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Visit https://brilliant.org/JeffGeerling to start your 30-day free trial, and get 20% off your annual subscription! The Raspberry Pi 5 can't be overclocked past 3 GHz. Why? The secret is hidden in the silicon deep inside. X-rays don't go deep enough. This video explores modern CPU architecture, clocks and PLLs (Phase-Locked Loops), silicon die shots, and even transistor-level debugging with an electron microscope! Mentioned in this video: Blog post with more images: https://www.jeffgeerling.com/blog/202... Open Circuits book: https://amzn.to/3uZRJow Kleindiek Nanotechnik: https://www.nanotechnik.com/copyright... John McMaster (Twitter): / johndmcmaster Siliconpr0n die shot - RP1: https://siliconpr0n.org/map/raspberry... Siliconpr0n die shot - BCM2712: https://siliconpr0n.org/map/broadcom/... der8auer's video on 7nm analysis: • Unreal Precision - Analyzing a Single TSMC... Water cooling block for Pi 5: https://www.jeffgeerling.com/blog/202... EDATEC's passive heatsink for Pi 5: https://www.edatec.cn/en/ac/pi5-openc... Apple II Pendulum Clock: https://github.com/wkjagt/apple2_pend... 32nd note drummer: • 110 120 Bpm 16th Note Roll 32nd Note Trans... Monster vs Dave Grohl drum battle: • Dave Grohl and Animal Drum Battle - The Mu... Support me on Patreon: / geerlingguy Sponsor me on GitHub: https://github.com/sponsors/geerlingguy Merch: https://redshirtjeff.com 2nd Channel: / geerlingengineering Contents: 00:00 - Human DNA on my chip? 00:42 - Overclocking, featuring actual clocks 05:59 - Heat is not an issue (unless you're a candle) 07:14 - Die shots: OCP on the Pi 5's BCM2712 11:51 - Die shots: RP1 12:37 - Probing individual transistors at 16nm 18:35 - Peering deeper inside silicon 20:06 - Learning more...