NZXT

NZXT is another company that recently decided to jump on the AIO cooling bandwagon and they did so a little bit furiously. Instead of releasing a wide selection of products, NZXT released only two coolers, both meant for 140mm fans alone, clearly aiming for the high-performance segments of the AIO coolers market. They supplied us with both of their AIO coolers for this review.

NZXT Kraken X40

We received the Kraken X40 in a well-designed, white box with plenty of information about the product printed on its back and sides. Inside the box, the cooler is protected by cardboard packaging and nylon bags. The bundle of the Kraken X40 comes well presented, with the mounting hardware categorized into separate nylon bags. All of the mounting hardware and brackets are black. There also is a leaflet with installation instructions and a CD with the Kraken Control software, a rather simple piece of software that can be used to control the speed of the pump, fans, and the lighting of the CPU block. A single 140mm fan with a black frame and white blades is supplied with the X40. The fan has a very wide speed range of 800 to 2000 RPM and a fluid bearing for high performance and reliability.

Aesthetically, the Kraken X40 is hardly any different from most other Asetek designs. NZXT went with the normal thickness (27mm) on a 140mm wide radiator, most likely to ensure the compatibility of the cooler with most of their cases. The radiator follows the standard design of every other Asetek-made AIO cooler to this date, with wavy aluminum heat dissipation fins soldered on to the liquid pass-through channels. Unfortunately, fin deformations and imperfections are once again common. NZXT is using black, kink resistant tubing made of hard, smooth rubber. It is noteworthy to mention that the Kraken X40 has 16" (40cm) long tubing, which is about 4" (10cm) longer than that in most other kits.

The circular block-pump assembly does look like the standard Asetek designs, such as the ones of the Corsair H90/H110 kits, yet there is more to it than first meets the eye. There are many wires coming in and out of the block; one is a 3-pin header for power, one is for the USB interface, and the third is for the connection of up to two fans. If the fans are to be controlled via NZXT's Kraken Control software, they need to be connected to the block. NZXT is confident that all of these can be powered via a single 3-pin fan header. At the top of the block, covered by a sticker that is a pain to remove, a circular ring with NZXT's logo on the side can be seen. There is not one but several LED lights beneath it, allowing full control of its lighting color via the supplied software. It is also possible to adjust the color according to the temperature. However, the pump will not light up until it receives a command from the software, so do not get concerned if there is no lighting when you first start up your system.

NZXT Kraken X60

The Kraken X60 essentially is the bigger brother of the X40. It comes supplied in a similarly designed cardboard box, just a little bit larger and with thicker packaging material inside. The bundle is virtually identical, with the same black mounting hardware and a similar manual with installation instructions. However, two 140mm fans are now supplied with the cooler, the same 140mm fans with the black frame and white blades as the one supplied with the X40.

Essentially, the Kraken X60 is both technically and visually identical to the X40, with the exception of the radiator, which is twice as long. The 280mm long radiator can now support up to four 140mm fans, with two supplied by NZXT. Other than that, it has the exact same width and thickness as the radiator of the X40, as well as the same issues with the quality of the heat dissipation fins.

The block-pump assembly is very similar to that of the X40 as well, featuring the same circular design and the same multi-color LED lighting. There are differences on the wiring though, as the assembly now requires power from a SATA connector and can be used to control up to four fans. It appears that the pump is still being powered by the 3-pin header, allowing the control of its speed by the motherboard, with the SATA connector reserved for powering the USB interface and the fans. Thermal compound has been pre-applied on the copper base of the cooler, which is machined to a nearly perfect finish.

Enermax Silverstone
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  • BlakKW - Friday, February 14, 2014 - link

    Nice round-up E.Fyll...congrats on your new spot. Its a fine line between answering questions in the Comments section, and getting sucked into it...be cautious :)
  • MushroomBomb - Friday, February 14, 2014 - link

    Disappointed not seeing any Thermaltake Water, especially with their 3.0 offering, pretty sure they would be able to compete here.
  • Bap2703 - Tuesday, February 18, 2014 - link

    One should take care that the testing setup is in no way providing a "core" temperature despite being written on every graph :/
  • aggiechase37 - Friday, February 21, 2014 - link

    I've had the stock Intel fan on a 4770, and was getting temperatures in the 90's while rendering video. Thanks to this article, I've got the Corsair h90 on the way. Thanks guys!
  • Valentini - Saturday, December 20, 2014 - link

    Finally a truly meaningful test (the best test I have ever seen). In particular, indication of the thermal resistance is really great. The whole thing would be a little bit more accurate, if the indication of differences in temperature would be written in Kelvin instead of Celsius.
  • pikunsia - Wednesday, August 5, 2015 - link

    The difference in Kelvin (absolute) and Celsius (relative), as well as in Rankine (absolute) and Fahrenheit (relative) are the same! my friend. Please, let me show you, taking for example Celsius-Kelvin. Let T_C, T_K be temperatures in Celsius and Kelvin respectively. Thus,
    T_K1 = T_C1 + 273.15,
    T_K2 = T_C2 + 273.15.
    So,
    DT_K = (T_C2 + 273.15) - (T_C1 + 273.15) = DT_C.
    Now, if you're using thermodynamics Relations, for instance (in differential form),
    Tds = dh - vdP,
    where s, h, v, are the specific entropy, the specific enthalpy and the specific volume resp., the temperature T and the pressure P must be necessarily absolute, according to the Second Law of Thermodynamics.
  • ppsu - Friday, August 28, 2015 - link

    It seems there is a new king in town and one of the only 360mm AIO liquid coolers on the market. Fractal Design's Kelvin S36 is an absolute stomper of a unit.

    http://www.performancepsu.com/the-best-aio-corsair...

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