of omission. In the event of any specific requirements (including without limitation any design, specification, ordered quantity, or shipment changes) representing a price increase.
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