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Micron MT72KGF4G72LZ-1G4E1 32GB DDR3-1333MHz LRDIMM 4Rx4 CL9 Memory
- 32GB memory capacity.
- DDR3 SDRAM technology.
- Speed: 1333MHz (PC3-10600).
- Form Factor: LRDIMM (Load-Reduced DIMM).
- Organization: 4R x 8 (4 Ranks x 8 bits).
- CAS Latency: CL9.
- Designed for servers and high-performance workstations.
- Supports higher memory capacities per channel.
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Product Overview
The Micron MT72KGF4G72LZ-1G4E1 is a 32GB DDR3-1333MHz LRDIMM (Load-Reduced Dual In-line Memory Module). It features a 4 ranks x 8 bits organization and CL9 latency, designed for high-capacity server and workstation memory configurations.
Technical Information
| Capacity | 32 GB |
| Memory Type | DDR3 SDRAM |
| Speed | 1333 MHz |
| Module Type | LRDIMM |
| Rank | 4R |
Additional Specifications
| Organization | 4R x 8 |
| CAS Latency | CL9 |
| Part Number | MT72KGF4G72LZ-1G4E1 |
| Manufacturer | Micron |
Product Description
The Micron MT72KGF4G72LZ-1G4E1 is a high-density 32 Gigabyte memory module utilizing DDR3 Synchronous Dynamic Random-Access Memory (SDRAM) technology. Operating at a clock speed of 1333MHz, it corresponds to a PC3-10600 data transfer rate, providing substantial bandwidth for memory-intensive applications. This module is specifically a Load-Reduced DIMM (LRDIMM), which incorporates an 8-bit buffer chip on the module. This buffer reduces the electrical load on the memory controller, allowing for higher memory capacities to be installed in a system and enabling more memory modules per channel compared to standard RDIMMs or UDIMMs. The module's organization is specified as 4R x 8, meaning it consists of four ranks, each with an 8-bit data width. This multi-rank design contributes to its high capacity and performance characteristics. The CAS Latency (CL) is rated at 9, indicating the number of clock cycles required for the memory module to respond to a column read command. This timing is typical for DDR3 modules of this speed and density. Micron is a leading manufacturer of memory solutions, and this LRDIMM is engineered for reliability and performance in demanding server and workstation environments. It is crucial for applications such as large databases, virtualization, scientific computing, and high-performance computing (HPC) where maximizing system memory is essential for optimal operation. Compatibility should always be verified with the specific server or motherboard's documentation.



