PNY VCNRTX5000ADA-SB NVIDIA RTX 5000 Ada 32 GB GDDR6
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Buy PNY VCNRTX5000ADA-SB NVIDIA RTX 5000 Ada 32 GB GDDR6
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PNY VCNRTX5000ADA-SB graphics card NVIDIA RTX 5000 Ada 32 GB GDDR6 | £3,806.12 | ![]() | |||
PNY NVIDIA RTX 5000 ADA 32GB Ada Lovelace Workstation Graphics Card | £3,959.99 | ![]() | |||
PNY VCNRTX5000ADA-SB graphics card NVIDIA RTX 5000 Ada 32 GB GDDR6 | £4,016.08 | ![]() | |||
Pny PNY VCNRTX5000ADA-SB graphics card NVIDIA RTX 5000 Ada 32 GB GDDR6 | £4,098.99 | ![]() | |||
PNY VCNRTX5000ADA-SB graphics card NVIDIA RTX 5000 Ada 32 GB GDDR6 | £4,269.63 | ![]() | |||
PNY 24GB RTX 5000 Ada 4xDP Smallbox VCNRTX5000ADA-SB | £4,885.82 | ![]() |
Performance for Endless Possibilities
The NVIDIA RTX 5000 Ada Generation is purpose-built for today's professional workflows. Built on the NVIDIA Ada Lovelace architecture it combines 100 third-generation RT Cores 400 fourth-generation Tensor Cores and 12800 CUDA cores with 32GB of graphics memory to accelerate rendering AI graphics and compute workloads. RTX 5000-powered workstations equip you for success in today's demanding business landscape.
Performance And Usability Features NVIDIA Ada Lovelace Architecture Experience fast interactive performance-powered by the latest NVIDIA Ada Lovelace architecture-based GPU-with ultra-fast onboard graphics memory technology and optimized software drivers for professional applications. The Shader Execution Reordering (SER) system allows on-the-fly organization and reordering of workloads grouping similar performing threads so the streaming multiprocessor (SM) and RT Core can operate more efficiently.
CUDA Cores The NVIDIA Ada Lovelace architecture-based CUDA cores deliver up to 2X the single-precision floating-point (FP32) throughput compared to the previous generation providing significant performance improvements for graphics workflows such as 3D model development and compute for workloads like desktop simulation for CAE.
Third-Generation RT Cores Third-generation RT Cores provide up to 2X the throughput of the previous generation and the ability to run ray tracing with either shading or denoising capabilities concurrently. This accelerates renders for M&E content creation AECO design evaluations and manufacturing virtual prototyping. Third-generation RT Cores deliver up to 2X the ray-tracing performance over the previous generation delivering groundbreaking performance for photorealistic rendering. Enhanced RT Cores combined with new SER technology dynamically reorder inefficient workloads dramatically improving shader performance to accelerate end-to-end ray-traced image rendering performance.
Fourth-Generation Tensor Cores Fourth-generation Tensor Cores provide up to 5X faster AI training performance than the previous generation with FP16 precision. Support for the new FP8 data format for inference provides more than 5X faster performance than the previous generation and reduces data memory usage by half (compared to the FP16 data format).
Encode and Decode Engines RTX 5000 includes two video encode engines and two decode engines including support for the AV1 video format and the performance required for multi-stream video applications for security and video serving.
PCIe Gen 4 RTX 5000 supports PCIe Gen4 which doubles the bandwidth of PCIe Gen3 from 15.75GB/s to 31.5GB/s for x16 connections improving data transfer speeds from CPU memory for data-intensive tasks such as AI data science and
The NVIDIA RTX 5000 Ada Generation is purpose-built for today's professional workflows. Built on the NVIDIA Ada Lovelace architecture it combines 100 third-generation RT Cores 400 fourth-generation Tensor Cores and 12800 CUDA cores with 32GB of graphics memory to accelerate rendering AI graphics and compute workloads. RTX 5000-powered workstations equip you for success in today's demanding business landscape.
Performance And Usability Features NVIDIA Ada Lovelace Architecture Experience fast interactive performance-powered by the latest NVIDIA Ada Lovelace architecture-based GPU-with ultra-fast onboard graphics memory technology and optimized software drivers for professional applications. The Shader Execution Reordering (SER) system allows on-the-fly organization and reordering of workloads grouping similar performing threads so the streaming multiprocessor (SM) and RT Core can operate more efficiently.
CUDA Cores The NVIDIA Ada Lovelace architecture-based CUDA cores deliver up to 2X the single-precision floating-point (FP32) throughput compared to the previous generation providing significant performance improvements for graphics workflows such as 3D model development and compute for workloads like desktop simulation for CAE.
Third-Generation RT Cores Third-generation RT Cores provide up to 2X the throughput of the previous generation and the ability to run ray tracing with either shading or denoising capabilities concurrently. This accelerates renders for M&E content creation AECO design evaluations and manufacturing virtual prototyping. Third-generation RT Cores deliver up to 2X the ray-tracing performance over the previous generation delivering groundbreaking performance for photorealistic rendering. Enhanced RT Cores combined with new SER technology dynamically reorder inefficient workloads dramatically improving shader performance to accelerate end-to-end ray-traced image rendering performance.
Fourth-Generation Tensor Cores Fourth-generation Tensor Cores provide up to 5X faster AI training performance than the previous generation with FP16 precision. Support for the new FP8 data format for inference provides more than 5X faster performance than the previous generation and reduces data memory usage by half (compared to the FP16 data format).
Encode and Decode Engines RTX 5000 includes two video encode engines and two decode engines including support for the AV1 video format and the performance required for multi-stream video applications for security and video serving.
PCIe Gen 4 RTX 5000 supports PCIe Gen4 which doubles the bandwidth of PCIe Gen3 from 15.75GB/s to 31.5GB/s for x16 connections improving data transfer speeds from CPU memory for data-intensive tasks such as AI data science and
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