ASUS TUF Gaming FA507NUR-LP012W RAM upgrade specifications
The ASUS TUF Gaming A15 FA507NUR-LP012W laptop features DDR5-SDRAM memory with two SO-DIMM slots for RAM upgrade compatibility. The specifications support a maximum RAM capacity of 64 GB total, with memory operating at 4800 MHz frequency. Each upgrade slot accommodates standard SO-DIMM form factor modules, enabling users to expand the system memory from the factory configuration. The DDR5 memory specifications deliver enhanced performance characteristics for gaming and computational workloads on the TUF Gaming A15 platform.
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
- Dual channel architecture requires matching memory module pairs to achieve peak data transfer rates and minimize integrated graphics latency.
- The presence of 2 physical SO-DIMM slots in the ASUS TUF Gaming FA507NUR-LP012W ensures that factory memory is not soldered to the motherboard, permitting a total replacement of the existing hardware.
- Operating at 4800 MHz frequency necessitates high quality thermal pads on high density modules to prevent heat throttling during sustained computational loads.
- Utilizing the 64 GB maximum capacity involves installing 2 32 GB modules, which significantly expands the overhead for virtual machines and 4K video editing buffers.
- Installing modules with lower latency timings than the system default may result in the BIOS downclocking the memory to ensure stability within technical voltage limits.
- Accessing the memory slots requires the removal of the bottom chassis panel, which exposes sensitive internal components to potential electrostatic discharge risks during the upgrade process.
- The transition to DDR5 technology provides independent power management integrated circuits on each module, shifting voltage regulation from the motherboard to the RAM itself.