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Product Overview |
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The SK Hynix HMCG78MEBUA084N is a 16GB DDR5 4800 MT/s desktop memory module offering high bandwidth and efficient performance for modern PCs. Built with a 288-pin UDIMM layout and CL40 latency, it ensures quick data access and system responsiveness. Ideal for users seeking smooth multitasking and reliable performance, this non-ECC unbuffered memory is a powerful upgrade for any DDR5-compatible desktop system. |
General Information |
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| Brand | SK Hynix |
| Part Number | HMCG78MEBUA084N |
Technical Information |
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| Memory Technology | DDR5 |
| RAM Standard | PC5-38400 |
| Rank | 1Rx8 |
Performance |
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| CAS | CL40 |
Physical Characteristics |
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| Dimensions | 0.25 in x 5.25 in x 0.25 in |
| Weight | 0.50 |
| Condition | Refurbished |
Product Description |
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The SK Hynix HMCG78MEBUA084N is a high-performance 16GB DDR5 desktop memory module engineered to deliver superior speed and responsiveness. Operating at a data rate of 4800 MT/s and conforming to the PC5-38400 standard, this unbuffered UDIMM ensures smooth multitasking and faster data access for modern computing workloads. With a CL40 latency and 1Rx8 configuration, it offers a balanced performance profile for both general and demanding desktop applications. The 288-pin design ensures compatibility with the latest DDR5-compatible motherboards. Key Features
This DDR5 module from SK Hynix boosts computing speed and responsiveness, making it ideal for users upgrading to the next generation of desktop memory |
Use Cases |
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The SK Hynix 16GB DDR5 4800 desktop memory module is primarily suited for high-performance desktop systems requiring efficient multitasking and quick data access. It serves professionals and enthusiasts operating compute-intensive applications, benefiting environments where system responsiveness and memory bandwidth are critical. How It's Used:
By delivering a balance of high-speed operation and low-latency access, this memory module helps maintain system agility under demanding workloads. Its design aligns with scalability needs in evolving desktop configurations where performance consistency is essential. |