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Intel Core i5-13600K Desktop Processor 14 cores (6 P-cores + 8 E-cores) 24M Cache, up to 5.1 GHz

£9.9£99Clearance
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Overall, the Core i5 shows excellent power consumption readings during our tests. It peaks at 471W during our Adobe Premiere test, which is the lowest of any of the CPUs we tested for comparison. Intel's Core i5 pulls slightly more power in the Cinebench test than the competing Ryzen 7 7700X, but it also performs slightly better in that test, which makes this a rather mixed result. Given this information, it seemed likely that these processors would trade places, depending on the test, but instead the Core i5-13600K performs better in every test. It doesn't win by a wide margin in some tests, but it does win. The Core i5-12600K, for its part, was left in the dust,and the Core i5-13600K even manages to perform slightly better than the 16-core Ryzen 9 7950X in a few tests. (That said, the Core i5 lost to the 16-core/32-thread Ryzen 9 7950X badly in most tests, as you'd expect.)

See http://www.intel.com/content/www/us/en/architecture-and-technology/hyper-threading/hyper-threading-technology.html?wapkw=hyper+threading for more information including details on which processors support Intel® HT Technology. It’s also notable that the Core i5-13600K has 24MB of L3 cache, 4MB more than the Core i5-12600K. That’s in addition to 20MB of L2 cache, which is slightly more than double the 9.5MB of L2 cache found on the Core i5-12600K.Intel processor numbers are not a measure of performance. Processor numbers differentiate features within each processor family, not across different processor families. See http://www.intel.com/content/www/us/en/processors/processor-numbers.html for details. Intel's relative price increase with the Core i5-13600K is unwelcome. But we’ve run our tests and cannot deny that the Core i5-13600K still offers exceptional performance for what you pay. Sure, it isn't as fast as the Core i9-13900K or the AMD Ryzen 9 7950X in CPU tests (those flagships have a big core-count advantage), but in games with an Nvidia GeForce RTX 3080—or anything weaker. really—it is more than a match for these two higher-end CPUs. Intel® Iris® Xe Graphics only: to use the Intel® Iris® Xe brand, the system must be populated with 128-bit (dual channel) memory. Otherwise, use the Intel® UHD brand.

Is this a dealbreaker? Not yet, but if Intel thinks it can keep the top spot by just keeping its foot on the gas while AMD is making real investments in power efficiency within a single generation of processors, this won't be good for Intel in the long run. The way the 13600K vs 13700K breaks down is that the i5-13600K is a more mainstream processor meant for everyday use, basic to moderate productivity, light media editing (like working with family photos and video), and moderate gaming. Processors that support 64-bit computing on Intel® architecture require an Intel 64 architecture-enabled BIOS. These wins, however, were slim, and the Core i5-14600K and the Core i5-13600K tied for first place against the faster and more expensive competition in all of the other tests. This suggests that so long as you have a graphics card on the level of the Nvidia GeForce RTX 3080 or anything slower, you really have no need to buy any of these faster and more costly processors for gaming and gaming alone. They're mainly relevant from a pure-gaming perspective if you're trying to compete in the upper echelon of esports with a high-refresh monitor and a top-end video card like the GeForce RTX 4090. (Of course, you might want the extra CPU horsepower for other non-gaming tasks, which is a whole other matter.) The Core i5-14600K and the Core i5-13600K will do just fine.While Intel Meteor Lake chips still use the same 10nm "Intel 7" process as the previous 12th-gen Alder Lake chips, the 13th-gen chips improve on the previous architecture in a number of key ways. And while the rated 125W TDP for the i5-13600K remains the same as with the 12600K, it pulls substantially more power under load than its predecessor in my tests, so plan your build accordingly. Max Turbo Frequency refers to the maximum single-core processor frequency that can be achieved with Intel® Turbo Boost Technology. See www.intel.com/technology/turboboost/ for more information and applicability of this technology.

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