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| Product Overview |
|---|
The HMCG78MEBRA102N Hynix 16GB DDR5-4800 PC5-38400 1Rx8 ECC Memory module offers a balanced combination of high-speed data transfer, error correction, and reliable performance suitable for enterprise and professional applications. |
| General Information | |
|---|---|
| Brand | SK Hynix |
| Part Number | HMCG78MEBRA102N |
| Technical Information | |
|---|---|
| Memory Capacity | 16GB |
| Memory Technology | DDR5 |
| RAM Standard | PC5-38400 |
| Pin Count | 288-Pin |
| Error Correction | ECC |
| Rank | 1Rx8 |
| Voltage | 1.1V |
| Performance | |
|---|---|
| Bus Speed | 4800 MT/s |
| Bandwidth | 38400 MB/s |
| Native Speed | 4800 MHz |
| Physical Characteristics | |
|---|---|
| Package | FBGA |
| Weight | 0.50 |
| Condition | Refurbished |
| Miscellaneous | |
|---|---|
| Assembly Required | No |
| Product Description |
|---|
The HMCG78MEBRA102N is a high-performance 16GB DDR5 memory module designed to provide reliable and fast memory solutions for computing systems. It operates at a data transfer rate of 4800 MT/s, supporting the PC5-38400 standard, which ensures efficient data handling and improved overall system responsiveness. This memory module is typically found in servers, workstations, and other professional-grade computing environments where stability and data integrity are critical. The 1Rx8 ECC (Error-Correcting Code) configuration helps detect and correct internal data corruption, making it suitable for applications that demand high reliability. Key Features
This memory module is engineered to meet the demands of modern computing systems, delivering both speed and reliability. Its ECC capabilities make it an ideal choice for environments where data accuracy is paramount, helping maintain system stability during critical operations. |
| Use Cases |
|---|
This memory module is designed for use in systems that require dependable, high-speed memory with error correction capabilities. How It's Used:
By incorporating this ECC DDR5 memory module, organizations can enhance the performance and reliability of their critical computing infrastructure. |