MSI Prestige P65 Creator-1084 RAM upgrade specifications

MSI P65 Creator-1084 MSI P65 Creator-1084 MSI P65 Creator-1084 MSI P65 Creator-1084 MSI P65 Creator-1084

MSI Prestige P Series P65 Creator-1084 laptop RAM upgrade specifications include DDR4-SDRAM memory compatible with 2x SO-DIMM slots. Maximum memory capacity reaches 64 GB total, supporting DDR4-2400 MHz frequency. SO-DIMM form factor modules are required for compatible upgrades. Current memory configuration and available slot capacity determine feasible upgrade options for the P65 Creator-1084 model.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR4-SDRAM
Frequency2400 MHz
Maximum RAM64 GB
Voltage1.2V
Number of pins260-pin
InterfacePC4
PC Speed RatingPC4-2400 (PC4-19200)
Bandwidth19.2 GB/s
Laptop Release date16 September 2019

Additional Notes

  • The internal motherboard layout of the MSI Prestige P65 Creator-1084 uses a flipped orientation that requires the removal of the entire mainboard to access the SODIMM slots for memory replacement.
  • Dual channel architectural benefits are only realized when matching modules occupy both slots to increase memory bandwidth for rendering tasks.
  • Installing modules with frequencies exceeding 2400 MHz results in automatic downclocking to the system bus limit determined by the processor and motherboard chipset.
  • The 64 GB maximum capacity necessitates the use of high density 32 GB unbuffered non ECC sticks which may generate more heat within the thin chassis compared to lower capacity modules.
  • Structural integrity of the delicate ribbon cables connected to the motherboard is a primary risk factor during the physical upgrade process due to the inverted slot positioning.
  • System latency is fixed by the CAS timings of the slower module if two different brands or speeds are installed simultaneously.
  • Inverted motherboard designs often require the detachment of the cooling solution to reach the RAM which involves thermal paste reapplication to maintain heat dissipation efficiency.