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  2. Thermal design power - Wikipedia

    en.wikipedia.org/wiki/Thermal_design_power

    Thermal Design Power (TDP), also known as thermal design point, is the maximum amount of heat that a computer component (like a CPU, GPU or system on a chip) can generate and that its cooling system is designed to dissipate during normal operation at a non-turbo clock rate (base frequency).

  3. Computer cooling - Wikipedia

    en.wikipedia.org/wiki/Computer_cooling

    A laptop computer's CPU and GPU heatsinks, and copper heat pipes transferring heat to an exhaust fan expelling hot air The working fluid in the heatpipes transfers heat away from the laptop's CPU and video processor over to the fin stack.

  4. Processor power dissipation - Wikipedia

    en.wikipedia.org/wiki/Processor_power_dissipation

    When the CPU uses power management features to reduce energy use, other components, such as the motherboard and chipset, take up a larger proportion of the computer's energy. In applications where the computer is often heavily loaded, such as scientific computing, performance per watt (how much computing the CPU does per unit of energy) becomes ...

  5. How to Check Your CPU Temperature - AOL

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  6. Heat sink - Wikipedia

    en.wikipedia.org/wiki/Heat_sink

    A fan-cooled heat sink on the processor of a personal computer. To the right is a smaller heat sink cooling another integrated circuit of the motherboard. Typical heatsink-fan combination found on a consumer laptop.

  7. CPU core voltage - Wikipedia

    en.wikipedia.org/wiki/CPU_core_voltage

    To conserve power and manage heat, many laptop and desktop processors have a power management feature that software (usually the operating system) can use to adjust the clock speed and core voltage dynamically. Often a voltage regulator module converts from 5V or 12 V or some other voltage to whatever CPU core voltage is required by the CPU.

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  9. Dynamic frequency scaling - Wikipedia

    en.wikipedia.org/wiki/Dynamic_frequency_scaling

    Dynamic frequency scaling (also known as CPU throttling) is a power management technique in computer architecture whereby the frequency of a microprocessor can be automatically adjusted "on the fly" depending on the actual needs, to conserve power and reduce the amount of heat generated by the chip.