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HPE P14398-B21 16GB DDR4-3200MHz RDIMM 2Rx4 CL22 Memory
- 16GB memory capacity.
- DDR4 SDRAM technology.
- 3200MHz memory speed for high performance.
- RDIMM (Registered DIMM) for server stability.
- 2Rx4 module configuration.
- CL22 latency.
- Designed for HPE ProLiant servers.
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Product Overview
The HPE P14398-B21 is a 16GB DDR4-3200MHz RDIMM memory module. It features a 2Rx4 configuration and CL22 latency, designed to enhance the performance of compatible HPE servers.
Technical Information
| Product Type | Memory Module |
| Capacity | 16GB |
| Technology | DDR4 SDRAM |
| Speed | 3200MHz |
Additional Specifications
| Type | RDIMM (Registered DIMM) |
| Rank | 2Rx4 |
| Latency | CL22 |
Product Description
The HPE P14398-B21 is a high-performance 16GB DDR4 Registered DIMM (RDIMM) memory module, specifically engineered to boost the capabilities of compatible HPE ProLiant servers. With a rapid speed of 3200MHz, this module significantly accelerates data processing and application performance, reducing latency and improving overall system responsiveness. The DDR4 technology offers higher bandwidth and lower power consumption compared to previous generations of RAM. The 2Rx4 rank configuration indicates that the memory module has two ranks, with each rank consisting of four memory chips per chip select. This configuration is optimized for performance and capacity in server environments. As a Registered DIMM, it includes an onboard register that buffers command and address signals, reducing electrical load on the memory controller and allowing for higher memory capacities and greater stability, which is crucial for mission-critical server operations. This 16GB RDIMM is designed to meet the demanding requirements of modern data centers and enterprise applications. Its CL22 latency ensures efficient data access, complementing the high speed and capacity. By upgrading to HPE-certified memory like the P14398-B21, users can ensure optimal compatibility, reliability, and performance for their HPE server infrastructure, supporting virtualization, databases, and other intensive workloads.


