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Hynix HMA4517AFR8N-UH 4GB DDR4-2400MHz RDIMM 1Rx8 CL17 Memory
- Capacity: 4GB
- Type: DDR4 RDIMM
- Speed: 2400MHz
- Latency: CL17
- Configuration: 1Rx8 (Single Rank x8)
- Designed for server and workstation environments
- Enhances system performance and multitasking
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Product Overview
The Hynix HMA4517AFR8N-UH is a 4GB DDR4 RDIMM memory module designed for servers and workstations. Operating at 2400MHz with a CL17 latency, it provides efficient performance for memory-intensive applications. This 1Rx8 module is a reliable component for enhancing system responsiveness and multitasking capabilities.
Technical Information
| Capacity | 4GB |
| Memory Type | DDR4 RDIMM |
| Speed | 2400MHz |
Additional Specifications
| CAS Latency | CL17 |
| Rank | 1Rx8 |
| Form Factor | DIMM |
Product Description
The Hynix HMA4517AFR8N-UH is a 4GB Registered Dual In-line Memory Module (RDIMM) built on DDR4 technology. RDIMMs are specifically designed for server and high-end workstation environments, featuring onboard registers that help reduce electrical load on the memory controller, allowing for higher memory capacities and improved stability. This module operates at a speed of 2400MHz, providing a significant bandwidth for data-intensive tasks. With a CAS Latency (CL) of 17, this memory module offers a balance between speed and timing, contributing to efficient data access. The 1Rx8 configuration indicates that the memory chips are arranged in a single rank with 8 bits wide data access per chip. This configuration is common and well-supported in server platforms, ensuring compatibility and performance. This Hynix memory module is an essential component for upgrading or populating server memory configurations. Its DDR4 standard offers improvements in power efficiency and performance over previous generations. The 2400MHz speed and CL17 latency make it suitable for a wide array of applications, including virtualization, database management, and scientific computing, where increased memory capacity and speed are critical for optimal system operation.



