GeForce RTX 5080 Laptop vs 3080 Laptop
Nvidia GeForce RTX 5080 Laptop
GB203-400
Nvidia GeForce RTX 3080 Laptop
GA104 (GN20-E7)
We compared two discrete laptop gaming GPUs: the GeForce RTX 5080 Mobile with 60 pipelines and 7680 shaders against the 4 years older RTX 3080 Mobile that utilizes 48 pipelines and 6144 shaders. Here you will find complete details about specs, efficiency, performance tests, and more.
Some GPUs come in different configurations. For greater precision, pick a specific config below
Review
Gaming
Performance in DirectX, OpenCL, and Vulkan games
Workstation
Perf. in 3D modeling, video editing and rendering apps
AI/ML
Capabilities for machine learning and AI-related tasks
Energy Efficiency
Power consumption efficiency in different scenarios
NanoReview Final Score
Overall video card score
Key differences
Reasons to consider the GeForce RTX 5080 Laptop
- Performs significantly better (up to 2x) in 3DMark Steel Nomad Lite
- Manufactured using a more efficient 4 nm process technology
- 76% higher maximum theoretical performance (37 vs 21 TFLOPS)
- Shows 64% higher average frame rate in modern games at QHD resolution – 126 vs 77 FPS
- Has 2x higher memory bandwidth: 896 vs 448 GB/s
- Supports Nvidia DLSS 4 technology
- Achieves 48% more points in the GeekBench 6 Compute test (190K vs 128K)
- Has 25% more shading units (7680 vs 6144)
Gaming Performance
Frame rate comparison across popular AAA titles at different resolutionsGames
| Forza Horizon 5 | 196 136 125 93 |
132 87 77 53 |
| The Witcher 3 | 216 177 134 69 |
151 126 90 48 |
| Counter-Strike 2 | 279 214 156 82 |
221 172 120 66 |
| Far Cry 6 | 156 146 128 78 |
115 107 85 47 |
| Hogwarts Legacy | 135 113 89 49 |
85 72 55 30 |
| CoD: Modern Warfare III | 176 165 132 86 |
104 97 70 46 |
| Ghost of Tsushima | 122 103 89 52 |
82 67 51 29 |
| Cyberpunk 2077 | 155 138 96 46 |
91 80 51 22 |
| Shadow of the Tomb Raider | 247 239 183 98 |
144 131 96 49 |
| 1080p High | 187 | 125 |
| 1080p Ultra | 159 | 104 |
| 1440p Ultra | 126 | 77 |
| 4K Ultra | 73 | 43 |
| Margin of Error | Low | Low |
Benchmarks
Graphics cards’ performance in recent benchmarking apps3D Mark
Steel Nomad Lite Score
| Time Spy | 22033 | 11989 |
| Solar Bay | 99471 | 50311 |
| Port Royal | 14223 | 7199 |
| Fire Strike | 47380 | 29057 |
| Wild Life Extreme | 41208 | 24744 |
| Night Raid | 172035 | 81862 |
GeekBench 6 OpenCL
GB6 Compute Score
| Background Blur | 194.4 img/sec | 211 img/sec |
| Face Detection | 165.6 img/sec | 123.6 img/sec |
| Horizon Detection | 8.61 Gpixels/sec | 5.78 Gpixels/sec |
| Edge Detection | 12.2 Gpixels/sec | 8.03 Gpixels/sec |
| Gaussian Blur | 11.5 Gpixels/sec | 6.25 Gpixels/sec |
| Feature Matching | 1.7 Gpixels/sec | 1.17 Gpixels/sec |
| Stereo Matching | 1060 Gpixels/sec | 543.2 Gpixels/sec |
| Particle Physics | 27590.4 FPS | 17774.9 FPS |
| API | OpenCL | OpenCL |
Cinebench 2024 GPU
Cinebench 2024 GPU
Passmark Graphics
G3D Mark Score
| G2D Mark | 1087 | 625 |
| DirectX 11 | 255 FPS | 145 FPS |
| DirectX 12 | 115 FPS | 71 FPS |
| GPU Compute | 10276 Ops/s | 7049 Ops/s |
Blender
Blender GPU
Recent User Tests
GeForce RTX 5080 Laptop
| Date | Benchmark | Result |
|---|---|---|
| 📘 2025-08-14 (Vasujen07) | GeekBench | 237804 |
GeForce RTX 3080 Laptop
No benchmark results yet
Artificial Intelligence Tests
Performance in machine learning and artificial intelligence tasksGeekBench 6 ML
GB6 ML Single Precision
GB6 ML Half Precision
GB6 ML Quantized
| Image Classification (SP) | 10192 | 6773 |
| Image Segmentation (HP) | 23343 | 19587 |
| Image Super Resolution (Q) | 31132 | 15553 |
| Face Detection (HP) | 46322 | 35885 |
| Pose Estimation (Q) | 134037 | 82446 |
| Text Classification (SP) | 3319 | 2830 |
| Machine Translation (HP) | 4696 | 4019 |
| Object Detection (SP) | 13038 | 8380 |
| Depth Estimation (Q) | 52089 | 28597 |
| Style Transfer (SP) | 248270 | 184715 |
| Framework | ONNX | ONNX |
| Backend | DirectML | DirectML |
Specifications
Technical specifications of GeForce RTX 5080 Laptop and 3080 LaptopGeneral
| Vendor | Nvidia | Nvidia |
| Build | Discrete | Discrete |
| Released | January 7, 2025 | January 12, 2021 |
| Case | Laptop | Laptop |
| Purpose | Gaming | Gaming |
| Segment | High-end | High-end |
| Architecture | Blackwell 2.0 | Ampere |
| GPU Codename | GB203-400 | GA104 (GN20-E7) |
| Rival Equivalent | - | - Radeon RX 6800M |
| Successor | - | - GeForce RTX 5080 Laptop |
| Recommended CPU | - Intel Core Ultra 9 275HX or above | - Intel Core i9 12900H or above |
Laptop GPU ranking (3rd and 32nd place)
Graphics Processing Unit
| Base Clock | 975 MHz | 780-1350 MHz (configurable) |
| Boost Clock | 1500-2410 MHz (configurable) | 1245-1710 MHz (configurable) |
| Shading Units | 7680 | 6144 |
| Texture Mapping Units (TMUs) | 240 | 192 |
| Render Output Units (ROPs) | 96 | 96 |
| Compute Units (Pipelines) | 60 | 48 |
| Tensor Cores | 240 | 192 |
| Ray-tracing Cores | 60 | 48 |
| L1 Cache | 128KB per cluster | 128KB per cluster |
| L2 Cache | 64MB shared | 4MB shared |
| Instructions Per Cycle | 2 IPC | 2 IPC |
Raw Performance
| Pixel Fill Rate | 144-231 GPixel/s | 120-164 GPixel/s |
| Texture Fill Rate | 360-578 GTexel/s | 239-328 GTexel/s |
FLOPS (FP32)
Physical
| Interface | PCIe 5.0 x16 | PCIe 4.0 x16 |
| TGP | 80-175 W (configurable) | 80-165 W (configurable) |
| Manufacturing | TSMC | Samsung |
| Fabrication Process | 4 nm | 8 nm |
| Die Size | 378 mm² | 392 mm² |
| Transistor Count | 45.6 billion | 17.4 billion |
| Transistor Density | 120.63 MTr/mm² | 44.39 MTr/mm² |
Memory
| Memory Type | GDDR7 | GDDR6 |
| Memory Size | 16 GB | 8-16 GB |
| Memory Clock | 1750 MHz | 1500-1750 MHz |
| Effective Memory Speed | 28000 Mbps | 12000-14000 Mbps |
| Bus | 256-bit | 256-bit |
| ECC | No | No |
Memory Bandwidth
API
| DirectX | 12.2 | 12 |
| Vulkan | 1.4 | 1.2 |
| OpenGL | 4.6 | 4.6 |
| OpenCL | 3.0 | 2.0 |
| CUDA | 10.1 | 8.6 |
| Ray Tracing | Yes | Yes |
| DLSS | DLSS 4 | DLSS 2 |
| DisplayPort | 2.1b | 1.4a |
Cast your vote
Total votes: 30