Lenovo
P7 16AFR10H R9 32G 2T 11P
In Stock
Lenovo Legion Pro 7 16AFR10H Ryzen 9 9955HX3D, 32 GB, 2 TB | Gaming Laptop
Lenovo
MPN: 83RU0006US
$4,036.15$4,219.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- AMD Ryzen 9 9955HX3D processor
- NVIDIA GeForce RTX 5080 with 16 GB GDDR6-class graphics memory
- 32 GB system memory
- 2 TB PCIe Gen 5 SSD
- 16-inch WQXGA non-touch display
- Wi‑Fi 7 2x2 BE wireless
- 99.9 Wh battery
- 400 W power adapter
Sustain high frame rates, fast renders, and responsive multitasking with the Lenovo Legion Pro 7 16AFR10H. Built around the AMD Ryzen 9 9955HX3D and NVIDIA GeForce RTX 5080 16 GB, it is tuned for workloads that punish weaker thermals and slower storage. The 32 GB memory configuration and 2 TB PCIe Gen 5 SSD keep large game libraries, project files, and active applications moving without bottlenecks.
The 16-inch WQXGA non-touch display gives you the workspace needed for competitive play, editing timelines, and split-screen productivity. Wi‑Fi 7 and Bluetooth 5.4 support modern wireless environments, while the 5 MP RGB webcam helps maintain a sharper presence in meetings and streams. A 99.9 Wh battery, 400 W power adapter, and per-key RGB backlit keyboard round out a machine designed to perform like a desktop when you need it, then move when you do.
For teams and power users who want more than a spec sheet, this Legion Pro 7 delivers the kind of headroom that justifies the premium: faster asset loads, stronger sustained throughput, and a display and thermal platform built for serious use.
Ideal For
- High-FPS gaming on a 16-inch mobile platform
- 3D rendering and GPU-accelerated content creation
- Software development with large local builds and containers
- Executive travel workstation for demanding multitasking
Why This Product
- 1Faster sustained performance than mainstream gaming laptops
- 2More graphics headroom than RTX 4070-class systems
- 3Larger 2 TB Gen 5 SSD for heavy game and project libraries
- 4Premium thermal and power design for demanding workloads
