Asus ROG G615LW-TS262W
The Asus ROG G615LW TS262W is a high-performance gaming laptop powered by an Intel Core Ultra 9 processor and NVIDIA GeForce RTX 5080 graphics. Featuring 32GB of DDR5 RAM, a 1TB NVMe SSD, and a 16-inch WQXGA display with a 300Hz refresh rate, it is built for demanding gaming and intensive creative workflows.
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Relative Benchmark Scoring (1–10)
vs Price Tier CompetitorsOur objective rating combines Hardware Spec Quality (measuring real-world component power benchmarked across the entire category on a 1–10 scale) with a Price-to-Value Index (evaluating technical capability relative to selling price). User reviews and merchant sponsorships do not influence this score.
- ✓Elite-tier processing power with a 24-core Intel Core Ultra 9 processor
- ✓Exceptional graphical capabilities driven by an RTX 5080 with GDDR7 memory
- ✓Extremely fluid 300Hz WQXGA display with DCI-P3 color accuracy
- ✕Heavy weight of 2.65 kg limits daily portability
- ✕Battery capacity of 90 Wh is modest given the high-power components
Official Product Documents & PDF Manuals
Complete Technical Specifications
Manufacturer-verified hardware specifications with contextual AI metric explanations.
The 1TB NVMe SSD offers fast storage access, while Wi-Fi 7 and Thunderbolt 5 future-proof your peripheral and network connections for maximum data transfer speeds.
The 300Hz refresh rate and RTX 5080 GPU ensure exceptionally smooth motion and top-tier visual fidelity, making it ideal for competitive gaming and high-end graphic design.
The 24-core processor and 32GB of DDR5 memory provide massive multitasking headroom, allowing power users and gamers to run resource-heavy applications simultaneously without performance degradation.
The 300Hz refresh rate and RTX 5080 GPU ensure exceptionally smooth motion and top-tier visual fidelity, making it ideal for competitive gaming and high-end graphic design.
The 24-core processor and 32GB of DDR5 memory provide massive multitasking headroom, allowing power users and gamers to run resource-heavy applications simultaneously without performance degradation.
