ASUS ROG GV601VI-NL003W RAM upgrade specifications
ASUS ROG Flow X16 GV601VI-NL003W laptop supports DDR5-SDRAM memory upgrades through two SO-DIMM slots. Maximum memory capacity reaches 64 GB total. Compatible RAM operates at 4800 MHz frequency. Upgrade specifications enable memory expansion beyond factory configuration. Specifications confirm SO-DIMM form factor compatibility for replacement and upgrade purposes.
Memory Upgrade Specifications
| Specification | Value |
|---|---|
| Memory slots | 2x SO-DIMM |
| Form factor | SO-DIMM |
| Memory type | DDR5-SDRAM |
| Frequency | 4800 MHz |
| Maximum RAM | 64 GB |
| Voltage | 1.1V |
| Number of pins | 262-pin |
| Interface | PC5 |
| PC Speed Rating | PC5-4800 (PC5-38400) |
| Bandwidth | 38.4 GB/s |
Additional Notes
- The presence of 2 physical SO-DIMM slots confirms that no memory is soldered to the motherboard, allowing for the replacement of both factory modules to reach the maximum 64 GB threshold.
- Utilizing both memory channels maximizes the available bandwidth for the CPU, which is critical for preventing bottlenecks during high-resolution video rendering or complex computational tasks.
- Mixing modules with different timings or ranks can result in the system defaulting to the slowest shared latency profile or causing stability issues during boot.
- The ASUS ROG GV601VI-NL003W architecture requires DDR5 modules, which are physically incompatible with older DDR4 slots due to the shifted alignment notch and voltage regulation changes.
- Installing 64 GB of RAM enables the elimination of page file swapping to the SSD, extending the lifespan of the primary storage drive by reducing unnecessary write cycles.
- Standard 4800 MHz stability is contingent on the internal memory controller efficiency, meaning higher speed aftermarket kits will downclock to the maximum supported system bus frequency.
- Accessing the memory slots typically involves removing the bottom chassis panel, which requires careful handling of internal ribbon cables to avoid voiding protection for accidental hardware damage.