GeForce RTX 2070 with Max-Q Design
VS
GeForce RTX 3060 Laptop GPU

GeForce RTX 2070 with Max-Q Design vs GeForce RTX 3060 Laptop GPU

NVIDIA

GeForce RTX 2070 with Max-Q Design

2019Core: 885 MHzBoost: 1185 MHz
VS
NVIDIA

GeForce RTX 3060 Laptop GPU

2022Core: 1320 MHzBoost: 1777 MHz

Performance Spectrum - GPU

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.

Value Upgrade Path

This is the official ChipVERSUS Value Rating, comparing raw performance (G3D Mark) per dollar. Components placed above yours deliver better value for money.

MSRP is the manufacturer's suggested retail price.
Avg price is the current average price collected from markets across the web.

Performance Per Dollar GeForce RTX 2070 with Max-Q Design

#10
100%
#16
Radeon RX 7600S
MSRP: $269|Avg: $250
81%
#19
Radeon RX 5600
MSRP: $229|Avg: $150
72%
Based on actual market prices and performance benchmarks.

Performance Per Dollar GeForce RTX 3060 Laptop GPU

#16
Radeon RX 7600S
MSRP: $269|Avg: $250
110%
#19
Radeon RX 5600
MSRP: $229|Avg: $150
97%
#22
Radeon RX 7700
MSRP: $449|Avg: $399
94%
#25
Radeon RX 7600M XT
MSRP: $329|Avg: $300
85%
#28
Radeon RX 6650M XT
MSRP: $400|Avg: $400
81%
#29
GeForce RTX 3060 Laptop GPU
MSRP: N/A|Avg: N/A
100%
#30
Radeon 8050S
MSRP: $400|Avg: $400
77%
#31
Radeon RX 8050S
MSRP: $400|Avg: $400
77%
Based on actual market prices and performance benchmarks.

Performance Comparison

About G3D Mark

🏆 Chipversus Verdict

🚀 Performance Leadership

The GeForce RTX 3060 Laptop GPU is the superior choice for raw performance. It leads with a 14.9% higher G3D Mark score. However, the GeForce RTX 2070 with Max-Q Design offers more VRAM, which may be beneficial for texture-heavy scenarios at higher resolutions.

InsightGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
Performance
Lower raw frame rates (-14.9%)
Leading raw performance (+14.9%)
Longevity
Turing (2018−2022) (12nm)
🔮Strong Longevity (Ampere (2020−2025) / 8nm)
Ecosystem
✨ DLSS 2 Upscaling
✨ DLSS 2 Upscaling
VRAM
🎮 High Capacity (8 GB)
🎮 High Capacity (6 GB)
Efficiency
💡 Excellent Perf/Watt
⚡ Higher Power Consumption
Case Fit

💎 Value Proposition

While current pricing data is unavailable, the GeForce RTX 3060 Laptop GPU remains the clear technical winner. Check real-time availability to determine if the performance gap justifies the market price.

Performance Check

Real-world benchmarks and performance projections based on comprehensive hardware analysis and comparative metrics. Values represent expected performance on High/Ultra settings at 1080p, 1440p, and 4K. Modeled using a Ryzen 7 7800X3D reference profile to minimize specific CPU bottlenecks.

Note: Performance behavior can vary per game. Specific architectures may perform better or worse depending on game engine optimizations and API implementation.

Technical Specifications

Side-by-side comparison of GeForce RTX 2070 with Max-Q Design and GeForce RTX 3060 Laptop GPU

NVIDIA

GeForce RTX 2070 with Max-Q Design

The GeForce RTX 2070 with Max-Q Design is manufactured by NVIDIA. It was released in January 29 2019. It features the Turing architecture. The core clock ranges from 885 MHz to 1185 MHz. It has 2304 shading units. The thermal design power (TDP) is 80W. Manufactured using 12 nm process technology. It features 36 dedicated ray tracing cores for enhanced lighting effects. G3D Mark benchmark score: 11,461 points.

NVIDIA

GeForce RTX 3060 Laptop GPU

The GeForce RTX 3060 Laptop GPU is manufactured by NVIDIA. It was released in October 12 2022. It features the Ampere architecture. The core clock ranges from 1320 MHz to 1777 MHz. It has 3584 shading units. The thermal design power (TDP) is 170W. Manufactured using 8 nm process technology. It features 28 dedicated ray tracing cores for enhanced lighting effects. G3D Mark benchmark score: 13,170 points.

Graphics Performance

In G3D Mark, the GeForce RTX 2070 with Max-Q Design scores 11,461 versus the GeForce RTX 3060 Laptop GPU's 13,170 — the GeForce RTX 3060 Laptop GPU leads by 14.9%. The GeForce RTX 2070 with Max-Q Design is built on Turing while the GeForce RTX 3060 Laptop GPU uses Ampere, both on 12 nm vs 8 nm. Shader units: 2,304 (GeForce RTX 2070 with Max-Q Design) vs 3,584 (GeForce RTX 3060 Laptop GPU). Raw compute: 5.46 TFLOPS (GeForce RTX 2070 with Max-Q Design) vs 12.74 TFLOPS (GeForce RTX 3060 Laptop GPU). Boost clocks: 1185 MHz vs 1777 MHz. Ray tracing: 36 RT cores (GeForce RTX 2070 with Max-Q Design) vs 28 (GeForce RTX 3060 Laptop GPU) with 288 Tensor cores vs 112.

FeatureGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
G3D Mark Score
11,461
13,170+15%
Architecture
Turing
Ampere
Process Node
12 nm
8 nm
Shading Units
2304
3584+56%
Compute (TFLOPS)
5.46 TFLOPS
12.74 TFLOPS+133%
Boost Clock
1185 MHz
1777 MHz+50%
ROPs
64+33%
48
TMUs
144+29%
112
L1 Cache
2.3 MB
3.5 MB+52%
L2 Cache
4 MB+33%
3 MB
Ray Tracing Cores
36+29%
28
Tensor Cores
288+157%
112

Advanced Features (DLSS/FSR)

FeatureGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
Upscaling Tech
DLSS 2.0
DLSS 2.0
Frame Generation
FSR 3 / AFMF (Compatible)
FSR 3 / AFMF (Compatible)
Ray Reconstruction
No
No
Low Latency
NVIDIA Reflex
NVIDIA Reflex
💾

Video Memory (VRAM)

The GeForce RTX 2070 with Max-Q Design comes with 8 GB of VRAM, while the GeForce RTX 3060 Laptop GPU has 6 GB. The GeForce RTX 2070 with Max-Q Design offers 33.3% more capacity, crucial for higher resolutions and texture-heavy games. Memory bandwidth: 384 GB/s (GeForce RTX 2070 with Max-Q Design) vs 336 GB/s (GeForce RTX 3060 Laptop GPU) — a 14.3% advantage for the GeForce RTX 2070 with Max-Q Design. Bus width: 256-bit vs 192-bit. L2 Cache: 4 MB (GeForce RTX 2070 with Max-Q Design) vs 3 MB (GeForce RTX 3060 Laptop GPU) — the GeForce RTX 2070 with Max-Q Design has significantly larger on-die cache to reduce VRAM reliance.

FeatureGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
VRAM Capacity
8 GB+33%
6 GB
Memory Type
GDDR6
GDDR6
Memory Bandwidth
384 GB/s+14%
336 GB/s
Bus Width
256-bit+33%
192-bit
L2 Cache
4 MB+33%
3 MB
🖥️

Display & API Support

DirectX support: 12.2 (GeForce RTX 2070 with Max-Q Design) vs 12 Ultimate (GeForce RTX 3060 Laptop GPU). Vulkan: 1.1 vs 1.4. OpenGL: 4.6 vs 4.6. Maximum simultaneous displays: 4 vs 4.

FeatureGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
DirectX
12.2+2%
12 Ultimate
Vulkan
1.1
1.4+27%
OpenGL
4.6
4.6
Max Displays
4
4
🎬

Media & Encoding

Hardware encoder: 7th Gen NVENC (GeForce RTX 2070 with Max-Q Design) vs NVENC (7th Gen) (GeForce RTX 3060 Laptop GPU). Decoder: 5th Gen NVDEC vs NVDEC (5th Gen). Supported codecs: MPEG-2,H.264,HEVC,VP9 (GeForce RTX 2070 with Max-Q Design) vs H.264,HEVC,AV1 (Decode),VP9 (GeForce RTX 3060 Laptop GPU).

FeatureGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
Encoder
7th Gen NVENC
NVENC (7th Gen)
Decoder
5th Gen NVDEC
NVDEC (5th Gen)
Codecs
MPEG-2,H.264,HEVC,VP9
H.264,HEVC,AV1 (Decode),VP9
🔌

Power & Dimensions

The GeForce RTX 2070 with Max-Q Design draws 80W versus the GeForce RTX 3060 Laptop GPU's 170W — a 72% difference. The GeForce RTX 2070 with Max-Q Design is more power-efficient. Recommended PSU: 500W (GeForce RTX 2070 with Max-Q Design) vs 500W (GeForce RTX 3060 Laptop GPU). Power connectors: PCIe-powered vs Mobile. Typical load temperature: 85°C vs 75°C.

FeatureGeForce RTX 2070 with Max-Q DesignGeForce RTX 3060 Laptop GPU
TDP
80W-53%
170W
Recommended PSU
500W
500W
Power Connector
PCIe-powered
Mobile
Length
0mm
Height
0mm
Slots
0
Temp (Load)
85°C
75°C-12%
Perf/Watt
143.3+85%
77.5