MSI Gaming GP75 9SD-428CA Leopard RAM upgrade specifications
The MSI GP75 9SD-428CA Leopard gaming laptop features 2x SO-DIMM memory slots supporting DDR4-SDRAM upgrades at 2666 MHz frequency. The maximum RAM capacity for this GP series model is 64 GB total. Compatible memory upgrades utilize the SO-DIMM form factor specifications. Current memory configuration and available slots allow users to expand laptop RAM capacity through standard DDR4 modules. The MSI Gaming GP75 9SD-428CA Leopard accepts DDR4-SDRAM upgrades to achieve maximum memory specifications of 64 GB across dual memory slots.
Memory Upgrade Specifications
| Specification | Value |
|---|---|
| Memory slots | 2x SO-DIMM |
| Form factor | SO-DIMM |
| Memory type | DDR4-SDRAM |
| Frequency | 2666 MHz |
| Maximum RAM | 64 GB |
| Voltage | 1.2V |
| Number of pins | 260-pin |
| Interface | PC4 |
| PC Speed Rating | PC4-2666 (PC4-21328) |
| Bandwidth | 21.3 GB/s |
| Laptop Release date | 13 May 2019 |
Additional Notes
- The dual-slot configuration facilitates a dual-channel memory architecture which provides essential bandwidth for the MSI GP75 9SD-428CA Leopard to avoid CPU processing delays during intensive gaming tasks.
- Utilizing memory modules with speeds exceeding 2666 MHz results in automatic downclocking to the system bus limit imposed by the architectural chipset.
- Installation of 64 GB of memory requires the removal of all existing factory modules because the motherboard lacks additional vacant slots for incremental expansion.
- The SO-DIMM form factor necessitates the use of small-outline modules designed for mobile platforms rather than standard desktop DIMM hardware.
- Memory upgrades involving different timings or densities between the 2 slots can cause system instability or force the hardware into a slower single-channel mode.
- Accessing the memory slots requires the removal of the entire bottom chassis panel which involves breaking factory seals and potentially impacting regional warranty terms.
- Maximum capacity support for 32 GB modules in each slot ensures sufficient overhead for high-resolution video editing and virtual machine environments beyond standard gaming requirements.