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AMD EPYC 9004 (4th Gen) 9354P Dotriaconta-core (32 Core) 3.25 GHz Processor - 256 MB L3 ...
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AMD EPYC 9004 (4th Gen) 9654 Hexanonaconta-core (96 Core) 2.40 GHz Processor - 384 MB ...
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HP Intel Xeon E7-4880 v2 Pentadeca-core (15 Core) 2.50 GHz Processor Upgrade - Socket R ...
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AMD EPYC 9004 (4th Gen) 9554P Tetrahexaconta-core (64 Core) 3.10 GHz Processor - 256 MB ...
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HP 818170-B21 Hpe Dl360 Gen9 E5-2609V4 Processor Kit - Includes 1.7Ghz Intel Xeon ...
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Intel Xeon Gold (4th Gen) 6448Y Dotriaconta-core (32 Core) 2.10 GHz Processor - 60 MB L3 ...
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HP DL380p Gen8 Intel Xeon E5-2643 Sandy Bridge-EP Clock Speed: 3.30 GHz 1MB L2 Cache ...
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AMD 100-100000797WOF EPYC 9634 2.25GHZ 84-Core Gen-4 Processor
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AMD EPYC 9004 (4th Gen) 9754S Octacosahecta-core (128 Core) 2.25 GHz Processor - 256 MB ...
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HP Xeon DP E5649 2.53 GHz Processor Upgrade - Socket B LGA-1366
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AMD EPYC 9004 (4th Gen) 9554 Tetrahexaconta-core (64 Core) 3.10 GHz Processor - 256 MB ...
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HP Xeon E5-2603 v2 1.8 GHz 10MB L3 Cache LGA 2011 80W 722285-B21 Server Processor ...
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AMD EPYC 75F3 Milan 2.95 GHz 256MB L3 Cache Socket SP3 280W 100-000000313 Server ...
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AMD EPYC 9004 (4th Gen) 9654P Hexanonaconta-core (96 Core) 2.40 GHz Processor - 384 MB ...
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HP Intel Xeon E5-2698 v4 Icosa-core (20 Core) 2.20 GHz Processor Upgrade - Socket LGA ...
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HP Intel Xeon E5-2620 v3 Hexa-core (6 Core) 2.40 GHz Processor Upgrade - Socket LGA ...
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Intel Xeon Gold (4th Gen) 6438N Dotriaconta-core (32 Core) 2 GHz Processor - 60 MB L3 Cache - ...
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AMD EPYC 9004 (4th Gen) 9634 Tetraoctaconta-core (84 Core) 2.25 GHz Processor - 384 MB L3 ...
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HP 662214-B21
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HP Xeon DP E5649 2.53 GHz Processor Upgrade - Socket B LGA-1366
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HPE 650766-B21 Intel Xeon E7-4800 E7-4807 Hexa-core (6 Core) 1.86 GHz Processor ...
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Intel PK8071305120102 Xeon Gold 16-core 6426Y 2.50GHZ Processor.
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AMD EPYC 9004 (4th Gen) 9124 Hexadeca-core (16 Core) 3 GHz Processor - 64 MB L3 Cache - 16 ...
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Desktop and Server Processor Comparison

What are the differences between a desktop and server processor?

Servers and desktops are used for different purposes, and a server processor reflects that. It is designed to be more robust and have features that are not needed in desktops. It must be able to process the needs of multiple users simultaneously, run reliably for very long periods of time, support server-specific hardware and software, manage network resources, and more. NeweggBusiness will detail some of the major hardware differences between desktop and server processors that allow the latter to meet those requirements.

Increased number of cores

The number of cores a processor has and the clock speed of those cores are two important factors that affect overall processor performance. Increasing the clock speed of a processor’s cores allows it to perform calculations quicker while increasing the number of cores allows it to perform more calculations simultaneously.

Some server programs can utilize multiple cores to increase the number processes that can be executed at one time. For instance, when multiple client computers send requests to a server, each individual core can be leveraged to handle a different request.

Multi-processor support

Some server motherboards have the ability to use more than one processor, with a handful able to support up to four CPUs. This allows for additional cores to be utilized by the server, which is then able to support more users and processes. For instance, one common practice is to use two quad-core processors for a total of eight useable cores.

Support for error-correction code (ECC) memory

Some server processors are able to support memory with error-correction code, otherwise known as ECC memory. ECC is a feature that allows the memory to perform self-checks and fixes for common data errors. It is a very important feature, as errors in system memory can lead to data corruption or crashes.

Larger CPU cache sizes

A CPU cache is a small amount of memory that is located on the processor chip and is used to store frequently accessed data. Compared to desktop processors, server processors will typically have larger caches.

Support for larger memory capacities

When comparing specifications for server and desktop processors, you may notice that some server processors are able to support very large amounts of memory—much more than desktop processors. However, the motherboard and software must also be able to support that much memory.

Rated for longer periods of sustained load

Servers sometimes operate continuously for very long periods of time, which can put a lot of strain on the processor. To meet those needs, server processors have features that help prevent overheating, reduce power consumption, equalize workloads, and more.

Conclusion

These hardware differences allow a server processor to function reliably for very long periods, handle the needs of multiple users simultaneously, and support specialized software. If you are assembling a server workstation for your organization’s network, then be sure to use server-grade hardware such as a server processor and motherboard.

 

By NeweggBusiness Staff