The MIS-5131-2U2 is a powerful and versatile 2U2N High Availability Storage Server, featuring Intel Xeon 6 processors, hot-swappable NVMe drive bays, and advanced monitoring capabilities, making it a game-changing storage solution for mission-critical applications.
- Powered by Intel's latest Xeon 6 processors
- Unique horizontal design for optimized thermal dissipation
- High availability and seamless failover capabilities
Introducing the MIS-5131-2U2: A Game-Changer in Storage Solutions
AEWIN is thrilled to unveil the MIS-5131-2U2, a state-of-the-art 2U2N High Availability Storage Server that is set to redefine your expectations for performance and reliability. At its core, this powerhouse is driven by Intel’s latest Xeon 6 processors, ensuring that you’re not just keeping up with the competition but staying ahead of it.
Designed for Performance and Efficiency
What makes the MIS-5131-2U2 stand out? Its unique horizontal design optimizes thermal dissipation, allowing the CPU to run at a high thermal design power (TDP) of 350 W. Imagine the potential when each node is equipped with a single Intel Xeon 6700/6500-series processor featuring up to 80 performance cores. That’s a lot of horsepower under the hood! Plus, with 136 PCIe 5.0 lanes and 8 high-speed DDR5 RDIMMs that can hit speeds of up to 6400 MT/s, you’re looking at a storage solution that won’t break a sweat under pressure.
High Availability Meets Seamless Failover
But it’s not just about raw power. The dual-node architecture within a single chassis offers seamless failover capabilities, thanks to the Non-Transparent Bridge (NTB) interconnectivity. Picture this: if one node encounters an issue, the other is ready to take over without missing a beat. With two BMC communications and dual-port NVMe drives, you can trust that your data is safe and sound.
The nodes are interconnected via NTB running at PCIe Gen 5 speeds (32 GT/s), ensuring that your storage failover is not just fast but also reliable. This setup eliminates the need for an additional switch, delivering an optimized high availability (HA) server solution that offers the best total cost of ownership (TCO) for continuous operation.
Hot-Swap Flexibility and Reliability
What’s more, the MIS-5131-2U2 features 24 hot-swappable NVMe drive bays with dual ports, enhancing performance and redundancy. This means that if a path fails, the dual-port SSDs are ready to minimize disruptions. And let’s not forget about the 1+1 CRPS power supplies, which provide uninterrupted operation and significantly reduce downtime. Your mission-critical applications deserve nothing less!
Advanced Monitoring and Expansion Capabilities
AEWIN has also integrated IPMI support and a built-in BMC for real-time internode monitoring. This means automatic responses to heartbeat failures, enhancing reliability when you need it most. Each node supports 2x FHFL PCIe 5.0 and 1x LP PCIe 5.0 slots, allowing you to expand high-throughput NICs up to 400G, ensuring fast and reliable data transmission.
And for those looking to dive into AI and machine learning workloads, there’s an optional dual-width PCIe x16 slot for GPU/FPGA cards. With Intel AMX-FP16 in the Xeon 6 CPUs, you get a perfect blend of precision and performance, allowing you to train models faster while maintaining higher accuracy compared to Int8 and BF16.
Tailored for Your Needs
The flexibility of the MIS-5131-2U2 is impressive, allowing you to switch from 24 dual-port NVMe SSD trays to 12 single-port NVMe SSD trays per node with a customized backplane. Whether you’re focused on intelligent data analytics, data management, or content delivery, this server is designed to meet diverse mission-critical application needs.
In a world where data is king, having the right storage solution is paramount. The MIS-5131-2U2 isn’t just another server; it’s a robust, high-performance solution that’s ready to tackle your toughest challenges. Are you ready to elevate your storage game?

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Background Information
About Intel:
Intel Corporation, a global technology leader, is for its semiconductor innovations that power computing and communication devices worldwide. As a pioneer in microprocessor technology, Intel has left an indelible mark on the evolution of computing with its processors that drive everything from PCs to data centers and beyond. With a history of advancements, Intel's relentless pursuit of innovation continues to shape the digital landscape, offering solutions that empower businesses and individuals to achieve new levels of productivity and connectivity.Latest Articles about Intel
Technology Explained
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.
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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.
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FPGA: Field Programmable Gate Arrays (FPGAs) are a type of technology used in the computer industry. They are integrated circuits that can be programmed to perform specific tasks. FPGAs are used in a variety of applications, including digital signal processing, networking, and embedded systems. They are also used in the development of artificial intelligence and machine learning algorithms. FPGAs are advantageous because they can be reprogrammed to perform different tasks, allowing for greater flexibility and faster development times. Additionally, FPGAs are more energy efficient than traditional processors, making them ideal for applications that require low power consumption.
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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.
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hot-swappable: Hot-swappable technology is a type of technology that allows components to be added or removed from a system without having to shut it down. This technology is widely used in the computer industry, as it allows for quick and easy upgrades or repairs to be made without having to power down the system. Hot-swappable technology is used in a variety of computer components, such as hard drives, RAM, and graphics cards. It is also used in servers and other networking equipment, allowing for quick and easy maintenance and upgrades. Hot-swappable technology is a great way to keep a computer system running smoothly and efficiently, as it allows for quick and easy repairs and upgrades without having to power down the system.
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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
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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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SSD: A Solid State Drive (SSD) is a modern data storage device that employs flash memory technology to store data electronically. Unlike traditional hard disk drives (HDDs), SSDs have no moving parts, resulting in significantly faster read and write speeds. This leads to quicker boot times, faster application loading, and smoother overall system performance. SSDs are known for their durability, shock resistance, and energy efficiency, making them ideal for laptops, ultrabooks, and other portable devices. They come in various form factors, including 2.5-inch, M.2, and PCIe cards, and are favored for their reliability, quiet operation, and reduced heat generation
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Xeon: The Intel Xeon processor is a powerful and reliable processor used in many computer systems. It is a multi-core processor that is designed to handle multiple tasks simultaneously. It is used in servers, workstations, and high-end desktop computers. It is also used in many embedded systems, such as routers and switches. The Xeon processor is known for its high performance and scalability, making it a popular choice for many computer applications. It is also used in many cloud computing applications, as it is capable of handling large amounts of data and providing high levels of performance. The Xeon processor is also used in many scientific and engineering applications, as it is capable of handling complex calculations and simulations.
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