Intel Iris Xe Graphics G7 96EU vs NVIDIA GRID M40

Comparative analysis of Intel Iris Xe Graphics G7 96EU and NVIDIA GRID M40 videocards for all known characteristics in the following categories: Essentials, Technical info, Video outputs and ports, Compatibility, dimensions and requirements, API support, Memory. Benchmark videocards performance analysis: 3DMark Fire Strike - Graphics Score, CompuBench 1.5 Desktop - Face Detection (mPixels/s), CompuBench 1.5 Desktop - Ocean Surface Simulation (Frames/s), CompuBench 1.5 Desktop - Video Composition (Frames/s), CompuBench 1.5 Desktop - Bitcoin Mining (mHash/s).

 

Differences

Reasons to consider the Intel Iris Xe Graphics G7 96EU

  • Videocard is newer: launch date 4 year(s) 3 month(s) later
  • Around 10% higher boost clock speed: 1100 MHz vs 1000 MHz
  • A newer manufacturing process allows for a more powerful, yet cooler running videocard: 10 nm vs 28 nm
  • 3.3x lower typical power consumption: 15 Watt vs 50 Watt
Launch date 2 Sep 2020 vs 18 May 2016
Boost clock speed 1100 MHz vs 1000 MHz
Manufacturing process technology 10 nm vs 28 nm
Thermal Design Power (TDP) 15 Watt vs 50 Watt

Reasons to consider the NVIDIA GRID M40

  • 3.1x more core clock speed: 930 MHz vs 300 MHz
Core clock speed 930 MHz vs 300 MHz

Compare benchmarks

GPU 1: Intel Iris Xe Graphics G7 96EU
GPU 2: NVIDIA GRID M40

Name Intel Iris Xe Graphics G7 96EU NVIDIA GRID M40
3DMark Fire Strike - Graphics Score 1219
CompuBench 1.5 Desktop - Face Detection (mPixels/s) 28.064
CompuBench 1.5 Desktop - Ocean Surface Simulation (Frames/s) 576.664
CompuBench 1.5 Desktop - Video Composition (Frames/s) 18.529
CompuBench 1.5 Desktop - Bitcoin Mining (mHash/s) 87.629

Compare specifications (specs)

Intel Iris Xe Graphics G7 96EU NVIDIA GRID M40

Essentials

Architecture Generation 12.0 Maxwell
Code name Tiger Lake GT2 GM107
Launch date 2 Sep 2020 18 May 2016
Place in performance rating 1426 1429
Type Laptop Workstation

Technical info

Boost clock speed 1100 MHz 1000 MHz
Compute units 96
Core clock speed 300 MHz 930 MHz
Manufacturing process technology 10 nm 28 nm
Peak Double Precision (FP64) Performance 422.4 GFLOPS
Peak Half Precision (FP16) Performance 3.379 TFLOPS
Peak Single Precision (FP32) Performance 1.690 TFLOPS
Pipelines 768
Pixel fill rate 26.40 GPixel/s
Texture fill rate 105.6 GTexel/s
Thermal Design Power (TDP) 15 Watt 50 Watt
Transistor count 1,870 million

Video outputs and ports

Display Connectors No outputs No outputs

Compatibility, dimensions and requirements

Interface PCIe 3.0 x1 PCIe 3.0 x16
Width IGP

API support

DirectX 12.1 12.0 (11_0)
OpenCL 2.1
OpenGL 4.6 4.6
Shader Model 6.4
Vulkan

Memory

Memory clock speed 5400 MHz