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Micron MT9HTF12872PZ-667HZES 1GB DDR2-667MHz RDIMM 1Rx8 CL5 Memory
- Capacity: 1GB
- Type: DDR2 SDRAM
- Form Factor: RDIMM (Registered DIMM)
- Speed: 667MHz (PC2-5300)
- CAS Latency: CL5
- Organization: 1Rx8 (Single Rank x8)
- Voltage: Typically 1.8V
- Designed for server and workstation environments
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Product Overview
The Micron MT9HTF12872PZ-667HZES is a 1GB DDR2 Registered DIMM (RDIMM) memory module. It operates at a speed of 667MHz with timings of CL5, and features a 1Rx8 organization. This memory is designed for servers and workstations that support DDR2 RDIMM memory, providing reliable performance for demanding computing tasks.
Technical Information
| Capacity | 1GB |
| Type | DDR2 SDRAM |
| Form Factor | RDIMM |
Additional Specifications
| Speed | 667MHz |
| CAS Latency | CL5 |
| Organization | 1Rx8 |
Product Description
This Micron 1GB DDR2 RDIMM, model MT9HTF12872PZ-667HZES, is a crucial component for systems requiring enhanced memory stability and performance. As a Registered DIMM, it incorporates an onboard register that buffers command and address signals, reducing electrical load on the memory controller. This feature is particularly beneficial in servers with multiple memory modules, as it improves signal integrity and allows for higher memory capacities and speeds. The module operates at a frequency of 667MHz, also known as PC2-5300, providing a substantial data transfer rate for its generation. The CAS Latency of CL5 indicates the number of clock cycles required to access a particular column of data. The 1Rx8 organization signifies that the memory chip is single-ranked, with each DRAM chip having an x8 data width, which is a common configuration for DDR2 modules. Designed for compatibility with servers and high-end workstations that utilize DDR2 RDIMM technology, this memory module is ideal for upgrading existing systems or populating new builds. Its reliability and performance characteristics make it suitable for applications such as virtualization, database management, and scientific computing where memory stability is paramount.


