MSI Modern 15 A10M-610XES RAM upgrade specifications

MSI 15 A10M-610XES MSI 15 A10M-610XES MSI 15 A10M-610XES MSI 15 A10M-610XES MSI 15 A10M-610XES

The MSI Modern 15 A10M-610XES laptop features DDR4-SDRAM memory upgrade specifications with dual SO-DIMM slots supporting maximum RAM capacity of 64 GB. Compatible memory modules operate at 2666 MHz frequency. The system ships with standard memory configuration and accommodates SO-DIMM form factor upgrades. Memory upgrade slots allow individual module replacement or dual-module installation for enhanced system performance. Specifications support compatible DDR4-SDRAM modules within specified frequency parameters for this MSI Modern Series 15 model.

Memory Upgrade Specifications

SpecificationValue
Memory slots2x SO-DIMM
Form factorSO-DIMM
Memory typeDDR4-SDRAM
Frequency2666 MHz
Maximum RAM64 GB
Voltage1.2V
Number of pins260-pin
InterfacePC4
PC Speed RatingPC4-2666 (PC4-21328)
Bandwidth21.3 GB/s
Laptop Release date13 April 2021

Additional Notes

  • Dual channel architecture requires matching module capacities in both SO DIMM slots to maximize memory bandwidth and prevents single channel performance degradation.
  • The processor architecture of the MSI Modern 15 A10M-610XES dictates that modules with higher frequency ratings will automatically downclock to the 2666 MHz system limit.
  • Reaching the 64 GB maximum configuration necessitates the use of high density 32 GB unbuffered modules which must be identical for system stability.
  • The physical height constraints of the chassis require standard profile SO DIMM hardware rather than modules with integrated heat spreaders which may interfere with the bottom panel.
  • The absence of soldered memory on the motherboard allows for the full replacement of the pre installed sticks without creating orphaned or incompatible memory banks.
  • Latency timings will synchronize to the slowest installed module if memory components with different CL ratings are mixed in the two available slots.
  • Upgrading memory typically permits access to more concurrent virtual machines and larger datasets within professional creative applications without relying on slower disk based swap files.