AMD Ryzen AI 7 450

ProcessorsView on amd.com

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iGPU:
AMD Radeon (8 CU, RDNA 3.5)
Boost/Base Clock:
5.1 GHz / 2.0 GHz
Core/Thread Count:
8 Core / 16 Thread (4x Zen 5 + 4x Zen 5c)
Cache:
Reduced vs. higher tiers (exact figure not disclosed per-SKU by AMD)
NPU:
50 TOPS (XDNA 2)
TDP:
15-54 Watts (configurable)
CPU Process Node:
4 Nanometers (TSMC)
CPU Series:
Zen 5 / Zen 5c, Ryzen AI 400 "Gorgon Point"

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Manufacturer: AMD Last updated: September 7, 2026

The AMD Ryzen AI 7 450 is a performance-segment Gorgon Point chip with an 8-core, 16-thread layout, splitting evenly between four full Zen 5 cores and four Zen 5c efficiency cores. Its 5.1 GHz boost clock sits close to the flagship HX chips despite the reduced core count, making it a strong pick for workloads that lean more on single-thread and lightly-threaded performance than heavy parallel processing.

The AMD Ryzen AI 7 450 is a performance-segment Gorgon Point chip with an 8-core, 16-thread layout, splitting evenly between four full Zen 5 cores and four Zen 5c efficiency cores. Its 5.1 GHz boost clock sits close to the flagship HX chips despite the reduced core count, making it a strong pick for workloads that lean more on single-thread and lightly-threaded performance than heavy parallel processing.

AMD Radeon (8 CU)

An 8-compute-unit RDNA 3.5 iGPU, half the size of the flagship Radeon 890M, sized for mainstream productivity and light gaming rather than as a standalone gaming solution.

How Is the Ryzen AI 7 450 in Terms of Performance

With a near-flagship boost clock but half the core count of the HX-series chips, the Ryzen AI 7 450 favours responsiveness in everyday and lightly-threaded tasks over maximum throughput in heavily parallel workloads. It's positioned by AMD specifically for the performance segment rather than the enthusiast tier the HX branding targets.

Benchmarks

Geekbench 6 single-core scores should be competitive with the HX-series chips given the close boost clock, while multi-core scores trail meaningfully given the smaller core count, most visible in rendering, encoding and compilation workloads.