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Hynix HMCG94MEBRA 64GB PC5-38400 DDR5-4800MHz Dual Rank x4 Memory
- 64GB DDR5 Memory Module
- Speed: 4800MHz (PC5-38400)
- Rank: Dual Rank x4 (2Rx4)
- ECC: Yes (typically ECC Registered)
- Voltage: 1.1V (standard DDR5)
- Designed for high-performance servers and workstations
- Next-generation memory technology
- High bandwidth and capacity
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
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For government, enterprise, data center, and small business customers.
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Volume pricing and availability
Product Overview
The Hynix HMCG94MEBRA is a 64GB DDR5 memory module operating at PC5-38400 (4800MHz) with a Dual Rank x4 configuration. It is designed for next-generation servers and high-performance computing platforms.
Technical Information
| Capacity | 64GB |
| Memory Type | DDR5 SDRAM |
| Speed | 4800MHz |
| Rank | 2Rx4 |
Additional Specifications
| ECC | Yes |
| Voltage | 1.1V |
| Manufacturer | Hynix |
Product Description
This Hynix HMCG94MEBRA module represents a significant leap in memory technology, offering 64GB of DDR5 capacity. DDR5 introduces architectural improvements over DDR4, including higher clock speeds, increased bandwidth, improved power efficiency, and enhanced features for error correction and signal integrity, making it ideal for the most demanding computing environments. Operating at a blazing 4800MHz (PC5-38400), this module provides substantially higher data transfer rates compared to previous DDR generations. The Dual Rank x4 (2Rx4) configuration means the module has two independent sets of memory banks (ranks), each with a 4-bit data interface. This dual-rank design allows for more efficient access and higher overall bandwidth utilization. Designed for enterprise-grade servers and high-performance computing, this module typically incorporates ECC (Error-Correcting Code) functionality to ensure data integrity and system reliability, which is critical for mission-critical applications. The standard DDR5 voltage is 1.1V, contributing to improved power efficiency. This memory is built to power the next generation of data-intensive workloads.


