3rd Generation Intel Xeon Scalable series - AMD EPYC 8004 series - AMD Ryzen 7000 series - AMD Ryzen Threadripper PRO series - Intel Xeon D series - NVIDIA Grace Hopper series - NVIDIA Grace series - NVMe native - Rackmount servers
Discover our extensive selection of rack servers, ranging from 1U up to 10U, each designed to deliver the highest levels of performance, flexibility, scalability, and serviceability in datacenters. Our rackmount servers are engineered to handle a variety of workloads and applications, making them the backbone of modern enterprise and data center operations.
Key Advantages:
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Versatile Performance: From 1U to 10U configurations, our servers are built to provide powerful and efficient performance for everything from basic applications to intensive computing tasks.
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Flexible and Scalable: Easily configurable to meet the growing and changing demands of your business, our rack servers can scale to support increased workloads and expanded storage needs.
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Wide Application Range: Ideal for a multitude of Enterprise and Data Center applications, including Virtualization, Big Data, Analytics, and Cloud Computing, ensuring that your infrastructure is future-proof.
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Common Platform: As the most commonly used servers, rackmount units offer unlimited setup variations to perfectly align with your specific requirements.
With our rack servers, you can ensure your operations run smoothly and efficiently, meeting the demands of today while preparing for the challenges of tomorrow. Explore our selection and find the perfect solution to drive your enterprise forward.
The 3rd Gen Intel Xeon Scalable processors are widely used in data centers, cloud computing environments, and high-performance computing setups, offering optimized throughput and improved latency for various workloads. With features like Intel DL Boost for AI acceleration and built-in security measures, these processors provide a balanced combination of performance, energy efficiency, and advanced capabilities for enterprise applications.
Intel Xeon D processors are optimized for dense server environments and edge computing, delivering a powerful performance in a low-power, compact footprint. These processors are particularly suited for tasks like network function virtualization, software-defined storage, and other workloads requiring high-throughput and low latency, making them a cost-effective and energy-efficient option for both data centers and edge deployments.
The NVIDIA Grace CPU is the first data center CPU developed by NVIDIA. By combining NVIDIA expertise with Arm processors, on-chip fabrics, system-on-chip (SoC) design, and resilient high-bandwidth low-power memory technologies, the NVIDIA Grace CPU was built from the ground up to create the world’s first superchips for computing. At the heart of the superchip lies the NVLink Chip-2-Chip (C2C) that allows the NVIDIA Grace CPU to communicate at 900 GB/s bidirectional bandwidth with another NVIDIA Grace CPU.
AMD Ryzen 7000 processors are well-suited for both gaming rigs and productivity workstations, offering a balanced mix of performance and energy efficiency. Leveraging advanced architecture and supporting high-speed memory, these processors excel in tasks ranging from content creation to machine learning, providing a competitive edge in multi-threaded applications.
The NVIDIA Grace Hopper™ architecture brings together the groundbreaking performance of the NVIDIA Hopper™ GPU with the versatility of the NVIDIA Grace™ CPU in a single superchip, connected with the high-bandwidth, memory-coherent NVIDIA® NVLink® Chip-2-Chip (C2C) interconnect.
AMD Ryzen Threadripper PRO processors are specifically designed for workstation and high-performance computing environments, offering an unparalleled number of cores and threads. With features like ECC memory support and advanced security, these processors are ideal for compute-intensive tasks such as 3D rendering, video editing, and complex simulations, providing a robust and reliable computing solution.
The AMD EPYC 8004 series processors are engineered to meet the demands of high-performance computing environments, offering exceptional multi-threaded performance for data analytics, virtualization, and cloud computing. These processors provide an efficient and cost-effective solution for enterprise-level tasks, featuring high throughput and advanced security features, thereby optimizing both performance and TCO (Total Cost of Ownership).
Servers with native NVMe (Non-Volatile Memory Express) support are designed for the most demanding data-intensive tasks, such as big data analytics, machine learning, and high-frequency trading. Native NVMe offers unparalleled speed and low-latency data access, revolutionizing the data processing capabilities of enterprises and HPC centers.
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vSAN ESA ReadyNode SYS-220BT-DNTR - 2 nodes
vSAN ESA ReadyNode
Supports AF-2, AF-4, AF-6 and AF-8 profiles
Scale Out All-Flash NVMe Storage
High-Performance File System
High-Density NVMe Storage Array16 820.24 € -
IoT Server SYS-110D-4C-FRAN8TP
Network Function Virtualization (NFV)
Centralized/Cloud Radio Access Network (C-RAN)
Multi-Access Edge Computing (MEC)
Artificial Intelligence (AI)
Universal Customer Premise Equipment (uCPE)
Software Defined WAN (SD-WAN)1 976.64 € -
Ultra SuperServer SYS-220U-MTNR
Application Tier Service Provider
5G/Telco
High End Enterprise Server
Virtualization
Cloud Computing
Software Defined Storage
HPC4 465.58 € -
Storage SuperServer SSG-110P-NTR10-EU
All Flash Storage
Cloud Computing
Virtualization
CDN Optimized4 865.13 € -
GPU SuperServer SYS-420GP-TNAR+(LC)
Liquid cooling
AI / Deep Learning Training
High-performance Computing (HPC)
Nvidia A100 GPUs159 006.33 € -
BigTwin SuperServer SYS-620BT-HNC8R - 4 nodes
Scale-Out File Storage
Container Storage
Hyperconverged Infrastructure16 290.67 € -
IoT Server SYS-110D-16C-FRDN8TP
Network Function Virtualization (NFV)
Centralized/Cloud Radio Access Network (C-RAN)
Multi-Access Edge Computing (MEC)
Artificial Intelligence (AI)
Universal Customer Premise Equipment (uCPE)
Software Defined WAN (SD-WAN)3 723.44 € -
Ultra SuperServer SYS-120U-TNR
Virtualization
Cloud Computing
High End Enterprise Server
Software Defined Storage
Application Tier Service Provider
5G/Telco
HPC4 146.29 € -
Storage Server SSG-610P-ACR12N4H-EU
Database Applications
Hyperscale Data Center
Object Storage
Big Data Analytics
Scale-out Density
Ceph & Hadoop storage solution
Scale-out NAS5 030.00 € -
GPU SuperServer SYS-420GU-TNXR
High-performance Computing (HPC)
AI / Deep Learning Training
Nvidia A100 GPUs87 334.14 € -
BigTwin SuperServer SYS-220BT-HNC9R - 4 nodes
High-Performance File System
Big Data Analytics and AI
High-Density NVMe Storage Array
Hyperconverged Infrastructure17 574.18 € -
IoT SuperServer SYS-220HE-TNRD
High End Enterprise Server
Cloud Computing
Software Defined Storage
Virtualization
Application Tier Service Provider
5G/Telco
HPC4 674.95 € -
CloudDC SuperServ SYS-620C-TN12R
Web Servers, Firewall Application
Data Center Optimized
Value IaaS
Cloud Computing
Edge Nodes
Content Delivery Network (CDN)
Compact Server
DNS & Gateway Servers3 877.90 €
What is a Rackmount Server?
- A rackmount server, also known as a rack server, is a computer designed to function as a server and be installed in a rack. The rack contains multiple mounting slots called bays, each designed to hold a hardware unit secured in place with screws. Multinode servers are often deployed in these racks to maximize efficiency and resource utilization.
How to Choose a Rackmount Server
- When choosing a rackmount server, consider factors such as performance requirements, scalability, and budget. Determine the necessary CPU power, memory, and storage capacity based on your workload. Additionally, evaluate the rack space available and the cooling requirements to ensure optimal server performance.
What Does 1U, 2U, 3U, 4U Mean?
- The terms 1U, 2U, 3U, and 4U refer to the height of the server in rack units (U). Each "U" is equivalent to 1.75 inches. A 1U server is 1.75 inches tall, a 2U server is 3.5 inches tall, and so on. These measurements help in understanding how much space the server will occupy in the rack.