ASUS ROG G814PM-DB96-CA RAM upgrade specifications

ASUS G814PM-DB96-CA ASUS G814PM-DB96-CA ASUS G814PM-DB96-CA ASUS G814PM-DB96-CA ASUS G814PM-DB96-CA

ASUS ROG Strix G814PM-DB96-CA laptop RAM upgrade specifications include DDR5-SDRAM memory type with 2x SO-DIMM slots supporting maximum capacity of 64 GB total. Compatible memory modules operate at 5600 MHz frequency using SO-DIMM form factor. Specifications define upgrade compatibility and maximum memory configuration for 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 ASUS ROG G814PM-DB96-CA platform imposes a 32 GB per-slot ceiling, preventing single-module configurations beyond this density despite the dual-slot architecture.
  • DDR5 operates exclusively at 1.1V, eliminating voltage compatibility issues common in DDR4 systems but requiring strict adherence to JEDEC SPD profiles for stability.
  • 5600 MHz represents the maximum validated data rate; modules rated higher will downclock to this frequency, wasting premium XMP/EXPO pricing without performance gain.
  • SO-DIMM physical dimensions mandate clearance verification in high-performance chassis where thermal solutions may obstruct DIMM slot access during installation.
  • Dual-rank modules at maximum capacity may introduce minor latency penalties compared to single-rank configurations, though bandwidth remains unchanged at specification limits.
  • Non-ECC unbuffered modules are required; registered or ECC variants will trigger POST failures due to chipset limitations in consumer mobile platforms.
  • Mixing modules with different CAS latencies forces the memory controller to adopt the slower timing across all populated slots, degrading overall subsystem responsiveness.
  • DDR5's on-die ECC operates transparently but does not provide system-level error reporting, distinguishing it from true ECC memory with OS-visible correction logs.
  • Warranty preservation requires manufacturer-approved module lists or adherence to published specifications, as unsupported configurations may void service agreements despite physical compatibility.
  • Asymmetric population between slots disables dual-channel interleaving, halving theoretical memory bandwidth and creating measurable bottlenecks in GPU-accelerated workloads.
  • Thermal throttling becomes probable at sustained high frequencies without adequate airflow, particularly in configurations approaching the 64 GB threshold where power draw accumulates.