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- Cooler master hyper 212 evo install 1155 1156 plus#
- Cooler master hyper 212 evo install 1155 1156 series#
Cooler master hyper 212 evo install 1155 1156 plus#
That's why I was eager to pit Cooler Master's Hyper 212 Plus vs. The thing is, though, not every rig can justify an extra $10-$20 on a cooler when it's simply not going to need more than moderate thermal dissipation. Other options seemed better, even if they were a few bucks more expensive. They've been on the market for a while and have been proven in rigs, but I never really thought they were all that good, if I'm honest.
Cooler master hyper 212 evo install 1155 1156 series#
the NZXT Respire T20 / T40 and other models.ĬM's Hyper 212 series has made a deep impact on the system building community, and Newegg's reviews prove that - the Hyper 212 Plus (sometimes called Hyper 212+) has more than 3,700 user reviews and the Hyper 212 EVO has more than 1,100.
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This review benchmarks Cooler Master's Hyper 212 Plus, one of the best-known CPU coolers on the market, and then compares it vs. There are elements to prioritize, though, and we can uncover what differences make the largest impact by benchmarking a wider array of units.
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There's a lot of engineering that goes into a quality CPU cooler and, as with any quality engineering, you won't find the best possible designs for entry-level coolers. Aftermarket CPU coolers, much like RAM, are a commodity in the mainstream market they're not necessary to operate at stock frequencies, but are nice to have for decreased noise pollution and decreased room temperatures (I'm only sort of joking - my system easily increases room temps by a degree or two).įor lightweight overclocking, of course, the story is different - these coolers are necessary to protect the chip and increase core stability when under load. Keep in mind these calculations are provided for demonstration purposes only and may not reflect the actual lab tested C/W rating, but we're pretty close.Adding an aftermarket CPU cooler to your gaming system will undoubtedly tighten thermal differentials to a more predictable range, and while semiconductors do "like" heat to a limited degree, CPUs have trouble operating under intense, fluctuating thermal load.
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The Overclocked numbers are about right and align with the Hyper 212 Black Edition which show the limitation of the SickleFlow fan and PWM fan curves. (Ryzen, LGA 2011 etc.) When looking at raw temperatures the 64c load temps at the default speed were higher than expected and improved quite a bit once the second fan was added. Of course if the Hyper 212 EVO V2 can handle a Core i9 9900k it also means it can handle any other CPU around the 130w range. (aka not good for overclocking)Īs the charts show we have a heatsink that can clearly handle a Core i9 9900k despite the logic of using a “budget” cooler on a $500USD processor. These numbers can be used to determine heat capacity, the larger the difference the less efficient the heatsink is. The resulting C/W number is used to rate how efficient a heatsink or waterblock is based on the given heat load. This is why we normally only apply 85% of the total wattage output to our heat calculations. Since this is a real world testing method we need to take into consideration real world variables and estimate tolerances. In our heatsink and waterblock tests we don't really focus on overall load temperatures but rather how well the product can remove heat given a specified heat load.