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Micron MT9JSF25672AZ-2G1K1 2GB DDR3-2133MHz ECC Un-Buff CL14 UDIMM 1R
- 2GB DDR3 SDRAM
- 2133MHz Clock Speed
- Unbuffered DIMM (UDIMM)
- ECC (Error-Correcting Code) support
- CL14 Latency
- 1 Rank (1R)
- Designed for server and workstation environments
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Product Overview
The Micron MT9JSF25672AZ-2G1K1 is a 2GB DDR3 Unbuffered DIMM (UDIMM) memory module designed for servers and workstations. It operates at a speed of 2133MHz with CL14 latency, offering enhanced performance for demanding applications.
Technical Information
| Memory Type | DDR3 SDRAM |
| Capacity | 2GB |
| Speed | 2133MHz |
| Form Factor | UDIMM |
Additional Specifications
| ECC | Yes |
| Buffered | Unbuffered |
| Latency | CL14 |
| Rank | 1R |
Product Description
This Micron memory module, identified by SKU MT9JSF25672AZ-2G1K1, is engineered to deliver reliable and high-performance data processing. With its 2GB capacity and DDR3 technology, it is suitable for upgrading existing systems or building new ones that require efficient memory solutions. The ECC functionality ensures data integrity by detecting and correcting common types of internal data corruption, making it ideal for critical applications where accuracy is paramount. The module's 2133MHz speed and CL14 latency contribute to faster data retrieval and processing, reducing bottlenecks in memory-intensive tasks. As an Unbuffered DIMM (UDIMM), it is designed for direct connection to the memory controller without an intermediate register, which can offer advantages in certain system architectures. The single-rank (1R) configuration further specifies its internal organization, impacting how it interacts with the memory controller. This specific module is a component designed for compatibility with systems that support DDR3 memory standards and the specified clock speeds. Its robust design and error correction capabilities make it a valuable asset for environments such as data centers, high-performance computing, and professional workstations where uptime and data accuracy are non-negotiable. It represents a balance of speed, capacity, and reliability for modern computing needs.



