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Micron MT36JSF1G72PZ-1G6K1LE 8GB DDR3-1600MHz RDIMM 2Rx4 CL11 Memory
- Capacity: 8GB
- Type: DDR3 SDRAM
- Form Factor: RDIMM (Registered DIMM)
- Speed: 1600MHz (PC3-12800)
- Latency: CL11
- Configuration: 2Rx4 (Dual Rank x4)
- Voltage: 1.5V
- ECC: Yes (Error-Correcting Code)
- Designed for server and workstation memory upgrades
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Product Overview
The Micron MT36JSF1G72PZ-1G6K1LE is an 8GB DDR3 RDIMM memory module with a speed of 1600MHz and CL11 latency. It features a 2Rx4 configuration, indicating dual-rank organization with 4-bit wide memory chips per rank, suitable for server applications requiring high reliability and performance.
Technical Information
| Manufacturer | Micron |
| Part Number | MT36JSF1G72PZ-1G6K1LE |
| Memory Type | DDR3 SDRAM |
| Form Factor | RDIMM |
| Capacity | 8GB |
Additional Specifications
| Speed | 1600MHz |
| CAS Latency | CL11 |
| Rank | 2Rx4 |
| ECC | Yes |
| Voltage | 1.5V |
Product Description
The Micron MT36JSF1G72PZ-1G6K1LE is an 8GB DDR3 Registered DIMM (RDIMM) module, engineered for robust performance in server and workstation environments. It operates at a frequency of 1600MHz, corresponding to a PC3-12800 designation, which ensures high data transfer rates essential for demanding computational tasks. The module's CAS Latency (CL) is set at CL11, a timing parameter that influences the speed at which data can be accessed from the memory. This memory module utilizes a 2Rx4 configuration. The '2R' signifies a dual-rank design, meaning the module is divided into two independent sets of memory chips (ranks). This architecture allows the memory controller to potentially improve performance through interleaving, where operations can be switched between ranks. The 'x4' indicates that each individual memory chip within a rank has a 4-bit data width. This specific configuration is often chosen to optimize compatibility and performance with certain server memory controllers. As a Registered DIMM (RDIMM), the MT36JSF1G72PZ-1G6K1LE incorporates onboard registers. These registers buffer command and address signals, reducing the electrical load on the system's memory controller. This buffering is crucial for enabling higher memory capacities and maintaining signal integrity, especially in systems with many memory modules installed. Furthermore, the module supports Error-Correcting Code (ECC) functionality, which is vital for server environments. ECC detects and corrects data errors on the fly, significantly enhancing system stability and data integrity, making it indispensable for critical applications.


