HMCG88MEBRA105N Hynix 32GB 2RX8 PC5-38400 4800MT/s ECC Memory
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| HMCG88MEBRA105N | 1 Year Warranty | $426.00 | New (System) Pull | You save: $149.10 (26%) |
| HMCG88MEBRA105N | 1 Year Warranty | $599.00 | New Sealed in Box (NIB) | You save: $209.65 (26%) |
Hynix HMCG88MEBRA105N 32GB DDR5 4800MT/s RDIMM Memory
The Hynix HMCG88MEBRA105N 32GB DDR5 4800MT/s 2RX8 PC5-38400 288-Pin RDIMM SDRAM ECC memory module exemplifies the next generation of server memory technology, designed for high-performance computing, data centers, and enterprise-level applications. Combining the high bandwidth and low latency of DDR5 with dual-rank architecture and ECC error correction, this memory module ensures maximum reliability, efficiency, and performance for memory-intensive workloads.
General Overview
- Manufacturer: Hynix
- Part Number: HMCG88MEBRA105N
- Product Type: Server Memory Module
- Sub Type: 32GB DDR5 4800MT/s
Technical Specifications
- Memory Capacity: 32GB
- Memory Type: DDR5 SDRAM
- Number of Modules: 1 x 32GB
- Bus Speed: 4800MT/s (DDR5-4800 / PC5-38400)
- Data Integrity: ECC (Error-Correcting Code)
- Rank & Features: 2Rx8, Registered
- CAS Latency: CL40
Physical Characteristics
- Form Factor: 288-Pin RDIMM
- Dimensions: 1.00" (H) x 6.75" (D)
- Shipping Weight: 0.20 lb
Compatibility
PowerEdge Server Compatibility
- PowerEdge R650
- PowerEdge R660
- PowerEdge R750
- PowerEdge R760
- PowerEdge R770
- PowerEdge R7525
- PowerEdge C6525
- PowerEdge C6620
- PowerEdge MX740c
- PowerEdge MX840c
Overview of Hynix HMCG88MEBRA105N 32GB DDR5 SDRAM Ram
The Hynix HMCG88MEBRA105N 32GB DDR5 4800MT/s 2RX8 PC5-38400 288-Pin RDIMM SDRAM ECC memory module provides high-performance, reliable, and energy-efficient memory for enterprise servers. Its combination of DDR5 speed, dual-rank architecture, ECC protection, and low-voltage operation makes it suitable for modern data centers, high-performance computing, AI applications, virtualization, and large-scale analytics. By incorporating this module, organizations can optimize server performance, reduce power consumption, maintain data integrity, and scale infrastructure to meet future demands.
DDR5 Advantages in Modern Server Environments
The transition from DDR4 to DDR5 introduces several key advantages. DDR5 modules, including the HMCG88MEBRA105N, provide higher baseline speeds and increased channel efficiency, which enhances performance for compute-intensive workloads. The module supports advanced error correction through ECC and integrates an onboard Power Management IC (PMIC) for better voltage regulation and thermal efficiency. This ensures stable performance even under sustained heavy loads, reducing the risk of data corruption and downtime.
Server Integration
The Hynix HMCG88MEBRA105N is specifically designed for registered DIMM (RDIMM) slots, which include a register that buffers signals between the memory controller and the DRAM chips. This reduces electrical load, allowing for higher memory capacity and improved signal integrity in multi-module configurations. RDIMMs are particularly important in enterprise servers where large-scale memory deployment and high reliability are essential.
Physical Design and Build Quality
Hynix memory modules are renowned for their quality and reliability. The HMCG88MEBRA105N features high-quality DRAM chips mounted on a robust PCB, designed to maintain signal integrity under high-speed operation. Each module undergoes extensive validation, stress testing, and quality assurance procedures to ensure consistent performance in enterprise environments. The 288-pin RDIMM form factor guarantees compatibility with DDR5-capable server motherboards and allows for easy installation and maintenance.
Thermal Stability and Reliability
The HMCG88MEBRA105N maintains thermal stability through low-voltage operation and efficient PCB design. In dual-rank configurations, memory access alternates between ranks, reducing electrical stress and heat generation. This design is especially beneficial in high-density server deployments, where multiple modules operate concurrently. The result is a memory solution that can sustain high performance over long periods without thermal throttling or degradation.
Enterprise Performance Benefits
The HMCG88MEBRA105N offers substantial advantages for enterprise workloads. Its combination of high bandwidth, low latency, dual-rank efficiency, and ECC protection makes it suitable for compute-intensive applications. Virtualized environments, in-memory databases, artificial intelligence, machine learning, and analytics platforms benefit from the fast, reliable memory provided by this DDR5 module. High-speed memory access reduces processing times and increases system responsiveness, ensuring mission-critical applications operate smoothly.
Computing and Analytics
Scientific computing rely on rapid memory access to prevent bottlenecks. The 4800MT/s speed of this DDR5 module ensures smooth data flow between the CPU and memory, supporting intensive tasks such as model training, large-scale simulations, and big data analytics. The module's dual-rank design allows multiple memory channels to operate efficiently, further enhancing performance for parallel processing workloads.
Database Workload
Enterprise databases require reliable, high-speed memory to manage in-memory transactions and caching. The HMCG88MEBRA105N enables faster read and write operations, improving query performance and reducing latency in high-volume transactional environments. ECC support ensures data integrity, which is essential for financial systems, healthcare applications, and other mission-critical operations where accuracy is paramount.
Reliability
ECC (Error-Correcting Code) functionality is a core feature of the HMCG88MEBRA105N module. ECC detects and corrects single-bit errors automatically, preventing data corruption and ensuring system stability. DDR5 on-die ECC combined with traditional module-level ECC provides multi-layered error protection, making this module highly reliable for enterprise servers, cloud infrastructures, and critical applications that demand uninterrupted operation.
Multi-Layer ECC Protection
DDR5 modules integrate on-die ECC, which provides error correction at the DRAM cell level. When combined with the module's standard ECC capabilities, this ensures robust protection against memory errors and system crashes. Multi-layer ECC reduces downtime, prevents data loss, and enhances system stability, making the HMCG88MEBRA105N ideal for mission-critical workloads in high-availability server environments.
Long-Term Stability
The combination of dual-rank architecture, low-voltage operation, and multi-layer ECC ensures long-term stability and reliable performance. The module can operate continuously under heavy loads without degradation, supporting 24/7 server operation for cloud computing, virtualization, AI, and other memory-intensive applications.
Scalability and Future-Ready Design
As enterprise memory demands increase, scalable and future-ready solutions are essential. The HMCG88MEBRA105N module allows data centers to expand memory capacity efficiently, supporting larger datasets, higher VM density, and more complex computational workloads. Its dual-rank architecture ensures optimal performance in high-density memory deployments, future-proofing infrastructure for evolving technology requirements.
High-Density Configurations
Multiple 32GB DDR5 modules can be installed to create high-capacity memory configurations per server. Dual-rank design maintains consistent bandwidth across channels, allowing servers to handle demanding workloads without performance degradation. High-density memory configurations reduce the need for additional servers, saving rack space and lowering operational costs.
Next-Generation Server
Hynix DDR5 memory modules like the HMCG88MEBRA105N are compatible with emerging server architectures, supporting multi-core CPUs and high-memory-density platforms. By integrating these modules, organizations can ensure their servers remain capable of handling future workloads without requiring frequent hardware upgrades. This forward-looking design supports enterprise scalability, reliability, and performance optimization.
