Micron MTA36ASF2G72PZ-2G3 16GB PC4-19200 DDR4 2400MHz RDIMM RAM
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Micron MTA36ASF2G72PZ-2G3 16GB DDR4 2400MHz RDIMM Overview
The Micron MTA36ASF2G72PZ-2G3 16GB DDR4 RDIMM is engineered for enterprise servers and data center environments. Offering dual-rank architecture, ECC error correction, and a 2400MHz transfer speed, this module provides superior reliability and efficiency for demanding workloads.
General Specifications
- Model: MTA36ASF2G72PZ-2G3
- Manufacturer: Micron
- Capacity: 16GB
- Memory Type: DDR4 SDRAM
- Form Factor: RDIMM (Registered DIMM)
- Standard: PC4-19200
Technical Specifications
- Model Number: MTA36ASF2G72PZ-2G3
- Capacity: 16GB
- Memory Type: DDR4 SDRAM
- Speed: 2400MHz
- Form Factor: 288-pin RDIMM
- Rank: Dual Rank (2Rx4)
- CAS Latency: CL17
- Error Correction: ECC (Error-Correcting Code)
- Voltage: 1.2V
- Bandwidth: PC4-19200
Performance Details
- Speed: 2400 MHz
- CAS Latency: Standard CL performance
- Rank: 2Rx4 (Dual Rank)
- Voltage: 1.2V (low power consumption)
- Number of Die: 36
- Height: Standard
Reliability & Advanced Features
- Error-Correcting Code (ECC): Protects data integrity in mission-critical environments
- Registered DIMM improves signal control for enhanced stability
- FBGA packaging with integrated temperature sensor support
- Optimized for server and workstation workloads
Key Benefits
- Exceptional reliability for enterprise-grade servers
- Efficient power usage with 1.2V DDR4 technology
- Dual rank architecture improves system responsiveness
- Designed for high-performance computing applications
- Compatible with a wide range of server platforms
Ideal Use Cases
- Data center deployments
- Virtualization and cloud computing
- Enterprise workloads requiring stability
- Database and analytics processing
- Workstations handling memory-intensive applications
Micron MTA36ASF2G72PZ-2G3 16GB DDR4 2400MHz RDIMM Memory Module Overview
The Micron MTA36ASF2G72PZ-2G3 16GB DDR4 2400MHz RDIMM is a high-performance server memory module engineered for enterprise-class applications, data centers, and virtualization environments. Featuring DDR4 technology, 2400MHz speed, 288-pin RDIMM form factor, and dual rank x4 architecture with ECC support, this module ensures superior reliability, bandwidth, and energy efficiency. Designed to optimize server performance, the Micron 16GB DDR4 RDIMM offers unmatched consistency, low latency, and improved power consumption for mission-critical workloads.
DDR4 Technology and Advantages
Higher Bandwidth and Speed
With a data transfer rate of 2400MT/s, the Micron MTA36ASF2G72PZ-2G3 provides up to 19.2GB/s peak bandwidth. This improved speed over DDR3 modules allows servers to handle high-demand applications such as virtualization, big data analytics, and cloud computing with greater efficiency and reduced latency.
Lower Power Consumption
DDR4 modules operate at 1.2V compared to 1.5V in DDR3, offering approximately 20% energy savings. Reduced power consumption not only decreases operational costs but also minimizes heat generation, improving cooling efficiency in dense server racks.
Improved Signal Integrity
DDR4 architecture includes enhanced signaling and on-die termination, which reduces electrical noise and improves signal integrity. This ensures stable operation under high memory loads and across multiple DIMMs in large-scale deployments.
Dual Rank x4 Architecture
Performance Optimization
The dual-rank x4 design increases memory channel efficiency and allows simultaneous access to multiple memory ranks, providing better system performance in server environments where high throughput and low latency are critical.
Scalable Memory Configurations
Dual-rank modules allow IT administrators to deploy larger memory configurations efficiently. Multiple RDIMMs can be installed per channel, providing scalable memory capacity for virtualization, ERP systems, and high-performance databases.
Error-Correcting Code (ECC) Technology
Single-Bit Error Correction
ECC memory detects and corrects single-bit errors automatically, ensuring data integrity and preventing potential system crashes. For enterprise workloads, ECC is essential to maintain uptime and protect critical information.
Enhanced System Reliability
ECC technology reduces the risk of corrupted data, providing enhanced stability in high-availability servers, financial institutions, healthcare databases, and cloud environments where accuracy and reliability are non-negotiable.
Enterprise Deployment Scenarios
Cloud Computing
Cloud infrastructure demands scalable and dependable memory solutions. Micron DDR4 RDIMMs provide the performance and reliability necessary to manage dynamic workloads, support multi-tenant architecture, and deliver fast data access.
High-Performance Databases
High-performance databases require low-latency memory modules capable of handling frequent read/write operations. With its 2400MHz speed and dual-rank architecture, the MTA36ASF2G72PZ-2G3 ensures smooth query execution, indexing, and transaction processing without bottlenecks.
Scientific and Technical Computing
Research institutions and engineering firms running simulations, modeling, and data analysis benefit from large, high-speed memory modules. The Micron DDR4 RDIMM delivers consistent performance for computationally intensive workloads.
Reliability and Quality Assurance
Micron Manufacturing Standards
Micron memory modules are built under strict quality controls, tested for signal integrity, thermal performance, and long-term reliability. Each module meets rigorous standards to ensure consistent operation in enterprise server environments.
Longevity in Data Centers
Designed for continuous operation, the MTA36ASF2G72PZ-2G3 is engineered for 24/7 workloads. Its high-quality components and ECC functionality ensure that servers remain stable, reducing maintenance costs and downtime.
Error Handling and System Uptime
ECC and Micron’s reliability standards combine to minimize the risk of memory-related failures. Enterprises can maintain high uptime, critical for financial institutions, healthcare systems, and cloud service providers.
Energy Efficiency and Thermal Management
Low Voltage Operation
Operating at 1.2V, the Micron DDR4 RDIMM significantly reduces energy consumption. In large-scale server farms, this translates to noticeable cost savings on electricity and cooling.
Reduced Heat Generation
DDR4 modules generate less heat than older memory types, improving airflow efficiency and reducing the strain on cooling systems. This prolongs hardware lifespan and contributes to overall data center efficiency.
Compatibility and Scalability
Broad Server Support
The 288-pin RDIMM standard ensures compatibility with a wide range of servers from HPE, Dell, Lenovo, Cisco, and Supermicro, allowing IT teams to standardize memory across diverse environments without performance trade-offs.
Expandable Configurations
Dual-rank modules allow administrators to increase server memory capacity easily. Organizations can start with smaller deployments and expand memory pools as demands grow, making this module suitable for scaling cloud and virtualization infrastructures.
Micron DDR4 RDIMM Advantages
Enterprise-Grade Reliability
Micron’s rigorous testing ensures that each module provides long-term reliability and consistent performance, essential for mission-critical applications where downtime is unacceptable.
Performance Optimization
With 2400MHz speed, dual-rank x4 architecture, and ECC support, this module optimizes server workloads, providing faster data access, reduced latency, and higher system throughput.
Cost-Effective Scaling
The Micron MTA36ASF2G72PZ-2G3 offers an efficient balance between price, capacity, and performance. Enterprises can scale server memory affordably without compromising quality or stability.
Use Cases in Enterprise IT
Financial Services
In banking and financial systems, data integrity and processing speed are critical. Micron DDR4 RDIMMs provide the necessary reliability for transaction processing, trading platforms, and fraud detection systems.
Healthcare IT Systems
Hospitals and healthcare organizations running EMR (Electronic Medical Records) or PACS (Picture Archiving and Communication System) rely on high-speed memory to ensure rapid access to patient data, medical images, and real-time analytics.
