Udimm module
Suggestions for Udimm module
Boost your system with Crucial 16GB DDR5 RAM, offering high-speed 4800MHz performance for seamless multitasking and gaming. Shop now for reliable CT16G48C40S5 memory upgrades!
High-performance Origin Storage 8GB DDR3 memory module, boasting a speed of 1600MHz and optimized for seamless functionality in demanding applications. Equipped with ECC technology for improved data integrity and reliability.
Origin Storage 4GB DDR3 memory module with 1600 MHz speed, 1.35V voltage, and 1Rx8 configuration. Non-ECC and UDIMM form factor. Equivalent to HyperX Fury Blue memory.
16GB DDR4 memory module with 2666MHz speed, compatible for upgrading system performance and capacity.
8GB DDR3 memory module, 1600MHz speed, with error-correcting code and low voltage for reliable performance.
DDR3 4GB memory module with 1600MHz speed and PC3-12800 technology for efficient performance.
Boost your gaming and computing performance with the Crucial Pro OC 32GB DDR5 RAM kit. This dual-channel memory operates at a blazing 6400MHz with low latency, ideal for overclocked systems.
This product is an 8GB DDR4 memory module with a speed of 2666 MHz, operating at 1.2V. It uses a UDIMM 1Rx8 form factor and features non-ECC (Error Correction Code) functionality.
Enhance your system's performance with the HPE 1GB DDR3-1333 ECC UDIMM Memory Module, designed for reliability and efficiency. This memory module operates at 1333 MHz, ensuring smooth multitasking and data integrity with its error-correcting code technology, making it ideal for servers and workstations. Its compact design fits seamlessly into compatible systems, providing a boost to your computing experience.
Boost performance with an 8 GB DDR3 1600 MHz module, featuring a 2Rx8 layout for stable operation. Its 1.35 V design delivers quick data transfer, enhancing multitasking and light gaming without compromising power efficiency.
Elevate your computer's performance with Origin Storage's 16GB DDR4 2133MHz UDIMM memory module. Featuring ECC, it ensures data accuracy and system stability for servers and workstations. Upgrade with reliability at 1.2V power efficiency.
High‑performance 8 GB DDR3 memory module, 1600 MHz, 2Rx8 ECC, 1.35V, UDIMM form factor for server and workstation use—stable, error‑correcting RAM for reliable data integrity.
Enhance desktop performance with a 4GB DDR3 1600MHz UDIMM memory module, 240-pin, 1Rx8, non-ECC, 1.35V. Provides reliable multitasking and quicker load times for everyday applications and lightweight workloads.
Upgrade your system with a 16 GB DDR5 UDIMM module from Origin Storage, delivering 5600 MHz speed and 1.1 V operation for smooth multitasking and gaming performance.
Boost your PC with Lenovo’s 4GB DDR3 1600 MHz UDIMM, delivering smooth multitasking and reliable performance for everyday computing. Its low‑profile design fits compact builds, while the 1.5 V operation keeps power consumption minimal, giving faster load times and seamless application switching.
Upgrade your system with Origin Storage's 16GB DDR4 2666MHz UDIMM memory module. Featuring a 2RX8 design and ECC technology, this reliable memory ensures smooth performance for demanding applications while operating at 1.2V.
The ADATA XPG Lancer Blade is a 32GB memory kit that includes two 16GB DDR5 modules with speeds of 6400 MHz. It is designed for gaming and other high-performance applications, and supports ECC error correction and XMP 3.0 overclocking profiles.
Boost your computer's performance with the Origin Storage 4GB DDR3 1600MHz UDIMM RAM module, featuring non-ECC and low voltage 1.35V for enhanced stability. Perfect for upgrading memory in compatible systems.
Boost your system's performance with the Origin Storage 8GB DDR3 1600MHz UDIMM memory module. Featuring ECC for error correction and a reliable 1.35V operation, this module is ideal for servers requiring stability and efficiency.
Boost your system's performance with Origin Storage's 8GB DDR3 1600MHz ECC memory module, featuring UDIMM form factor and low voltage for reliability and efficiency in demanding computing environments.



































