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Hynix HMCG94MEBRA109N 64GB DDR5-4800MHz RDIMM 2Rx4 CL40 Memory
- Capacity: 64GB
- Type: DDR5 SDRAM
- Form Factor: RDIMM (Registered DIMM)
- Speed: 4800MHz
- CAS Latency: CL40
- Configuration: 2Rx4 (Dual Rank, 4 Banks)
- ECC: Yes (Error-Correcting Code)
- Voltage: Standard DDR5 voltage
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Product Overview
The Hynix HMCG94MEBRA109N is a 64GB DDR5 Registered DIMM (RDIMM) module. It operates at a speed of 4800MHz with a CL40 latency, designed for high-performance servers and workstations requiring substantial memory capacity and bandwidth.
Technical Information
| Memory Type | DDR5 SDRAM |
| Capacity | 64GB |
| Speed | 4800MHz |
| Form Factor | RDIMM |
Additional Specifications
| CAS Latency | CL40 |
| Rank | 2Rx4 |
| ECC | Yes |
| Voltage | 1.1V |
Product Description
The Hynix HMCG94MEBRA109N represents a significant advancement in memory technology, offering a substantial 64GB capacity in a DDR5 RDIMM format. This module is engineered for demanding enterprise environments, including high-performance computing, large-scale data analytics, and virtualization. The DDR5 standard brings increased bandwidth, improved power efficiency, and enhanced features over previous generations, making it ideal for next-generation server platforms. Operating at 4800MHz with a CAS latency of CL40, this RDIMM provides a robust balance of speed and capacity. The 2Rx4 configuration signifies a dual-rank design, where each rank is divided into four banks, allowing for more efficient data access and higher overall throughput. The inclusion of ECC (Error-Correcting Code) is crucial for server environments, as it detects and corrects single-bit errors, ensuring data integrity and system stability. This Hynix module is designed to meet the rigorous demands of modern data centers. Its registered architecture helps reduce electrical load on the memory controller, enabling higher memory capacities and improved signal integrity in multi-module configurations. The HMCG94MEBRA109N is a key component for building scalable and reliable server infrastructure capable of handling complex workloads.


