ASUS ROG G614JIR-N3024W RAM upgrade specifications

ASUS G614JIR-N3024W ASUS G614JIR-N3024W ASUS G614JIR-N3024W ASUS G614JIR-N3024W ASUS G614JIR-N3024W

ASUS ROG Strix G16 G614JIR-N3024W laptop features DDR5-SDRAM memory upgrade compatibility. Device contains 2x SO-DIMM memory slots supporting maximum RAM capacity of 32 GB total. Compatible DDR5 modules operate at 5600 MHz frequency. Memory upgrade specifications indicate SO-DIMM form factor modules are required for RAM expansion and system optimization.

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 ASUS ROG G614JIR-N3024W supports DDR5 memory at 5600 MHz, which operates at higher latency cycles than DDR4 equivalents. Bandwidth constraints may emerge if the system bus cannot fully saturate this speed, particularly during memory-intensive workloads such as video rendering or large dataset processing.
  • SO-DIMM slots limit upgrade options to laptop-specific modules. Desktop DDR5 UDIMM sticks are physically incompatible with the 2 available slots and cannot be mechanized into the form factor, restricting sourcing to mobile memory variants only.
  • The 32 GB ceiling (2 slots x 16 GB maximum per slot) establishes a fixed memory boundary. Workloads exceeding this capacity cannot be accommodated through RAM upgrades; systems requiring 48 GB or higher must rely on storage-based virtual memory or architectural changes.
  • DDR5-5600 modules may encounter JEDEC compatibility issues with older BIOS revisions. Firmware updates are often necessary to stabilize non-standard frequency profiles, and warranty coverage may be affected if modifications occur outside manufacturer-approved procedures.
  • Dual-channel memory architecture with 2 slots means that single-module configurations operate at reduced bandwidth efficiency. Pairing modules of identical capacity and timing specifications ensures optimal dual-channel performance; mismatched configurations may force single-channel operation or introduce latency penalties.