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Product Overview |
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The Hynix HMAG78EXNRA199N is a 16GB DDR4-3200MHz ECC memory module designed for use in servers and professional systems. It provides error-correcting capabilities to safeguard data, fitting well in environments where reliability and performance are crucial, such as enterprise servers and critical computing tasks. |
General Information |
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| Brand | SK Hynix |
| Part Number | HMAG78EXNRA199N |
Technical Information |
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| Memory Capacity | 16GB |
| Memory Technology | DDR4 |
| RAM Standard | PC4-25600 |
| Pin Count | 288-Pin |
| Error Correction | ECC |
| Rank | 2Rx8 |
| Voltage | 1.2V |
Performance |
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| Bus Speed | 3200MHz |
| Bandwidth | 25600 MB/s (25.6 GB/s) |
| Native Speed | 3200 MT/s |
Physical Characteristics |
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| Weight | 0.50 |
| Condition | Refurbished |
Product Description |
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This Hynix 16GB DDR4 memory module operates at 3200MHz, providing fast and reliable system memory for servers and workstations. It's built for environments where data integrity and stability are essential, often found in enterprise-level computing setups. Designed with ECC technology, it helps detect and correct common types of data corruption, making it suitable for database servers, scientific computing, and other professional applications. The dual-rank 2Rx8 configuration optimizes memory performance and efficiency. Key Features
This memory module is typically deployed in server racks, data centers, and high-performance workstations where stability is as important as speed. It plays a key role in maintaining uptime and data reliability without frequent manual checks. |
Use Cases |
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The Hynix HMAG78EXNRA199N 16GB DDR4-3200MHz ECC memory module is primarily utilized in enterprise-grade servers and critical computing systems where data integrity and system uptime are vital. Its ECC capabilities make it suitable for environments requiring robust error correction, ensuring stable operation under heavy workloads and virtualization demands. How It's Used:
This memory module enhances operational efficiency by reducing system errors and preventing data corruption in mission-critical environments. Its dual-rank design supports scalable performance, making it an effective choice for systems that require reliable memory under continuous load. |