ASUS ROG G635LW-RW120W RAM upgrade specifications

ASUS G635LW-RW120W ASUS G635LW-RW120W ASUS G635LW-RW120W ASUS G635LW-RW120W

ASUS ROG Strix SCAR 16 model G635LW-RW120W supports DDR5-SDRAM memory upgrades via two SO-DIMM slots. Maximum RAM capacity reaches 64 GB total. Specifications indicate compatible memory operates at 5600 MHz frequency. Upgrade slots accommodate standard SO-DIMM form factor modules. The gaming laptop's memory specifications enable substantial RAM expansion for enhanced multitasking and performance demands.

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 2 SO-DIMM slots confirms that the system operates in a dual channel configuration when both slots are populated, which is necessary to maximize the available memory bandwidth.
  • The 5600 MHz frequency indicates that this ASUS ROG G635LW-RW120W utilizes a high speed DDR5 architecture where latency is typically higher than DDR4 equivalents but data transfer rates are significantly increased for cache intensive workloads.
  • Achieving the 64 GB maximum capacity requires the removal of any factory installed modules since the motherboard lacks soldered memory and relies entirely on the 2 physical slots.
  • Mixing modules with different timings or frequencies will likely result in the system downclocking all memory to the lowest common denominator to maintain stability.
  • The use of DDR5 SO-DIMM modules implies the hardware is incompatible with any older DDR4 components due to different physical keying and distinct voltage requirements.
  • Because the maximum supported capacity is 64 GB, the chipset and BIOS are validated for 32 GB modules in each slot but will likely reject higher density 48 GB or 64 GB individual sticks.
  • System stability at the 5600 MHz rated speed depends on the integrated memory controller within the processor, as higher capacities can sometimes force a reduction in clock speed during heavy multitasking.