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Supermicro SYS-E300-9A-4CN8 Mini-1U E300 Intel Atom Processor C3558 256GB DDR4 server
- Mini-1U form factor for space-constrained deployments.
- Intel Atom Processor C3558 (4-Core) for efficient performance.
- 256GB DDR4 RAM for substantial memory capacity.
- Integrated network connectivity (specific ports may vary).
- Designed for network appliances, IoT, and edge computing.
- Low power consumption for energy efficiency.
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Product Overview
The Supermicro SYS-E300-9A-4CN8 is a compact Mini-1U server featuring an Intel Atom Processor C3558 and 256GB DDR4 RAM. It is designed for network appliances, IoT gateways, and edge computing.
Technical Information
| Server Model | Supermicro E300 |
| Form Factor | Mini-1U |
| Processor | Intel Atom Processor C3558 |
Additional Specifications
| Cores | 4 |
| Memory | 256GB DDR4 |
Product Description
The Supermicro SYS-E300-9A-4CN8 is a highly compact and power-efficient server designed for specialized applications such as network appliances, IoT gateways, and edge computing solutions. Its Mini-1U form factor makes it ideal for deployment in environments where space is at a premium, such as telecommunications closets, embedded systems, or dense server racks. The system is powered by an Intel Atom Processor C3558, a quad-core processor optimized for networking and embedded applications, offering a good balance of performance and low power consumption. This particular configuration comes equipped with a substantial 256GB of DDR4 RAM. This generous memory capacity allows the server to handle demanding workloads, including running multiple virtual machines, complex network functions, or large datasets for edge analytics. DDR4 memory provides higher bandwidth and lower latency compared to older DDR generations, contributing to the overall responsiveness of the system. The SYS-E300-9A-4CN8 is designed with connectivity in mind, often featuring multiple network ports (indicated by '4CN8' potentially referring to 4x 10GbE SFP+ ports or similar high-speed interfaces, though specific details would need confirmation). This makes it suitable for network-intensive tasks like routing, firewalling, or serving as a high-performance gateway. Its compact size, low power draw, and robust processing capabilities make it a versatile choice for modern distributed computing architectures.

