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| Model | V35PK |
| CPU | Intel Core Ultra 9 185H |
| CPU Cores | 16 |
| CPU Clock Rate | 2300 MHz |
| CPU Turbo Clock Rate | 5100 MHz |
| RAM Size | 32 GB |
| Memory Type | LPDDR5x |
| GPU | NVIDIA GeForce RTX 4060 |
| SSD Capacity | 1000 GB |
| SSD Type | PCI Express 4.0 |
| Screen Size | 16.3" |
| Resolution | 3840 x 2400 |
| Panel Type | OLED |
| Refresh Rate | 90 Hz |
| Front Camera | Yes |
| Front Camera Resolution | Full HD |
| Dimensions | 358.2 mm x 240.1 mm x 18.7 mm |
| Operating System | Windows 11 Pro |
| Weight | 2.18 Kg |
| Battery Capacity | 99.5 Wh |
| Thunderbolt 4 Ports | 3 |
| Fingerprint Reader | Yes |
| Wi-Fi Generation | 7 |
| Keyboard Backlit | Yes |
(Higher is better)
Single-thread laptop performance directly affects everyday tasks like web browsing, app launching, and office work. A higher score means snappier responsiveness, faster file operations, and smoother in applications that rely on a single CPU core.
| Apple M1 Pro 8 Core (8 Cores) | 102% | |
| Intel i9-12900HX (16 Cores) | 102% | |
| Intel i7-13650HX (14 Cores) | 102% | |
| AMD 7940HS (8 Cores) | 101% | |
| Intel i7-13850HX (20 Cores) | 101% | |
| Intel i9-13900H (14 Cores) | ~ | |
| AMD 8840HS (8 Cores) | ~ | |
| Intel i7-12800HX (16 Cores) | ~ | |
| AMD 7840U (8 Cores) | ~ | |
| Apple M1 8 Core (8 Cores) | ~ | |
| Intel Core Ultra 9 185H (16 Cores) | 100% | |
| Intel i9-12900H (14 Cores) | 99% | |
| Intel i7-12850HX (16 Cores) | 99% | |
| AMD 8840U (8 Cores) | 99% | |
| AMD 7840HS (8 Cores) | 98% | |
| AMD 6980HX (8 Cores) | 97% | |
| Intel i7-12700H (14 Cores) | 97% | |
| Intel i7-13700H (14 Cores) | 97% | |
| Intel 120U (10 Cores) | 96% | |
| Intel i5-12600HX (12 Cores) | 96% | |
| Intel 150U (10 Cores) | 96% |
(Higher is better)
Multi-thread performance determines how well a laptop handles demanding workloads like video editing, 3D rendering, compiling code, and running multiple applications simultaneously. A higher score means faster export times, smoother content creation, and better overall productivity under heavy parallel workloads.
| Intel i7-14650HX (16 Cores) | 116% | |
| Intel i9-12900HX (16 Cores) | 113% | |
| Apple M4 Pro (12 Cores) | 112% | |
| Intel i7-13700HX (16 Cores) | 109% | |
| Intel i7-12800HX (16 Cores) | 107% | |
| Intel i9-12950HX (16 Cores) | 106% | |
| Intel Core Ultra 7 255H (16 Cores) | 105% | |
| Intel i7-12850HX (16 Cores) | 105% | |
| AMD Ryzen AI 9 365 (10 Cores) | 104% | |
| Intel i7-13650HX (14 Cores) | 103% | |
| Intel Core Ultra 9 185H (16 Cores) | 100% | |
| Apple M5 (10 Cores) | 94% | |
| Intel i9-13900H (14 Cores) | 93% | |
| AMD 7940HS (8 Cores) | 93% | |
| Apple M2 Max 12 Core (12 Cores) | 92% | |
| AMD 7840HS (8 Cores) | 92% | |
| AMD 6980HX (8 Cores) | 91% | |
| Intel i9-12900H (14 Cores) | 91% | |
| Apple M2 Pro 12 Core (12 Cores) | 91% | |
| AMD 8840HS (8 Cores) | 91% | |
| Intel i7-13800H (14 Cores) | 89% |
(Higher is better)
Rasterization is the traditional rendering technique used by most games to convert 3D scenes into the pixels you see on screen. A higher laptop GPU rasterization score translates to smoother frame rates, the ability to play at higher resolutions and support for more demanding graphics settings, directly impacting how enjoyable and visually rich your gaming experience will be.
|
NVIDIA GeForce RTX 4090
|
183% | |
|
NVIDIA GeForce RTX 4080
|
165% | |
|
NVIDIA GeForce RTX 3080 Ti
|
117% | |
|
NVIDIA GeForce RTX 4070
|
115% | |
|
NVIDIA GeForce RTX 3080
|
110% | |
|
NVIDIA GeForce RTX 3070 Ti
|
105% | |
|
NVIDIA GeForce RTX 2080 SUPER
|
102% | |
|
NVIDIA GeForce RTX 3070
|
~ | |
|
NVIDIA GeForce RTX 4060
|
100% | |
|
NVIDIA GeForce RTX 2080
|
99% | |
|
NVIDIA GeForce RTX 2070 SUPER
|
86% | |
|
NVIDIA GeForce RTX 4050
|
85% | |
|
NVIDIA GeForce GTX 1080
|
84% | |
|
NVIDIA GeForce RTX 2080 Super Max-Q
|
82% | |
|
NVIDIA GeForce RTX 3060
|
79% | |
|
NVIDIA GeForce RTX 2080 Max-Q
|
79% | |
|
NVIDIA GeForce RTX 2070
|
77% | |
|
NVIDIA GeForce RTX 2070 Super Max-Q
|
76% | |
|
NVIDIA GeForce RTX 2070 Max-Q
|
69% |