واحة دبي للسيليكون, Dubai
Brand
HPEQuantity
HPE DL380 Gen10 Intel Xeon-Gold 5220 (2.2GHz/18-core/125W) FIO Processor Kit S-ERVER Brand: HPE
HPE DL380 Gen10 Intel Xeon-Gold 5220 (2.2GHz/18-core/125W) FIO Processor Kit S-ERVER
Brand: HPE
Model: P02499-L21
P02499-L21 Overview
The HPE DL380 Gen10 Intel Xeon-Gold 5220 FIO Processor Kit ushers in a new age of performance for server technology. With this 18-core powerhouse, data centers can expect significant advancements in processing speed, energy efficiency, and overall reliability. Designed for sophisticated multi-threaded applications, it’s an essential upgrade for businesses aiming to maximize their server performance and computational capabilities.
Quick Spec
Brand
HPE
Product Name
P02499-L21
CPU Model
Intel Xeon-Gold 5220
Core Count
18-core
Base Frequency
2.2GHz
Thermal Design Power (TDP)
125W
Product Features
Advanced multi-threaded processing for enhanced computational power
High efficiency with a TDP of 125W, reducing operational costs
Support for Intel Turbo Boost Technology, adjusting processing power to meet demand
Seamless integration with HPE DL380 Gen10 servers for reliable performance
Optimized for data center and enterprise-level applications requiring high throughput
Product Applications
Data analytics and processing: Ideal for handling large data sets and complex analytics in real-time.
Virtualized environments: Supports multiple virtual machines efficiently, improving server utilization.
High-performance computing (HPC): Suitable for research and simulation tasks requiring extensive computational resources.
Supported Options
Memory Upgrades
DDR4 SmartMemory
Storage Solutions
NVMe drives
Networking Cards
10GbE adapters
Compare to Similar Items
Model
Differences
Intel Xeon-Gold 5218
Lower core count (16-core) and slightly higher base frequency (2.3GHz)
Intel Xeon-Gold 6230
Higher core count (20-core) and similar base frequency (2.1GHz) but increased power consumption
Intel Xeon-Platinum 8256
Higher base frequency (3.8GHz) with fewer cores (4-core) and significantly higher TDP