AMD plans to maintain RDNA 3.5 integrated graphics in budget and mainstream APUs through 2029, according to leaker Kepler_L2. Only premium SoCs will receive next-generation RDNA 5 architecture, creating a two-tier integrated graphics strategy that prioritizes cost efficiency over cutting-edge performance in entry-level markets.

AMD’s Dual-Track iGPU Roadmap Explained
The strategy divides APU products into distinct categories: mainstream chips targeting office laptops and systems paired with discrete GPUs retain RDNA 3.5, while premium “Halo” variants adopt RDNA 5 for enhanced graphics performance.
| Product Category | iGPU Architecture | Timeline |
|---|---|---|
| Mainstream APUs | RDNA 3.5 | Through 2029 |
| Premium SoCs | RDNA 5 | 2027 onwards |
| Medusa Point | RDNA 3.5 | 2027 launch |
| Medusa Halo | RDNA 5 | Premium variant |
| Gorgon Point (2026) | RDNA 3.5 | Strix Point refresh |
| RDNA 5 Desktop GPUs | RDNA 5 | Mid-2027 |

Why AMD Splits Graphics Architectures
Budget systems and office laptops don’t require powerful iGPUs, making RDNA 3.5 cost-effective. Devices with discrete GPUs rely on dedicated graphics, rendering advanced integrated graphics unnecessary—reducing manufacturing costs and development resources.
AMD focuses RDNA 5 on premium applications where iGPU performance matters: high-end thin-and-lights, gaming handhelds, and content creation laptops. Medusa platform splits accordingly—Medusa Point uses RDNA 3.5, while Medusa Halo receives RDNA 5.

RDNA 5: The Premium Path Forward
RDNA 5 debuts mid-2027 on TSMC’s N3P node, powering Radeon RX 10000 GPUs, PlayStation 6, and Xbox consoles. The architecture promises enhanced ray tracing, AI acceleration, and universal compression.
Premium APUs with RDNA 5 deliver discrete GPU-level gaming in integrated form factors—ideal for ultra-portable gaming and creative workloads requiring graphics horsepower without dedicated cards.
Meanwhile, Gorgon Point (2026) refreshes Strix Point with higher NPU clocks but retains RDNA 3.5, confirming AMD’s extended commitment to the architecture. This conservative approach allows resource concentration on RDNA 5 development while maintaining competitive mainstream offerings.
For more GPU and processor news, visit TechnoSports.





