MSI Gaming GS65 8RF-009 Stealth Thin RAM upgrade specifications

MSI GS65 8RF-009 Stealth Thin MSI GS65 8RF-009 Stealth Thin MSI GS65 8RF-009 Stealth Thin MSI GS65 8RF-009 Stealth Thin MSI GS65 8RF-009 Stealth Thin

The MSI GS65 8RF-009 Stealth Thin Gaming series laptop features DDR4-SDRAM memory upgrade specifications. The system contains 2x SO-DIMM slots for RAM expansion. Maximum compatible memory capacity reaches 32 GB total. Memory modules operate at 2666 MHz frequency. Upgrade specifications support standard SO-DIMM form factor modules. The MSI GS65 8RF-009 Stealth Thin model accommodates DDR4 memory upgrades within these technical parameters.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR4-SDRAM
Frequency2666 MHz
Maximum RAM32 GB
Voltage1.2V
Number of pins260-pin
InterfacePC4
PC Speed RatingPC4-2666 (PC4-21328)
Bandwidth21.3 GB/s
Laptop Release date21 February 2019

Additional Notes

  • The internal motherboard layout of the MSI GS65 8RF-009 Stealth Thin utilizes a flipped design where the RAM slots face the keyboard deck rather than the bottom panel.
  • Hardware upgrades require a full removal of the mainboard from the chassis which risks damage to delicate ribbon cables and may void factory seals in certain jurisdictions.
  • Dual channel memory architecture is only achievable when installing 2 matching modules to maximize integrated and discrete processing bandwidth.
  • Installing memory with higher clock speeds results in automatic downclocking to the 2666 MHz processor limit dictated by the 8th generation Intel chipset.
  • Thermal constraints within the slim chassis favor modules with standard profiles as thick aftermarket heat spreaders can interfere with the internal clearance.
  • Total system capacity is restricted to 16 GB per slot due to the BIOS addressing limits of this specific hardware generation.
  • Mixing modules with different CAS latencies forces the system to operate at the timings of the slower stick which can introduce micro stuttering during high load cycles.