HPE ProLiant ML350 Gen10 Server
Overview
The HPE ProLiant ML350 Gen10 is a secure, dual-socket tower server engineered for exceptional performance, security, and expandability. This versatile platform is designed for a wide range of workloads in diverse physical environments, making it an ideal choice for growing small to mid-sized businesses, remote and branch offices of large enterprises, and corporate data centers. It effectively addresses the need for a robust, scalable compute foundation that can adapt to changing business demands without requiring a complete infrastructure overhaul. At its core, this configuration is powered by an Intel Xeon Scalable processor, delivering a significant boost in performance and core count. This processing power is complemented by HPE DDR4 SmartMemory, which enhances workload performance and power efficiency while reducing data loss and downtime. The server’s architecture is built for versatility, supporting 12 Gb/s SAS controllers and NVMe SSDs to accelerate application performance. These features provide the necessary bandwidth and low latency for data-intensive applications, ensuring smooth operation for database, VDI, or high-performance computing workloads. Designed as a 4U rackable tower, the ML350 Gen10 offers deployment flexibility, fitting easily into standard office spaces or consolidating into data center racks. Management is streamlined through HPE’s embedded iLO 5 silicon root of trust security features and management tools, which provide both remote server administration and advanced security functions like Server Configuration Lock. This comprehensive management suite simplifies the entire IT lifecycle, from initial deployment to ongoing monitoring and maintenance, allowing for efficient, secure, and reliable server operations.
Key Features
- Supports dual Intel Xeon Scalable processors
- Features 24 DIMM slots for up to 1.5 TB of memory
- Includes an HPE Smart Array P408i-a SR Gen10 Controller
- Embedded quad-port 1GbE network adapter
- Redundant power supply capable for high availability


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