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Micron MT18HTF25672FDY-667EYD4ES 2GB DDR2-667MHz FB-DIMM 2Rx8 Memory
- 2GB DDR2 SDRAM memory capacity
- Operating speed: 667MHz (PC2-5300F)
- Form Factor: FB-DIMM (Fully Buffered DIMM)
- Configuration: 2Rx8 (Dual Rank x8)
- Designed for servers and workstations
- Enhances system performance and multitasking capabilities
- High reliability and stability for enterprise use
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Product Overview
The Micron MT18HTF25672FDY-667EYD4ES is a 2GB DDR2 SDRAM memory module operating at 667MHz. It is a Fully Buffered DIMM (FB-DIMM) with a 2Rx8 configuration, designed for high-performance server and workstation applications.
Technical Information
| Capacity | 2GB |
| Memory Type | DDR2 SDRAM |
| Speed | 667MHz |
| Form Factor | FB-DIMM |
Additional Specifications
| Rank | 2Rx8 |
| Manufacturer | Micron |
| Part Number | MT18HTF25672FDY-667EYD4ES |
Product Description
The Micron MT18HTF25672FDY-667EYD4ES is a high-performance memory module engineered for demanding computing environments such as servers and workstations. With a capacity of 2GB, it provides substantial memory resources to support complex applications and heavy multitasking. The module operates at a speed of 667MHz, corresponding to the PC2-5300F specification, ensuring rapid data access and processing. This memory module utilizes the FB-DIMM (Fully Buffered DIMM) form factor. FB-DIMMs incorporate an Advanced Memory Buffer (AMB) chip on each module, which serializes data transfers between the memory controller and the DIMM. This design significantly reduces electrical loading on the memory bus, allowing for higher memory densities and speeds, as well as improved signal integrity, making it ideal for systems requiring large amounts of memory. The 2Rx8 configuration indicates that the module has two ranks, with each rank composed of eight memory chips. This dual-rank design can offer performance benefits in certain system architectures. The MT18HTF25672FDY-667EYD4ES is a reliable choice for upgrading or populating memory in compatible server and workstation systems, contributing to enhanced overall system responsiveness and stability.



