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MTC40F204WS1RC56BB1T Micron 96GB DDR5 Memory Module

MTC40F204WS1RC56BB1T
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Brief Overview of MTC40F204WS1RC56BB1T

Micron MTC40F204WS1RC56BB1T 96GB DDR5 5600MT/s 2rx4  PC5-44800 Cl46 288-Pin ECC Registered Memory Module. New Sealed in Box (NIB) with 3 Years Warranty

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SKU/MPNMTC40F204WS1RC56BB1TAvailability✅ In StockProcessing TimeUsually ships same day ManufacturerMICRON 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 Micron MTC40F204WS1RC56BB1T 96GB DDR5 Ram

The Micron MTC40F204WS1RC56BB1T is a high-density DDR5 memory module engineered for enterprise servers and advanced workstation platforms. Delivering fast 5600MT/s speeds with ECC registered architecture, this RDIMM ensures stable performance, improved reliability, and energy-efficient operation for mission-critical workloads.

General Information

  • Manufacturer: Micron
  • Part Number: MTC40F204WS1RC56BB1T
  • Product Type: Server Memory Module
  • Sub Type: DDR5 SDRAM

Technical Specifications

  • Total Memory Capacity: 96GB
  • Module Type: Registered DIMM (RDIMM)
  • Rank Configuration: Dual Rank (2Rx4)
  • Operating Speed: 5600MT/s
  • Bandwidth Rating: PC5-44800
  • CAS Latency: CL46
  • Operating Voltage: 1.1V
  • Optimized for high-throughput workloads
  • Designed for enterprise-grade scalability

Physical Characteristics

Form Factor & Pin Configuration

  • Form Factor: 288-Pin RDIMM
  • Compatible with DDR5 RDIMM memory slots
  • Built for enterprise server and workstation systems

Compatibility

Supported Memory Standards

  • DDR5 SDRAM technology
  • PC5-44800 bandwidth specification
  • ECC Registered (RDIMM) architecture
  • 288-pin DDR5 DIMM interface

Platform & System Compatibility

  • DDR5-enabled enterprise servers
  • Professional workstation systems requiring ECC memory
  • Intel Xeon DDR5 platforms
  • AMD EPYC servers supporting RDIMM modules

Configuration Requirements

  • System motherboard must support RDIMM modules
  • Not compatible with UDIMM or SO-DIMM systems
  • BIOS must recognize 96GB DDR5 RDIMM modules
  • For optimal performance, install in matched memory channels

Overview of Micron MTC40F204WS1RC56BB1T DDR5 5600MT/s

The Micron MTC40F204WS1RC56BB1T 96GB DDR5 5600MT/s 2Rx4 PC5-44800 CL46 288-Pin ECC Registered Memory Module represents a high-performance memory solution engineered for enterprise servers, professional workstations, and mission-critical computing platforms. This category of DDR5 RDIMM memory modules is specifically designed to meet the demands of modern data centers, virtualization environments, in-memory databases, cloud infrastructure, and high-performance computing systems. With 96GB of capacity and an operating speed of 5600MT/s, this memory module delivers exceptional bandwidth, low latency, and high reliability, making it a key component for performance-intensive workloads.

DDR5 Technology and Enterprise Advantages

DDR5, or Double Data Rate 5 Synchronous Dynamic Random-Access Memory, introduces significant improvements over DDR4, including higher data transfer rates, increased bandwidth, improved energy efficiency, and enhanced channel architecture. This Micron memory module leverages these technological advancements to deliver robust performance for enterprise-grade applications. The 5600MT/s frequency ensures faster data throughput, allowing processors to access memory more efficiently. Enhanced burst lengths and additional bank groups in DDR5 improve parallelism, enabling multi-core processors to retrieve data simultaneously from multiple memory banks. This is particularly important in server environments where multiple workloads operate concurrently.

ECC Registered Architecture for Reliability

The ECC Registered (RDIMM) design is critical for enterprise and data center memory applications. ECC (Error-Correcting Code) detects and corrects single-bit memory errors in real-time, preventing data corruption, system crashes, and unplanned downtime. The registered design buffers command and address signals, reducing electrical load on the memory controller and enabling stable operation in high-density server configurations. For applications such as database servers, virtualization platforms, and cloud computing environments, ECC Registered memory provides a reliable foundation. By mitigating the risk of memory-related errors, organizations can maintain system uptime, protect sensitive data, and improve overall infrastructure reliability.

High-Capacity 96GB Module for Scalable Performance

The 96GB capacity of the Micron MTC40F204WS1RC56BB1T is ideal for memory-intensive workloads that require substantial RAM allocation. High-capacity memory modules allow servers to host larger virtual machine pools, process extensive in-memory databases, and support high-performance computing simulations with minimal latency. Enterprise applications, including ERP systems, scientific computing platforms, and real-time analytics engines, benefit directly from expanded memory capacity. By reducing reliance on slower storage tiers, this module improves system responsiveness and accelerates computational tasks.

2Rx4 Dual-Rank Configuration and Performance

The dual-rank x4 (2Rx4) configuration of this DDR5 memory module enhances memory access efficiency. Each rank acts as an independent set of memory chips, allowing the memory controller to interleave access and improve overall throughput. The x4 organization distributes data across multiple DRAM chips, enhancing error detection and correction and providing better fault tolerance.

Memory Interleaving and Server Throughput

Memory interleaving improves performance by alternating access across memory ranks. This allows the processor to retrieve data while other ranks are being refreshed or accessed, effectively reducing wait times. In multi-core server environments, dual-rank modules like the Micron MTC40F204WS1RC56BB1T deliver higher effective bandwidth and more predictable latency, enabling smoother operation under heavy workloads.

Enhanced Reliability in Multi-Socket Systems

In multi-socket server architectures, maintaining balanced memory distribution across CPUs is critical for performance. Dual-rank RDIMMs improve memory scalability in these systems by enabling more uniform access across channels. This reduces latency discrepancies between processors and supports consistent performance for enterprise-grade applications.

288-Pin DIMM Form Factor

The 288-pin DIMM form factor is standardized for DDR5 memory, ensuring broad compatibility with modern server motherboards and enterprise platforms. The Micron MTC40F204WS1RC56BB1T module is compliant with JEDEC standards, facilitating seamless integration into supported server architectures.

Enterprise Server and Workstation Integration

This memory module is compatible with DDR5-enabled enterprise servers and professional workstations that support ECC Registered DIMMs. It is suitable for both Intel Xeon and AMD EPYC platforms, providing flexibility for organizations running heterogeneous server environments. Proper installation ensures optimal performance and reliability, especially when populated across multiple memory channels.

System Configuration Considerations

To achieve maximum efficiency, servers should install RDIMM modules in matched memory channels according to motherboard guidelines. Mixing RDIMM with non-registered modules, such as UDIMM or SO-DIMM, is not recommended and may lead to system instability. BIOS settings must recognize 96GB DDR5 modules to leverage full capacity and performance, and ECC functionality is dependent on both CPU and chipset support.

Bandwidth and Throughput

With a speed rating of 5600MT/s and PC5-44800 classification, this DDR5 module provides high memory bandwidth necessary for data-intensive enterprise workloads. High bandwidth allows rapid data transfers between memory and CPU cores, enabling real-time processing for analytics, AI, virtualization, and database applications.

Impact on Data-Centric Applications

In-memory databases, large-scale analytics platforms, and high-performance computing workloads benefit significantly from higher bandwidth. By reducing memory bottlenecks, the Micron 96GB DDR5 module ensures smooth execution of complex queries, faster response times, and improved resource utilization. Multi-threaded applications experience more predictable performance due to efficient data handling across dual ranks and multiple channels.

Reduced Latency in Critical Operations

While CL46 latency reflects the module’s timing characteristics, DDR5 architectural improvements and dual-rank interleaving help maintain low effective latency. This is crucial for environments where fast access to large datasets is required, such as real-time analytics, financial trading platforms, and AI inference engines.

Thermal Performance

DDR5 memory introduces improved energy efficiency through on-module power management and lower operating voltages compared to DDR4. The Micron MTC40F204WS1RC56BB1T reduces heat output and energy consumption while delivering high performance, making it suitable for densely packed server racks and data centers focused on sustainability.

Thermal Stability in High-Density Configurations

High-capacity memory modules can generate significant heat in large server deployments. This Micron DDR5 module maintains thermal stability during continuous operation, reducing the risk of throttling and improving system longevity. Efficient thermal performance ensures servers can sustain heavy workloads without performance degradation.

Operational Benefits in Data Centers

Lower power consumption and improved thermal performance contribute to reduced cooling requirements in data centers. This can lead to significant cost savings and allows higher server densities per rack without compromising reliability. Energy-efficient memory also supports organizations’ sustainability goals by minimizing operational carbon footprint.

Enterprise Applications and Use Cases

The Micron 96GB DDR5 ECC Registered module is suitable for a broad range of enterprise workloads, including cloud infrastructure, virtualization, big data analytics, AI and machine learning, in-memory databases, and scientific simulations. Its combination of high capacity, fast speed, dual-rank organization, and ECC Registered architecture ensures reliability, scalability, and consistent performance across diverse workloads.

Cloud Environments

Cloud service providers and IT departments deploying virtualized infrastructures benefit from high-capacity DDR5 modules by hosting more virtual machines per server while maintaining adequate memory allocation. This improves hardware utilization, reduces operational costs, and provides high performance and reliability for tenant workloads.

Computing Workloads

Scientific computing, engineering simulations, and AI model training rely heavily on fast, high-capacity memory. The 5600MT/s speed and 96GB capacity of this Micron module provide the bandwidth and storage necessary to process large datasets efficiently. This reduces computation time, accelerates model training, and improves the performance of AI inference operations.

Big Data Processing and Real-Time Analytics

Real-time analytics platforms require rapid access to large memory pools for processing streaming data. High-bandwidth DDR5 memory ensures efficient handling of continuous data streams, reduces latency, and enables timely insights for business operations. Use cases include financial analytics, cybersecurity monitoring, IoT data aggregation, and operational intelligence platforms.

Enterprise Memory Investment

As enterprise computing evolves with increasing data volumes, multi-core processors, and AI-driven workloads, memory requirements will continue to grow. The Micron MTC40F204WS1RC56BB1T module provides a future-proof solution for organizations looking to scale their infrastructure. High-density DDR5 memory ensures systems remain capable of handling emerging workloads while delivering predictable performance, energy efficiency, and reliability over the long term. By combining DDR5 performance, ECC Registered reliability, 2Rx4 dual-rank organization, and high-capacity design, this memory module is a strategic choice for modern enterprise and data center environments. It aligns with evolving server architectures and provides the foundation for efficient, scalable, and resilient IT infrastructure.

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