TYAN Incorporates AMD EPYC 4004 Processors for Affordable and User-Friendly Servers


May 21, 2024 by our News Team

TYAN unveils its latest lineup of servers and motherboards powered by the new AMD EPYC 4004 Series CPUs, providing affordable and high-performance options for small and medium businesses to stay competitive in the digital landscape, with a standout model being the Transport CX HG68-B8016, a 6U 5 node single-socket AMD AM5 cloud gaming server.

  • Provides affordable yet high-performance technologies for small and medium businesses
  • Offers low core count CPU options and low power consumption for exceptional performance and scalability
  • TYAN's servers are designed with versatility in mind, catering to various applications and computing needs


In an exciting development for the server market, TYAN, a subsidiary of MiTAC Computing Technology Corporation, has unveiled its latest lineup of servers and motherboards powered by the new AMD EPYC 4004 Series CPUs. This release aims to address the needs of small and medium businesses, providing them with affordable yet high-performance technologies to stay competitive in today’s fast-paced digital landscape.

John Morris, Corporate Vice President of AMD’s Enterprise and HPC Business Group, highlighted the significance of this collaboration, stating, “The new AMD EPYC 4004 Series CPUs, along with our strong ecosystem of technology partners, bring enterprise solutions to a traditionally underserved market and ensure that small and medium businesses have access to highly-performant technologies that help them stay competitive.”

The AMD EPYC 4004 Series processors expand upon the already impressive AMD EPYC processor lineup, offering a range of entry-level system designs that cater to the needs of small businesses and regional hosted IT services providers. With low core count CPU options and power consumption as low as 65W, these servers deliver exceptional performance, scalability, and dependability required by growing businesses and 24×7 hosted services.

TYAN’s AMD EPYC 4004 based servers are designed with versatility in mind, catering to various applications such as website hosting, specialized IT services for sectors like healthcare, retail, and telecommunications, AI-driven development, cloud services, data analysis, and efficient data storage. Leveraging the robust performance of AMD EPYC 4004 Processors, TYAN’s platforms offer users a combination of accessibility and affordability.

One standout server model is the TYAN Transport CX HG68-B8016, a 6U 5 node single-socket AMD AM5 cloud gaming server. Each node is equipped with 4 DDR5-4800 UDIMM slots, 2 NVMe M.2 slots, 1 PCIe 5.0 x16 slot for dual-slot GPU card deployment, and 2 PCIe 4.0 slots for additional network connections. This innovative design sets a new standard in multi-node server configurations, providing enhanced performance and scalability for diverse computing needs.

TYAN also introduces the Transport CX GX40-B8016, a single-socket 1U server solution. It boasts 4 DDR5-4800 UDIMM slots, support for up to 4 internal SATA drives, 2 NVMe M.2 slots, and 1 PCIe 5.0 x16 slot. Optimized for cost-effective computing requirements, this server is ideal for datacenter and cloud-edge applications.

Furthermore, TYAN presents the Tomcat CX S8016, a compact and cost-effective single-socket motherboard tailored for AMD EPYC 4004 CPUs. This motherboard is specifically designed for CSP deployment and features 4 DDR5 DIMM slots supporting DDR5-4800 UDIMM with or without ECC, up to 128GB in total. It also includes 1 PCIe 5.0 x16 slot, 2 PCIe 4.0 x4 slots, 2 NVMe M.2 2280 slots, and 4 SATA 6G ports.

Overall, TYAN’s latest offerings powered by the AMD EPYC 4004 Series CPUs bring accessibility, affordability, and energy efficiency to the server market. With their extensive range of server solutions catering to various applications and computing needs, TYAN continues to solidify its position as a leading player in the industry.

TYAN Incorporates AMD EPYC 4004 Processors for Affordable and User-Friendly Servers

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Background Information


About AMD: AMD, a large player in the semiconductor industry is known for its powerful processors and graphic solutions, AMD has consistently pushed the boundaries of performance, efficiency, and user experience. With a customer-centric approach, the company has cultivated a reputation for delivering high-performance solutions that cater to the needs of gamers, professionals, and general users. AMD's Ryzen series of processors have redefined the landscape of desktop and laptop computing, offering impressive multi-core performance and competitive pricing that has challenged the dominance of its competitors. Complementing its processor prowess, AMD's Radeon graphics cards have also earned accolades for their efficiency and exceptional graphical capabilities, making them a favored choice among gamers and content creators. The company's commitment to innovation and cutting-edge technology continues to shape the client computing landscape, providing users with powerful tools to fuel their digital endeavors.

AMD website  AMD LinkedIn

About TYAN: TYAN is a prominent company specializing in server and workstation solutions, known for its robust and high-performance hardware offerings. With a strong presence in the enterprise and data center sectors, TYAN designs and manufactures a wide range of server motherboards, barebones systems, and server platforms.



Technology Explained


AM5: Socket AM5 (LGA 1718) is a zero insertion force flip-chip land grid array (LGA) CPU socket designed by Advanced Micro Devices, that is used for AMD Ryzen microprocessors starting with the Zen 4 microarchitecture. AM5 replaces the Socket AM4 and is AMD's first LGA socket designed for mainstream, non-enthusiast CPUs.


CPU: The Central Processing Unit (CPU) is the brain of a computer, responsible for executing instructions and performing calculations. It is the most important component of a computer system, as it is responsible for controlling all other components. CPUs are used in a wide range of applications, from desktop computers to mobile devices, gaming consoles, and even supercomputers. CPUs are used to process data, execute instructions, and control the flow of information within a computer system. They are also used to control the input and output of data, as well as to store and retrieve data from memory. CPUs are essential for the functioning of any computer system, and their applications in the computer industry are vast.


DDR5: DDR5 (Double Data Rate 5) is the next generation of memory technology for the computer industry. It is a modern day improvement on earlier DDR technologies, with faster speeds, greater bandwidth and higher capacities. DDR5 enables higher resolution, seamless gaming experiences and faster data transfer rates, making it an ideal choice for high-performance computing and 4K gaming. With its greater RAM compatibility, DDR5 provides faster buffering times and raised clock speeds, giving users an improved overall work system. DDR5 is also optimized for multi-tasking, allowing users to multitask without experiencing a significant drop in performance, increasing the productivity of digital tasks. As an ever-evolving technology, DDR5 is paving the way for the computer industry into a new and powerful era.


EPYC: EPYC is a technology designed by computer chip manufacturer AMD for use in the server and data center industry. It was introduced in June 2017 and features an innovative design to improve performance and power efficiency. EPYC processor technology is based on an innovative 14nm processor architecture, allowing up to 32 high-performance cores in a single socket. This allows for more efficient processing power, increased memory bandwidth, and greater compute density. EPYC is now widely used in the data center and cloud computing industry and provides benefits such as greater scalability, increased resource efficiency, and advanced virtualization capabilities. Additionally, EPYC technology is used in data intensive servers like server farms, gaming, and virtualization platforms. EPYC ensures that even with large deployments in multi-processor environments, power consumption and performance levels are optimized to ensure maximum efficiency.


GPU: GPU stands for Graphics Processing Unit and is a specialized type of processor designed to handle graphics-intensive tasks. It is used in the computer industry to render images, videos, and 3D graphics. GPUs are used in gaming consoles, PCs, and mobile devices to provide a smooth and immersive gaming experience. They are also used in the medical field to create 3D models of organs and tissues, and in the automotive industry to create virtual prototypes of cars. GPUs are also used in the field of artificial intelligence to process large amounts of data and create complex models. GPUs are becoming increasingly important in the computer industry as they are able to process large amounts of data quickly and efficiently.


HPC: HPC, or High Performance Computing, is a type of technology that allows computers to perform complex calculations and process large amounts of data at incredibly high speeds. This is achieved through the use of specialized hardware and software, such as supercomputers and parallel processing techniques. In the computer industry, HPC has a wide range of applications, from weather forecasting and scientific research to financial modeling and artificial intelligence. It enables researchers and businesses to tackle complex problems and analyze vast amounts of data in a fraction of the time it would take with traditional computing methods. HPC has revolutionized the way we approach data analysis and has opened up new possibilities for innovation and discovery in various fields.


M.2: M.2, also known as Next Generation Form Factor (NGFF), is a computer expansion card format that is designed to replace the outdated mSATA standard. It is thinner and longer than mSATA, which gives it a much higher data transfer rate. The M.2 format measures 22mm in width and can measure up to 110mm in length. It uses the M-key and B-key connectors to interface with PC host systems, and can connect to both SATA III and PCIe for data transfer. Due to its small size, M.2 is often used for ultra-slim laptops and netbooks, as well as in embedded SSDs for tablets and other mobile devices. It is also becoming increasingly popular in the desktop computer industry, thanks to its compactness and fast transfer speeds. This makes M.2 ideal for gaming PCs, workstations, and other demanding applications that require high levels of data throughput.


NVMe: Non-Volatile Memory Express (NVMe) is a newly developed technology that has been gaining traction in the computer industry. This technology is a standard interface which allows for high-speed storage and retrieval of data from solid state drives (SSDs). NVMe is designed to increase the speed of data transfers in storage systems by enabling a direct connection to PCI Express (PCIe) bus, resulting in significantly faster access times compared to traditional interface protocols such SSDs. NVMe is particularly useful for applications that require lightning-fast access to large amounts of high-value data. NVMe-based SSDs are being widely adopted in the computer industry and are being employed to power data centers, high-end workstations, and gaming machines to support lightning-fast data processing and retrieval, which unlocks possibilities for machine learning, real-time analytics, edge computing, and other cutting-edge applications. NVMe is proving to be an invaluable tool in the field of computing, offering immense


PCIe: PCIe (Peripheral Component Interconnect Express) is a high-speed serial computer expansion bus standard for connecting components such as graphics cards, sound cards, and network cards to a motherboard. It is the most widely used interface in the computer industry today, and is used in both desktop and laptop computers. PCIe is capable of providing up to 16 times the bandwidth of the older PCI standard, allowing for faster data transfer speeds and improved performance. It is also used in a variety of other applications, such as storage, networking, and communications. PCIe is an essential component of modern computing, and its applications are only expected to grow in the future.





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