GeForce RTX 3060 Laptop VS GeForce RTX 4060 Laptop
We are comparing the GeForce RTX 3060 Laptop ( NVIDIA ) head-to-head with the GeForce RTX 4060 Laptop ( NVIDIA ) . You’ll get the key pros and cons of each graphics card, in-depth specs, and gaming benchmarks.
Note: This comparison of GeForce RTX 3060 Laptop vs. GeForce RTX 4060 Laptop is based on Comparigon's analysis and is for informational purposes only.
Last Updated: August 21, 2026
Overall Comparison
KEY DIFFERENCES OF GeForce RTX 3060 Laptop AND GeForce RTX 4060 Laptop
Here’s how GeForce RTX 3060 Laptop and GeForce RTX 4060 Laptop stack up against each other in their most impactful areas. Use these bullets to see at a glance which graphics card excels where.
Reasons to consider the GeForce RTX 3060 Laptop
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13% higher FP32 Compute (13.1 TFLOPS vs 11.61 TFLOPS)
-
31% more memory bandwidth (336 GB/s vs 256 GB/s)
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50% higher Memory Bus Width (192 Bit vs 128 Bit)
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Higher bandwidth bus link (PCIe 4.0 x16)
-
1.3× higher Tensor Cores (120 vs 96)
Reasons to consider the GeForce RTX 4060 Laptop
-
27% higher 4K Ultra FPS (38 vs 30)
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24% higher 1440p Ultra FPS (68 vs 55)
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23% higher 1080p Ultra FPS (92 vs 75)
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29% higher Boost Clock (1920 MHz vs 1493 MHz)
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25% higher 3DMark Time Spy score (10404 vs 8319)
SPECIFICATION TABLE COMPARISON OF GeForce RTX 3060 Laptop AND GeForce RTX 4060 Laptop
Below is the detailed specification table comparing GeForce RTX 3060 Laptop and GeForce RTX 4060 Laptop.
Note: Highlighted specs mean that GPU wins that spec row.
If neither side is highlighted, it is a tie or there is not enough data for both specs.
| Specification | GeForce RTX 3060 Laptop | GeForce RTX 4060 Laptop |
|---|---|---|
|
General Info
|
||
| GPU Name: | GeForce RTX 3060 Laptop | GeForce RTX 4060 Laptop |
| GPU Type: | Laptop GPU | Laptop GPU |
| Codename: | GA106 (GN20-E3) | AD107 (GN21-X4) |
| Vendor: | NVIDIA | NVIDIA |
| Foundry: | Samsung | TSMC |
| Architecture: | Ampere | Ada Lovelace |
| Generation: | GeForce 30 Mobile | GeForce 40 Mobile |
| Release Date: | January 12, 2021 | January 3, 2023 |
|
Board Design
|
||
| Bus Interface: | PCIe 4.0 x16 | PCIe 4.0 x8 |
| PCIe Version: | 4.0 | 4.0 |
| PCIe Lanes: | 16 | 8 |
| Process Size: | 8 nm | 5 nm |
| Transistors: | 13.25 billion | 18.9 billion |
| Density: | 44.17 MTr/mm² | 121.15 MTr/mm² |
| Die Size: | 300 mm² | 159 mm² |
| Total Graphics Power (TGP): | 60-140 W | 35-140 W |
|
Graphics Processor
|
||
| Compute Units: | 30 | 24 |
| Shading Units: | 3840 | 3072 |
| Texture Mapping Units (TMUs): | 120 | 96 |
| Render Output Units (ROPs): | 48 | 48 |
| Tensor Cores: | 120 | 96 |
| Ray Tracing Cores: | 30 | 24 |
| Base Clock: | 816-1387 MHz | 1140-2295 MHz |
| Boost Clock: | 1283-1703 MHz | 1470-2370 MHz |
| L1 Cache: | 128 KB per cluster | 128 KB per cluster |
| L2 Cache: | 3 MB | 32 MB |
|
Raw Performance
|
||
| Pixel Fill Rate: | 82 GPixel/s | 90.72 GPixel/s |
| Texture Fill Rate: | 204 GTexel/s | 181.4 GTexel/s |
| FP32 Performance: | 13.1 TFLOPs | 11.61 TFLOPs |
|
Memory
|
||
| Memory Type: | GDDR6 | GDDR6 |
| Memory Size: | 6 GB | 8 GB |
| Memory Bus Width: | 192-bit | 128-bit |
| Memory Clock: | 1750 MHz | 2000 MHz |
| Effective Memory Speed: | 12000-14000 Mbps | 16000 Mbps |
| Bandwidth: | 336 GB/s | 256 GB/s |
|
APIs
|
||
| DirectX: | 12 | 12 Ultimate (12_2) |
| Vulkan: | 1.2 | 1.4 |
| OpenGL: | 4.6 | 4.6 |
| OpenCL: | 2.0 | 3.0 |
| CUDA: | 8.6 | 8.9 |
| Ray Tracing: | 1 | 1 |
| DLSS: | DLSS 2 | DLSS 3 |
| DisplayPort: | 1.4a | 1.4a |
|
Gaming FPS
|
||
| 1080p Ultra (FPS): | 75 | 92 |
| 1440p Ultra (FPS): | 55 | 68 |
| 4K Ultra (FPS): | 30 | 38 |
|
Benchmarks
|
||
|
3D Mark
|
||
| Steel Nomad Lite | 8157 | 10222 |
| Time Spy | 8319 | 10404 |
| Solar Bay | 36358 | 44954 |
| Port Royal | 4710 | 5819 |
| Fire Strike | 20179 | 26492 |
| Wild Life Extreme | 16472 | 19817 |
| Night Raid | 71970 | 98341 |
|
GeekBench 6 OpenCL
|
||
| Compute Score | 94459 | 97986 |
| Background Blur | 153.5 img/sec | 142.7 img/sec |
| Face Detection | 90 img/sec | 103.7 img/sec |
| Horizon Detection | 4.1 Gpixels/sec | 3.83 Gpixels/sec |
| Edge Detection | 5.77 Gpixels/sec | 4.93 Gpixels/sec |
| Gaussian Blur | 4.35 Gpixels/sec | 4.63 Gpixels/sec |
| Feature Matching | 1.01 Gpixels/sec | 1.27 Gpixels/sec |
| Stereo Matching | 385.9 Gpixels/sec | 430.4 Gpixels/sec |
| Particle Physics | 12770 | 13519.5 |
|
Passmark Graphics
|
||
| G3D Mark | 13143 | 17398 |
| G2D Mark | 585 | 731 |
| DirectX 11 | 109 | 156 |
| DirectX 12 | 58 | 72 |
| GPU Compute | 5649 | 6811 |
|
Blender (Rendering)
|
||
| Blender Score | 2392 | 3357 |
|
GeekBench 6 ML
|
||
| Single Precision | 14362 | 17683 |
| Half Precision | 25888 | 30738 |
| Quantized | 9677 | 13612 |
| Image Classification | 6257 | 7421 |
| Image Segmentation | 16583 | 19041 |
| Image Super Resolution | 12510 | 20913 |
| Face Detection | 29528 | 35464 |
| Pose Estimation | 51349 | 67110 |
| Text Classification | 2685 | 3086 |
| Machine Translation | 3939 | 4740 |
| Object Detection | 7206 | 8644 |
| Depth Estimation | 24343 | 32456 |
| Style Transfer | 113151 | 142039 |
| Framework | ONNX | ONNX |
| Backend | DirectML | DirectML |
|
FurMark
|
||
| 1080p Vulkan | 6019 | 8686 |
| 1440p Vulkan | 3954 | 5625 |
| 2160p Vulkan | 2350 | 2559 |
| 1080p OpenGL | 5466 | 8272 |
| 1440p OpenGL | 4053 | 5828 |
| 2160p OpenGL | 2210 | 2324 |
Tip: ▲ indicates a higher-is-better spec advantage, while ▼ indicates a lower-is-better advantage.
PERFORMANCE CHART COMPARISON OF GeForce RTX 3060 Laptop AND GeForce RTX 4060 Laptop
The charts below visualize how GeForce RTX 3060 Laptop and GeForce RTX 4060 Laptop stack up in key performance metrics.
Radar Chart Comparison
Bullet Chart Comparison
Value For Money Calculator
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Domain Score Summary
Note: Scores (0 to 100) are generated by Comparigon’s scoring algorithm and are intended as a high-level guide. They may not map 1-to-1 with the individual spec-by-spec comparisons shown in the table.
Our Verdict
In conclusion, the GeForce RTX 4060 Laptop is slightly better overall compared to the GeForce RTX 3060 Laptop. Its strongest advantages are in Gaming Performance, AI & Machine Learning, Hardware Architecture and Workstation. They are still fairly close in Energy Efficiency.
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