GeForce GTX 680M vs Radeon RX Vega 10

If you are going to buy a new graphics card and are choosing between GeForce GTX 680M and Radeon RX Vega 10, there are a couple of things to consider. Cards with more VRAM in general perform better and allow you to play on higher graphics settings. Size also makes a difference. A model with a large heatsink can occupy up to three expansion slots on a motherboard. Be sure you have enough room in your PC case. When comparing GPUs with different architectures, more processing cores and even higher TFLOPS will not always translate to better performance. To help you decide which GPU you need, we have measured frame rates in a number of popular games. For more on how the GeForce GTX 680M stacks up against Radeon RX Vega 10, check out specs charts below.

GeForce GTX 680M and Radeon RX Vega 10 are Laptop Graphics Cards

Note: GeForce GTX 680M and Radeon RX Vega 10 are only used in laptop graphics. They have lower GPU clock speed compared to the desktop variant, which results in lower power consumption, but also 10-30% lower gaming performance. Check available laptop models with GeForce GTX 680M or Radeon RX Vega 10 here:

Main Specs

  GeForce GTX 680M Radeon RX Vega 10
Power consumption (TDP) 100 Watt
Interface MXM-B (3.0)
Supplementary power connectors None
Memory type GDDR5
Maximum RAM amount 4 GB
Display Connectors No outputs
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  • Both cards are used in Laptops.
  • GeForce GTX 680M is build with Kepler architecture, and Radeon RX Vega 10 - with Vega.
  • GeForce GTX 680M is manufactured by 28 nm process technology, and Radeon RX Vega 10 - by 14 nm process technology.

Game benchmarks

high / 1080p 16−18 7−8
ultra / 1080p 9−10 4−5
QHD / 1440p 4−5 0−1
4K / 2160p 4−5
low / 720p 30−35 16−18
medium / 1080p 20−22 8−9
The average gaming FPS of GeForce GTX 680M in Assassin's Creed Odyssey is 122% more, than Radeon RX Vega 10.

Full Specs

  GeForce GTX 680M Radeon RX Vega 10
Architecture Kepler Vega
Code name N13E-GTX Vega Raven Ridge
Type Laptop Laptop
Release date 4 June 2012 26 October 2017
Pipelines 1344 640
Core clock speed 720 MHz
Boost Clock 758 MHz 1300 MHz
Transistor count 3,540 million
Manufacturing process technology 28 nm 14 nm
Texture fill rate 80.6 billion/sec
Floating-point performance 2,038 gflops
Memory bus width 256 Bit
Memory clock speed 1800 MHz
Memory bandwidth 115.2 GB/s
Shared memory - -
DirectX 12 API DirectX 12_1
Shader Model 5.1
OpenGL 4.5
OpenCL 1.1
Vulkan 1.1.126
CUDA +
CUDA cores 1344
Bus support PCI Express 3.0
SLI options +
Bitcoin / BTC (SHA256) 100 Mh/s
Laptop size large
Optimus +
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