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  2. Frequency scaling - Wikipedia

    en.wikipedia.org/wiki/Frequency_scaling

    In computer architecture, frequency scaling (also known as frequency ramping) is the technique of increasing a processor's frequency so as to enhance the performance of the system containing the processor in question. Frequency ramping was the dominant force in commodity processor performance increases from the mid-1980s until roughly the end ...

  3. Load (computing) - Wikipedia

    en.wikipedia.org/wiki/Load_(computing)

    An idle computer has a load number of 0 (the idle process is not counted). Each process using or waiting for CPU (the ready queue or run queue) increments the load number by 1. Each process that terminates decrements it by 1. Most UNIX systems count only processes in the running (on CPU) or runnable (waiting for CPU) states.

  4. TMS9900 - Wikipedia

    en.wikipedia.org/wiki/TMS9900

    The TMS9900 was implemented in an N-channel silicon gate MOS process, [7] which required +5 V, −5 V and +12 V power supplies and a four-phase (non-overlapping) clock with a maximum frequency of 3 MHz (333 ns cycle), [10] usually generated from a 48 MHz crystal using a TIM9904 (aka 74LS362) clock generator chip.

  5. Am386 - Wikipedia

    en.wikipedia.org/wiki/Am386

    The Am386 CPU is a 100%-compatible clone of the Intel 80386 design released by AMD in March 1991. It sold millions of units, positioning AMD as a legitimate competitor to Intel , rather than being merely a second source for x86 CPUs (then termed 8086-family ).

  6. Advanced Vector Extensions - Wikipedia

    en.wikipedia.org/wiki/Advanced_Vector_Extensions

    Some Intel processors have provisions to reduce the Turbo Boost frequency limit when such instructions are being executed. This reduction happens even if the CPU hasn't reached its thermal and power consumption limits. On Skylake and its derivatives, the throttling is divided into three levels: [66] [67] L0 (100%): The normal turbo boost limit.

  7. Motorola 68000 - Wikipedia

    en.wikipedia.org/wiki/Motorola_68000

    The Motorola 68000 (sometimes shortened to Motorola 68k or m68k and usually pronounced "sixty-eight-thousand") [2] [3] is a 16/32-bit complex instruction set computer (CISC) microprocessor, introduced in 1979 by Motorola Semiconductor Products Sector.

  8. Armando Codina - Pay Pals - The Huffington Post

    data.huffingtonpost.com/paypals/armando-codina

    From January 2008 to December 2012, if you bought shares in companies when Armando Codina joined the board, and sold them when he left, you would have a 128.0 percent return on your investment, compared to a -2.8 percent return from the S&P 500.

  9. CPUID - Wikipedia

    en.wikipedia.org/wiki/CPUID

    In the x86 architecture, the CPUID instruction (identified by a CPUID opcode) is a processor supplementary instruction (its name derived from CPU Identification) allowing software to discover details of the processor.