ASUS ROG G713RS-KH010 RAM upgrade specifications

ASUS G713RS-KH010 ASUS G713RS-KH010 ASUS G713RS-KH010 ASUS G713RS-KH010 ASUS G713RS-KH010

The ASUS ROG Strix G17 G713RS-KH010 gaming laptop features DDR5-SDRAM memory upgrade specifications with 2x SO-DIMM slots supporting maximum RAM capacity of 32 GB. Compatible memory modules operate at 4800 MHz frequency. Upgrade slots accommodate SO-DIMM form factor modules. The specifications enable memory expansion for enhanced multitasking and gaming performance on the G713RS-KH010 model.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR5-SDRAM
Frequency4800 MHz
Maximum RAM32 GB
Voltage1.1V
Number of pins262-pin
InterfacePC5
PC Speed RatingPC5-4800 (PC5-38400)
Bandwidth38.4 GB/s
Laptop Release date04 June 2022

Additional Notes

  • The ASUS ROG G713RS-KH010 employs DDR5 technology, eliminating backward compatibility with DDR4 modules due to fundamental differences in pin configuration and voltage requirements.
  • The 32 GB maximum capacity constraint originates from chipset limitations rather than slot count, preventing installation of higher-density modules exceeding 16 GB per SO-DIMM.
  • Dual-channel architecture requires matched pairs in both slots to achieve peak memory bandwidth, as asymmetric configurations force the controller into single-channel mode with approximately 50% throughput reduction.
  • DDR5's on-die ECC operates independently of system-level error correction, providing silent bit error mitigation without requiring registered or buffered module variants.
  • The 4800 MHz specification represents JEDEC baseline frequency for DDR5, while higher XMP/EXPO profiles may encounter stability issues without BIOS microcode supporting extended timing tables.
  • SO-DIMM form factor limits thermal headroom compared to desktop UDIMMs, causing higher-frequency modules to thermal throttle under sustained workloads without adequate chassis ventilation.
  • Mixing modules with different CAS latency timings forces the memory controller to adopt the slowest common denominator, degrading performance below the rated specification of faster modules.
  • Soldered memory configurations on some ROG variants necessitate verification of this specific model's upgradeable slot implementation before purchase of replacement modules.
  • DDR5's increased prefetch buffer depth (16n versus DDR4's 8n) delivers latency penalties in applications with random access patterns despite superior sequential bandwidth.
  • Warranty preservation requires non-invasive upgrades, as accessing memory slots typically involves bottom panel removal without breaking tamper-evident seals on other components.