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  2. Computer cooling - Wikipedia

    en.wikipedia.org/wiki/Computer_cooling

    A finned air cooled heatsink with fan clipped onto a CPU, with a smaller passive heatsink without fan in the background A 3-fan heatsink mounted on a video card to maximize cooling efficiency of the GPU and surrounding components Commodore 128DCR computer's switch-mode power supply, with a user-installed 60 mm cooling fan.

  3. Thermal design power - Wikipedia

    en.wikipedia.org/wiki/Thermal_design_power

    The declared TPDs of these devices range from 65 W to 105 W; the ambient temperature considered by AMD is +42°C, and the case temperatures range from +61.8 °C to +69.3°C, while the case-to-ambient thermal resistances range from 0.189 to 0.420 °C/W.

  4. SpeedFan - Wikipedia

    en.wikipedia.org/wiki/SpeedFan

    SpeedFan is a system monitor for Microsoft Windows that can read temperatures, voltages and fan speeds of computer components. [3] It can change computer fan speeds depending on the temperature of various components. [1] [4] The program can display system variables as charts and as an indicator in the system tray.

  5. Computer fan - Wikipedia

    en.wikipedia.org/wiki/Computer_fan

    Active cooling on CPUs started to appear on the Intel 80486, and by 1997 was standard on all desktop processors. [2] Chassis or case fans, usually one exhaust fan to expel heated air from the rear and optionally an intake fan to draw cooler air in through the front, became common with the arrival of the Pentium 4 in late 2000.

  6. CPU core voltage - Wikipedia

    en.wikipedia.org/wiki/CPU_core_voltage

    The CPU core voltage (V CORE) is the power supply voltage supplied to the processing cores of CPU (which is a digital circuit), GPU, or any other device with a processing core. The amount of power a CPU uses, and thus the amount of heat it dissipates, is the product of this voltage and the current it draws.

  7. Processor power dissipation - Wikipedia

    en.wikipedia.org/wiki/Processor_power_dissipation

    Some other CPU implementations use very little power; for example, the CPUs in mobile phones often use just a few watts of electricity, [1] while some microcontrollers used in embedded systems may consume only a few milliwatts or even as little as a few microwatts. There are a number of engineering reasons for this pattern:

  8. MSI Afterburner - Wikipedia

    en.wikipedia.org/wiki/MSI_Afterburner

    MSI Afterburner is a graphics card overclocking (OC) and monitoring utility that allows users to monitor and adjust various settings of their graphics card. [2] Developed by MSI (Micro-Star International) and previously Alexey Nicolaychuk, developer of RivaTuner, it is widely used for enhancing the performance of graphics cards, especially in gaming and high-performance tasks.

  9. SpeedStep - Wikipedia

    en.wikipedia.org/wiki/SpeedStep

    The Linux kernel has a subsystem called "cpufreq", tunable by power-scheme and command line, devoted to the control of the operating frequency and voltage of a CPU. Linux runs on Intel, AMD, and other makes of CPU. [13] [14] Newer version Windows 10 and Linux kernel support Intel Speed Shift Technology.