ASUS ROG G513IH-HN004 RAM upgrade specifications
ASUS ROG Strix G15 model G513IH-HN004 features DDR4-SDRAM memory upgrade capabilities. The laptop contains 2x SO-DIMM slots for RAM expansion, supporting maximum memory capacity of 32 GB. Compatible memory operates at 3200 MHz frequency specifications. Upgrade options utilize SO-DIMM form factor modules, enabling users to expand memory configurations up to the specified maximum capacity.
Memory Upgrade Specifications
| Specification | Value |
|---|---|
| Memory slots | 2x SO-DIMM |
| Form factor | SO-DIMM |
| Memory type | DDR4-SDRAM |
| Frequency | 3200 MHz |
| Maximum RAM | 32 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 | 19 November 2021 |
Additional Notes
- The dual channel architecture implies that installing two identical modules is necessary to achieve the specific peak bandwidth required for the Ryzen processor to maintain optimal Infinity Fabric clock speeds.
- Upgrading the ASUS ROG G513IH-HN004 requires 1.2V modules as high voltage XMP profiles are generally unsupported by the firmware in this mobile series.
- Physical access to the dual SO-DIMM slots necessitates the removal of the bottom chassis cover and careful disconnection of the internal battery to prevent short circuits during module replacement.
- Replacing a factory single stick configuration with a matched pair reduces memory latency and prevents the performance bottlenecks often found in integrated graphics tasks.
- The 32 GB ceiling dictates that 16 GB is the maximum density supported per slot, meaning 32 GB or 64 GB single sticks will likely result in a failure to boot.
- Internal space constraints within the chassis prohibit the use of memory modules equipped with thick aftermarket heat spreaders or passive cooling fins.
- The system logic allows for mixing different brands but automatically downclocks both modules to the frequency of the slowest installed stick to maintain synchronous timing.