Desktop CPU Processor - Showing 217 - 240 of 576 Products

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Intel Core Duo T2500 - Core Duo Yonah Dual-Core 2.0 GHz Socket M 31W Processor - ...
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Intel Xeon Phi 7210 Tetrahexaconta-core (64 Core) 1.30 GHz Processor - Socket 3647 - OEM ...
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Intel Core i7-6850K - Core i7 6th Gen Broadwell-E 6-Core 3.6 GHz LGA 2011-v3 140W Desktop ...
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Intel Xeon Phi 7230 Tetrahexaconta-core (64 Core) 1.30 GHz Processor - Socket 3647 - OEM ...
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OEM Intel Core i3 i3-6100 Dual-core 3.70 GHz Processor LGA 1151
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Intel Core 2 Quad Q6700 - Core 2 Quad Kentsfield Quad-Core 2.66 GHz LGA 775 95W ...
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Intel Core i7-3770S - Core i7 3rd Gen Ivy Bridge Quad-Core 3.1GHz (3.9GHz Turbo) LGA 1155 ...
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Intel Core i3-2100 - Core i3 2nd Gen Sandy Bridge Dual-Core 3.1 GHz LGA 1155 65W Intel HD ...
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Intel Core 2 Duo E4500 - Core 2 Duo Allendale Dual-Core 2.2 GHz LGA 775 65W Processor - ...
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Intel Core i5-3330 Quad-Core LGA 1155 CM8063701134306 Desktop Processor
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Intel Core i3-4170 - Core i3 4th Gen Haswell Dual-Core 3.7 GHz LGA 1150 54W Intel HD ...
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Intel Core i7 5th Gen - Core i7-5775C Broadwell Quad-Core 3.3GHz LGA 1150 65W ...
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Intel Core i7 X-Series - Core i7-7800X Skylake-X 6-Core 3.5 GHz LGA 2066 140W ...
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Intel Core i7-2600S - Core i7 2nd Gen Sandy Bridge Quad-Core 2.8GHz (3.8GHz Turbo Boost) ...
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Intel Core i5 7th Gen - Core i5-7500 Kaby Lake Quad-Core 3.4 GHz LGA 1151 65W ...
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Intel Core i7-930 - Core i7 Bloomfield Quad-Core 2.8 GHz LGA 1366 130W Desktop Processor - ...
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Intel Core i7-9700KF 3.6 GHz LGA 1151 (300 Series) BX80684I79700KF Desktop Processor - ...
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Intel Core i3-3240 - Core i3 3rd Gen Ivy Bridge Dual-Core 3.4 GHz LGA 1155 55W Intel HD ...
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Intel Core i5-4440 - Core i5 4th Gen Haswell Quad-Core 3.1 GHz (3.3 GHz Turbo) LGA 1150 84W ...
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HP Xeon E5630 2.53 GHz Processor Upgrade - Socket B LGA-1366
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Intel Core i5-670 - Core i5 Clarkdale Dual-Core 3.46 GHz LGA 1156 73W Intel HD Graphics ...
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Common Questions about Computer Processors

Introduction

Shopping for a computer processor can require some research to find the one that best meets your demands and is within your budget. Often, such research can lead to additional questions about features and specifications. To help you in your search for a computer CPU, NeweggBusiness answers some of the most common questions that users usually have.

How many cores do I need?

The number of cores that you need is largely dependent on the tasks and applications that the computer will be running. Having more than one core helps with multitasking and can improve performance if the software supports multi-core computer processors. For software that does not support multiple cores, multi-core CPUs will not provide additional performance gains.

Should I prioritize the number of cores or clock speed?

It can vary depending on how the processor will be used. If you intend to use the processor with software that can take advantage of multiple cores, then you should prioritize core count. If you are planning to use the computer processor with applications that cannot take advantage of multiple cores, you will see more performance benefits from faster clock speeds.

What is an Accelerated Processing Unit (APU)?

An APU is a type of computer processor produced by AMD that functions as both a CPU and graphics processing unit (GPU). Intel also produces computer processors with integrated GPUs, though they are not marketed as APUs. The advantage of a computer processor with a built-in graphics accelerator is the fact that a video card is not required, which lowers costs for assembling a computer system.

What does the nanometer (nm) rating signify?

A computer processor’s nm rating is a measurement of its die size. The die is a chip that is cut from a larger wafer and is measured in nanometers. The smaller a die is, the more that can be cut from a single wafer. The advantages for the manufacturer are lower production costs and higher yields. For end-users and IT professionals, the benefits of decreasing die size include lower heat production and power usage.

What is the difference between L1, L2, and L3 cache memory?

There are multiple levels of cache memory for a computer processor and each level has different data access speeds and capacities. The fastest is L1 cache, which is the primary cache and has the smallest storage capacity. Next is L2 memory, which is slightly slower but larger than L1 cache. L3 cache is the slowest but has the largest capacities of the three levels of cache memory.