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Micron MT36HTF51272FY-667G1N8 4GB DDR2-667MHz FB-DIMM 2Rx4 CL5 Memory
- 4GB capacity
- DDR2 SDRAM technology
- 667MHz (PC2-5300) speed
- Fully Buffered DIMM (FB-DIMM) form factor
- 2Rx4 memory organization
- CAS Latency: CL5
- ECC (Error-Correcting Code) support
- Designed for server and workstation applications
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Product Overview
The Micron MT36HTF51272FY-667G1N8 is a 4GB DDR2 Fully Buffered DIMM (FB-DIMM) memory module. It operates at a speed of 667MHz with CAS latency 5 (CL5), and features a 2Rx4 configuration, making it suitable for servers and workstations requiring high-capacity, high-performance memory.
Technical Information
| Capacity | 4GB |
| Memory Type | DDR2 SDRAM |
| Speed | 667MHz |
| Form Factor | FB-DIMM |
Additional Specifications
| Rank | 2Rx4 |
| CAS Latency | CL5 |
| ECC | Yes |
Product Description
The Micron MT36HTF51272FY-667G1N8 is a high-performance 4GB memory module engineered for demanding server and workstation environments. It utilizes DDR2 SDRAM technology, operating at a clock speed of 667MHz, which corresponds to a PC2-5300 designation. This speed ensures rapid data access and processing, crucial for applications that require significant memory bandwidth. The module is a Fully Buffered DIMM (FB-DIMM), a type of memory designed to increase memory density and bandwidth in server systems. FB-DIMMs feature an Advanced Memory Buffer (AMB) chip that serializes data, allowing for more DIMMs per channel and higher overall memory capacities. The 2Rx4 organization indicates that the module has two ranks, each with four data chips per bank, contributing to its performance characteristics. With a CAS Latency (CL) of 5, this memory module strikes a balance between speed and stability. It also incorporates ECC (Error-Correcting Code) functionality, which is vital for server environments as it detects and corrects single-bit memory errors, thereby enhancing data integrity and system reliability. This makes the MT36HTF51272FY-667G1N8 a dependable choice for mission-critical applications where memory stability is paramount.



