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HMCG94CKBRA438N Hynix 64GB DDR5 7200MTs PC5-57600 CL52 RAM

HMCG94CKBRA438N
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Brief Overview of HMCG94CKBRA438N

Hynix HMCG94CKBRA438N 64GB DDR5 7200MTs PC5-57600 Ecc CL52 SDRAM RDIMM Memory Module. New (System) Pull with 1 Year Replacement Warranty

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SKU/MPNHMCG94CKBRA438NAvailability✅ In StockProcessing TimeUsually ships same day ManufacturerHYNIX Product/Item ConditionNew (System) Pull ServerOrbit Replacement Warranty1 Year Warranty
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Description

Product Overview of the Hynix 64GB DDR5 PC5-57600 RAM

The Hynix HMCG94CKBRA438N 64GB DDR5 7200MT/s PC5-57600 ECC CL52 SDRAM Registered DIMM is a high-performance server-grade memory solution engineered for next-generation computing environments. Designed to deliver ultra-fast data handling and improved system responsiveness, this 64GB DDR5 RDIMM module supports advanced workloads, ensuring stable multitasking, reduced latency, and enhanced bandwidth efficiency for enterprise servers and data-intensive applications.

General Information

  • Manufacturer: Hynix
  • Manufacturer Part Number: HMCG94CKBRA438N
  • Product Name: 64GB DDR5-7200MT/s PC5-57600 SDRAM RDIMM Memory Module

Technical Specifications

  • Module Configuration: Single module 1 x 64GB design
  • Transfer Rate: 7200MT/s
  • Error Correction: ECC
  • Architecture: Registered DIMM (RDIMM)
  • CAS Latency: CL52
  • Rank Structure: 2Rx4

Compatibility

  • PowerEdge R770
  • PowerEdge R670

The High-Performance DDR5 RDIMM Server Memory

The category of high-performance server memory modules built on DDR5 Registered DIMM architecture represents one of the most advanced segments in modern computing hardware. The Hynix HMCG94CKBRA438N 64GB DDR5 7200MT/s PC5-57600 ECC CL52 SDRAM RDIMM memory module belongs to an elite class of enterprise-grade memory designed specifically for demanding server environments, cloud computing infrastructure, high-frequency transaction systems, and artificial intelligence workloads. This category focuses on maximizing memory bandwidth, reducing latency bottlenecks, and ensuring uninterrupted data integrity under continuous heavy load conditions.

Unlike consumer desktop memory, this category prioritizes stability, error correction, and scalability across multi-channel memory architectures. The DDR5 generation introduces significant architectural improvements over DDR4, allowing higher transfer rates, increased module densities, and improved power efficiency. In enterprise environments, where uptime and data accuracy are critical, RDIMM memory modules like the Hynix 64GB DDR5 7200MT/s variant are essential components for maintaining system performance at scale.

Hynix Enterprise Memory

SK Hynix is recognized globally as one of the leading semiconductor manufacturers specializing in memory technology. The enterprise memory category produced by Hynix is engineered with strict quality assurance standards, ensuring consistency across large-scale deployments. Each RDIMM module undergoes rigorous validation testing, including thermal stress testing, signal integrity verification, and long-duration operational endurance evaluation.

The HMCG94CKBRA438N module is designed with high-grade DRAM chips optimized for DDR5 architecture. These chips are fabricated using advanced semiconductor lithography techniques, allowing for improved transistor density and reduced leakage current. The result is a memory module capable of sustaining high-speed data transfers while maintaining low power consumption. In data center environments, this balance is essential for reducing operational costs while maximizing computational throughput.

DDR5 Architecture and Next Generation Improvements

DDR5 memory represents a significant technological evolution compared to previous DDR generations. It introduces higher base frequencies, improved burst lengths, and enhanced power delivery mechanisms. In the context of the Hynix 64GB RDIMM module operating at 7200MT/s, the DDR5 architecture enables extremely high data throughput suitable for modern server workloads.

One of the key advancements in DDR5 is the doubling of bank groups, which allows for increased parallelism in memory access operations. This architectural change reduces bottlenecks and improves efficiency in multitasking environments. Additionally, DDR5 incorporates on-die ECC functionality that helps detect and correct errors at the chip level, complementing the module-level ECC used in RDIMM configurations.

Memory Efficiency

DDR5 memory modules benefit from increased burst length, which allows more data to be transferred per memory access cycle. This improvement significantly enhances throughput in workloads that involve large datasets, such as virtualization clusters, database servers, and machine learning inference systems. The dual-channel sub-architecture within a single DIMM further optimizes bandwidth utilization, reducing latency in high-demand scenarios.

In enterprise systems, memory channel efficiency directly impacts CPU performance. Modern server processors rely heavily on memory bandwidth, and DDR5 ensures that data pipelines remain saturated with minimal delays. The Hynix RDIMM module is designed to maintain stable performance even under simultaneous multi-threaded workloads.

Power and Voltage Regulation

DDR5 introduces on-module voltage regulation, shifting power management responsibilities from the motherboard to the memory module itself. This innovation improves power stability and reduces noise interference across the memory channel. The integrated power management IC ensures that voltage delivery remains consistent even during sudden load changes.

For high-capacity modules such as the 64GB RDIMM, efficient power management is critical to maintaining thermal stability and preventing performance throttling. The Hynix module leverages optimized voltage regulation to ensure reliable operation in dense server racks where thermal conditions can fluctuate significantly.

Understanding 64GB RDIMM Capacity

The 64GB capacity class in DDR5 RDIMM modules is widely used in enterprise servers that require high memory density per slot. This capacity enables system architects to build servers with large memory pools without increasing physical footprint. In cloud computing environments, higher memory capacity per DIMM translates into improved virtual machine density and more efficient resource allocation.

The Hynix 64GB module is engineered using high density DRAM stacking techniques that allow maximum storage within a single module footprint. This design ensures compatibility with modern server motherboards that support high capacity memory configurations across multiple channels.

Scalability in Data Center Environments

Scalability is one of the primary advantages of using high capacity RDIMM modules. Data centers rely on scalable memory architectures to accommodate growing computational demands. The ability to scale memory capacity without redesigning infrastructure is essential for maintaining cost efficiency and operational flexibility.

The 64GB DDR5 RDIMM format allows server operators to expand memory pools incrementally, ensuring that workloads such as virtualization clusters and distributed databases can grow without performance degradation. This scalability is particularly important for hyperscale cloud providers and enterprise IT environments managing dynamic workloads.

7200MT/s Speed

The 7200MT/s data transfer rate represents one of the highest speed classes available in DDR5 RDIMM memory technology. This speed class enables extremely high memory bandwidth, which is essential for compute-intensive applications. Bandwidth directly influences system performance in scenarios such as real-time analytics, financial modeling, and artificial intelligence training workloads.

At 7200MT/s, the module is capable of transferring vast amounts of data between memory and CPU in extremely short time intervals. This reduces bottlenecks and ensures that processing units remain fully utilized. In modern server architectures, where CPUs contain multiple cores and threads, memory speed plays a critical role in balancing system efficiency.

Latency and CL52 Timing

The CAS latency value of CL52 reflects the timing delay between memory request and data availability. While higher frequency memory typically exhibits higher latency values, DDR5 architecture compensates through increased bandwidth and improved internal efficiency. The balance between latency and transfer rate is carefully engineered in the Hynix RDIMM module to ensure optimal performance.

In enterprise workloads, raw latency is often less important than sustained throughput and stability. Applications such as database query processing and virtualization management benefit more from consistent high-speed access rather than minimal latency fluctuations.

Error Correction Code ECC Reliability Systems

Error Correction Code memory is a fundamental requirement in enterprise environments where data integrity is critical. The Hynix 64GB DDR5 RDIMM module integrates ECC functionality that detects and corrects single-bit memory errors in real time. This ensures that corrupted data does not propagate through system processes, preventing potential system crashes or data corruption.

ECC memory is particularly important in mission critical applications such as financial systems, healthcare data processing, and scientific computing. Even minor memory errors can lead to significant consequences in these environments, making ECC a mandatory feature in server-grade memory modules.

Registered DIMM Architecture

Registered DIMM architecture introduces a buffering component between the memory controller and DRAM modules. This buffer helps reduce electrical load on the memory controller, allowing systems to support higher memory capacities and more DIMM modules per channel. The Hynix RDIMM design leverages this architecture to enable stable performance in multi-module server configurations.

The register acts as an intermediary that stabilizes command and address signals before they reach the DRAM chips. This improves reliability and allows for more predictable system behavior under heavy load conditions. RDIMM memory is therefore preferred in enterprise servers compared to unbuffered DIMM solutions.

Enterprise Use Cases and Workload

The Hynix 64GB DDR5 RDIMM module is designed for a wide range of enterprise applications. These include cloud computing platforms, virtualization environments, distributed storage systems, and high performance computing clusters. Each of these environments demands high memory bandwidth and reliability to function efficiently.

Workload optimization in these environments depends heavily on memory performance. Applications that process large datasets or require real-time computation benefit significantly from high speed DDR5 memory. The combination of capacity, speed, and ECC functionality makes this module suitable for mission critical workloads.

Virtualization Platforms and Cloud Infrastructure

Virtualization platforms rely heavily on memory allocation efficiency. Each virtual machine requires dedicated memory resources, and high capacity RDIMM modules allow for greater VM density per physical server. This improves resource utilization and reduces infrastructure costs.

In cloud environments, scalability and flexibility are essential. DDR5 RDIMM modules enable cloud providers to dynamically allocate memory resources based on demand, ensuring consistent performance across virtualized workloads.

High Performance Computing

Artificial intelligence training workloads require extremely high memory bandwidth to process large datasets efficiently. DDR5 7200MT/s RDIMM modules provide the necessary throughput to support deep learning models, neural network training, and large scale data processing tasks.

High performance computing applications also benefit from the increased memory speed and capacity, enabling faster simulations, scientific modeling, and computational analysis. The Hynix module supports these workloads by ensuring stable and sustained memory performance under continuous load.

CPU Memory Controller

Modern server CPUs include integrated memory controllers that define supported memory speeds and capacities. To achieve full performance potential, the motherboard and CPU must support DDR5 7200MT/s operation. BIOS configuration and firmware updates may also be required to optimize memory performance.

Features
Product/Item Condition:
New (System) Pull
ServerOrbit Replacement Warranty:
1 Year Warranty