AMD Ryzen AI 9 PRO 465
AMD Ryzen 7 217
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AMD Ryzen AI 9 PRO 465 vs AMD Ryzen 7 217. Specifications

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Released
2026-01-05
AMD Ryzen AI 9 PRO 465

Family illustration.

AMD Ryzen AI 9 PRO 465
Released
2026-06-02
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AMD Ryzen 7 217

Family illustration.

AMD Ryzen 7 217

What's the best choice AMD Ryzen AI 9 PRO 465 or AMD Ryzen 7 217? Which processor is faster?

Compare the available specifications of these models.

AMD Ryzen AI 9 PRO 465 has a base frequency of 2 GHz. 10 / 20 CPU Cores / Threads. Stated TDP / base power 28 W. Released in 2026-01-05.

AMD Ryzen 7 217 has a base frequency of 3 GHz. 6 / 12 CPU Cores / Threads. Stated TDP / base power 35 W. Released in 2026-06-02.

Differences

  • More number of cores

    4 more cores

    10 left arrow 6
  • Higher turbo clock speed

    Around 4% higher specified turbo frequency

    5 GHz left arrow 4.8 GHz
  • Lower stated TDP / base power

    Power limits alone do not measure performance per watt.

    28 W left arrow 35 W

Positions in all rankings

Common positions AMD Ryzen AI 9 PRO 465 CPU in popular benchmarks, for comparison with other models.

No data
AMD Ryzen 7 217 Reasons to consider
AMD Ryzen 7 217
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  • Higher clock speed

    Around 50% better clock speed

    3 GHz left arrow 2 GHz

Positions in all rankings

Common positions AMD Ryzen 7 217 CPU in popular benchmarks, for comparison with other models.

No data

Specifications

Technical data
AMD Ryzen AI 9 PRO 465 AMD Ryzen AI 9 PRO 465
AMD Ryzen 7 217 AMD Ryzen 7 217
CPU family and group

Background information about the processors being compared, series, generation and market segment.

  • Family
    Ryzen PRO left arrow Ryzen
  • Form Factor
    Laptops / Desktops left arrow Laptops / Desktops
  • Segment
    Mobile left arrow Mobile
  • Series
    Ryzen AI PRO 400 Series left arrow Ryzen 200 Series
CPU Technical specs

Core counts, threads, cache and clock modes describe the CPU configuration. Performance depends on the workload and comparable measured results.

  • Base Frequency
    2 GHz left arrow 3 GHz
  • CPU Cores
    10 left arrow 6
  • CPU Threads
    20 left arrow 12
  • Max. Boost Clock
    5 GHz left arrow 4.8 GHz
  • Overclocking
    - left arrow No
IGPU

Internal Graphics does not affect the performance of the CPU, performs the work of the graphics card in its absence or on mobile devices.

  • GPU Frequency
    2900 MHz left arrow 2600 MHz
  • GPU name
    AMD Radeon 890M left arrow AMD Radeon 740M Graphics
  • Graphics Cores
    12 left arrow 4
Memory specs & PCI

Types, channel quantity of RAM supported by AMD Ryzen 7 217 and AMD Ryzen AI 9 PRO 465. Depending on the motherboards, higher or lower memory frequencies may be supported.

  • Memory channels
    2 left arrow 2
  • Memory type
    DDR5 (FP8) / LPDDR5X (FP8) left arrow DDR5 (FP8) / LPDDR5X (FP8)
  • PCIe
    PCIe 4.0 left arrow PCIe 4.0
Thermal Management

Compare the TDP requirements of TDP AMD Ryzen AI 9 PRO 465 and AMD Ryzen 7 217 Power specifications describe different manufacturer limits. TDP, base power and maximum turbo power are separate values; they do not establish measured system consumption.

  • Configurable TDP
    15-54 W left arrow 15-40 W
  • Default TDP
    28 W left arrow 35 W
  • Maximum Operating Temperature
    100 °C left arrow 100 °C
Technologies and extensions

Architecture, interfaces, additional instructions supported by AMD Ryzen AI 9 PRO 465 and AMD Ryzen 7 217, virtual machine technologies and process technology.

  • Codename
    Gorgon Point left arrow Hawk Point
  • L2-Cache
    10 MB left arrow 6 MB
  • L3-Cache
    24 MB left arrow 16 MB
  • Official source
    https://www.amd.com/en/products/processors/laptop/ryzen-pro/ai-400-series/amd-ryzen-ai-9-pro-465.html left arrow https://www.amd.com/en/products/processors/laptop/ryzen/200-series/amd-ryzen-7-217.html
  • Release date
    2026-01-05 left arrow 2026-06-02
  • Socket
    FP8 left arrow FP8
  • Technology
    TSMC 4nm FinFET left arrow TSMC 4nm FinFET
  • Verified on
    2026-09-30 left arrow 2026-09-30

Benchmarks

Performance tests CPUs

No comparable benchmark results are available yet. Specifications alone do not determine which model is faster.

These are saved results from the earlier catalog. Measurement dates and test configurations were not recorded. Models with no comparable results are omitted.

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