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Micron MTA18ASF4G72PZ-2G9B1 32GB DDR4-2933MHz RDIMM 1Rx4 CL21 Memory
- 32GB DDR4 SDRAM capacity
- 2933MHz (PC4-23466) memory speed
- RDIMM (Registered Dual In-line Memory Module) form factor
- 1Rx4 (Single Rank, x4 organization) memory configuration
- CL21 CAS Latency
- ECC (Error-Correcting Code) support
- Designed for server and workstation applications
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Product Overview
The Micron MTA18ASF4G72PZ-2G9B1 is a 32GB DDR4-2933MHz RDIMM. It features a 1Rx4 organization and CL21 latency, designed for enterprise servers requiring high bandwidth and reliability.
Technical Information
| Capacity | 32GB |
| Memory Type | DDR4 SDRAM |
| Speed | 2933MHz |
| Form Factor | RDIMM |
Additional Specifications
| Rank | 1Rx4 |
| CAS Latency | CL21 |
| ECC | Yes |
Product Description
This Micron MTA18ASF4G72PZ-2G9B1 module offers a 32GB capacity, built upon the DDR4 standard and operating at a speed of 2933MHz. This provides a substantial memory bandwidth, suitable for demanding server workloads. The RDIMM (Registered DIMM) architecture includes a register chip that buffers command and address signals, reducing the electrical load on the memory controller. This design is critical for enabling higher memory capacities and ensuring signal integrity in multi-processor systems and systems with many memory slots. The module is configured as 1Rx4, indicating a single-rank design with x4 data width per DRAM chip. This configuration offers a good balance between performance and density. The CAS Latency (CL) is set at 21 clock cycles, which is a standard timing for DDR4-2933 modules, contributing to efficient data access. The '2G9B1' suffix typically denotes specific Micron internal specifications related to voltage, temperature, or manufacturing process. As an ECC (Error-Correcting Code) memory module, it is designed to detect and correct single-bit errors, which is a fundamental requirement for maintaining data integrity and system stability in server environments. This Micron RDIMM is a reliable component for upgrading existing servers or configuring new systems that require robust memory performance, capacity, and data accuracy for applications like virtualization, databases, and cloud computing.


