ASUS ROG GX650PZ-N4004W RAM upgrade specifications

ASUS GX650PZ-N4004W ASUS GX650PZ-N4004W ASUS GX650PZ-N4004W ASUS GX650PZ-N4004W ASUS GX650PZ-N4004W

ASUS ROG Zephyrus Duo 16 GX650PZ-N4004W memory upgrade specifications include DDR5-SDRAM compatible RAM modules. The laptop features 2x SO-DIMM slots supporting maximum RAM capacity of 64 GB. Memory operates at 4800 MHz frequency. Compatible upgrades utilize SO-DIMM form factor DDR5 modules. Maximum specifications allow dual-channel DDR5 configuration for enhanced performance. Memory upgrade options accommodate standard DDR5-SDRAM components within the specified frequency and capacity parameters.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR5-SDRAM
Frequency4800 MHz
Maximum RAM64 GB
Voltage1.1V
Number of pins262-pin
InterfacePC5
PC Speed RatingPC5-4800 (PC5-38400)
Bandwidth38.4 GB/s
Laptop Release date04 February 2023

Additional Notes

  • The presence of 2 SO-DIMM slots allows for a dual-channel configuration which doubles the theoretical memory bandwidth compared to single-channel setups.
  • Upgrading the ASUS ROG GX650PZ-N4004W to the 64 GB maximum requires the removal of all existing modules because no additional unoccupied slots are available.
  • The hardware architecture utilizes a 262-pin physical interface which prevents the installation of older DDR4 or desktop-class DIMM modules.
  • Internal memory controllers will downclock any high-speed enthusiast modules to the 4800 MHz baseline to maintain system stability and signal integrity.
  • System latency is governed by the DDR5 sub-timing profiles which prioritize high-bandwidth data transfers for rendering and gaming over raw response times found in previous generations.
  • Accessing the memory slots involves removing the bottom chassis panel which may expose sensitive internal components to electrostatic discharge during the installation process.
  • Reaching the 64 GB threshold facilitates improved performance in memory-intensive professional workloads such as 4K video editing and virtual machine hosting without relying on slower disk-based swap files.