HMCG88MEBRA105N Hynix 32GB 2RX8 PC5-38400 4800MT/s ECC Memory
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Same product also available in:
| SKU/MPN | Warranty | Price | Condition | You save |
|---|---|---|---|---|
| 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%) |
Highlights of Hynix HMCG88MEBRA105N 32GB DDR5 RDIMM Ram
The Hynix HMCG88MEBRA105N 32GB DDR5 4800MT/s 2RX8 PC5-38400 288-Pin RDIMM ECC memory module represents a significant evolution in enterprise server memory technology. Engineered for modern data centers, high-performance computing environments, and virtualization workloads, this memory module delivers ultra-high bandwidth, low latency, and exceptional reliability.
General Information
- Manufacturer: Hynix
- Part Number: HMCG88MEBRA105N
- Product Type: Memory Module
- Sub Type: 32GB DDR5 4800MT/s RDIMM
Technical Specifications
- Memory Capacity: 32GB
- Memory Technology: DDR5 SDRAM
- Number of Modules: 1 x 32GB
- Memory Speed: 4800MT/s (DDR5-4800 / PC5-38400)
- Error Checking: ECC (Error-Correcting Code)
- Features: Dual Rank (2Rx8), Registered
- CAS Latency: CL40
Physical Characteristics
- Form Factor: 288-pin RDIMM
- Shipping Dimensions: 1.00 (height) x 6.75 (depth)
- 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 4800MT/s
The Hynix HMCG88MEBRA105N DDR5 memory, embodied in this module, offers considerable improvements over DDR4 in both speed and efficiency, allowing organizations to optimize server performance while reducing energy consumption. Designed for 288-pin RDIMM slots, the HMCG88MEBRA105N ensures seamless integration with compatible server architectures and is ideal for organizations looking to future-proof their infrastructure.
DDR5 Advancements and Technology Integration
DDR5 memory represents a substantial advancement in memory technology. Compared to DDR4, DDR5 modules provide higher base speeds, increased channel efficiency, improved power management, and enhanced reliability features. The Hynix HMCG88MEBRA105N integrates these innovations to support demanding enterprise workloads. Its 4800MT/s transfer rate enables faster data flow between the CPU and memory, reducing latency and boosting overall system performance. By leveraging dual-rank architecture, the module ensures that multiple memory channels can be accessed concurrently, enhancing efficiency for applications that require high-speed memory access.
Server Integration
The Hynix HMCG88MEBRA105N is designed for registered DIMM (RDIMM) slots, which incorporate a register between the DRAM chips and the memory controller. This feature buffers memory signals and reduces electrical load on the system, enabling support for higher memory capacities and larger multi-module configurations. RDIMM modules like this are critical for servers requiring high-density memory installations, as they maintain signal integrity and reduce errors during high-speed data transfers.
Physical Construction and Quality Assurance
Hynix has established a reputation for producing high-quality memory components, and the HMCG88MEBRA105N continues this legacy. The 288-pin RDIMM module is built using meticulously tested DRAM chips, ensuring consistent performance under demanding conditions. Its robust PCB design maintains signal integrity and reduces susceptibility to electrical interference. Quality assurance procedures include rigorous validation and stress testing to guarantee module reliability in enterprise server environments. This meticulous design and production process ensures that the module operates consistently over extended periods of continuous operation.
Stability and Heat Dissipation
Memory modules operating in high-density server environments must manage heat efficiently to maintain performance. The Hynix HMCG88MEBRA105N achieves thermal stability through optimized PCB layout and low-voltage operation. RDIMM modules, in general, benefit from reduced thermal load due to the buffering provided by the register, which distributes electrical stress evenly across the module. Effective heat dissipation ensures that the memory module continues to deliver stable performance even during sustained, high-bandwidth operations.
Enterprise Performance Benefits
The HMCG88MEBRA105N module offers significant performance advantages for enterprise-grade applications. By delivering high memory bandwidth and dual-rank efficiency, it supports compute-intensive workloads such as virtualization, cloud infrastructure, AI and machine learning, database processing, and analytics. Faster data access enables servers to complete tasks more efficiently, reducing overall processing time and improving system responsiveness. For in-memory databases, this module allows large datasets to be stored and processed directly in memory, minimizing reliance on slower storage devices.
Computing and Analytics
High-performance computing applications, including AI model training, scientific simulations, and complex numerical calculations, rely on rapid memory access to avoid bottlenecks. The HMCG88MEBRA105N DDR5 module provides the required bandwidth and parallelism to support these workloads efficiently. Analytics platforms benefit from faster memory access for large datasets, accelerating data processing, query execution, and predictive modeling.
Database Workload
Enterprise databases such as Oracle, SQL Server, and PostgreSQL depend on high-speed memory to manage in-memory transactions and caching. The 4800MT/s transfer rate of the HMCG88MEBRA105N allows faster read/write operations, enhancing query performance and reducing response time for high-volume transactional workloads. This is crucial for mission-critical systems where even minor delays can affect service quality and operational efficiency.
Reliability and Data Integrity
ECC (Error-Correcting Code) support is a defining feature of the Hynix HMCG88MEBRA105N module. ECC detects and corrects single-bit errors, preventing data corruption from propagating through the system. In enterprise servers, ECC is essential for maintaining uptime, protecting sensitive data, and ensuring accurate computation. Combined with DDR5’s on-die ECC technology, the module provides multi-layered error correction that enhances system reliability and minimizes the risk of unexpected crashes or data inconsistencies.
On-Die ECC and Multi-Layer Protection
DDR5 memory integrates on-die ECC, which automatically corrects errors at the DRAM cell level. This reduces the likelihood of data corruption and improves overall module reliability. When combined with traditional ECC implemented between the module and CPU, the HMCG88MEBRA105N provides superior fault tolerance. Multi-layer ECC ensures robust protection for mission-critical workloads in finance, healthcare, cloud computing, and scientific research environments.
Long-Term Stability and Uptime
For 24/7 server operation, memory stability is vital. The dual-rank design, PMIC-regulated voltage, and DDR5 architecture allow the HMCG88MEBRA105N to maintain stable operation over extended periods, even under heavy workloads. This reliability supports consistent system uptime, which is essential for critical applications such as ERP systems, virtualization hosts, and high-volume transaction processing environments.
Scalability and Future-Proofing
Data center requirements continue to grow, and memory scalability is crucial for long-term infrastructure planning. The Hynix HMCG88MEBRA105N module enables organizations to expand memory pools efficiently, supporting larger datasets, more virtual machines, and higher computational loads. Its dual-rank design allows administrators to build high-density memory configurations without sacrificing performance or stability.
High-Density Configurations
By combining multiple 32GB modules, data centers can achieve substantial memory capacity per server. Dual-rank DDR5 modules like the HMCG88MEBRA105N distribute memory accesses efficiently across ranks, preventing channel saturation and ensuring consistent performance. High-density configurations also reduce physical server counts required for given workloads, lowering rack space and operational costs.
Server Architectures
As servers evolve to support DDR5 natively, the HMCG88MEBRA105N ensures compatibility with the latest processors and motherboards. Its advanced DDR5 design aligns with emerging trends in multi-core CPU development and high-memory-density platforms. Organizations adopting this module can confidently invest in future-proof infrastructure capable of handling next-generation workloads without requiring significant hardware changes.
