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Video card NVIDIA RTX PRO 4500 Blackwell
EAN: 19336The NVIDIA RTX PRO 4500 Blackwell is a professional-grade graphics card designed for demanding AI, simulation, and visualization workloads. Built on the NVIDIA Blackwell architecture, it offers a significant performance boost over its predecessors.
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Video card NVIDIA RTX PRO 4000 Blackwell
EAN: 19337The NVIDIA RTX PRO 4000 Blackwell is a high-performance workstation graphics card built on the Blackwell architecture. It is designed for demanding professional workloads such as AI development, simulation, 3D modeling, and high-end visualization. Featuring 8,960 CUDA cores and 280 Tensor Cores, the RTX PRO 4000 provides exceptional parallel processing power for deep learning tasks and rendering. With 24 GB of GDDR7 ECC memory and a 192-bit memory interface, it ensures rapid data handling for large-scale projects.
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Video card NVIDIA RTX PRO 6000 Blackwell Server Edition
EAN: 19338The NVIDIA RTX PRO 6000 Blackwell Server Edition is engineered for high-performance AI and visual computing in data centers. Built on the advanced NVIDIA Blackwell architecture, it features 24,064 CUDA cores, 752 5th-generation Tensor Cores, and 188 4th-generation RT Cores. Equipped with 96 GB of GDDR7 memory with ECC, it offers exceptional memory bandwidth of up to 1.6 TB/s. The GPU supports PCIe Gen 5 x16 interface, enabling rapid data transfer. Its power consumption ranges from 400W to 600W, configurable based on workload requirements.
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Video card NVIDIA H200 SXM Tensor Core GPU
EAN: 19339The NVIDIA H200 SXM Tensor Core GPU is engineered to accelerate generative AI and high-performance computing (HPC) workloads. Built on the NVIDIA Hopper™ architecture, it features 141 GB of HBM3e memory with a memory bandwidth of 4.8 TB/s, making it the first GPU to offer such high-capacity memory. This substantial memory capacity and bandwidth enable the handling of large-scale AI models and complex HPC simulations with improved efficiency.
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Video card NVIDIA H200 NVL Tensor Core GPU
EAN: 19340The NVIDIA H200 NVL Tensor Core GPU is a high-performance graphics processor designed for data centers, cloud computing, and high-performance computing (HPC) workloads. It is built on the NVIDIA Hopper architecture and equipped with 141 GB of HBM3e memory with a memory bandwidth of 4.8 TB/s. With a maximum thermal design power (TDP) of up to 600 watts, the H200 NVL delivers exceptional performance for tasks requiring intensive computation, such as training and inference for deep learning models, large data processing, and scientific computing.
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Video card NVIDIA H100 SXM Tensor Core GPU
EAN: 19341The NVIDIA H100 SXM Tensor Core GPU is built on the advanced NVIDIA Hopper architecture, utilizing TSMC's 5nm process technology. Designed for high-performance computing and AI workloads, this GPU delivers an exceptional 16,896 CUDA cores and 528 Tensor Cores of the fourth generation, enabling groundbreaking performance in deep learning, machine learning, and scientific simulations. With 80 GB of HBM3 memory and a memory bandwidth of 3.36 TB/s, the H100 ensures efficient data processing and smooth execution of the most demanding tasks. Its high interconnect bandwidth of 900 GB/s, thanks to NVIDIA NVLink, allows for seamless multi-GPU scaling.
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Video card NVIDIA H100 NVL Tensor Core GPU
EAN: 19342The NVIDIA H100 NVL Tensor Core GPU is engineered for high-performance AI inference, particularly excelling in large language model (LLM) applications. Built on the NVIDIA Hopper architecture and fabricated using TSMC's 4N process, it integrates two GH100 GPUs, each equipped with 94 GB of HBM3 memory, totaling 188 GB. This configuration delivers a combined memory bandwidth of 7.8 TB/s, facilitating rapid data processing for complex AI workloads. The GPU supports up to 3,341 TFLOPS of FP8 Tensor Core performance and 835 TFLOPS with TF32 sparsity, ensuring efficient computation for diverse AI models.
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Video card NVIDIA L4 Tensor Core GPU
EAN: 19343The NVIDIA L4 Tensor Core GPU is a versatile, energy-efficient accelerator designed for AI inference, video processing, and graphics workloads in data centers and edge environments. Built on the Ada Lovelace architecture and fabricated using TSMC's 4N process, the L4 features 7,680 CUDA cores, 240 fourth-generation Tensor Cores, and 60 RT Cores. It comes equipped with 24 GB of GDDR6 memory on a 192-bit interface, delivering a memory bandwidth of 300 GB/s. Operating at a base clock of 795 MHz and boosting up to 2,040 MHz, the L4 achieves peak FP32 performance of 30.3 TFLOPS and FP8 Tensor performance up to 485 TFLOPS with sparsity.
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Video card NVIDIA L40S
EAN: 19344The NVIDIA L40S Tensor Core GPU is a high-performance accelerator designed for AI, graphics, and high-performance computing workloads in data centers. Built on the NVIDIA Ada Lovelace architecture, it features 18,176 CUDA cores, 568 fourth-generation Tensor Cores, and 142 third-generation RT Cores. Equipped with 48 GB of GDDR6 memory and a memory bandwidth of 864 GB/s, the L40S delivers exceptional performance for a wide range of applications. It supports advanced precision formats, including FP8, FP16, BF16, and TF32, achieving up to 1,466 TFLOPS of FP8 Tensor performance with sparsity.
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Video card NVIDIA A100 80GB PCIe
EAN: 19345The NVIDIA A100 80GB PCIe Tensor Core GPU is engineered to accelerate AI, data analytics, and high-performance computing (HPC) workloads. Built on the NVIDIA Ampere architecture, it features 6,912 CUDA cores and 432 third-generation Tensor Cores, delivering up to 19.5 TFLOPS of FP64 performance and 312 TFLOPS of FP32 performance. The GPU is equipped with 80 GB of HBM2e memory, providing a memory bandwidth of up to 2 TB/s, facilitating rapid data processing for complex AI models and large datasets. Its support for Multi-Instance GPU (MIG) technology allows partitioning into up to seven isolated GPU instances, enabling optimal resource utilization across diverse workloads
Server – is a device that performs various tasks both remotely (more often), as well as locally. In fact, this is the same computer, only more powerful.. Consisting, like a computer from: processor, motherboard, RAM and hard disk, and most often large servers use equipment special for them. They are used to organize the work of the Internet provider, to store data, for hosting (where all the files posted on this site are stored).
Today they produce various types of servers:
rack (Rack), which are mounted in a rack or server cabinet
Floor servers (Tower) – this type of server is built into the system unit
Blade servers - these are computer servers with components, taken out and summarized in a basket (Chassis) to reduce the space occupied
Management is performed remotely, thanks to the operating system installed on the server in advance. Usually these are Linux or Windows operating systems, but it is worth noting that these are special versions designed to manage the server










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