Skip to product information
1 of 1

Micron

MTA18ASF1G72PZ-2G1A2KG Micron 8GB PC4-17000 ECC Registered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Single Rank Memory

MTA18ASF1G72PZ-2G1A2KG Micron 8GB PC4-17000 ECC Registered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Single Rank Memory

Refurbished
Regular price $223.52 USD
Regular price Sale price $223.52 USD
Sale Sold out
Taxes included. Shipping calculated at checkout.
Quantity

The MTA18ASF1G72PZ-2G1A2KG Micron 8GB PC4-17000 ECC Registered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Single Rank Memory is a high-performance, reliable memory solution designed for demanding enterprise applications. With its 8GB capacity, this DDR4 memory module is ideal for servers and workstations that require a significant amount of memory to run multiple applications simultaneously.

This Micron memory module operates at a speed of 2133MHz, which is significantly faster than standard DDR4 memory. The PC4-17000 rating indicates its compatibility with systems that support the PC4-17000 specification. The CL15 latency rating ensures that data is accessed quickly, reducing the time it takes for applications to respond.

The ECC (Error-Correcting Code) feature of this memory module provides an additional layer of protection against data corruption, making it an excellent choice for mission-critical applications where data integrity is paramount. The registered design of this module allows for improved signal integrity and reduced crosstalk, ensuring stable and reliable operation in high-density server environments.

With its 288-pin design and 1.2V voltage rating, this memory module is compatible with systems that support the DDR4 288-pin specification. The single rank design of this module makes it suitable for systems that require a single rank of memory to operate efficiently. Whether you're building a new server or upgrading an existing one, the MTA18ASF1G72PZ-2G1A2KG Micron 8GB PC4-17000 ECC Registered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Single Rank Memory is an excellent choice for demanding applications that require high-performance, reliable memory.

View full details