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| Product Overview |
|---|
The HMCGM4MHBRB263N Hynix memory module delivers 96GB of DDR5-6400 ECC Registered memory, featuring dual-rank architecture, CL52 latency, and a 1.1V operating voltage within a 288-pin design optimized for enterprise-class server environments. |
| General Information | |
|---|---|
| Brand | SK Hynix |
| Part Number | HMCGM4MHBRB263N |
| Technical Information | |
|---|---|
| Memory Capacity | 96GB |
| Memory Technology | DDR5 |
| Module Type | RDIMM |
| RAM Standard | PC5-51200 |
| Pin Count | 288-Pin |
| Error Correction | ECC Registered |
| Rank | Dual-Rank |
| Voltage | 1.1V |
| Performance | |
|---|---|
| Bus Speed | 6400 MT/s |
| Bandwidth | 51200 MB/s |
| Native Speed | 6400 MT/s |
| CAS | CL52 |
| Physical Characteristics | |
|---|---|
| Package | FBGA |
| Weight | 0.50 |
| Condition | Refurbished |
| Product Description |
|---|
The HMCGM4MHBRB263N is a high-capacity 96GB DDR5 memory module designed to enhance system performance and reliability. It is primarily used in enterprise and server environments where large memory capacity and stability are critical. This memory module is found in advanced computing systems, data centers, and workstations requiring error-correcting code (ECC) memory to prevent data corruption. IT professionals, system administrators, and organizations with demanding workloads benefit from its robust design. Key Features
Designed for stability and performance, the HMCGM4MHBRB263N supports high-speed data processing while minimizing power consumption. This makes it suitable for mission-critical applications where uptime and accuracy are essential. Its 288-pin form factor ensures compatibility with standard DDR5 memory slots in server systems, enabling easy integration and upgrade paths. |
| Use Cases |
|---|
The HMCGM4MHBRB263N memory module is engineered for high-performance computing applications requiring large, reliable memory pools. How It's Used:
This memory solution supports intensive computing tasks by providing stable and efficient system memory, ensuring consistent performance in demanding environments. |