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Hynix HMA84GL7MFR4N-UHT2 32GB DDR4-2400MHz LRDIMM 4Rx4 CL17 Memory
- Capacity: 32GB
- Type: DDR4 SDRAM
- Speed: 2400MHz (PC4-19200)
- Form Factor: LRDIMM (Load-Reduced DIMM)
- Rank: 4Rx4 (Quad Rank x4)
- Latency: CL17
- Voltage: 1.2V
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Product Overview
The Hynix HMA84GL7MFR4N-UHT2 is a 32GB DDR4-2400MHz LRDIMM memory module. It features a 4Rx4 rank configuration and CL17 latency, designed for high-capacity server applications requiring advanced memory performance.
Technical Information
| Capacity | 32GB |
| Memory Type | DDR4 SDRAM |
| Speed | 2400MHz |
| Form Factor | LRDIMM |
Additional Specifications
| Rank | 4Rx4 |
| CAS Latency | CL17 |
| Voltage | 1.2V |
Product Description
The Hynix HMA84GL7MFR4N-UHT2 is a high-capacity 32GB DDR4 Load-Reduced DIMM (LRDIMM) memory module, operating at a speed of 2400MHz. This module is specifically designed for enterprise-level servers and high-performance computing environments where maximum memory density and performance are critical. The 4Rx4 configuration signifies a quad-rank module with four banks of memory chips, each organized as x4, which allows for higher module capacities and improved signal integrity in complex memory architectures. Featuring a CAS Latency (CL) of 17, this LRDIMM provides efficient data access times suitable for memory-intensive workloads. LRDIMMs incorporate an additional register chip that buffers address and command signals, significantly reducing the electrical load on the memory controller. This design enables servers to support a greater number of memory modules and achieve higher total memory capacities than would be possible with standard RDIMMs or UDIMMs. This Hynix module is built to deliver reliability and performance in demanding server applications. Its 32GB capacity, combined with DDR4 technology and the LRDIMM architecture, makes it an ideal choice for virtualization, large databases, scientific simulations, and other applications that require substantial amounts of memory. The 1.2V operating voltage ensures energy efficiency, contributing to lower operational costs and reduced heat output in dense server deployments.



