MTC20F208XS1RC64BB2 Micron 48GB DDR5 6400MHz PC5-51200 ECC RDIMM RAM
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Highlights of Micron MTC20F208XS1RC64BB2 48GB DDR5 Ram
The Micron MTC20F208XS1RC64BB2 48GB DDR5 6400MHz ECC Registered RDIMM is a high-performance enterprise memory module engineered for next-generation servers, data centers, and mission-critical computing environments. Built on advanced DDR5 SDRAM architecture, this 48GB server RAM delivers superior bandwidth, improved efficiency, and enhanced system reliability for virtualization, cloud infrastructure, and high-performance workloads.
General Information
- Manufacturer: Micron
- Part Number: MTC20F208XS1RC64BB2
- Product Type: Server Memory Module (RDIMM)
Technical Specifications
- Memory Size: 48GB
- Interface: DDR5 PC5-51200
- Memory Technology: DDR5 SDRAM
- Memory Speed: 6400 MHz
- CAS Latency: CL52 (52-52-52)
- Voltage: 1.1V
Error Correction and Signal Processing
- Error Checking: ECC (Error-Correcting Code)
- Signal Processing: Registered (RDIMM)
- Rank Organization: 2Rx8 Dual Rank
Physical Characteristics
- Form Factor: 288-Pin RDIMM
- Dimensions: 177.8 mm x 54.7 mm x 6.35 mm
- Weight: Approx. 90g (0.20 lb)
Compatibility
Supported Platforms
- Enterprise-grade servers
- Data center infrastructure systems
- Workstation and motherboard platforms
- Virtualization and cloud deployments
Overview of Micron MTC20F208XS1RC64BB2 PC5-51200 Memory
The Micron MTC20F208XS1RC64BB2 48GB DDR5 6400MHz PC5-51200 CL52 ECC Registered 1.1V Dual Rank 288-Pin RDIMM Server Memory Module is a next-generation enterprise memory solution engineered for high-performance data center environments. Built on advanced DDR5 architecture, it delivers significantly higher bandwidth, improved efficiency, and enhanced reliability compared to previous DDR4 generations. This module is designed for mission-critical workloads such as virtualization, cloud infrastructure, artificial intelligence, high-performance computing, and large-scale database systems where stability and scalability are essential.
Next-Generation DDR5 Architecture
The DDR5 architecture introduces major advancements in memory speed, bandwidth, and efficiency. It allows servers to process significantly more data per clock cycle compared to DDR4 technology. The Micron 48GB module operates at 6400MHz, delivering extremely fast memory throughput for demanding workloads. This ensures smoother system performance in enterprise environments where performance and scalability are critical.
Micron DDR5 48GB RDIMM Server Memory
The Micron MTC20F208XS1RC64BB2 48GB DDR5 6400MHz ECC Registered RDIMM Server Memory Module delivers advanced performance, reliability, and efficiency for modern enterprise systems. With high-speed DDR5 architecture, ECC protection, and scalable capacity, it is ideal for virtualization, cloud computing, AI workloads, and database systems.
48GB High-Capacity Module
The 48GB capacity per module provides an optimal balance between density and performance for enterprise server configurations. It enables data centers to scale memory resources efficiently without occupying excessive DIMM slots. This is particularly useful in virtualization and cloud computing environments where memory allocation per virtual machine must be carefully managed. High-capacity modules reduce upgrade frequency and improve infrastructure efficiency.
6400MHz High-Speed Frequency
Operating at 6400MHz, this DDR5 RDIMM delivers exceptional memory bandwidth for high-performance computing environments. The increased frequency allows faster data transfer between memory and CPU, improving application responsiveness. This is especially important for AI workloads, real-time analytics, and scientific computing. Higher speed ensures reduced latency and improved system efficiency.
PC5-51200 Memory Standard
The PC5-51200 standard defines the performance specifications and bandwidth capabilities of DDR5 memory modules. It ensures compatibility with modern server platforms designed for high-speed memory operations. This standardization allows seamless integration into enterprise systems. It guarantees predictable and stable performance across supported hardware architectures.
ECC Registered DIMM
Error Correcting Code (ECC) Registered DIMM technology provides advanced error detection and correction capabilities. It ensures data integrity by automatically correcting memory errors before they impact system performance. This is essential for enterprise environments where data accuracy is critical. ECC memory significantly reduces the risk of system crashes and data corruption.
1.1V Low Voltage Operation
The DDR5 architecture operates at a reduced voltage of 1.1V, improving energy efficiency compared to DDR4 memory modules. Lower power consumption reduces heat generation and cooling requirements in data centers. This contributes to lower operational costs and improved sustainability. Energy efficiency is a key advantage in modern server infrastructure design.
Dual Rank Architecture
The dual rank configuration enables the memory module to access multiple sets of memory banks simultaneously. This improves data throughput and overall system efficiency. It enhances memory interleaving, allowing better utilization of CPU memory channels. Dual rank design is commonly used in enterprise-grade memory modules for improved performance.
288-Pin RDIMM Form Factor
The 288-pin registered DIMM form factor ensures compatibility with modern server motherboards designed for DDR5 memory. It provides stable electrical signaling and improved reliability in multi-module configurations. This form factor is widely used in enterprise servers and data centers. It allows scalable memory expansion for high-performance systems.
Cloud Computing Environments
The Micron DDR5 RDIMM is designed for cloud environments that require scalable, high-speed, and reliable memory performance. It supports multi-tenant workloads and distributed computing systems. Cloud providers benefit from improved resource allocation and reduced latency. This makes it suitable for private, hybrid, and public cloud infrastructures.
Enhanced Virtualization Performance
Virtualized environments rely heavily on fast and stable memory performance. This DDR5 module improves virtual machine performance by providing high-speed memory access and reduced latency. It supports multiple virtual machines running simultaneously without performance degradation. This ensures efficient operation in VMware, Hyper-V, and other virtualization platforms.
Data-Intensive Applications
The 6400MHz frequency provides high memory bandwidth, enabling fast data processing for enterprise workloads. This is essential for applications such as big data analytics, AI processing, and scientific computing. High bandwidth reduces processing delays and improves system throughput. It enhances overall computational efficiency in data centers.
Low Latency Memory Access
Low latency is essential for enterprise systems that require fast and predictable memory response times. The Micron DDR5 RDIMM minimizes delays in data retrieval and processing. This improves performance in transactional databases and real-time applications. Consistent latency ensures stable system behavior under heavy workloads.
Advanced On-Die ECC for Improved Reliability
DDR5 technology includes on-die ECC functionality that enhances memory reliability at the silicon level. It corrects internal memory errors before they affect system operation. This improves overall data integrity and system stability. It is especially beneficial in large-scale enterprise deployments where reliability is critical.
Improved Memory Channel
DDR5 memory architecture introduces improved channel efficiency, allowing better parallel data processing. This increases overall system performance and reduces memory bottlenecks. It enhances CPU-to-memory communication efficiency. This is essential for modern multi-core server architectures.
Ideal for Machine Learning Workloads
AI and machine learning workloads require large amounts of fast memory for training and inference processes. The Micron DDR5 RDIMM supports high-speed data processing for these demanding applications. It reduces training time and improves computational efficiency. This makes it suitable for advanced AI infrastructure deployments.
Big Data Analytics Platforms
Big data environments require fast and scalable memory systems to process large datasets efficiently. This DDR5 module accelerates data ingestion and analytics processing. It supports real-time data analysis and reporting systems. This improves decision-making capabilities in enterprise environments.
Stable Server Operation
Thermal management is essential in high-density server environments. The DDR5 module is designed to operate efficiently under continuous workloads while maintaining stable temperatures. Reduced heat output improves system reliability. Proper thermal control ensures long-term operational stability.
Scalable Memory Architecture
The 48GB capacity allows organizations to scale memory resources efficiently across server platforms. Multiple modules can be installed to increase total system memory capacity. This supports growing workloads in enterprise environments. Scalability is essential for modern IT infrastructure expansion.
Reliable Performance
Database systems require fast and stable memory for efficient query processing and transaction handling. The Micron DDR5 RDIMM improves database performance by reducing memory latency. It enhances system responsiveness and improves data processing efficiency. This is critical for enterprise database applications.
Seamless Integration
The module is designed for compatibility with next-generation server platforms supporting DDR5 memory. It integrates seamlessly into enterprise motherboard architectures. This simplifies deployment and reduces compatibility issues. It ensures stable and efficient system operation in production environments.
Enterprise-Grade Reliability
The Micron DDR5 RDIMM is built to meet strict enterprise reliability standards through rigorous testing and validation. It is designed for continuous 24/7 operation in data centers. Advanced error correction and stability features ensure long-term durability. This makes it suitable for mission-critical applications.
