ASUS ROG G614PM-S5084W RAM upgrade specifications

ASUS G614PM-S5084W ASUS G614PM-S5084W ASUS G614PM-S5084W ASUS G614PM-S5084W ASUS G614PM-S5084W

ASUS ROG Strix G16 model G614PM-S5084W features DDR5-SDRAM memory upgrade specifications. The laptop supports 2x SO-DIMM slots with maximum capacity of 64 GB total RAM. Compatible memory operates at 5200 MHz frequency using SO-DIMM form factor. Upgrade options allow configuration of DDR5 modules to enhance system performance and multitasking capabilities within the specified slot and capacity constraints.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR5-SDRAM
Frequency5200 MHz
Maximum RAM64 GB
Voltage1.1V
Number of pins262-pin
InterfacePC5
PC Speed RatingPC5-5200 (PC5-41600)
Bandwidth41.6 GB/s

Additional Notes

  • DDR5-SDRAM modules require motherboard-level voltage regulation, preventing any DDR4 module compatibility regardless of physical form factor matching.
  • The ASUS ROG G614PM-S5084W accommodates dual-channel configuration through 2 occupied slots, leaving no reserve capacity for future expansion beyond initial upgrade planning.
  • The 64 GB ceiling imposes a maximum 32 GB per module density requirement, excluding higher-capacity single-module configurations even if physically compatible.
  • 5200 MHz represents JEDEC standard speed, meaning aftermarket modules rated at higher frequencies will downclock to this baseline unless XMP/EXPO profiles receive BIOS-level support.
  • SO-DIMM packaging restricts thermal headroom compared to desktop DIMM equivalents, potentially limiting sustained performance under memory-intensive workloads despite rated speeds.
  • Dual-rank modules at maximum capacity may introduce latency penalties versus single-rank configurations at lower densities, affecting bandwidth-sensitive applications.
  • Mixed-brand or mixed-timing modules across the 2 slots force lowest-common-denominator operation, degrading effective throughput below individual module specifications.
  • Warranty preservation typically requires non-invasive installation without seal breakage, though memory access panel design varies by chassis revision.
  • Population of both slots enables full bandwidth utilization of the dual-channel architecture, whereas single-module operation halves theoretical memory throughput regardless of capacity.
  • 5200 MHz operation depends on CPU memory controller support, with older or lower-tier processors potentially capping effective speed below module ratings.