ASUS TUF Gaming FA507NU-LP132W RAM upgrade specifications

ASUS FA507NU-LP132W ASUS FA507NU-LP132W ASUS FA507NU-LP132W ASUS FA507NU-LP132W ASUS FA507NU-LP132W

ASUS TUF Gaming A15 FA507NU-LP132W laptop features dual SO-DIMM memory slots supporting DDR5-SDRAM upgrade capability. Maximum RAM capacity reaches 32 GB total, with compatible modules operating at 4800 MHz frequency. Specifications indicate two upgrade slots available for memory expansion, accommodating DDR5 SDRAM modules in SO-DIMM form factor. RAM upgrade options enable increased system memory performance for gaming and multitasking applications. Compatible memory modules must match DDR5-SDRAM specifications and SO-DIMM physical requirements for proper installation in available upgrade slots.

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

Additional Notes

  • Dual channel memory architecture is achievable only when both SO-DIMM slots contain matching modules to maximize integrated graphics performance and system bandwidth.
  • The ASUS TUF Gaming FA507NU-LP132W requires non-ECC unbuffered modules to maintain system stability and prevent boot failures.
  • Installing modules with frequencies higher than 4800 MHz will result in automatic downclocking to match the hardware limitations of the memory controller.
  • Upgrading to the 32 GB maximum capacity requires the removal of existing factory modules since no additional expansion slots are available beyond the primary two.
  • High density 16 GB modules must be single-rank or dual-rank compatible with the specific voltage requirements of the DDR5 standard to avoid thermal throttling within the chassis.
  • Physical access to the memory slots requires a teardown of the lower casing which may involve navigating internal clips that are sensitive to excessive force.
  • Memory latency timings will default to the highest common denominator if two mismatched modules are used simultaneously.