ASUS ROG G513RW-HF115W RAM upgrade specifications
ASUS ROG Strix G15 G513RW-HF115W laptop features DDR5-SDRAM memory upgrade capability through 2x SO-DIMM slots. Maximum supported RAM capacity reaches 32 GB, with compatible modules operating at 4800 MHz frequency. Current specifications and maximum memory configurations are compatible with SO-DIMM form factor modules. Upgrade slots accommodate DDR5-SDRAM technology for enhanced performance specifications on this gaming laptop model.
Memory Upgrade Specifications
| Specification | Value |
|---|---|
| Memory slots | 2x SO-DIMM |
| Form factor | SO-DIMM |
| Memory type | DDR5-SDRAM |
| Frequency | 4800 MHz |
| Maximum RAM | 32 GB |
| Voltage | 1.1V |
| Number of pins | 262-pin |
| Interface | PC5 |
| PC Speed Rating | PC5-4800 (PC5-38400) |
| Bandwidth | 38.4 GB/s |
| Laptop Release date | 30 June 2023 |
Additional Notes
- The DDR5-SDRAM requirement for the ASUS ROG G513RW-HF115W eliminates backward compatibility with DDR4 modules due to different notch positioning and voltage specifications.
- The 32 GB maximum capacity restriction is imposed by chipset limitations rather than physical slot availability, preventing installation of higher-density modules even if physically compatible.
- SO-DIMM form factor access typically requires bottom panel removal, which may involve breaking manufacturer seals that could affect warranty coverage depending on regional consumer protection laws.
- The 4800 MHz specification represents JEDEC standard speed for DDR5, meaning modules rated at higher frequencies will downclock to this baseline when installed.
- Dual-channel architecture across 2 slots requires matched pairs for optimal bandwidth utilization, as mismatched capacities force the controller into asymmetric mode with reduced performance.
- DDR5 voltage regulation occurs on-module through PMIC chips rather than motherboard-level, creating potential stability variations between different memory manufacturers even at identical speed ratings.
- The 4800 MHz frequency operates at effective transfer rates of 38.4 GB/s per channel, establishing the maximum theoretical memory bandwidth ceiling for intensive workloads.
- Thermal considerations become relevant at maximum capacity configurations, as DDR5 modules generate more heat than DDR4 predecessors, potentially triggering thermal throttling in sustained memory-intensive tasks.
- Single-rank versus dual-rank module architecture affects performance differently on this platform, with dual-rank configurations typically providing better sustained throughput at the cost of higher latency penalties.
- ECC support is absent from standard SO-DIMM DDR5 specifications at this frequency tier, limiting error correction capabilities in environments where data integrity is critical.