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Supermicro Introduces High-Density, Efficient, and Cost Optimized Solutions Powered by the AMD EPYC™ 4004 Series Processors

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Supermicro (NASDAQ: SMCI) has unveiled new high-density, efficient, and cost-optimized server solutions powered by AMD EPYC 4004 processors. The launch includes the H13 3U MicroCloud Multi-Node Server and 1U, 2U mainstream server families, which emphasize performance per watt and power efficiency. This technology is designed to meet the needs of cloud hosting and small to medium-sized businesses (SMBs) with its compact form factor and high computing density.

The new 3U MicroCloud Multi-Node Server supports up to 10 nodes in a single rack, offering 3.3 times the computing density compared to standard 1U rackmount servers. These systems are ideal for cloud-native workloads, web hosting, cloud gaming, and content delivery networks. The AMD EPYC 4004 Series processors, based on the

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Supermicro's launch of servers powered by AMD EPYC 4004 Series processors marks a significant step in data center technology. The notable aspect here is the integration of high-density multi-node servers. This allows up to 160 individual nodes in a single rack, which is an impressive feat. It can significantly reduce the physical footprint in a data center, translating to lower real estate costs and potentially better cooling efficiency.

Further, the use of PCIe 5.0 slots suggests that these servers are equipped to handle high-speed connectivity and future hardware upgrades. This is important for industries requiring large data transfers and quick processing times, such as cloud gaming and content delivery networks.

For small to medium-sized businesses (SMBs), this brings a cost-effective solution that balances performance and power efficiency. The use of AMD's proven Zen4 architecture ensures they are getting cutting-edge performance without excessive power consumption, which is beneficial both for cost management and environmental considerations.

Overall, this product launch is likely to be beneficial in the long term, considering the trend towards high-density, energy-efficient computing solutions in data centers.

From a financial perspective, Supermicro's new server line is a strategic move to capture a larger market share in the cloud hosting and SMB sectors. The introduction of high-density, cost-optimal solutions is a timely response to the increasing demand for efficient data center operations. These products are bound to enhance the company's top line by appealing to a wider customer base, including small and mid-sized enterprises that are often constrained by budget limitations.

The emphasis on affordability and efficiency is key here. Small businesses and departmental customers often seek solutions that provide robust performance without a steep price tag. By leveraging AMD's efficient Zen4 cores, Supermicro can offer these clients a compelling value proposition.

Moreover, the collaboration with AMD strengthens Supermicro's product portfolio, potentially leading to higher sales volumes and improved economies of scale. This is reflected in the company's strategy to be one of the first to market with these new processors, which could bolster its market position and drive revenue growth.

The market for data center solutions is rapidly evolving, with a focus on high-density, power-efficient systems. Supermicro's new servers, powered by AMD EPYC 4004 processors, are well-positioned to meet these demands. The ability to fit more nodes in a smaller space is important for cloud service providers, who prioritize density and efficiency to maximize their return on investment.

This product line could significantly impact the market by providing versatile deployment options. The 3U multi-node configurations are ideal for cloud-native applications, while the mainstream 1U and 2U solutions cater to more traditional data center setups. This flexibility can attract a broad spectrum of customers, from cloud hosts to small and medium businesses looking to upgrade their IT infrastructure without a substantial financial burden.

In the long term, the trend towards energy-efficient, high-density computing is expected to grow. Companies that can provide solutions aligning with these trends are likely to see sustained demand. Supermicro’s initiative to launch these products early positions them advantageously in capturing market share as these trends continue.

Supermicro H13 3U MicroCloud Multi-Node Server and 1U, 2U Mainstream Server Family Features Performance Per Watt Optimized AMD EPYC 4004 Series Processors and Solutions that Deliver Power Efficient Options for Cloud Hosting and SMB Organizations

SAN JOSE, Calif., May 21, 2024 /PRNewswire/ -- Supermicro, Inc. (NASDAQ: SMCI), a Total IT Solution Provider for AI, Cloud, Storage, and 5G/Edge, is announcing additions to the AMD based H13 generation of CPU Servers, optimized to deliver an outstanding balance of performance and efficiency and powered by the AMD EPYC 4004 Series processors. Supermicro will feature its new MicroCloud multi-node solution, which supports up to ten nodes in a 3U form factor. This very high-density option is designed for cloud-native workloads.

"Supermicro continues to offer innovative solutions for a wide range of applications, and with this new entry, based on the AMD EPYC 4004 processor, we can address the needs of on-premises or cloud service providers who need a cost-effective solution in a compact form factor," said Charles Liang, president and CEO of Supermicro. "In a single rack, 160 individual nodes can be made available for cloud-native applications, which reduces real estate need and decreases a data center TCO."

Learn more about Supermicro Servers with AMD EPYC 4004 CPUs

Supermicro is excited to be one of the first to market for AMD EPYC 4004 CPUs, which support a wide range of solutions, from 1U, 2U, and Tower systems to the new 3U multi-node MicroCloud enclosure. With 10 servers in just 3U of rack space, customers can increase their computing density by over 3.3X compared to industry standard 1U rackmount servers. The new 3U server provides unprecedented density and optimized power and cooling through Supermicro's proven modular design, which also supports high-performance peripherals through two PCIe 5.0 x8 add-on cards or one x16 full-height full-width GPU. This 3U multi-node MicroCloud system offers a space-saving design and low power consumption optimized for web and dedicated hosting, cloud gaming, and content delivery networks.

Supermicro's servers, powered by AMD EPYC 4004 CPUs, provide the ideal server platform for small to mid-sized businesses looking to expand into new opportunities with powerful computing and compact design. AMD EPYC™ 4004 Processors extend the established high-performance, highly efficient "Zen4" core architecture into an expanded range of new entry-level server system designs. Utilizing the tried-and-true AM5 socket and feature from 4-16 SMT-capable (Simultaneous Multithreading), energy-efficient "Zen4" processor cores, enabling needed performance in cost-efficient system designs, allowing deployment with limited IT support in low-density business computing environments such as medical, retail, telco and other office-type settings.

"Supermicro continues to work closely with AMD to bring the latest CPUs to customers in a wide range of markets. Our AMD EPYC 4004 Series processors are an ideal fit for Supermicro rack mount servers and the new, innovative MicroCloud. Customers can get a tremendous density per rack with the new processors and Supermicro's form factors designed for cloud-native and scale-out environments. We look forward to continued success as we bring new solutions to the market," said John Morris, corporate vice president, Enterprise and HPC Business Group, AMD.

These server systems are designed to appeal to small and medium businesses, departmental and branch office server customers, and hosted IT service providers. Based on its compelling combination of affordability, performance, and ease of management. AMD EPYC 4004 Series processors are built to deliver strong general-purpose server workload performance in a streamlined, single-socket package.

The following systems contain the AMD EPYC™ 4004 Series Processor:

MicroCloud 10 Nodes: https://www.supermicro.com/en/products/system/microcloud/3u/as-3015mr-h10tnr

MicroCloud 8 Nodes: https://www.supermicro.com/en/products/system/microcloud/3u/as-3015mr-h8tnr

Mainstream, 1U https://www.supermicro.com/en/products/system/mainstream/1u/as-1015a-mt

Mainstream, 2U https://www.supermicro.com/en/products/system/mainstream/2u/as-2015a-tr   (2U)

Tower Servers: https://www.supermicro.com/en/products/system/mainstream/tower/as-3015a-i

About Super Micro Computer, Inc.

Supermicro (NASDAQ: SMCI) is a global leader in Application-Optimized Total IT Solutions. Founded and operating in San Jose, California, Supermicro is committed to delivering first to market innovation for Enterprise, Cloud, AI, and 5G Telco/Edge IT Infrastructure. We are a Total IT Solutions manufacturer with server, AI, storage, IoT, switch systems, software, and support services. Supermicro's motherboard, power, and chassis design expertise further enables our development and production, enabling next generation innovation from cloud to edge for our global customers. Our products are designed and manufactured in-house (in the US, Taiwan, and the Netherlands), leveraging global operations for scale and efficiency and optimized to improve TCO and reduce environmental impact (Green Computing). The award-winning portfolio of Server Building Block Solutions® allows customers to optimize for their exact workload and application by selecting from a broad family of systems built from our flexible and reusable building blocks that support a comprehensive set of form factors, processors, memory, GPUs, storage, networking, power, and cooling solutions (air-conditioned, free air cooling or liquid cooling). 

Supermicro, Server Building Block Solutions, and We Keep IT Green are trademarks and/or registered trademarks of Super Micro Computer, Inc. 

AMD, the AMD logo, EPYC, and combinations thereof are trademarks of Advanced Micro Devices, Inc.

All other brands, names, and trademarks are the property of their respective owners.

 

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