Skip to product information
1 of 1

Samsung

M378A2K43BB1-CPB00 Samsung 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Dual Rank Memory

M378A2K43BB1-CPB00 Samsung 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Dual Rank Memory

Refurbished
Regular price $359.58 USD
Regular price Sale price $359.58 USD
Sale Sold out
Taxes included. Shipping calculated at checkout.
Quantity

Upgrade your system's performance with the Samsung 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Dual Rank Memory. This high-quality RAM module is designed to deliver exceptional speed and reliability, making it an ideal choice for demanding applications.

With a capacity of 16GB, this DDR4 memory module provides ample room for your system's memory needs, allowing for smoother performance and reduced lag. The PC4-17000 specification ensures a high-speed data transfer rate of 2133MHz, enabling your system to handle demanding tasks with ease. The non-ECC (Error-Correcting Code) design provides a cost-effective solution for users who prioritize performance over data integrity.

The unbuffered design of this RAM module ensures low latency and high-speed data transfer, making it suitable for a wide range of applications, from gaming and video editing to data analysis and scientific simulations. The 288-pin DIMM form factor ensures easy installation and compatibility with a variety of motherboards.

Operating at a low voltage of 1.2V, this Samsung RAM module is designed to be energy-efficient, reducing power consumption and heat generation. The dual-rank design provides improved memory density, allowing for more memory to be packed into a smaller space.

The Samsung 16GB PC4-17000 non-ECC Unbuffered DDR4-2133MHz CL15 288-Pin DIMM 1.2V Dual Rank Memory is backed by Samsung's reputation for producing high-quality, reliable memory products. With a CAS latency of 15, this RAM module provides a responsive and efficient performance, making it an excellent choice for users looking to upgrade their system's memory.

View full details