ASUS ROG G835LX-XS99-CA RAM upgrade specifications

ASUS G835LX-XS99-CA ASUS G835LX-XS99-CA ASUS G835LX-XS99-CA ASUS G835LX-XS99-CA ASUS G835LX-XS99-CA

The ASUS ROG Strix SCAR 18 G835LX-XS99-CA features DDR5-SDRAM memory specifications with two SO-DIMM slots supporting maximum RAM capacity of 64 GB. Compatible memory upgrade modules operate at 5600 MHz frequency. The laptop accommodates SO-DIMM form factor memory modules, enabling users to upgrade existing memory configurations. Specifications indicate dual memory slots available for DDR5 memory expansion, supporting high-speed performance compatible with the system architecture of this gaming laptop model.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR5-SDRAM
Frequency5600 MHz
Maximum RAM64 GB
Voltage1.1V
Number of pins262-pin
InterfacePC5
PC Speed RatingPC5-5600 (PC5-44800)
Bandwidth44.8 GB/s

Additional Notes

  • The presence of two physical slots indicates a non soldered configuration which allows for the replacement of both factory modules to reach the maximum supported capacity.
  • High frequency DDR5 signaling requires precise seating within the sockets to maintain system stability and prevent boot failures caused by signal interference.
  • Upgrading the ASUS ROG G835LX-XS99-CA to its 64 GB threshold necessitates a matched pair of 32 GB modules to ensure the integrated memory controller operates in a dual channel configuration.
  • Installing modules with lower frequency ratings will force the entire memory bus to downclock which creates a bandwidth bottleneck for the processor.
  • The SO-DIMM form factor limits component height meaning modules equipped with tall integrated heat spreaders will likely interfere with the bottom chassis panel.
  • Mismatching the timings between two different memory sticks will cause the system to default to the slowest common denominator which increases overall latency during heavy workloads.
  • Total memory capacity is restricted by the motherboard firmware and processor address space regardless of whether larger capacity modules physically fit the slots.