ASUS TUF Gaming FX507ZV4-LP003 RAM upgrade specifications
ASUS TUF Gaming F15 FX507ZV4-LP003 laptop features two SO-DIMM slots supporting DDR5-SDRAM memory modules. The upgrade specifications indicate maximum capacity of 32 GB total RAM at 3200 MHz frequency. Compatible memory modules must utilize SO-DIMM form factor for proper installation in available slots. Current specifications and upgrade paths are compatible with DDR5 technology, enabling enhanced multitasking performance and gaming capabilities.
Memory Upgrade Specifications
| Specification | Value |
|---|---|
| Memory slots | 2x SO-DIMM |
| Form factor | SO-DIMM |
| Memory type | DDR5-SDRAM |
| Frequency | 3200 MHz |
| Maximum RAM | 32 GB |
| Voltage | 1.1V |
| Number of pins | 262-pin |
| Interface | PC5 |
| PC Speed Rating | PC5-3200 (PC5-25600) |
| Bandwidth | 25.6 GB/s |
| Laptop Release date | 26 January 2023 |
Additional Notes
- The ASUS TUF Gaming FX507ZV4-LP003 uses SO-DIMM slots, which are laptop-specific form factors incompatible with standard desktop DDR5 modules, restricting replacement options to mobile-grade memory.
- DDR5-3200 memory operates at lower frequencies than high-performance DDR5 variants (5600+), creating a ceiling on memory bandwidth that may constrain sustained throughput in applications performing intensive data processing or large dataset manipulation.
- A 32 GB maximum capacity with 2 slots means each slot supports 16 GB modules; upgrading requires replacing both existing DIMMs simultaneously rather than adding capacity incrementally.
- SO-DIMM installation requires removing the bottom panel; any RAM upgrade voids manufacturer coverage unless performed by authorized service centers, making post-warranty upgrades a non-warranty event.
- DDR5-3200 frequency alignment suggests the memory controller operates at this speed specification; aftermarket DDR5 modules rated for 4800+ MHz will downclock to 3200 MHz, eliminating performance gains from higher-spec purchases and wasting upgrade budget.
- Dual-channel memory configuration across 2 slots provides symmetric bandwidth; a single populated slot would halve effective memory throughput, making population imbalance a performance penalty rather than a viable upgrade strategy.