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  2. Performance per watt - Wikipedia

    en.wikipedia.org/wiki/Performance_per_watt

    System designers building parallel computers, such as Google's hardware, pick CPUs based on their performance per watt of power, because the cost of powering the CPU outweighs the cost of the CPU itself. [2] Spaceflight computers have hard limits on the maximum power available and also have hard requirements on minimum real-time performance.

  3. Amdahl's law - Wikipedia

    en.wikipedia.org/wiki/Amdahl's_law

    Each new processor added to the system will add less usable power than the previous one. Each time one doubles the number of processors the speedup ratio will diminish, as the total throughput heads toward the limit of 1/(1 − p). This analysis neglects other potential bottlenecks such as memory bandwidth and I/O bandwidth. If these resources ...

  4. 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.

  5. Frequency scaling - Wikipedia

    en.wikipedia.org/wiki/Frequency_scaling

    However, power consumption in a chip is given by the equation P = C × V 2 × F , {\displaystyle P=C\times V^{2}\times F,} where P is power consumption, C is the capacitance being switched per clock cycle, V is voltage , and F is the processor frequency (cycles per second). [ 2 ]

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  7. Uptime - Wikipedia

    en.wikipedia.org/wiki/Uptime

    The first number is the total number of seconds the system has been up. The second number is how much of that time the machine has spent idle, in seconds. [16] On multi-core systems (and some Linux versions) the second number is the sum of the idle time accumulated by each CPU. [17]

  8. Current limiting - Wikipedia

    en.wikipedia.org/wiki/Current_limiting

    A switched-mode power supply operating at the current limit with the output short-circuited does not have increased power dissipation in the power transistor(s), so foldback current limiting is an application feature only rather than one that also prevents a load fault from also destroying the power supply. The safety benefit of reducing the ...

  9. Dynamic voltage scaling - Wikipedia

    en.wikipedia.org/wiki/Dynamic_voltage_scaling

    For example, low power MMC and SD cards can run at 1.8 V as well as at 3.3 V, and driver stacks may conserve power by switching to the lower voltage after detecting a card which supports it. When leakage current is a significant factor in terms of power consumption, chips are often designed so that portions of them can be powered completely off.