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HMCG88MEBRA Hynix 32GB PC5-38400 DDR5-4800MHz Memory Module

HMCG88MEBRA
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Brief Overview of HMCG88MEBRA

Hynix HMCG88MEBRA 32GB PC5-38400 DDR5-4800MHz 288-Pin DIMM 1.1V Dual Rank Memory Module. New Sealed in Box (NIB) with 3 Years Warranty - Call

$808.65
$599.00
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SKU/MPNHMCG88MEBRAAvailability✅ In StockProcessing TimeUsually ships same day ManufacturerHYNIX Manufacturer Warranty3 Years Warranty from Original Brand Product/Item ConditionNew Sealed in Box (NIB) ServerOrbit Replacement Warranty1 Year Warranty
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Description

Highlights of Hynix HMCG88MEBRA 32GB DDR5 4800MHz Memory

The Hynix HMCG88MEBRA 32GB DDR5 4800MHz RDIMM is a robust and high-efficiency memory solution crafted to enhance server responsiveness, accelerate data throughput, and improve overall system reliability. Designed for enterprise environments, this ECC Registered module delivers next-generation performance for mission-critical applications.

General Information

  • Manufacturer: Hynix
  • Part Number: HMCG88MEBRA
  • Product Type: Server Memory Module
  • Sub Type: DDR5 4800MHz / PC5-38400

Technical Specifications

  • Module Capacity: 1 × 32GB
  • Technology: DDR5 SDRAM
  • Speed Rating: 4800MT/s (DDR5-4800 / PC5-38400)
  • Error Correction: ECC for improved data accuracy
  • Design: Dual Rank (2Rx8)
  • Register Type: Registered (RDIMM)
  • CAS Latency: CL40
  • Voltage: 1.1V

Physical Characteristics

  • Form Factor: 288-Pin RDIMM
  • Dimensions: 1.00" (Height) × 6.75" (Depth)
  • Shipping Weight: 0.20 lb

Compatibility

Compatible Dell PowerEdge Models

  • PowerEdge R660
  • PowerEdge R670
  • PowerEdge R760
  • PowerEdge R770
  • PowerEdge C6620
  • PowerEdge H5610
  • PowerEdge H5620
  • PowerEdge MX760c
  • PowerEdge R660xs
  • PowerEdge R760xa
  • PowerEdge R760xd2
  • PowerEdge R760xs
  • PowerEdge T550

Overview of Hynix HMCG88MEBRA 32GB DDR5 PC5-38400 ECC

The Hynix HMCG88MEBRA 32GB DDR5 4800MHz PC5-38400 288-Pin RDIMM 1.1V Dual Rank Memory Module represents a significant advancement in next-generation server memory architecture. Designed with an emphasis on ultra-high bandwidth, lower power consumption, and improved overall stability, this DDR5 RDIMM module fully adheres to the rigorous standards required by enterprise data centers, cloud infrastructure environments, virtualization clusters, and high-demand HPC workloads. As organizations handle ever-expanding data volumes and increasingly compute-heavy operations, adopting DDR5 technology such as the Hynix HMCG88MEBRA module ensures superior performance scalability, memory throughput, and platform responsiveness.

Advanced DDR5 Performance Enhancements

With DDR5, Hynix introduces numerous performance-focused enhancements that greatly exceed the capabilities of earlier memory generations. One of the core improvements includes increased per-module bandwidth, enabling more data to move simultaneously through each memory channel. The module’s 4800MHz operating speed translates to extremely efficient data flow, particularly beneficial for large-scale workloads such as big data analytics, parallel machine learning processes, and server-side computation. The PC5-38400 specification reinforces the module’s suitability for next-level server deployments that prioritize faster memory pipelines.

Reduced Server Operating Costs

The Hynix HMCG88MEBRA memory module operates at an energy-efficient 1.1V, which is significantly lower than many DDR4 equivalents. With datacenters seeking lower operational expenses and more sustainable power consumption footprints, DDR5 memory has gained recognition for providing meaningful reductions in overall wattage draw. By integrating DDR5 modules such as this one, operators not only reduce electricity consumption but also lower air conditioning demands due to reduced thermal output. This can have long-term cost benefits and support environmental sustainability goals without compromising performance.

Server Considerations

The Hynix HMCG88MEBRA 32GB DDR5 4800MHz RDIMM memory module is engineered specifically for server and workstation environments requiring registered DIMM technology. RDIMM modules incorporate a register between the DRAM chips and the memory controller to provide buffering, which reduces electrical load and facilitates support for higher memory capacities. As a result, servers equipped with RDIMMs can host far more memory than systems using UDIMMs, making this module ideal for expanding memory pools in enterprise computing platforms.

Physical Design and Construction Quality

Hynix has developed a strong reputation for manufacturing durable, high-quality DRAM solutions, and the HMCG88MEBRA module is no exception. Constructed using rigorously tested DRAM dies, the module delivers exceptional consistency and reliability under demanding runtime conditions. The 288-pin design ensures a secure fit with strong signal integrity across the module edge; the robust PCB design reduces electromagnetic interference and maintains stable transmission speeds. Hynix’s meticulous quality assurance procedures further ensure that this module meets the most stringent requirements for enterprise environments.

Enterprise-Grade Applications

Application performance often relies on both CPU and memory subsystems, especially in multi-threaded or memory-intensive workloads. The Hynix HMCG88MEBRA 32GB DDR5 module provides exceptional advantages for tasks such as virtualization, scientific computing, database indexing, and high-volume transaction processing. Because DDR5 improves overall burst length and memory bank efficiency, applications that generate frequent memory calls can leverage faster execution speeds and reduced latency intervals. As data throughput increases, servers experience fewer bottlenecks and smoother performance scaling.

Cloud Infrastructure

Modern enterprise servers operate with increasingly high VM densities that require dependable memory throughput. The HMCG88MEBRA DDR5 module supports these environments by providing rapid bandwidth across multiple ranks and channels. Hypervisors allocate memory dynamically, and having faster memory ensures that virtual machines experience minimal delay during resource provisioning. This allows cloud administrators to scale services more fluidly, reduce latency for virtual desktops, and maintain consistent uptime. With the scalability of DDR5 technology, organizations can expand cloud infrastructure with minimal performance compromise.

Database and Analytics Workloads

High-performance databases such as Oracle, MySQL, Microsoft SQL Server, and PostgreSQL benefit significantly from DDR5 memory due to the increased data throughput it provides. Database indexing, query processing, and in-memory data caching place heavy demands on memory bandwidth. The Hynix HMCG88MEBRA module improves the speed and reliability of these operations by facilitating faster access to stored data, enabling complex queries to be executed more efficiently. Analytics workloads involving data modeling, interpretation, and transformation also benefit from the improved parallelism of DDR5 architecture.

Computing Applications

HPC environments dealing with real-time scientific simulations, machine learning model training, and extensive numerical computing require exceptional memory performance to avoid bottlenecks that could slow down computations. DDR5’s increased bandwidth and improved channel utilization support these workloads by delivering steady memory performance even when processes scale across multiple CPUs and GPUs. The Hynix HMCG88MEBRA module integrates seamlessly into these environments, creating a foundation for advanced computation that demands uninterrupted data flow.

Reliability, Data Integrity

For server environments, memory reliability is a mission-critical attribute. The Hynix HMCG88MEBRA memory module includes advanced ECC technology to detect and correct single-bit errors before they propagate into system-level faults. ECC protection is essential for minimizing downtime, protecting sensitive workloads, and ensuring consistent compute accuracy. DDR5’s enhanced error correction mechanisms allow modules to manage data integrity more efficiently than DDR4, with built-in on-die ECC technology that strengthens reliability at the DRAM cell level.

On-Die ECC and Enhanced Reliability Mechanisms

DDR5 introduces on-die ECC, which provides internal correction for bit-level errors within the DRAM chip itself. This feature improves manufacturing yields and ensures long-term module stability. Combined with traditional ECC that protects the data path between the module and the CPU, the result is exceptional fault tolerance. The Hynix HMCG88MEBRA leverages this enhanced multi-stage approach to provide resilient performance during 24/7 operation in mission-critical workloads.

Long-Term Operational Stability

Industries requiring around-the-clock server reliability rely heavily on high-grade RDIMM memory modules. The Hynix HMCG88MEBRA’s design ensures that it operates reliably under sustained load. The module’s dual-rank structure, PMIC-regulated power delivery, and high-performance DDR5 architecture guarantee that it can withstand heavy computational demands without performance degradation. This long-term stability is particularly advantageous for organizations running ERP systems, virtualization platforms, AI inference workloads, and large-scale data processing tasks.

Scalability Data Centers

As server architectures continue to evolve, DDR5 will play a central role in upgrading data center environments. The Hynix HMCG88MEBRA 32GB DDR5 module aligns perfectly with these next-generation platforms by offering substantial scalability, improved memory density, and broader performance ceiling potential. This makes it suitable for phased system expansions where additional memory can be added dynamically as workloads grow. Its capacity and performance characteristics give administrators the flexibility to restructure infrastructure without needing to overhaul entire server nodes.

High-Density Memory Configurations

High-density server memory configurations allow administrators to maximize processing capabilities across fewer physical machines. This reduces rack space requirements and lowers associated cooling and power expenses. Because DDR5 RDIMM modules like the Hynix HMCG88MEBRA are engineered for scalability, organizations can build robust clusters capable of supporting large volumes of concurrent tasks. The increased channel efficiency of DDR5 ensures that these high-density configurations do not suffer from the channel saturation issues commonly seen in DDR4 systems.

Integration Platforms

AI training and inference workloads often require memory subsystems capable of handling massive matrices and extremely parallel computations. The high bandwidth and improved memory allocation efficiency of DDR5 make it ideal for machine learning environments that constantly feed data to CPUs, GPUs, and AI accelerators. The Hynix HMCG88MEBRA enables these workloads to operate with minimal memory-induced interruption, supporting deeper model training, faster inference cycles, and higher overall compute density within server nodes.

Future Server Architectures

As server hardware manufacturers expand DDR5 adoption and introduce new processor models designed around improved memory controllers, the Hynix HMCG88MEBRA module offers clear long-term compatibility advantages. Its advanced DDR5 architecture aligns with trends in multi-core CPU development and growing emphasis on memory-intensive computing. Organizations investing in DDR5 modules today position themselves for seamless upgrades when future CPUs and motherboards are released, ensuring a long lifespan for their hardware infrastructure.

Features
Manufacturer Warranty:
3 Years Warranty from Original Brand
Product/Item Condition:
New Sealed in Box (NIB)
ServerOrbit Replacement Warranty:
1 Year Warranty