Nvidia RTX Pro 4000 Laptop (Blackwell) vs GeForce RTX 5070 Ti Laptop

We compared two discrete laptop graphics cards: the Nvidia RTX Pro 4000 Mobile (Blackwell) 16 GB with 60 pipelines and 7680 shaders against the GeForce RTX 5070 Ti Mobile 12 GB that utilizes 46 pipelines and 5888 shaders. Here you will find complete details about specs, efficiency, performance tests, and more.

Review

General comparison of performance in games, applications, power efficiency, and other metrics
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

Key distinctions and advantages of RTX 5070 Ti Mobile over RTX Pro 4000 Mobile (Blackwell)
Reasons to consider the Nvidia RTX Pro 4000 Laptop (Blackwell)
  • Performs better (up to 21%) in 3DMark Steel Nomad Lite
  • Shows 8% higher average frame rate in modern games at QHD resolution – 114 vs 106 FPS
  • Includes 4 GB more video memory
  • Features 56 more tensor cores for effective ML and AI workloads
  • Has 33% higher memory bandwidth: 896 vs 672 GB/s
  • Has 30% more shading units (7680 vs 5888)
Reasons to consider the GeForce RTX 5070 Ti Laptop
  • Manufactured using a more efficient 4 nm process technology

Gaming Performance

Frame rate comparison across popular AAA titles at different resolutions

Games

FPS Table
Forza Horizon 5
180
121
112
83
168
112
102
77
The Witcher 3
197
167
122
66
191
162
116
62
Counter-Strike 2
275
213
152
84
273
202
144
80
Far Cry 6
148
136
117
72
146
133
114
71
Hogwarts Legacy
122
100
82
45
118
94
74
40
CoD: Modern Warfare III
164
150
118
78
150
139
107
70
Ghost of Tsushima
110
93
77
48
105
89
73
43
Cyberpunk 2077
140
127
85
38
129
117
76
37
Shadow of the Tomb Raider
229
213
159
85
211
190
147
80
Average FPS by Resolution
1080p High 174 166
1080p Ultra 147 138
1440p Ultra 114 106
4K Ultra 67 62
Margin of Error High Low

Benchmarks

Graphics cards’ performance in recent benchmarking apps

3D Mark

Multiplatform graphics benchmark suite that directly correlates with performance in modern games
Steel Nomad Lite Score
Time Spy 16906 17376
Solar Bay 49611 78498
Port Royal 12094 11401
Fire Strike 31680 42353
Wild Life Extreme - 33661
Night Raid 131505 154057
Sources: 3DMark [1], [2]

GeekBench 6 OpenCL

GPU test for computational tasks (image processing, photography, computer vision, and ML)
GB6 Compute Score
Background Blur 267.1 img/sec 248 img/sec
Face Detection 165.5 img/sec 147.7 img/sec
Horizon Detection 8.72 Gpixels/sec 6.54 Gpixels/sec
Edge Detection 12.3 Gpixels/sec 8.24 Gpixels/sec
Gaussian Blur 12.6 Gpixels/sec 9.55 Gpixels/sec
Feature Matching 1.83 Gpixels/sec 1.64 Gpixels/sec
Stereo Matching 942.6 Gpixels/sec 876 Gpixels/sec
Particle Physics 25637.1 FPS 24026.1 FPS
API OpenCL OpenCL
Sources: Geekbench [3], [4]

Passmark Graphics

Videocard test that focuses on compute shaders, multi-texturing, tessellation, and other features
G3D Mark Score
G2D Mark 872 970
DirectX 11 225 FPS 234 FPS
DirectX 12 108 FPS 100 FPS
GPU Compute 7943 Ops/s 8378 Ops/s
Sources: PassMark [5], [6] – 235 & 3386 samples

Blender

Rendering performance test for 3D modeling
Blender GPU
Sources: Blender [9], [10] – 24 & 478 samples

Recent User Tests

The latest benchmark tests that have been submitted by users
Nvidia RTX Pro 4000 Laptop (Blackwell)
No benchmark results yet
GeForce RTX 5070 Ti Laptop
DateBenchmarkResult
📘 2026-06-12 (mahmut)Steel Nomad Light3874
📘 2026-05-04 -> lnwponlawatGeekbench 6 OpenCL185432
📘 2026-05-04 -> lnwponlawatSteel Nomad Light19141

Artificial Intelligence Tests

Performance in machine learning and artificial intelligence tasks

GeekBench 6 ML

Tests throughput of AI operations in single, half, and quantized precision
GB6 ML Single Precision
GB6 ML Half Precision
GB6 ML Quantized
Image Classification (SP) 11723 10408
Image Segmentation (HP) 32142 29018
Image Super Resolution (Q) 30735 26983
Face Detection (HP) 58722 54398
Pose Estimation (Q) 129551 107270
Text Classification (SP) 3539 3658
Machine Translation (HP) 6242 6237
Object Detection (SP) 14495 13717
Depth Estimation (Q) 50690 49509
Style Transfer (SP) 231154 199816
Framework ONNX ONNX
Backend DirectML DirectML
Sources: Geekbench [9], [10]

Specifications

Technical specifications of Nvidia RTX Pro 4000 Laptop (Blackwell) and GeForce RTX 5070 Ti Laptop

General

Vendor Nvidia Nvidia
Build Discrete Discrete
Released March 18, 2025 January 7, 2025
Case Laptop Laptop
Purpose Professional Gaming
Segment High-end Mid-range
Architecture Blackwell 2.0 Blackwell 2.0
GPU Codename GB203-300-A1 GB205-200
Recommended CPU - Intel Core Ultra 9 275HX or above - Intel Core Ultra 7 255HX or above
Laptop GPU ranking (5th and 7th place)

Graphics Processing Unit

Base Clock 975-1702 MHz (configurable) 847-1762 MHz (configurable)
Boost Clock 1702-1875 MHz (configurable) 1447-2280 MHz (configurable)
Shading Units 7680 5888
Texture Mapping Units (TMUs) 240 184
Render Output Units (ROPs) 96 80
Compute Units (Pipelines) 60 46
Tensor Cores 240 184
Ray-tracing Cores 60 46
L1 Cache 128KB per cluster 128KB per cluster
L2 Cache 64MB shared 48MB shared
Instructions Per Cycle 2 IPC 2 IPC

Raw Performance

Pixel Fill Rate 163-180 GPixel/s 116-182 GPixel/s
Texture Fill Rate 408-450 GTexel/s 266-420 GTexel/s
FLOPS (FP32)
26.1-28.8 TFLOPS
17-26.8 TFLOPS

Physical

Interface PCIe 5.0 x16 PCIe 5.0 x16
TGP 80-175 W (configurable) 60-140 W (configurable)
Manufacturing TSMC TSMC
Fabrication Process 5 nm 4 nm
Die Size 378 mm² 263 mm²
Transistor Count 45.6 billion 31.1 billion
Transistor Density 120.63 MTr/mm² 118.25 MTr/mm²

Memory

Memory Type GDDR7 GDDR7
Memory Size 16 GB 12 GB
Memory Clock 1750 MHz 1750 MHz
Effective Memory Speed 28000 Mbps 28000 Mbps
Bus 256-bit 192-bit
ECC No No
Memory Bandwidth

API

DirectX 12.2 12.2
Vulkan 1.4 1.4
OpenGL 4.6 4.6
OpenCL 3.0 3.0
CUDA 12 12.0
Ray Tracing Yes Yes
DLSS DLSS 4 DLSS 4
DisplayPort 2.1b 2.1b

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