ASUS Vivobook M712DA-AU294T-BE RAM upgrade specifications

ASUS M712DA-AU294T-BE ASUS M712DA-AU294T-BE ASUS M712DA-AU294T-BE ASUS M712DA-AU294T-BE ASUS M712DA-AU294T-BE

ASUS Vivobook 17 Series M712DA-AU294T-BE laptop RAM upgrade specifications include DDR4-SDRAM memory compatibility with 1x SO-DIMM slot available for expansion. Maximum RAM capacity reaches 12 GB total, utilizing on-board memory combined with SO-DIMM slot configuration. Memory operates at 2400 MHz frequency. Compatible memory upgrade modules must match DDR4-SDRAM specifications for proper installation and performance with this laptop model.

Memory Upgrade Specifications

SpecificationValue
Memory slots1x SO-DIMM
Form factorOn-board + SO-DIMM
Memory typeDDR4-SDRAM
Frequency2400 MHz
Maximum RAM12 GB
Voltage1.2V
Number of pins260-pin
InterfacePC4
PC Speed RatingPC4-2400 (PC4-19200)
Bandwidth19.2 GB/s
Laptop Release date01 May 2020

Additional Notes

  • The presence of on board memory indicates that a portion of the system RAM is permanently soldered to the motherboard and cannot be replaced or upgraded.
  • System memory expansion is limited to a single physical slot, preventing the use of multi channel kits for aftermarket upgrades.
  • Total memory capacity is capped by the hard coded BIOS limit and the fixed capacity of the non removable module.
  • Installing a high speed module will result in an automatic downclock to match the base 2400 MHz frequency of the soldered memory.
  • Dual channel performance benefits only apply to the capacity that matches the soldered module, while any excess capacity on the SO DIMM operates in asynchronous single channel mode.
  • The ASUS Vivobook M712DA-AU294T-BE architecture requires specific density parity between the integrated and expansion modules to maintain optimal stability.
  • Physical access to the single SO DIMM slot involves removing the entire base panel which may require specialized prying tools to avoid damaging plastic clips.
  • Integrated Radeon graphics will allocate a portion of the available shared memory, further reducing the actual RAM available for operating system processes and applications.