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HPE P64336-B21 16GB PC5-38400 DDR5-4800MT/s ECC Udimm Memory Module
- 16GB DDR5 SDRAM
- Speed: PC5-38400 (4800MT/s)
- Form Factor: UDIMM (Unbuffered DIMM)
- ECC: Yes
- Voltage: 1.1V
- Rank: Single Rank (typical for 16GB DDR5 UDIMMs)
- Designed for HPE servers
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Product Overview
This HPE 16GB memory module utilizes the latest DDR5 technology for enhanced speed and efficiency. It is an ECC Unbuffered DIMM designed for high-performance computing and server applications.
Technical Information
| Memory Type | DDR5 SDRAM |
| Capacity | 16GB |
| Speed | 4800MT/s (PC5-38400) |
| Form Factor | UDIMM |
Additional Specifications
| ECC | Yes |
| Voltage | 1.1V |
| Rank | Single Rank |
Product Description
The HPE P64336-B21 is a 16GB DDR5 Unbuffered DIMM (UDIMM) memory module, representing a significant advancement in memory technology for HPE servers and workstations. Operating at an impressive speed of 4800MT/s (PC5-38400), this module delivers substantially higher bandwidth and improved power efficiency compared to previous DDR generations. Its DDR5 architecture introduces features like dual 32-bit channels per module, enhancing data access efficiency and overall system performance. This module incorporates Error-Correcting Code (ECC) functionality, which is critical for ensuring data integrity and system reliability in demanding enterprise environments. ECC detects and corrects single-bit errors, preventing data corruption and minimizing the risk of unexpected system shutdowns. The UDIMM form factor, combined with ECC, makes it suitable for a wide range of server applications where performance and data accuracy are paramount. With a lower operating voltage of 1.1V, the P64336-B21 contributes to reduced power consumption and heat generation, aligning with modern data center efficiency goals. Its single-rank design is typical for this capacity and DDR5 generation, offering a balance of performance and cost-effectiveness. This memory module is an excellent choice for upgrading systems that support DDR5 UDIMMs, providing a substantial boost in computing power for tasks such as AI/ML, high-performance computing, and complex data analysis.


