NVIDIA RTX 5000 Ada Generation vs Intel HD Graphics 620

Comparative analysis of NVIDIA RTX 5000 Ada Generation and Intel HD Graphics 620 videocards for all known characteristics in the following categories: Essentials, Technical info, Video outputs and ports, Compatibility, dimensions and requirements, API support, Memory, Technologies. Benchmark videocards performance analysis: PassMark - G2D Mark, PassMark - G3D Mark, Geekbench - OpenCL, CompuBench 1.5 Desktop - Face Detection (mPixels/s), CompuBench 1.5 Desktop - Ocean Surface Simulation (Frames/s), CompuBench 1.5 Desktop - T-Rex (Frames/s), CompuBench 1.5 Desktop - Video Composition (Frames/s), CompuBench 1.5 Desktop - Bitcoin Mining (mHash/s), GFXBench 4.0 - Car Chase Offscreen (Frames), GFXBench 4.0 - Manhattan (Frames), GFXBench 4.0 - T-Rex (Frames), GFXBench 4.0 - Car Chase Offscreen (Fps), GFXBench 4.0 - Manhattan (Fps), GFXBench 4.0 - T-Rex (Fps), 3DMark Fire Strike - Graphics Score.

 

Differences

Reasons to consider the NVIDIA RTX 5000 Ada Generation

  • 3.1x more core clock speed: 915 MHz vs 300 MHz
  • 2.4x more boost clock speed: 2505 MHz vs 1050 MHz
  • 47.7x more texture fill rate: 1,202 GTexel/s vs 25.2 GTexel / s
  • 640x more pipelines: 15360 vs 24
  • A newer manufacturing process allows for a more powerful, yet cooler running videocard: 5 nm vs 14 nm
  • 3.5x better performance in PassMark - G2D Mark: 747 vs 216
  • 25.9x better performance in PassMark - G3D Mark: 23871 vs 922
  • 37.2x better performance in Geekbench - OpenCL: 155595 vs 4178
Specifications (specs)
Core clock speed 915 MHz vs 300 MHz
Boost clock speed 2505 MHz vs 1050 MHz
Texture fill rate 1,202 GTexel/s vs 25.2 GTexel / s
Pipelines 15360 vs 24
Manufacturing process technology 5 nm vs 14 nm
Benchmarks
PassMark - G2D Mark 747 vs 216
PassMark - G3D Mark 23871 vs 922
Geekbench - OpenCL 155595 vs 4178

Reasons to consider the Intel HD Graphics 620

  • 20x lower typical power consumption: 15 Watt vs 300 Watt
Thermal Design Power (TDP) 15 Watt vs 300 Watt

Compare benchmarks

GPU 1: NVIDIA RTX 5000 Ada Generation
GPU 2: Intel HD Graphics 620

PassMark - G2D Mark
GPU 1
GPU 2
747
216
PassMark - G3D Mark
GPU 1
GPU 2
23871
922
Geekbench - OpenCL
GPU 1
GPU 2
155595
4178
Name NVIDIA RTX 5000 Ada Generation Intel HD Graphics 620
PassMark - G2D Mark 747 216
PassMark - G3D Mark 23871 922
Geekbench - OpenCL 155595 4178
CompuBench 1.5 Desktop - Face Detection (mPixels/s) 24.275
CompuBench 1.5 Desktop - Ocean Surface Simulation (Frames/s) 227.879
CompuBench 1.5 Desktop - T-Rex (Frames/s) 1.508
CompuBench 1.5 Desktop - Video Composition (Frames/s) 15.582
CompuBench 1.5 Desktop - Bitcoin Mining (mHash/s) 30.288
GFXBench 4.0 - Car Chase Offscreen (Frames) 1404
GFXBench 4.0 - Manhattan (Frames) 1733
GFXBench 4.0 - T-Rex (Frames) 3340
GFXBench 4.0 - Car Chase Offscreen (Fps) 1404
GFXBench 4.0 - Manhattan (Fps) 1733
GFXBench 4.0 - T-Rex (Fps) 3340
3DMark Fire Strike - Graphics Score 343

Compare specifications (specs)

NVIDIA RTX 5000 Ada Generation Intel HD Graphics 620

Essentials

Architecture Ada Lovelace Generation 9.5
Code name AD102 Kaby Lake GT2
Place in performance rating 41 1334
Launch date 30 August 2016
Type Laptop

Technical info

Boost clock speed 2505 MHz 1050 MHz
Core clock speed 915 MHz 300 MHz
Manufacturing process technology 5 nm 14 nm
Pipelines 15360 24
Pixel fill rate 440.9 GPixel/s
Texture fill rate 1,202 GTexel/s 25.2 GTexel / s
Thermal Design Power (TDP) 300 Watt 15 Watt
Transistor count 76300 million 189 million
Floating-point performance 403.2 gflops

Video outputs and ports

Display Connectors 4x DisplayPort 1.4a No outputs

Compatibility, dimensions and requirements

Form factor Dual-slot
Interface PCIe 4.0 x16 PCIe 3.0 x1
Length 267 mm, 10.5 inches
Recommended system power (PSU) 700 Watt
Supplementary power connectors 1x 16-pin
Width 112 mm, 4.4 inches

API support

DirectX 12 Ultimate (12_2) 12.0 (12_1)
OpenCL 3.0
OpenGL 4.6 4.5
Shader Model 6.7
Vulkan

Memory

Maximum RAM amount 32 GB 32 GB
Memory bandwidth 960.0 GB/s
Memory bus width 384 bit 64 / 128 Bit
Memory clock speed 2500 MHz, 20 Gbps effective
Memory type GDDR6 DDR3L / LPDDR3 / LPDDR4
Shared memory 1

Technologies

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