Intel UHD Graphics 710 vs NVIDIA GeForce Go 7700

Comparative analysis of Intel UHD Graphics 710 and NVIDIA GeForce Go 7700 videocards for all known characteristics in the following categories: Essentials, Technical info, Video outputs and ports, API support, Memory, Technologies, Compatibility, dimensions and requirements. Benchmark videocards performance analysis: PassMark - G2D Mark, PassMark - G3D Mark, Geekbench - OpenCL.

 

Differences

Reasons to consider the Intel UHD Graphics 710

  • Videocard is newer: launch date 15 year(s) 5 month(s) later
  • 2.9x more boost clock speed: 1300 MHz vs 450 MHz
  • 1925.9x more texture fill rate: 10.40 GTexel/s vs 5.4 GTexel / s
  • 10.7x more pipelines: 128 vs 12
  • A newer manufacturing process allows for a more powerful, yet cooler running videocard: 10 nm vs 90 nm
  • Around 31% better performance in PassMark - G2D Mark: 305 vs 232
  • 7.3x better performance in PassMark - G3D Mark: 1080 vs 148
Specifications (specs)
Launch date 4 Jan 2022 vs 1 August 2006
Boost clock speed 1300 MHz vs 450 MHz
Texture fill rate 10.40 GTexel/s vs 5.4 GTexel / s
Pipelines 128 vs 12
Manufacturing process technology 10 nm vs 90 nm
Benchmarks
PassMark - G2D Mark 305 vs 232
PassMark - G3D Mark 1080 vs 148

Reasons to consider the NVIDIA GeForce Go 7700

  • Around 50% higher core clock speed: 450 MHz vs 300 MHz
Core clock speed 450 MHz vs 300 MHz

Compare benchmarks

GPU 1: Intel UHD Graphics 710
GPU 2: NVIDIA GeForce Go 7700

PassMark - G2D Mark
GPU 1
GPU 2
305
232
PassMark - G3D Mark
GPU 1
GPU 2
1080
148
Name Intel UHD Graphics 710 NVIDIA GeForce Go 7700
PassMark - G2D Mark 305 232
PassMark - G3D Mark 1080 148
Geekbench - OpenCL 2965

Compare specifications (specs)

Intel UHD Graphics 710 NVIDIA GeForce Go 7700

Essentials

Architecture Generation 12.2 Curie
Code name Alder Lake GT1 G73
Launch date 4 Jan 2022 1 August 2006
Place in performance rating 743 741
Type Desktop Laptop

Technical info

Boost clock speed 1300 MHz 450 MHz
Compute units 16
Core clock speed 300 MHz 450 MHz
Manufacturing process technology 10 nm 90 nm
Peak Half Precision (FP16) Performance 665.6 GFLOPS (2:1)
Peak Single Precision (FP32) Performance 332.8 GFLOPS
Pipelines 128 12
Pixel fill rate 10.40 GPixel/s
Texture fill rate 10.40 GTexel/s 5.4 GTexel / s
Thermal Design Power (TDP) 15 Watt
Transistor count 177 million

Video outputs and ports

Display Connectors No outputs No outputs

API support

DirectX 12.0 (12_1) 9.0c
OpenCL 3.0
OpenGL 4.6 2.1
Shader Model 6.6
Vulkan

Memory

Memory bus width 64 / 128 Bit 500 Bit
Shared memory 1 0
Maximum RAM amount 512 MB
Memory bandwidth 16 GB / s
Memory clock speed 1000 MHz
Memory type 128

Technologies

Quick Sync

Compatibility, dimensions and requirements

Interface PCIe 1.0 x16
Laptop size medium sized