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Micron MT18HTF25672FDY-667E1E3 2GB DDR2-667MHz FB-DIMM 2Rx8 CL5 Memory
- 2GB memory capacity
- DDR2 SDRAM technology
- Fully Buffered DIMM (FB-DIMM) form factor
- 667MHz clock speed (PC2-5300F)
- 2Rx8 configuration (Dual Rank, x8 data width)
- CL5 latency
- Designed for servers and workstations
- High bandwidth and reliability
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Product Overview
The Micron MT18HTF25672FDY-667E1E3 is a 2GB DDR2 Fully Buffered DIMM (FB-DIMM) memory module. It operates at 667MHz with a 2Rx8 configuration and CL5 latency, designed for high-performance servers and workstations requiring substantial memory capacity and bandwidth.
Technical Information
| Capacity | 2GB |
| Memory Type | DDR2 SDRAM |
| Form Factor | FB-DIMM |
| Speed | 667MHz (PC2-5300F) |
Additional Specifications
| Rank | 2R (Dual Rank) |
| Organization | x8 |
| CAS Latency | CL5 |
Product Description
The Micron MT18HTF25672FDY-667E1E3 is a 2GB DDR2 Fully Buffered DIMM (FB-DIMM) memory module, engineered for demanding server and workstation environments. FB-DIMMs were designed to overcome the scalability limitations of traditional unbuffered DIMMs by incorporating an Advanced Memory Buffer (AMB) chip on each module, which serializes data transfers and allows for higher memory capacities and speeds. This specific module operates at a speed of 667MHz, corresponding to the PC2-5300F standard, and features a dual-rank configuration (2R) with an x8 data width. The CAS latency is rated at CL5. The FB-DIMM architecture, while offering advantages in density and bandwidth, typically requires more power and generates more heat than unbuffered DIMMs, necessitating robust server cooling solutions. Ideal for systems that require significant memory resources for virtualization, large databases, scientific computing, or complex simulations, this 2GB FB-DIMM contributes to overall system performance by enabling faster data access and multitasking capabilities. Its reliability and capacity make it a crucial component for maintaining the operational efficiency of enterprise-grade computing platforms.


