Radeon RX 9050 vs RTX PRO 3000 Blackwell Mobile
Aggregate performance score
We've compared RTX PRO 3000 Blackwell Mobile with Radeon RX 9050, including specs and performance data.
RTX PRO 3000 Blackwell Mobile outperforms RX 9050 by an impressive 88% based on our aggregate benchmark results.
Primary details
GPU architecture, market segment, value for money and other general parameters compared.
| Place in the ranking | 88 | 264 |
| Place by popularity | not in top-100 | not in top-100 |
| Power efficiency | 59.57 | 20.66 |
| Architecture | Blackwell 2.0 (2025−2026) | RDNA 4.0 (2025−2026) |
| GPU code name | GB205 | Navi 44 |
| Market segment | Mobile workstation | Desktop |
| Release date | 19 March 2025 (1 year ago) | 28 July 2026 (less than a year ago) |
Detailed specifications
General parameters such as number of shaders, GPU core base clock and boost clock speeds, manufacturing process, texturing and calculation speed. Real power consumption of some graphics cards can well exceed their nominal TDP, especially if overclocked.
| Pipelines / CUDA cores | 5888 | 1024 |
| Core clock speed | 848 MHz | 1330 MHz |
| Boost clock speed | 1605 MHz | 2600 MHz |
| Number of transistors | 31,100 million | 29,700 million |
| Manufacturing process technology | 5 nm | 4 nm |
| Power consumption (TDP) | 60 Watt | 92 Watt |
| Texture fill rate | 295.3 | 166.4 |
| Floating-point processing power | 18.9 TFLOPS | no data |
| ROPs | 80 | 64 |
| TMUs | 184 | 64 |
| Tensor Cores | 184 | no data |
| Ray Tracing Cores | 46 | 16 |
| L0 Cache | no data | 256 KB |
| L1 Cache | 5.8 MB | no data |
| L2 Cache | 48 MB | 4 MB |
| L3 Cache | no data | 32 MB |
Form factor & compatibility
Information on compatibility with other computer components. Useful when choosing a future computer configuration or upgrading an existing one. For desktop graphics cards it's interface and bus (motherboard compatibility), additional power connectors (power supply compatibility).
| Interface | PCIe 5.0 x16 | PCIe 5.0 x16 |
| Width | no data | 2-slot |
| Supplementary power connectors | no data | 1x 8-pin |
VRAM capacity and type
Parameters of VRAM installed: its type, size, bus, clock and resulting bandwidth. Integrated GPUs have no dedicated video RAM and use a shared part of system RAM.
| Memory type | GDDR7 | GDDR6 |
| Maximum RAM amount | 12 GB | 8 GB |
| Memory bus width | 192 Bit | 128 Bit |
| Memory clock speed | 1750 MHz | 2250 MHz |
| Memory bandwidth | 672.0 GB/s | 288.0 GB/s |
| Shared memory | - | - |
| Resizable BAR | + | + |
Connectivity and outputs
This section shows the types and number of video connectors on each GPU. The data applies specifically to desktop reference models (for example, NVIDIA’s Founders Edition). OEM partners often modify both the number and types of ports. On notebook GPUs, video‐output options are determined by the laptop’s design rather than the graphics chip itself.
| Display Connectors | Portable Device Dependent | 1x HDMI 2.1b, 2x DisplayPort 2.1a |
| HDMI | - | + |
API and SDK support
List of supported 3D and general-purpose computing APIs, including their specific versions.
| DirectX | 12 Ultimate (12_2) | 12 Ultimate (12_2) |
| Shader Model | 6.8 | 6.9 |
| OpenGL | 4.6 | 4.6 |
| OpenCL | 3.0 | 2.2 |
| Vulkan | 1.4 | 1.4 |
| CUDA | 12.0 | - |
| DLSS | + | - |
Gaming performance
Let's see how good the compared graphics cards are for gaming. Particular gaming benchmark results are measured in FPS.
Average FPS across all PC games
Here are the average frames per second in a large set of popular games across different resolutions:
| Full HD | 123 | 65−70
−47.2%
|
| 1440p | 69
+97.1%
| 35−40 |
| 4K | 44
+110%
| 21−24 |
FPS performance in popular games
Full HD
Low
| Atomic Heart | 140−150
+90.7%
|
75−80 |
| Counter-Strike 2 | 240−250
+90.8%
|
130−140 |
| Cyberpunk 2077 | 110−120
+102%
|
55−60 |
Full HD
Medium
| Atomic Heart | 140−150
+90.7%
|
75−80 |
| Battlefield 5 | 140−150
+96%
|
75−80 |
| Counter-Strike 2 | 240−250
+90.8%
|
130−140 |
| Cyberpunk 2077 | 110−120
+102%
|
55−60 |
| Far Cry 5 | 140−150
+94.7%
|
75−80 |
| Fortnite | 190−200
+99%
|
100−105 |
| Forza Horizon 4 | 170−180
+97.8%
|
90−95 |
| PLAYERUNKNOWN'S BATTLEGROUNDS | 160−170
+98.8%
|
85−90 |
| Valorant | 260−270
+91.4%
|
140−150 |
Full HD
High
| Atomic Heart | 140−150
+90.7%
|
75−80 |
| Battlefield 5 | 140−150
+96%
|
75−80 |
| Counter-Strike 2 | 240−250
+90.8%
|
130−140 |
| Counter-Strike: Global Offensive | 270−280
+98.6%
|
140−150 |
| Cyberpunk 2077 | 110−120
+102%
|
55−60 |
| Far Cry 5 | 140−150
+94.7%
|
75−80 |
| Far Cry 6 | 130−140
+91.4%
|
70−75 |
| Fortnite | 190−200
+99%
|
100−105 |
| Forza Horizon 4 | 170−180
+97.8%
|
90−95 |
| Grand Theft Auto V | 154
+92.5%
|
80−85 |
| Metro Exodus | 110−120
+90%
|
60−65 |
| PLAYERUNKNOWN'S BATTLEGROUNDS | 160−170
+98.8%
|
85−90 |
| The Witcher 3: Wild Hunt | 170−180
+88.4%
|
95−100 |
| Valorant | 260−270
+91.4%
|
140−150 |
Full HD
Ultra
| Battlefield 5 | 140−150
+96%
|
75−80 |
| Cyberpunk 2077 | 110−120
+102%
|
55−60 |
| Far Cry 5 | 140−150
+94.7%
|
75−80 |
| Forza Horizon 4 | 170−180
+97.8%
|
90−95 |
| PLAYERUNKNOWN'S BATTLEGROUNDS | 160−170
+98.8%
|
85−90 |
| The Witcher 3: Wild Hunt | 170−180
+88.4%
|
95−100 |
Full HD
Epic
| Fortnite | 190−200
+99%
|
100−105 |
1440p
High
| Counter-Strike 2 | 120−130
+93.8%
|
65−70 |
| Counter-Strike: Global Offensive | 300−350
+94.7%
|
170−180 |
| Far Cry 6 | 90−95
+102%
|
45−50 |
| Grand Theft Auto V | 117
+95%
|
60−65 |
| Metro Exodus | 70−75
+103%
|
35−40 |
| Valorant | 300−350
+91.3%
|
160−170 |
1440p
Ultra
| Battlefield 5 | 110−120
+91.7%
|
60−65 |
| Cyberpunk 2077 | 55−60
+93.3%
|
30−33 |
| Far Cry 5 | 110−120
+91.7%
|
60−65 |
| Forza Horizon 4 | 130−140
+98.6%
|
70−75 |
| The Witcher 3: Wild Hunt | 95−100
+92%
|
50−55 |
1440p
Epic
| Fortnite | 120−130
+95.4%
|
65−70 |
4K
High
| Counter-Strike 2 | 55−60
+90%
|
30−33 |
| Far Cry 6 | 40−45
+105%
|
21−24 |
| Grand Theft Auto V | 100−110
+96.4%
|
55−60 |
| Metro Exodus | 40−45
+110%
|
21−24 |
| The Witcher 3: Wild Hunt | 75−80
+97.5%
|
40−45 |
| Valorant | 280−290
+101%
|
140−150 |
4K
Ultra
| Battlefield 5 | 75−80
+90%
|
40−45 |
| Cyberpunk 2077 | 27−30
+92.9%
|
14−16 |
| Far Cry 5 | 65−70
+117%
|
30−33 |
| Forza Horizon 4 | 95−100
+90%
|
50−55 |
| PLAYERUNKNOWN'S BATTLEGROUNDS | 70−75
+103%
|
35−40 |
4K
Epic
| Fortnite | 65−70
+117%
|
30−33 |
This is how RTX PRO 3000 Blackwell Mobile and RX 9050 compete in popular games:
- RTX PRO 3000 Blackwell Mobile is 89% faster in 1080p
- RTX PRO 3000 Blackwell Mobile is 97% faster in 1440p
- RTX PRO 3000 Blackwell Mobile is 110% faster in 4K
Pros & cons summary
| Performance score | 45.89 | 24.40 |
| Recency | 19 March 2025 | 28 July 2026 |
| Maximum RAM amount | 12 GB | 8 GB |
| Chip lithography | 5 nm | 4 nm |
| Power consumption (TDP) | 60 Watt | 92 Watt |
RTX PRO 3000 Blackwell Mobile has a 88% higher aggregate performance score, a 50% higher maximum VRAM amount, and 35% lower power consumption.
RX 9050, on the other hand, has an age advantage of 1 year, and a 20% more advanced lithography process.
The RTX PRO 3000 Blackwell Mobile is our recommended choice as it beats the Radeon RX 9050 in performance tests.
Be aware that RTX PRO 3000 Blackwell Mobile is a mobile workstation graphics card while Radeon RX 9050 is a desktop one.
Other comparisons
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