MTC40F204WS1RC56BB2R Micron 96GB 5600MHz Pc5-44800 88-pin DDR5 Memory
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Highlights of Micron MTC40F204WS1RC56BB2R 96GB DDR5 Ram
The Micron MTC40F204WS1RC56BB2R is a high-capacity DDR5 memory module designed for enterprise servers and professional workstations. Featuring 96GB capacity, 5600MHz Speed, and ECC registered architecture, this RDIMM ensures superior performance, data integrity, and energy-efficient operation in demanding computing environments.
General Information
- Manufacturer: Micron
- Part Number: MTC40F204WS1RC56BB2R
- Product Type: Server Memory Module
- Sub Type: DDR5 5600MHz PC5-44800
Technical Specifications
- Storage Capacity: 96GB
- Module Count: Single 96GB DIMM
- Rank: Dual Rank (2Rx4)
- Memory Type: DDR5 SDRAM
- Data Transfer Rate: 5600MHz
- Bandwidth: PC5-44800
- CAS Latency: CL46
- Registered Signal Processing for System Stability
Physical Characteristics
Form Factor & Design
- Form Factor: 288-Pin RDIMM
- Compatible with DDR5 RDIMM Slots
- Enterprise-grade build quality for reliability
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 registered memory modules
System Configuration Requirements
- Motherboard must support RDIMM modules
- Not compatible with UDIMM memory
- BIOS must recognize 96GB DDR5 RDIMM modules
- For best performance, install in matched memory channels
Overview of Micron MTC40F204WS1RC56BB2R PC5-44800 ECC
The Micron MTC40F204WS1RC56BB2R 96GB DDR5 5600MHz PC5-44800 CL46 288-Pin ECC Registered Memory Module represents a high-capacity, high-performance solution for enterprise servers, professional workstations, and mission-critical computing platforms. Designed for modern data centers, virtualization deployments, in-memory databases, cloud infrastructure, and high-performance computing applications, this DDR5 RDIMM module delivers industry-leading performance, reliability, and scalability. With a capacity of 96GB, operating at 5600MHz, and featuring ECC Registered architecture, it provides both high memory bandwidth and robust error correction essential for enterprise workloads.
DDR5 Technology Advancements and Enterprise Benefits
DDR5 memory, the fifth generation of Double Data Rate Synchronous DRAM, introduces significant performance and efficiency improvements over DDR4. Key enhancements include higher data transfer rates, increased burst length and on-die error correction. The Micron MTC40F204WS1RC56BB2R module fully leverages these improvements to deliver a combination of speed, bandwidth, and reliability tailored for modern enterprise servers. Operating at 5600MHz, this DDR5 module ensures higher memory throughput, enabling processors to access and process data faster. Increased parallelism through additional memory channels and enhanced bank group structures improves multi-core CPU utilization, reducing latency and enhancing overall system performance.
ECC Registered Architecture for Enhanced Reliability
The ECC Registered (RDIMM) design is a hallmark of enterprise memory, combining error correction and signal buffering to deliver robust and reliable performance. ECC functionality automatically detects and corrects single-bit memory errors, protecting data integrity and minimizing the risk of system crashes or silent data corruption. Registered DIMMs buffer command and address signals before they reach the DRAM chips, reducing electrical load on the memory controller and enabling higher memory capacities while maintaining signal stability. For enterprise workloads such as database management, virtualization, cloud services, and critical application hosting, ECC Registered memory ensures system uptime, data protection, and consistent performance.
High-Capacity 96GB Memory for Demanding Workloads
The 96GB capacity of this module supports large memory footprints required by modern enterprise workloads. High-capacity memory reduces reliance on slower storage tiers, enabling faster in-memory computation, improved virtual machine density, and support for large-scale databases. Applications like ERP systems, business intelligence platforms, scientific computing, and AI-driven analytics benefit from the expanded memory headroom provided by these modules. Large memory pools allow systems to handle more complex tasks with lower latency and greater efficiency. By accommodating larger datasets directly in RAM, the Micron DDR5 module enhances data processing speed and contributing to improved application performance and responsiveness.
2Rx4 Dual-Rank Configuration and Performance
The 2Rx4 dual-rank configuration of the Micron MTC40F204WS1RC56BB2R enhances memory performance by providing two independent ranks of memory chips per module. This structure allows the memory controller to access one rank while the other is refreshing or performing other operations, increasing effective bandwidth and reducing wait times. Dual-rank modules are particularly advantageous in multi-core and multi-processor servers, where parallel access to memory is critical for performance.
Memory Interleaving for Maximum Throughput
Dual-rank memory modules enable interleaved access, which allows data to be alternated between ranks for faster retrieval. This improves throughput and reduces latency, enhancing performance for applications that require rapid access to large datasets, including virtualization platforms, real-time analytics engines, and high-performance computing workloads. Memory interleaving ensures that processor cores receive consistent data streams, optimizing computational efficiency across multi-core architectures.
Reliability in Multi-Socket Systems
In multi-socket servers, maintaining balanced memory access across multiple processors is critical. The 2Rx4 dual-rank design provides improved scalability by allowing higher memory densities per CPU socket without compromising stability. This supports consistent latency across channels, improves memory load balancing, and ensures predictable performance in enterprise-grade workloads that involve large datasets or parallel processing.
288-Pin DIMM Form Factor and Platform Integration
The 288-pin DIMM design of the Micron MTC40F204WS1RC56BB2R is standard for DDR5 server memory, ensuring wide compatibility with modern server and workstation platforms. This form factor guarantees mechanical and electrical consistency, simplifying installation and system design for IT teams managing enterprise environments. Compliance with JEDEC DDR5 standards ensures reliable operation, broad platform support, and interoperability with contemporary server processors from Intel and AMD.
Enterprise Server and Workstation
This memory module is optimized for DDR5-enabled enterprise servers and professional workstations requiring ECC Registered memory. It is compatible with Intel Xeon and AMD EPYC processors, providing flexibility for data center administrators and system integrators. Proper installation in matched memory channels ensures maximum bandwidth and stability, essential for high-demand applications.
System Configuration Requirements
Servers and workstations must support RDIMM modules to utilize this memory effectively. Systems that only support UDIMM or SO-DIMM modules are incompatible. BIOS must recognize the 96GB DDR5 modules, and ECC functionality depends on processor and chipset support. For optimal performance, modules should be installed in accordance with motherboard channel population guidelines, ensuring even memory distribution across all channels.
Best Practices
Consult the server or workstation manufacturer’s memory guidelines before installation. Ensure modules are properly seated, populate memory channels in matched pairs, and enable ECC in BIOS or firmware to maximize reliability. Avoid mixing RDIMM modules with other memory types to prevent potential instability or system errors.
Bandwidth, Speed and Throughput
With a frequency of 5600MHz and PC5-44800 classification, the Micron DDR5 module provides high memory bandwidth to support demanding workloads. High-speed data transfer enables processors to retrieve and process information rapidly, enhancing the performance of memory-bound applications such as virtualization, cloud computing, AI model training, and in-memory databases.
Data-Centric Enterprise Applications
Applications that require frequent access to large datasets, such as real-time analytics, database management, and scientific simulations, benefit from higher memory bandwidth. The Micron DDR5 module reduces the time processors spend waiting for data, resulting in faster query execution, improved application responsiveness, and more efficient processing of concurrent workloads.
Effective Latency and CL46
While CL46 reflects the module’s timing, DDR5’s architectural improvements, combined with dual-rank interleaving, minimize effective latency. This ensures smooth performance for workloads that demand quick access to large memory regions, including high-frequency trading, AI inference, and real-time analytics pipelines.
Thermal Performance
DDR5 introduces advanced power management features, including on-module voltage regulation, reducing overall power consumption and heat generation. The Micron MTC40F204WS1RC56BB2R operates efficiently even in high-density server configurations, maintaining thermal stability during continuous heavy workloads.
Data Centers Environments
High-density memory deployments generate significant heat. This DDR5 module maintains thermal stability under sustained load, reducing risk of throttling and ensuring consistent performance. Energy-efficient memory contributes to lower operational costs and reduces cooling requirements in large-scale data center environments.
Operational Advantages for Enterprises
Lower power consumption and improved thermal performance allow organizations to increase server density per rack while maintaining reliability. This contributes to cost-effective scaling and supports sustainability goals by reducing energy usage and carbon footprint, making it an ideal choice for modern, eco-conscious enterprises.
Enterprise Use Cases and Workload Applications
The Micron 96GB DDR5 5600MHz ECC Registered module is suitable for a wide range of enterprise workloads. These include cloud computing, virtualization, big data analytics, artificial intelligence, in-memory databases, scientific computing, and high-performance computing environments. Its combination of high capacity, fast speed, dual-rank design, and ECC Registered reliability ensures consistent performance, data integrity, and scalability across diverse workloads.
Cloud Computing
Cloud service providers and enterprise IT environments benefit from high-capacity DDR5 modules by supporting larger virtual machine pools, improving resource utilization, and maintaining high levels of service reliability. ECC Registered memory ensures data integrity, while dual-rank architecture improves performance across multiple virtual instances.
Big Data and Real-Time Analytics
Big data and real-time analytics platforms require fast, reliable memory to process continuous data streams. High-bandwidth DDR5 memory supports rapid data access, reduces latency, and allows enterprises to derive actionable insights in real-time, whether for financial analytics, cybersecurity monitoring, or operational intelligence applications.
Enterprise Memory
As data-intensive applications continue to evolve, memory requirements will grow. The Micron MTC40F204WS1RC56BB2R 96GB DDR5 module provides a future-ready solution for enterprise and data center environments. Its combination of DDR5 performance, dual-rank architecture, ECC Registered reliability, and high capacity ensures systems remain capable of handling increasingly complex workloads while delivering predictable performance, energy efficiency, and long-term reliability. This memory category provides a scalable, reliable, and high-performance foundation for modern enterprise computing, enabling organizations to optimize infrastructure, improve operational efficiency, and support next-generation workloads effectively.
