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MTA9ASF1G72PZ-2G9E1
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MTA9ASF1G72PZ-2G9E1 Description
MTA9ASF1G72PZ-2G9E1 Description
The MTA9ASF1G72PZ-2G9E1 is an 8GB DDR4 SDRAM module manufactured by Micron Technology Inc., designed for high-performance computing applications. This 288-pin RDIMM (Registered Dual In-Line Memory Module) operates at a transfer rate of 2933 MT/s (MHz), ensuring efficient data handling for enterprise and data center environments. Although marked as Obsolete, it remains a reliable choice for legacy systems requiring stable, high-bandwidth memory. The module complies with ROHS3 and REACH Unaffected standards, ensuring environmental and safety adherence. Its Bulk packaging and MSL 3 (168 Hours) rating make it suitable for controlled manufacturing processes.
MTA9ASF1G72PZ-2G9E1 Features
- Memory Type: DDR4 SDRAM with ECC support for error correction.
- Capacity: 8GB density, ideal for balanced performance and scalability.
- Speed: 2933 MT/s, enabling faster data processing than standard DDR4 modules.
- Form Factor: 288-pin RDIMM, optimized for server and workstation motherboards.
- Compliance: ROHS3 Compliant and REACH Unaffected, meeting stringent environmental regulations.
- Reliability: Registered (buffered) design reduces electrical load, enhancing signal integrity in multi-module configurations.
MTA9ASF1G72PZ-2G9E1 Applications
This module excels in:
- Enterprise Servers: Supports high-throughput workloads in virtualization and database management.
- Data Centers: Ensures stable performance for cloud computing and storage systems.
- Legacy Upgrades: Ideal for extending the lifecycle of older servers requiring DDR4 RDIMMs.
- High-Availability Systems: ECC functionality minimizes downtime in critical applications like financial trading or medical imaging.
Conclusion of MTA9ASF1G72PZ-2G9E1
The MTA9ASF1G72PZ-2G9E1 offers a robust combination of speed, reliability, and compliance, making it a dependable choice for specialized and legacy systems. While newer alternatives exist, its 2933 MT/s bandwidth and ECC support ensure it remains viable for performance-sensitive deployments. Engineers and procurement specialists should evaluate its obsolete status but can leverage its proven design for stable, high-efficiency memory solutions.



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