GOODRAM 16GB DDR5 4800MHz CL40 UDIMM
2,199د.م. 2,529د.م.
GOODRAM 16GB DDR5 4800MHz – High-Speed Performance RAM
Goodram DDR5 memories represent unprecedented performance and a huge leap in technology compared to earlier generations. Users of platforms adapted to the latest standard will certainly appreciate the difference – DDR5 DRAMs represent approximately a 50% increase in bandwidth compared to generation four, as well as twice the number of banks. Stability at such high clock rates is guaranteed by the power management integrated circuit, or PMIC, being built.
Capacity: 16GB (1x16GB)
Type: DDR5 UDIMM (Desktop)
Speed: 4800MHz
Latency: CL40
Format: Non-ECC, Unbuffered
Perfect for: Workstations, gaming PCs & multitasking setups
Why Choose GOODRAM DDR5?
Ultra-fast speeds for better multitasking
Smooth gaming and app performance
Reliable quality from a trusted brand
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GOODRAM DDR5 DIMM
Step into the future
Goodram DDR5 memories represent unprecedented performance and a huge leap in technology compared to earlier generations. Users of platforms adapted to the latest standard will certainly appreciate the difference – DDR5 DRAMs represent approximately a 50% increase in bandwidth compared to generation four, as well as twice the number of banks. Stability at such high clock rates is guaranteed by the power management integrated circuit, or PMIC, being built.

Key features
- Available capacities:
16 GB
- DIMM form factor
- supply voltage 1,1 V
- frequency: 4800 MHz
- lifetime warranty + technical support

High efficiency
The advantages of using Goodram modules of the latest generation include: more efficient operation and loading of the system, smooth switching between applications, or faster work with a large number of open browser windows. The use of appropriate technological solutions makes it possible to achieve high clocking, low power consumption and maintain the stability of module operation.

Reliability
Goodram’s fifth-generation modules use On-Die ECC technology, which allows for almost complete elimination of bit errors. This translates into high reliability of the modules during the most complex operations.
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