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Hynix HMA84GL7MMR4N-UHT2 32GB DDR4-2400MHz LRDIMM 4Rx4 CL17 Memory

Hynix HMA84GL7MMR4N-UHT2 32GB DDR4-2400MHz LRDIMM 4Rx4 CL17 Memory

SKU:HMA84GL7MMR4N-UHT2
  • Capacity: 32GB
  • Type: DDR4 LRDIMM (Load-Reduced DIMM)
  • Speed: 2400MHz
  • CAS Latency: CL17
  • Configuration: 4Rx4 (Quad Rank, 4 bits per chip)
  • Voltage: Standard DDR4 voltage (typically 1.2V)
  • ECC: Yes (Error-Correcting Code)
  • Buffered: Yes (Registered)
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Product Overview

The Hynix HMA84GL7MMR4N-UHT2 is a 32GB DDR4 LRDIMM memory module designed for high-performance server and workstation environments. It operates at a speed of 2400MHz with a CAS latency of 17, offering efficient data transfer rates. This module features a 4Rx4 rank configuration, indicating a quad-rank design with four data banks per chip, suitable for memory-intensive applications.

Technical Information

Memory TypeDDR4 SDRAM
Form FactorLRDIMM
Capacity32GB
Speed2400MHz

Additional Specifications

LatencyCL17
Rank4Rx4
ECCYes
Voltage1.2V

Product Description

The Hynix HMA84GL7MMR4N-UHT2 is engineered for demanding enterprise applications that require substantial memory capacity and high bandwidth. As a Load-Reduced DIMM (LRDIMM), it incorporates an 8-bit buffer chip that reduces the electrical load on the memory controller, allowing for higher memory capacities and increased module counts per channel. This design is crucial for servers and workstations pushing the limits of memory density and performance. The module's 4Rx4 configuration signifies a quad-rank design, where each memory chip is organized into four independent ranks. This arrangement can enhance performance by allowing the memory controller to access different ranks concurrently, effectively increasing the data throughput. The DDR4 technology provides significant improvements over previous generations, including higher speeds, lower power consumption, and increased density, making it ideal for modern computing platforms. With a speed of 2400MHz and a CAS latency of CL17, the HMA84GL7MMR4N-UHT2 strikes a balance between responsiveness and throughput. The inclusion of Error-Correcting Code (ECC) ensures data integrity by detecting and correcting single-bit errors, which is a critical feature for mission-critical server environments where data accuracy is paramount. This combination of capacity, speed, rank configuration, and reliability features makes it a robust choice for virtualization, large databases, scientific computing, and other memory-intensive workloads.

Condition:Refurbished

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