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This may require resetting jumpers inside your computer, although in systems with SoftMenu BIOS, the bus speed can be set through your system setup interface. To overclock a processor, you have to reset your computer’s bus speed. Overclocking the CPU does put extra strain on the processor causing the chip to heat up to temperatures that could cause damage to the CPU so the necessary cooling should be in place to keep things from going horribly wrong.

Overclocking can be perfectly harmless to your system if the correct amount of cooling is in place to prevent the CPU from overheating. OEMs will disable the option for you to overclock the CPU but you can add whichever components you prefer and twist parts of the system to increase usability as well as performance. The processor’s clock speed is often set by the Original Equipment Manufacturer (OEM) to run at a pace which won’t cause any issues or problems over the course of the life of the machine. It is resetting the computer components so that it runs faster than the manufacturer-specified speed – particularly to boost performance. When you want to increase the clock speed of your processor to improve performance when doing your business, that is the basis of Overclocking. Read About: The difference between Graphics Card and a GPU Typically, a 2.0 quad-core processor with 2.0 GHz base frequency can be overclocked to up to 3.20 GHz using Turbo Boost. If these variables are to their lower limit, Turbo Boost can deliver maximum performance and processor scalability to the requesting processes or applications. This is generally dependent on current workload on the processor, available cores, the processor temperature, and the current and required power consumption. The primary role is to extend the frequency level of the processor above its rated frequency to achieve higher processing power, basically operating in dynamic increments and it will scale up until it either reaches the maximum boost allowed or the processor comes close to its maximum TDP. If it is operating well within limits, Turbo Boost kicks in. The tech monitors the current usage of a processor to determine how close the processor is to the maximum Thermal Design Power (TDP), the maximum amount of power the processor is supposed to use. Turbo Boost is another Intel trademark technology that enables a processor to run faster than its configured processing speed, and this is achieved using dynamic overclocking techniques. Related Article: Intel Optane Memory Explained Hyper Threading helps the CPU to push light tasks to one processor while heavy applications are off to the other. It is best applied to operations and applications where multiple tasks can be intelligently scheduled so there’s no idle time on your processor for example in tasks like video editing, 3D rendering, and heavy multi-tasking. This is a practical application that allows a microprocessor to act like two separate processors to the operating system and the application programs that use it. A chip’s core processor is known to execute two simultaneous threads of instructions sent by the OS which allows more work to be done during each clock cycle.
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