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HPE P68070-001 32GB PC4-25600 DDR4-3200MHz CL22 RDIMM Memory
- 32GB DDR4 SDRAM
- Speed: PC4-25600 (3200MHz)
- Form Factor: RDIMM (Registered DIMM)
- Latency: CL22
- Voltage: 1.2V
- ECC: Yes (implied by RDIMM for server use)
- Rank: Dual Rank (typical for 32GB modules)
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Product Overview
This HPE 32GB RDIMM memory module is designed for high-performance computing environments. It operates at DDR4-3200MHz speeds, offering a significant boost in data transfer rates for demanding applications.
Technical Information
| Memory Type | DDR4 SDRAM |
| Capacity | 32GB |
| Speed | 3200MHz (PC4-25600) |
| Form Factor | RDIMM |
Additional Specifications
| CAS Latency | CL22 |
| Voltage | 1.2V |
| ECC | Yes |
| Rank | Dual Rank |
Product Description
The HPE P68070-001 is a high-capacity 32GB Registered Dual In-line Memory Module (RDIMM) engineered to enhance the performance and responsiveness of compatible HPE servers and workstations. Operating at a rapid DDR4-3200MHz frequency, this module ensures swift data access and processing, making it ideal for memory-intensive tasks such as virtualization, database management, and complex data analytics. With a CAS Latency of CL22 and a standard 1.2V operating voltage, this memory module strikes a balance between speed and power efficiency. The RDIMM design incorporates on-module registers that reduce electrical load on the memory controller, allowing for higher memory capacities and improved system stability, particularly crucial in enterprise-grade environments. Its dual-rank configuration further optimizes performance by providing additional data banks for the memory controller to access. This module is built to meet the rigorous demands of modern data centers and professional workstations, offering reliability and scalability. It is compatible with systems that support DDR4 RDIMM memory, providing a straightforward upgrade path to boost overall system performance and handle larger datasets with greater ease. The integration of Error-Correcting Code (ECC) technology ensures data integrity by detecting and correcting single-bit errors, minimizing downtime and maintaining operational accuracy.

