ASUS ROG G614JIR-N4002W/R RAM upgrade specifications

ASUS G614JIR-N4002W/R ASUS G614JIR-N4002W/R ASUS G614JIR-N4002W/R ASUS G614JIR-N4002W/R ASUS G614JIR-N4002W/R

ASUS ROG Strix G16 model G614JIR-N4002W/R supports DDR5-SDRAM memory upgrades. The laptop contains two SO-DIMM slots for RAM expansion, with maximum compatible capacity of 32 GB total. Memory specifications include 5600 MHz frequency support. Users can upgrade the existing memory by installing compatible DDR5 SO-DIMM modules into the available slots to enhance system performance and multitasking capabilities.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR5-SDRAM
Frequency5600 MHz
Maximum RAM32 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 implies that the factory memory configuration likely occupies both pathways, requiring the removal of existing modules to reach the maximum threshold.
  • Operating at a 5600 MHz frequency necessitates the use of memory modules with matching integrated circuits to maintain synchronized timing and prevent automatic downclocking to lower JEDEC standards.
  • The 32 GB capacity limit indicates a firmware-level or chipset restriction that prevents the utilization of high-density 32 GB or 48 GB single sticks in the ROG Strix G16 G614JIR-N4002W/R motherboard.
  • Dual-channel architecture benefits significantly from symmetrical pairings, meaning mismatched module capacities will result in asynchronous mode and reduced memory bandwidth for the processor.
  • DDR5 architecture incorporates on-die ECC and internal power management circuits, which increases thermal output compared to older standards and relies on the internal chassis airflow for stability during sustained workloads.
  • Accessing the memory slots involves removing the bottom panel, which often requires a plastic pry tool to avoid damaging the integrated lighting cables or the physical retention clips of the housing.
  • Latency performance depends on the CAS latency rating of the replacement hardware, as the system will default to the slowest common denominator if two different modules are installed together.