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HP QG282AV 128GB Kit (8x16GB) DDR3-1600MHz RDIMM 2Rx4 CL11 Memory
- Total Capacity: 128GB
- Module Configuration: 8 x 16GB
- Memory Type: DDR3 RDIMM
- Speed: 1600MHz
- Latency: CL11
- Rank: 2Rx4
- Manufacturer: HP
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Product Overview
This is a high-capacity memory kit designed to significantly boost server performance. It includes 8 x 16GB modules of DDR3 RDIMM memory, totaling 128GB. The memory operates at 1600MHz with CL11 latency, providing fast and efficient data processing for demanding enterprise applications.
Technical Information
| Total Capacity | 128GB |
| Module Size | 16GB |
| Number of Modules | 8 |
| Memory Type | DDR3 RDIMM |
Additional Specifications
| Speed | 1600MHz |
| CAS Latency | CL11 |
| Rank | 2Rx4 |
| Manufacturer | HP |
Product Description
The HP QG282AV is a comprehensive 128GB memory kit engineered to enhance the performance of compatible server systems. This kit comprises eight 16GB Registered Dual In-line Memory Modules (RDIMMs), providing a substantial memory footprint for memory-intensive applications and virtualized environments. The DDR3 technology ensures efficient data transfer, while the 1600MHz operating speed offers a significant performance boost over slower memory modules. Each module is configured as 2Rx4, indicating a dual-rank design with four bits per memory chip. This configuration can improve performance by allowing the memory controller to access different ranks concurrently, effectively increasing bandwidth and reducing latency. The CL11 CAS Latency rating signifies the number of clock cycles required to access a particular column address, with lower numbers generally indicating faster response times. The Registered (buffered) nature of these RDIMMs helps to reduce electrical load on the memory controller, enabling higher memory capacities and improved stability in server configurations. This memory kit is specifically designed for HP servers that support DDR3 RDIMMs and the specified speed and capacity. It is an ideal upgrade for systems running demanding enterprise workloads such as large databases, complex simulations, high-performance computing, and extensive virtualization. By increasing the available RAM, users can expect improved application responsiveness, the ability to run more virtual machines, and overall enhanced system throughput.


