MTA18ASF2G72PDZ-2G9E1R Micron 16GB DDR4 SDRAM DIMM Memory Module
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Product Overview of the Micron Smart Memory 16GB DDR4 RAM
Discover the advanced features and reliable performance of the Micron Smart Memory module. Designed to enhance your system's memory capacity and speed, this DDR4 RAM module offers exceptional stability and performance for various applications.
General Information
- Manufacturer: Micron
- Part Number: MTA18ASF2G72PDZ-2G9E1R
- Product Type: RAM Module
Technical Specifications
Memory Configuration
- Total Capacity: 16GB
- Memory Type: DDR4 SDRAM - DIMM 288-pin
- Number of Modules: 1 x 16GB
- Memory Speed: 2933MHz (PC4-23400)
- Latency Timings: CL21
Advanced Features
- Rank: Dual Rank
- Error Checking: ECC (Error-Correcting Code)
- Registered: Yes
- Voltage: 1.2V
Choose Micron Smart Memory
- High-performance DDR4 SDRAM for faster data access
- Reliability with error-correcting code (ECC) to prevent data corruption
- Dual rank for improved data throughput
- Efficient voltage at 1.2V for lower power consumption
- Easy upgrade with one 16GB module
Capacity 16GB
When it comes to selecting the right memory module for your system, capacity plays a crucial role. The Micron MTA18ASF2G72PDZ-2G9E1R DDR4 SDRAM DIMM Memory Module offers an impressive capacity of 16GB, which is ideal for users who require a high-performance memory solution.
Increased Multitasking Capability
With a 16GB capacity, this memory module allows you to perform multiple tasks simultaneously without experiencing any lag or slowdown. Whether you are running resource-intensive applications, editing large multimedia files, or handling complex data sets, the ample capacity ensures smooth and efficient operation.
Enterprise-Class DDR4 ECC Registered Memory Modules
The Micron MTA18ASF2G72PDZ-2G9E1R 16GB RAM belongs to the professional and enterprise-grade DDR4 ECC Registered (RDIMM) memory category, designed specifically for servers, workstations, and mission-critical computing environments. This category focuses on stability, data integrity, and long-term reliability rather than consumer-level performance tuning. ECC Registered DDR4 memory modules are widely used in data centers, cloud infrastructure, virtualization platforms, enterprise databases, and high-performance computing systems where system uptime and data accuracy are essential.
DDR4 RDIMM modules differ significantly from standard desktop UDIMM memory. Registered memory includes a register (buffer) between the memory controller and the DRAM chips, reducing electrical load and enabling better scalability in multi-DIMM configurations. This design allows systems to support higher memory capacities while maintaining signal integrity, making RDIMMs the preferred choice for enterprise servers.
Micron Server Memory Product Category
Micron is a globally recognized manufacturer of enterprise memory solutions, offering a comprehensive range of server-class DRAM modules tested for compatibility, endurance, and reliability. The Micron MTA18ASF2G72PDZ-2G9E1R module is part of Micron’s DDR4 server memory lineup, tailored to meet the demands of modern data-intensive workloads.
This category emphasizes strict quality control, JEDEC compliance, and extensive validation across major server platforms. Micron server memory modules are engineered to operate consistently under continuous workloads, elevated temperatures, and high memory utilization scenarios. This makes them suitable for environments where memory failures can result in data corruption, downtime, or financial losses.
DDR4 PC4-23400 Memory
PC4-23400 refers to the memory bandwidth rating of DDR4-2933 modules, delivering a theoretical maximum transfer rate of 23.4 GB/s per module. This classification places the Micron MTA18ASF2G72PDZ-2G9E1R in the high-speed DDR4 server memory segment, designed to balance bandwidth efficiency and power consumption.
DDR4-2933 memory is commonly used in enterprise platforms powered by Intel Xeon Scalable processors and AMD EPYC processors that support higher memory frequencies. In such systems, PC4-23400 modules contribute to improved data throughput for virtualization, analytics, and transaction-heavy workloads.
2933MHz Server Workloads
The 2933MHz operating speed enables faster memory access compared to lower-frequency DDR4 modules such as 2400MHz or 2666MHz. Within the server memory category, this frequency is considered optimal for modern multi-core CPUs that rely heavily on memory bandwidth to feed processing cores efficiently.
Higher memory frequency directly benefits workloads such as virtual machine hosting, database query execution, scientific simulations, and in-memory caching. The Micron MTA18ASF2G72PDZ-2G9E1R module ensures stable operation at 2933MHz under JEDEC-standard timings, making it suitable for enterprise-grade deployments.
ECC Registered Memory Technology
Error Correcting Code (ECC) memory is a defining feature of this category. ECC technology detects and corrects single-bit memory errors and detects multi-bit errors, significantly reducing the risk of data corruption. In server and workstation environments, even minor memory errors can lead to system crashes or corrupted datasets, making ECC a critical requirement.
Registered DIMMs (RDIMMs) further enhance reliability by incorporating a register that buffers command and address signals. This buffering reduces the electrical load on the memory controller, allowing systems to support more memory modules per channel. The Micron MTA18ASF2G72PDZ-2G9E1R combines ECC and RDIMM features to deliver superior stability in enterprise platforms.
Benefits of ECC in Enterprise Systems
ECC memory plays a vital role in maintaining data integrity in environments that process large volumes of critical information. Industries such as finance, healthcare, scientific research, and cloud services depend on ECC memory to prevent silent data corruption.
By correcting memory errors in real time, ECC memory helps ensure consistent application performance, reduces system crashes, and supports long-term operational reliability. This makes ECC RDIMM modules essential for servers running 24/7 workloads.
Registered DIMM Architecture Advantages
The registered architecture allows servers to scale memory capacity more efficiently. Compared to unbuffered DIMMs, RDIMMs enable higher total memory configurations without compromising signal quality. This is particularly important in dual-socket and multi-socket server platforms.
The Micron MTA18ASF2G72PDZ-2G9E1R module fits seamlessly into this category by supporting dense memory configurations required for virtualization hosts, in-memory databases, and large-scale enterprise applications.
Dual Rank Memory
This module features a dual rank configuration, meaning it has two independent sets of memory banks accessible by the memory controller. Dual rank modules can offer improved performance in certain workloads by allowing better memory interleaving and utilization of the memory bus.
Within the DDR4 RDIMM category, dual rank modules are widely preferred for balanced performance and capacity. They provide higher density per DIMM slot while maintaining compatibility with server memory controllers optimized for multi-rank configurations.
Impact of Dual Rank on Performance
Dual rank memory can improve effective memory throughput by enabling the memory controller to alternate between ranks, reducing idle cycles. This results in smoother performance in multi-threaded and memory-intensive applications.
For enterprise systems running multiple virtual machines or concurrent database operations, dual rank RDIMMs like the Micron MTA18ASF2G72PDZ-2G9E1R contribute to more efficient resource utilization.
CAS Latency CL21 in DDR4 Server Memory
The CAS latency of CL21 reflects the number of clock cycles required to access data after a read command is issued. In server memory categories, latency is balanced with stability and compatibility rather than aggressive tuning.
CL21 is a JEDEC-standard latency for DDR4-2933 RDIMM modules, ensuring predictable performance across supported platforms. This standardization is critical for enterprise environments where consistent behavior across multiple systems is required.
Latency Considerations in Enterprise
While lower latency can benefit certain applications, server workloads typically prioritize reliability and throughput. The CL21 latency of this module is optimized for stable operation at high frequency under continuous load.
Applications such as virtualization, database management, and enterprise resource planning benefit from the predictable timing characteristics provided by JEDEC-compliant memory modules.
288-Pin DDR4 SDRAM DIMM Form Factor
The 288-pin DIMM form factor is standard for DDR4 memory modules used in modern servers and workstations. This physical design ensures compatibility with a wide range of enterprise-grade motherboards and server platforms.
The Micron MTA18ASF2G72PDZ-2G9E1R module adheres strictly to DDR4 mechanical and electrical specifications, enabling seamless installation and reliable operation in supported systems.
Compatibility with Server Platforms
This category of memory is designed for use in systems that explicitly support DDR4 ECC Registered DIMMs. It is compatible with many Intel Xeon Scalable processor platforms and AMD EPYC server architectures that require RDIMM memory.
System builders and IT administrators rely on standardized form factors to ensure compatibility and simplify upgrades, making 288-pin DDR4 RDIMM modules a cornerstone of enterprise infrastructure.
Use Cases for 16GB ECC RDIMM Memory
16GB ECC RDIMM modules occupy a versatile position within the server memory category. They offer a balance between capacity and cost, making them suitable for a wide range of enterprise deployments.
Common use cases include virtualization hosts, file servers, application servers, database servers, and enterprise workstations. By combining multiple 16GB modules, systems can scale memory capacity efficiently while maintaining optimal performance.
Virtualization and Cloud Infrastructure
In virtualization environments, memory capacity and reliability are critical. ECC RDIMM modules help ensure stable operation when running multiple virtual machines on a single host.
The Micron MTA18ASF2G72PDZ-2G9E1R module supports consistent performance under high memory utilization, making it suitable for private cloud deployments and hypervisor-based systems.
Database and Analytics Workloads
Enterprise databases and analytics platforms rely heavily on memory for caching and query execution. High-speed DDR4-2933 memory improves data access times and overall system responsiveness.
ECC protection ensures that data processed in memory remains accurate, which is especially important for financial, healthcare, and scientific datasets.
Energy Efficiency and Thermal
DDR4 memory operates at lower voltage compared to previous generations, contributing to improved energy efficiency. This is particularly important in data centers where power consumption and thermal management are major considerations.
The Micron MTA18ASF2G72PDZ-2G9E1R module is designed to operate within standard server thermal envelopes, ensuring reliable performance even under continuous workloads.
Reduced Power Consumption in Data Centers
Lower operating voltage helps reduce overall system power draw, which can translate into significant cost savings in large-scale deployments. DDR4 RDIMM modules support energy-efficient operation without sacrificing performance.
This makes them ideal for organizations seeking to optimize total cost of ownership while maintaining high system reliability.
Optimized for Multi-DIMM
Registered memory allows servers to populate more DIMM slots per channel while maintaining signal integrity. This enables higher total memory capacities compared to unbuffered configurations.
The Micron MTA18ASF2G72PDZ-2G9E1R module fits seamlessly into this scalable architecture, supporting enterprise growth and evolving workload demands.
Enterprise Memory Category
Within the broader memory market, DDR4 ECC Registered modules occupy the professional and enterprise segment. They are designed for systems where reliability, compatibility, and long-term stability are more important than consumer-focused features.
This category is essential for organizations that require dependable performance under continuous operation, making ECC RDIMM memory a foundational component of modern IT infrastructure.
