MSI MEG X570 Godlike

Swinging around onto MSI's X570 product stack and we open up with its most premium and ultimately the flagship, the MSI MEG X570 Godlike. The MSI MEG X570 GODLIKE is its flagship X570 motherboard designed for both enthusiasts and gamers with a range of high-end controllers, accessories, and also features a 20-phase power delivery; 14-phase for the CPU VCore and 4-phase for the VGT/SoC.

The X570 chipset on MSI motherboards including this model is actively cooled by a single fan featuring double ball bearing technology which MSI is calling Zero Frozr. Aesthetically the MEG X570 Godlike is impressive and even features an OLED screen which is implemented between the four DDR4 memory slots and the 24-pin ATX 12 V motherboard power input. The four memory slots have support for DDR4-4800 and up to 128 GB of total system memory. Touching on the accessories bundle included with the X570 Godlike is an Aquantia AQC107 10 GbE add-in card and M.2 Xpander-Z Gen4 M.2 PCIe add-on card which allows users to add an additional two PCIe 4.0 x4 M.2 drives on top of the three PCIe 4.0 x4 slots that are present on the board.  Each onboard M.2 slot includes its own individual Lightning Gen4 M.2 heatsink. 


The MSI MEG X570 Godlike comes with an M.2 Xpander-Z Gen4 and Aquantia 10 G NIC add-on card

The MSI MEG X570 Godlike's PCB is four full-length PCIe 4.0 slots which operate at x16, x8/x0/x8, and x8/x4/x4, with the last full-length slot locked down to PCIe 4.0 x4. This means both two-way NVIDIA SLI and up to four-way AMD CrossFire multi-graphics card setups. A lot of focus has also been put enthusiasts with its 16-phase power delivery for the VCore; this power delivery uses Infineon TDA21472 MOSFETs with IR3599 doublers and runs from an IR35201 Digital PWM controller. Providing power to the CPU is two 8-pin 12 V ATX CPU power inputs setting the Godlike up as MSI's most enthusiast-level desktop board for any AMD platform in recent times.

Looking at the rear panel of the X570 Godlike, there are three USB 3.1 Gen2 Type-A, one USB 3.1 G2 Type-C, and two USB 3.1 G1 Type-A ports. Commonly featured on premium models, the MSI MEG X570 Godlike also has a pre-installed rear panel IO shield. Also present is a Flash BIOS button with a highlighted Type-A port dedicated to firmware flashing, as well as a Clear CMOS button, and a PS/2 combo port. The onboard audio is powered by two Realtek ALC1220 HD audio codecs with five 3.5 mm jacks and S/PDIF optical output, MSI has included an ESS E9018 DAC for good measure, which also adds a dedicated 6.3 mm jack for studio headphones which is included in the accessories bundle. The rear panel has two Ethernet ports with a Killer pairing consisting of an E3000 2.5 G, and E2600 Gigabit NIC.

The MSI MEG X570 Godlike E-ATX motherboard has an MSRP of $699 which for everything that is included is quite impressive. With an impressive accessories bundle which includes an Aquantia AQC107 10 G NIC add-on card, an Xpander-Z Gen4 M.2 card which adds a scope for an additional two PCIe 4.0 x4 M.2 drives to be installed bringing to total to five is also a nice touch. It's not a cheap investment, but it's an impressive option for gamers, enthusiasts, and hardware aficionados looking to create a high-end system using Ryzen 3000.

GIGABYTE X570 Gaming X MSI MEG X570 Ace
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  • PeachNCream - Tuesday, July 9, 2019 - link

    Pretty much this. Modern games on DX12 won't see any benefit unless the game developer bakes in support (which they appear uninterested in doing for cost reasons) and older games run very well on a single modern GPU. AMD and NV are hardly acknowledging SLI these days either and nowhere but at the top end so there is even less compulsion for developers to bother with supporting it. All in all, you're better off not worrying about SLI unless the industry changes direction significantly in the next few years.
  • ajlueke - Tuesday, July 9, 2019 - link

    The real question however, is does all this power delivery actually have any practical benefits? If I drop a 3000 series CPU in an X570 board vs X470, can I achieve any additional performance? And what is the power consumption differences in the respective chipsets? That is the type of info I would like to see.
  • PeachNCream - Tuesday, July 9, 2019 - link

    It's a marketng differentiator only as motherboard manufacturers all use the same core components and are quick to emulate one another with similar features. Through branding and obscure features that do not significantly impact computer operation, they search for something they can offer that may encourage you to make a purchase in a very, very crowded field of offerings.
  • lopri - Tuesday, July 9, 2019 - link

    Solid power delivery for high-performance CPUs is perhaps the farthest thing from obscure marketing features. OEMs do play with marketing BS for differentiation, but the underlying power delivery system is extremely important and can impact everyday operation for these multi-core CPUs.
  • PeachNCream - Wednesday, July 10, 2019 - link

    At long as it meets AMD specifications, no it won't. If it doesn't meet specifications, then it's a bad design. There's no reason to tout being mediocre or a hair or two above mediocre unless you're running out of unique bullet points for the backside of the box that nobody bothers to read anyway.
  • Death666Angel - Tuesday, July 9, 2019 - link

    Stock performance will be the same across the board unless the manufacturer royally screwed up and the power delivery has to throttle due to temperatures (which there are some cases of with super cheap motherboards and 8 cores). Doing OC (and PBO is already OC) is where things start to change. More / better phases means less heat output and better voltages (ripple). This can potentially give you better clocks. But most of this is only useful when you start OCing on water or sub zero systems. Air cooled overclocking will hardly benefit at all. And regarding power consumption you can go into a lot of detail. Sometimes more power phases simply destroys efficiency, when they are all fired up all the time. Sometimes more power phases are smartly managed and load balanced to be kept at their optimal efficiency. It really depends on the implementation.
  • Peter2k - Wednesday, July 10, 2019 - link

    If you leave everything at stock, then there is no real reason to upgrade
    Most people would think keeping the socket backwards compatible as an upside

    In a desktop the only real reason why we think about power draw going up from 5w to 11w is because manufactures like to keep the cooling block small, and those need a fan
    Chipset fans bring back memories out of terrible noisy days
    Also I remember chipset coolers to be a bit bigger in the past, I'm sure if you're just trying to provide food cooling, without trying to hit that gamer look, then you can cool that chipset without active fan

    If you want to try your hand at OC'ing you should probably want the better power delivery

    And there is no telling if the older boards will also run fine with higher memory speeds
    Guessing they would, at least until the magical 3600, that's not that outlandish high
    And how much that affects performance this time around still has to be tested

    Short story
    You have a Ryzen already, just make it a drop in replacement
    No need to throw out the board
  • Peter2k - Wednesday, July 10, 2019 - link

    Any one that would argue about the electricity costs going up (I've encountered those) should also not that all that shiny bling probably draws more watts then the 6w or so difference between last gen and this gen
  • pavag - Tuesday, July 9, 2019 - link

    I expected benchmarks.
  • sorten - Tuesday, July 9, 2019 - link

    You expected benchmarks on 35+ boards that were released two days ago, and many of which aren't even available at retail?

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