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Micron MTA18ASF1G72XF1Z-2G1 8GB DDR4-2133MHz NVDIMM 1Rx4 CL15 Memory
- Capacity: 8GB
- Memory Type: DDR4 NVDIMM
- Speed: 2133MHz
- Latency: CL15
- Configuration: 1Rx4 (Single Rank x4)
- Voltage: Standard DDR4 voltage
- Features: Non-Volatile memory for data persistence
- Application: Enterprise servers and storage systems
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Product Overview
The Micron MTA18ASF1G72XF1Z-2G1 is an 8GB DDR4 Non-Volatile DIMM (NVDIMM) memory module designed for enterprise applications requiring persistent data storage. It operates at a speed of 2133MHz with CL15 latency, offering a balance of performance and data integrity.
Technical Information
| Memory Size | 8GB |
| Memory Type | DDR4 NVDIMM |
| Speed | 2133MHz |
| CAS Latency | CL15 |
Additional Specifications
| Rank | 1Rx4 |
| ECC | Yes (inherent to NVDIMM) |
| Voltage | 1.2V (typical for DDR4) |
Product Description
The Micron MTA18ASF1G72XF1Z-2G1 represents a significant advancement in memory technology by integrating Non-Volatile memory capabilities directly onto a standard DDR4 DIMM form factor. This NVDIMM module provides the speed of DRAM for active data processing while ensuring that critical data is retained even in the event of a power loss. This persistence is achieved through an onboard battery or supercapacitor backup, allowing the module to write its contents to non-volatile storage before power is completely removed. Designed for demanding enterprise environments, this 8GB module operates at DDR4-2133MHz with a CAS Latency of CL15, ensuring high performance for applications that require rapid data access and processing. The 1Rx4 configuration indicates a single rank with four data bits per chip, optimized for certain server memory architectures. Its NVDIMM nature makes it ideal for applications such as databases, transaction processing, and caching layers where data integrity and availability are paramount. This specific model, MTA18ASF1G72XF1Z-2G1, is built with Micron's renowned quality and reliability, making it a robust choice for mission-critical systems. The integration of non-volatility directly into the memory module simplifies system design and enhances data protection strategies, offering a powerful solution for businesses looking to improve application performance and data resilience.



