
GeForce GTX 1070 with Max-Q Design

GeForce RTX 3050 6GB Mobile
GeForce GTX 1070 with Max-Q Design vs GeForce RTX 3050 6GB Mobile Performance Spectrum
About G3D Mark
G3D Mark is a standard benchmark that measures graphics performance in real-world gaming scenarios. It simplifies comparing cards from different brands, where higher scores directly correlate with better fps and smoother gaming experiences.
GeForce GTX 1070 with Max-Q Design vs GeForce RTX 3050 6GB Mobile FPS Benchmarks
Predicted gaming performance across popular games. Tested paired with Ryzen 7 9800X3D to isolate GPU performance.
Search any supported game below to compare 1080p FPS for both components.

Path of Exile 2

Counter-Strike 2

League of Legends

Valorant

Among Us

Apex Legends

ARC Raiders

Baldur's Gate 3

Call of Duty: Black Ops 6
GeForce GTX 1070 with Max-Q Design vs GeForce RTX 3050 6GB Mobile: Pros, Cons & Final Verdict
See where each GPU makes more sense in practice: raw FPS, VRAM, features, power draw, pricing, and long-term headroom.
GeForce GTX 1070 with Max-Q Design
2017Why buy it
- ✅37.3% more average FPS across 50 tracked games in our benchmark data.
Trade-offs
- ❌No DLSS support; it relies on Upscaling support instead.
- ❌2017 hardware with 8 GB of VRAM already sits in legacy territory for modern games.
- ❌91.7% higher power demand at 115W vs 60W.
GeForce RTX 3050 6GB Mobile
2023Why buy it
- ✅Access to DLSS 2 Super Resolution (2020).
- ✅Better long-term bet: Ampere (2020−2025) on 8nm gives it a newer hardware base for upcoming games.
- ✅Draws 60W instead of 115W, a 55W reduction.
Trade-offs
- ❌Lower average FPS than GeForce GTX 1070 with Max-Q Design across 50 tracked games in our benchmark data.
Quick Answers
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GeForce GTX 1070 with Max-Q Design vs GeForce RTX 3050 6GB Mobile Technical Specifications
Side-by-side specs, architecture details, clocks, memory, power, and platform differences.

GeForce GTX 1070 with Max-Q Design
The GeForce GTX 1070 with Max-Q Design is manufactured by NVIDIA. It was released in June 27 2017. It features the Pascal architecture. The core clock ranges from 1215 MHz to 1379 MHz. It has 2048 shading units. The thermal design power (TDP) is 115W. Manufactured using 16 nm process technology. G3D Mark benchmark score: 9,842 points.

GeForce RTX 3050 6GB Mobile
The GeForce RTX 3050 6GB Mobile is manufactured by NVIDIA. It was released in January 6 2023. It features the Ampere architecture. The core clock ranges from 1237 MHz to 1492 MHz. It has 2560 shading units. The thermal design power (TDP) is 60W. Manufactured using 8 nm process technology. G3D Mark benchmark score: 10,125 points.
Graphics Performance
The GeForce GTX 1070 with Max-Q Design scores 9,842 and the GeForce RTX 3050 6GB Mobile reaches 10,125 in the G3D Mark benchmark — just a 2.9% difference, making them near-identical in rasterization performance. The GeForce GTX 1070 with Max-Q Design is built on Pascal while the GeForce RTX 3050 6GB Mobile uses Ampere, both on 16 nm vs 8 nm. Shader units: 2,048 (GeForce GTX 1070 with Max-Q Design) vs 2,560 (GeForce RTX 3050 6GB Mobile). Boost clocks: 1379 MHz vs 1492 MHz.
| Feature | GeForce GTX 1070 with Max-Q Design | GeForce RTX 3050 6GB Mobile |
|---|---|---|
| G3D Mark Score | 9,842 | 10,125+3% |
| Architecture | Pascal | Ampere |
| Process Node | 16 nm | 8 nm |
| Shading Units | 2048 | 2560+25% |
| Boost Clock | 1379 MHz | 1492 MHz+8% |
Advanced Features (DLSS/FSR)
The GeForce RTX 3050 6GB Mobile supports the newer DLSS 2 Super Resolution, whereas the GeForce GTX 1070 with Max-Q Design is capped at Upscaling support.
| Feature | GeForce GTX 1070 with Max-Q Design | GeForce RTX 3050 6GB Mobile |
|---|---|---|
| Upscaling Tech | Upscaling support | DLSS 2 Super Resolution |
| Frame Generation | Not Supported | Not Supported |
| Ray Reconstruction | No | No |
| Low Latency | NVIDIA Reflex | NVIDIA Reflex |
Video Memory (VRAM)
Both cards ship with 8 GB of video memory. Memory bandwidth: 256 GB/s (GeForce GTX 1070 with Max-Q Design) vs 168 GB/s (GeForce RTX 3050 6GB Mobile) — a 52.4% advantage for the GeForce GTX 1070 with Max-Q Design. Memory bus width is 256-bit on the GeForce GTX 1070 with Max-Q Design and 96-bit on the GeForce RTX 3050 6GB Mobile.
| Feature | GeForce GTX 1070 with Max-Q Design | GeForce RTX 3050 6GB Mobile |
|---|---|---|
| VRAM Capacity | 8 GB | 8 GB |
| Memory Type | GDDR5 | GDDR6 |
| Memory Bandwidth | 256 GB/s+52% | 168 GB/s |
| Bus Width | 256-bit+167% | 96-bit |
Display & API Support
DirectX support: 12.1 (GeForce GTX 1070 with Max-Q Design) vs 12.2 (GeForce RTX 3050 6GB Mobile). Vulkan: 1.1 vs 1.3. OpenGL: 4.5 vs 4.6. Maximum simultaneous displays: 4 vs 4.
| Feature | GeForce GTX 1070 with Max-Q Design | GeForce RTX 3050 6GB Mobile |
|---|---|---|
| DirectX | 12.1 | 12.2 |
| Vulkan | 1.1 | 1.3+18% |
| OpenGL | 4.5 | 4.6+2% |
| Max Displays | 4 | 4 |
Media & Encoding
Hardware encoder: NVENC 4.0 (GeForce GTX 1070 with Max-Q Design) vs 7th Gen NVENC (GeForce RTX 3050 6GB Mobile). Decoder: PureVideo HD VP6 vs 5th Gen NVDEC. Supported codecs: MPEG-2,H.264,HEVC (GeForce GTX 1070 with Max-Q Design) vs MPEG-2,H.264,HEVC,VP9,AV1 (Decode) (GeForce RTX 3050 6GB Mobile).
| Feature | GeForce GTX 1070 with Max-Q Design | GeForce RTX 3050 6GB Mobile |
|---|---|---|
| Encoder | NVENC 4.0 | 7th Gen NVENC |
| Decoder | PureVideo HD VP6 | 5th Gen NVDEC |
| Codecs | MPEG-2,H.264,HEVC | MPEG-2,H.264,HEVC,VP9,AV1 (Decode) |
Power & Dimensions
The GeForce GTX 1070 with Max-Q Design draws 115W versus the GeForce RTX 3050 6GB Mobile's 60W — a 62.9% difference. The GeForce RTX 3050 6GB Mobile is more power-efficient. Recommended PSU: 500W (GeForce GTX 1070 with Max-Q Design) vs 500W (GeForce RTX 3050 6GB Mobile). Power connectors: PCIe-powered vs Mobile. Card length: 0mm vs 0mm, occupying 0 vs 0 slots. Typical load temperature: 85°C vs 80°C.
| Feature | GeForce GTX 1070 with Max-Q Design | GeForce RTX 3050 6GB Mobile |
|---|---|---|
| TDP | 115W | 60W-48% |
| Recommended PSU | 500W | 500W |
| Power Connector | PCIe-powered | Mobile |
| Length | 0mm | 0mm |
| Height | 0mm | 0mm |
| Slots | 0 | 0 |
| Temp (Load) | 85°C | 80°C-6% |
| Perf/Watt | 85.6 | 168.8+97% |
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