ASUS ROG G713RM-KH005W RAM upgrade specifications

ASUS G713RM-KH005W ASUS G713RM-KH005W ASUS G713RM-KH005W ASUS G713RM-KH005W ASUS G713RM-KH005W

ASUS ROG Strix G17 G713RM-KH005W RAM upgrade specifications indicate DDR5-SDRAM memory compatibility. The laptop features 2x SO-DIMM slots supporting maximum RAM capacity of 32 GB total. Memory modules operate at 4800 MHz frequency. Upgrade specifications confirm SO-DIMM form factor compatibility for DDR5-SDRAM memory modules. Maximum supported memory capacity reaches 32 GB with compatible DDR5 upgrades installed in available slots.

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
Laptop Release date25 May 2022

Additional Notes

  • The ASUS ROG G713RM-KH005W features DDR5 technology, which operates at higher voltages than DDR4 and requires physically incompatible modules due to shifted notch positions.
  • The 32 GB maximum capacity indicates chipset or BIOS limitations that prevent recognition of higher-density modules, even if physically installable.
  • DDR5 SO-DIMM modules function with on-die ECC, automatically correcting single-bit errors without user configuration or performance penalties.
  • The dual-channel architecture with 2 slots delivers optimal bandwidth when populated with matched capacity modules rather than mixing different sizes.
  • Operating at 4800 MHz represents the JEDEC baseline speed for DDR5, providing theoretical bandwidth of 38.4 GB/s per channel when both slots are populated.
  • Modules rated above 4800 MHz will typically downclock to this speed unless XMP/EXPO profiles exist and BIOS support is present, though laptop implementations rarely enable such overclocking.
  • Accessing the SO-DIMM slots typically requires bottom panel removal, which may involve multiple screw types and could affect warranty status depending on regional regulations.
  • Mixing modules with different CAS latencies will force all memory to operate at the slowest common timings, potentially negating speed advantages of faster-rated modules.
  • DDR5's higher baseline speed compared to DDR4 reduces relative performance gains from frequency increases, making timing optimization more critical for responsiveness.
  • The SO-DIMM form factor restricts upgrade options to laptop-specific modules, which typically carry price premiums over desktop DIMM equivalents with identical specifications.