- Stock: 50
- Model: LA26E1C4-R609LP
- Dimensions: 10.00cm x 10.00cm x 8.00cm
- SKU: 153INPKT507
- UPC: 672042384402
- MPN: CSE-LA26E1C4-R609LP
- XSIN: 153INPKT507
- Condition: New
SOLD BY
UniRetail
Total Products 105
General | |
Warranty | Manufacturer provides a 1-year limited warranty (confirm exact terms with the vendor or retailer). |
Part Number | CSE-LA26E1C4-R609LP |
Model | SuperChassis LA26E1C4-R609LP |
Compatibility | Supports EE-ATX and smaller motherboards. Compatible with both single and dual Intel®/AMD processor configurations. Works with up to 12 hot-swap 3.5" or 2.5" SAS3/SATA3 drives and optionally 2 additional 2.5" hot-swap drives with a rear kit. |
The Super Micro SuperChassis LA26E1C4-R609LP Rack Server is a high-performance, reliable solution designed for enterprise-level applications and data center environments. Featuring a robust chassis optimized for efficient cooling and power distribution, this server supports advanced hardware configurations, including dual processors and high-density storage options. With its sleek 2U form factor, the LA26E1C4-R609LP maximizes rack space while delivering unparalleled computing power, making it ideal for virtualization, database management, and cloud computing tasks. Equipped with redundant power supplies and hot-swappable drive bays, it ensures minimal downtime and easy maintenance. Advanced thermal management technologies keep the system running at optimal temperatures, even under heavy workloads, enhancing durability and energy efficiency. Additionally, the server boasts flexible connectivity options with multiple PCIe slots, onboard LAN ports, and expansion capabilities to accommodate growing business needs. Its compatibility with cutting-edge software platforms and operating systems ensures seamless integration into existing IT infrastructure. Whether deployed for web hosting, scientific research, or enterprise-level applications, the Super Micro SuperChassis LA26E1C4-R609LP delivers exceptional performance, scalability, and reliability to meet the most demanding operational requirements.