ASUS ROG G733QS-HG271T RAM upgrade specifications
The ASUS ROG Strix SCAR 17 G733QS-HG271T laptop features DDR4-SDRAM memory upgrade specifications with 2 SO-DIMM slots supporting maximum RAM capacity of 64 GB. Compatible memory modules operate at 3200 MHz frequency and utilize the SO-DIMM form factor. The upgrade slots accommodate dual modules for enhanced performance scaling. Specifications indicate support for high-capacity memory expansion to reach the 64 GB maximum threshold on this gaming laptop model.
Memory Upgrade Specifications
| Specification | Value |
|---|---|
| Memory slots | 2x SO-DIMM |
| Form factor | SO-DIMM |
| Memory type | DDR4-SDRAM |
| Frequency | 3200 MHz |
| Maximum RAM | 64 GB |
| Voltage | 1.2V |
| Number of pins | 260-pin |
| Interface | PC4 |
| PC Speed Rating | PC4-3200 (PC4-25600) |
| Bandwidth | 25.6 GB/s |
| Laptop Release date | 07 August 2021 |
Additional Notes
- The dual channel architecture requires symmetrical pair installation to achieve maximum memory bandwidth, as single module configurations will result in significant performance penalties during heavy CPU workloads.
- Upgrading the ASUS ROG G733QS-HG271T to the 64 GB limit necessitates the replacement of both factory modules since the system lacks additional vacant slots for expansion.
- Memory modules with integrated XMP profiles may default to slower JEDEC speeds because the mobile chipset often lacks BIOS level voltage and timing adjustments for overclocked RAM.
- The use of high density 1Rx16 modules instead of 1Rx8 or 2Rx8 variants can create a bottleneck in frame rates during memory intensive gaming scenarios.
- Thermal constraints within the chassis dictate that modules must lack thick heat spreaders to ensure physical clearance and prevent heat soak from neighboring components.
- Voltage compatibility is restricted to 1.2V DDR4 standards, meaning 1.35V desktop grade gaming memory will fail to initialize or cause system instability.
- Installing 3200 MHz modules with higher CAS latency than the original components will increase system wide memory access times despite maintaining the same clock frequency.