ASUS TUF Gaming PX707ZM-KH101X RAM upgrade specifications

ASUS PX707ZM-KH101X ASUS PX707ZM-KH101X ASUS PX707ZM-KH101X ASUS PX707ZM-KH101X ASUS PX707ZM-KH101X

The ASUS TUF Gaming F17 PX707ZM-KH101X features DDR5-SDRAM memory upgrade specifications with two SO-DIMM slots supporting maximum capacity of 32 GB. Compatible RAM modules operate at 4800 MHz frequency. The laptop's memory slots accommodate standard SO-DIMM form factor DDR5 modules, enabling users to expand system memory for enhanced multitasking and performance capabilities. Upgrade options allow installation of DDR5-SDRAM modules in both available slots to reach maximum specifications.

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 date22 October 2022

Additional Notes

  • Dual channel mode requires identical module capacities across both slots to maintain peak memory bandwidth and prevent synchronous timing drops.
  • The maximum supported capacity limits overhead for heavy virtualization or professional 4K video editing workflows that exceed 32 GB of data caching.
  • Physical access to the SO-DIMM slots typically requires the removal of the chassis base plate which may involve varying screw lengths and plastic clips.
  • Latency performance depends on the integrated memory controller of the processor interacting with the fixed 4800 MHz frequency ceiling of the ASUS TUF Gaming PX707ZM-KH101X architecture.
  • Replacing factory modules with higher latency kits will result in a system wide performance regression as the BIOS defaults to the slowest installed timing profile.
  • Non ECC unbuffered modules are mandatory for stability since the hardware logic does not support error correction protocols.
  • Operating 2 modules at the rated frequency ensures the full utilization of the DDR5 bus width compared to single channel configurations which cut throughput by half.