ASUS TUF Gaming FA617XS-N4036W RAM upgrade specifications

ASUS FA617XS-N4036W ASUS FA617XS-N4036W ASUS FA617XS-N4036W ASUS FA617XS-N4036W ASUS FA617XS-N4036W

ASUS TUF Gaming A16 Advantage Edition FA617XS-N4036W laptop features DDR5-SDRAM memory upgrade specifications. The system contains 2 SO-DIMM slots supporting DDR5 memory modules operating at 4800 MHz frequency. Maximum RAM capacity reaches 32 GB total, allowing users to expand memory through compatible SO-DIMM upgrades. Specifications enable performance enhancement via RAM memory expansion within the dual-slot configuration.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR5-SDRAM
Frequency4800 MHz
Maximum RAM32 GB
Voltage1.1V
Number of pins262-pin
InterfacePC5
PC Speed RatingPC5-4800 (PC5-38400)
Bandwidth38.4 GB/s

Additional Notes

  • The ASUS TUF Gaming FA617XS-N4036W implements DDR5 SO-DIMM architecture with a 4800 MHz base frequency, which represents the JEDEC standard speed rather than higher XMP profiles, eliminating potential compatibility issues with non-overclocked modules.
  • The 32 GB maximum capacity restriction suggests either CPU memory controller limitations or motherboard trace design constraints, preventing adoption of higher-density modules that exceed 16 GB per slot.
  • DDR5 modules operating at 4800 MHz deliver approximately 38.4 GB/s theoretical bandwidth per channel, though dual-channel configuration would require matched pairs for optimal interleaving performance.
  • SO-DIMM form factor modules operate at lower voltage compared to desktop UDIMM equivalents, typically 1.1V for DDR5, contributing to thermal management within compact chassis designs.
  • Upgrading beyond factory configuration requires accessing internal components, which may involve breaking manufacturer seals that could affect warranty coverage depending on regional consumer protection regulations.
  • The 2-slot configuration limits upgrade flexibility to either replacing existing modules entirely or occupying vacant slots, with no intermediate expansion paths available once both slots contain memory.
  • DDR5 architecture includes on-die ECC functionality independent of traditional ECC memory classification, providing basic error correction without requiring specific module variants.
  • Mixing modules with different CAS latencies or timing specifications may force the memory controller to downclock all modules to the slowest common denominator, potentially degrading performance below rated specifications.
  • Physical installation requires specific insertion angles for SO-DIMM retention clips, with improper seating causing POST failures or intermittent stability issues during operation.
  • Power management features integrated into DDR5 architecture enable per-module voltage regulation, allowing asymmetric configurations to function without the strict matching requirements of previous DDR generations.