MSI Gaming GE76 10UH-607CA Dragon Tiamat RAM upgrade specifications

The MSI GE76 10UH-607CA Dragon Tiamat gaming laptop features two SO-DIMM slots supporting DDR4-SDRAM memory upgrades. Maximum RAM capacity reaches 64 GB total, with compatible modules operating at 3200 MHz frequency. The GE series gaming model accepts standard SO-DIMM form factor memory modules for expansion. Current memory specifications allow for significant upgrade potential within the Gaming family specifications framework.

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 date29 March 2021

Additional Notes

  • The MSI GE76 10UH-607CA Dragon Tiamat contains 2 memory slots operating in a dual-channel configuration, which means any single-module upgrade will forfeit performance gains unless both slots remain populated with matched capacity modules.
  • DDR4-3200 MHz modules represent the upper specification ceiling for this platform; faster DDR4 variants (3600 MHz and beyond) may function but will downclock to 3200 MHz, making premium-speed modules unnecessary and uneconomical.
  • The 64 GB maximum capacity indicates that replacement modules must be 32 GB per slot to reach the upper limit; 16 GB modules will leave 32 GB total upgrade headroom if retention of the original DIMMs is planned.
  • SO-DIMM form factor (laptop standard) has strict compatibility boundaries; desktop DDR4 UDIMM modules are physically incompatible and cannot be force-fitted without hardware damage.
  • A single-slot upgrade path exists only if the system ships with existing memory; swapping 1 original module for 1 larger module preserves dual-channel operation without requiring simultaneous replacement of both DIMMs.
  • The memory subsystem operates within the 10th generation Intel processor envelope, which caps DDR4 controller frequencies at 3200 MHz; architectural constraints prevent overclocking of memory frequency above this specification.