MSI Gaming GF63 11SC-465NL Thin RAM upgrade specifications

MSI GF63 11SC-465NL Thin MSI GF63 11SC-465NL Thin MSI GF63 11SC-465NL Thin MSI GF63 11SC-465NL Thin MSI GF63 11SC-465NL Thin

MSI GF63 11SC-465NL Thin gaming laptop supports DDR4-SDRAM memory upgrades with maximum capacity of 64 GB. The system features 2x SO-DIMM slots for memory expansion. Compatible RAM modules operate at 3200 MHz frequency. Specifications indicate SO-DIMM form factor compatible with upgrade components. MSI Gaming GF series configuration allows users to upgrade existing memory to reach specified maximum RAM capacity through available SO-DIMM slots.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR4-SDRAM
Frequency3200 MHz
Maximum RAM64 GB
Voltage1.2V
Number of pins260-pin
InterfacePC4
PC Speed RatingPC4-3200 (PC4-25600)
Bandwidth25.6 GB/s
Laptop Release date26 January 2022

Additional Notes

  • Dual channel memory architecture requires installing matching pairs of modules to maximize available memory bandwidth for the processor.
  • The MSI GF63 11SC-465NL Thin utilizes a mobile form factor requiring 260 pin modules which are incompatible with desktop sized hardware.
  • System stability depends on using non ECC unbuffered modules as the chipset does not support error correction protocols.
  • Upgrading to the maximum 64 GB capacity necessitates replacing both existing modules since no additional expansion slots exist beyond the two provided.
  • Internal component access involves removing the entire bottom chassis plate which may trigger warranty seal inspections in specific regional markets.
  • Thermal constraints of the thin chassis design mean high performance modules with thick integrated heat spreaders might interfere with the bottom cover clearance.
  • The integrated memory controller will downclock any modules exceeding 3200 MHz to the maximum supported frequency of the 11th Gen architecture.
  • Populating both slots with identical density sticks reduces latency and improves frame rate stability in memory intensive applications.