AMD’s Ryzen AI 300-series APUs rival low-end discrete GPUs in performance.


TLDR:

Key points:

  • AMD announced Ryzen AI 300-series processors with 20% higher CPU performance and 36% higher gaming performance compared to predecessors.
  • MSI revealed that the upcoming APUs could offer gaming performance on par with some low-end previous-generation discrete GPUs.

The Ryzen AI 370 AI HX 370 processor sports 12 general-purpose Zen 5-based CPU cores and an RDNA 3.5-based Radeon 890M GPU with 16 compute units (1,024 stream processors). The new Radeon 890M integrated graphics processor offers around 20% higher performance than its predecessor, the Radeon 780M, in typical use cases. MSI’s performance estimates are specific, but the actual performance may vary due to different processors in laptops, cooling, memory, and unverified leaked information. AMD’s next-generation integrated GPU performance should be taken with caution.

Main Article:

AMD recently announced the Ryzen AI 300-series processors with improvements in CPU and gaming performance compared to its predecessors. MSI revealed that these upcoming APUs could offer gaming performance on par with some low-end previous-generation discrete GPUs. The flagship Ryzen AI 370 AI HX 370 processor comes with 12 general-purpose Zen 5-based CPU cores and an RDNA 3.5-based Radeon 890M GPU with 16 compute units (1,024 stream processors).

The new Radeon 890M integrated graphics processor promises around 20% higher performance than its predecessor, the Radeon 780M, in typical use cases. However, there are factors to consider such as different processors in laptops, cooling, memory, and unverified leaked information about performance. While MSI’s performance estimates provide specific details, the actual performance may vary.

In conclusion, while the leaked information about the performance of AMD’s next-generation integrated GPU is optimistic, it is essential to approach it with caution. The actual performance may differ due to various factors that were not considered in the initial estimates.