MSI Prestige X570 Creation

The MSI Prestige X570 Creation is designed with content creators and enthusiasts in mind with similar aesthetics to its HEDT counterpart, the MSI X399 Creation, and implements them onto an E-ATX sized consumer desktop model. On the rear panel cover is a funky RGB enabled design, with the creation logo being the centrepiece. This covers the large power delivery heatsink which features an extended design from around the MOSFETs, down the side of the memory slots and into the chipset heatsink. The X570 chipset heatsink also includes a cooling fan, while the two M.2 heatsinks are moulded into the board's design.

Across the PCI area is a PCB cover which gives the X570 Creation a premium look as it also blends into the aesthetic of the chipset heatsink. Included is three full-length PCIe 4.0 slots which run at x16, x8/x8, and x8/x8/x4 as well as four PCIe 4.0 x1 slots. This means that the X570 Creation supports up to three-way AMD CrossFire, and two-way NVIDIA SLI multi-graphics card configurations. The MSI Prestige X570 Creation is using a 14+2 power delivery with two 8-pin 12 V ATX CPU power inputs, and a single 24-pin 12 V ATX motherboard power input designed to power the board. Storage options include two PCIe 4.0 x4 M.2 slots, with six SATA ports. In the top-right hand corner are four memory slots with support for DDR4-4600, and up to 128 GB.

MSI's Prestige X570 Creation has one of the most impressive rear panels for USB 3.1 Gen2 connectivity. The X570 Creation has eleven USB 3.1 Gen2 Type-A, and a single USB 3.1 Gen2 Type-C port. There's also two USB 2.0 ports and a PS/2 combo port. Also included are two Ethernet ports with one controlled by a 10 GbE Aquantia AQC107 NIC, with the other being controlled by an Intel I211-AT Gigabit NIC; also featured is an Intel AX200 Wi-Fi 6 wireless interface. The board's onboard audio is handled by a Realtek ALC1220 HD audio codec which gives users five 3.5 mm audio jacks and a S/PDIF optical output on the rear panel.

The MSI Prestige X570 Creation represents more elegant range directed towards content creators and professional users. Although this model is the only E-ATX sized offering from MSI at present on X570, the rear panel includes the most impressive selection of USB 3.1 G2 Type-A ports of any model on the chipset with a total of twelve; eleven Type-A and one Type-C. This coupled with a 14+2 phase power delivery, support for DDR4-4533, and an MSRP of $499, this could be the most attractive of all the higher-end X570 models at launch.

MSI MEG X570 Unify MSI MPG X570 Gaming Pro Carbon WIFI
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  • DigitalFreak - Tuesday, July 9, 2019 - link

    I think the only advantage of using a 2000 series CPU with an X570 board will be PCIe 3.0/4.0 support. The X370/X470 only supported PCIe 2.0. In theory, the connection from the 2000 processor to the X570 chipset should run at PCIe 3.0 speeds.
  • FreckledTrout - Tuesday, July 9, 2019 - link

    The x370 chipset and x470 both supported PCIe 3.0 with either a 1xxx or 2xxx Ryzen CPU. If you are not running a 3xxx CPU in the x570 board there isn't any major feature that should cause one to want to upgrade.
  • DigitalFreak - Tuesday, July 9, 2019 - link

    @FreckledTrout - Yes and no. The interconnect between the CPU and the chipset is PCIe 3.0 on X370 / X470, but all the PCIe lanes that come off the chipset are 2.0. Running a 2000 series CPU in an X570 board would give you a PCIe 3.0 link between the CPU and the chipset, with either PCIe 3.0 or 4.0 lanes coming off the chipset (depends on if AMD drops everything to PCIe 3.0 with a 2000 series processor).
  • extide - Tuesday, July 9, 2019 - link

    It looks like they still allow the chipset lanes to be 4.0. So you'd have 3.0 link to cpu, but 4.0 from chipset to devices.
  • Targon - Thursday, July 11, 2019 - link

    Since you have at least one or two PCI Express slots that are connected to the CPU, not chipset, that almost becomes a non-issue. On my Asus ROG Crosshair VI Hero(X370), you have PCI Express 3.0 x16 for the first slot, or x8/x8. The third PCI Express x16 slot is a 2.0 I believe, which is still enough to get the job done for many devices. Even with the X570 board with a first or second generation Ryzen processor, the most you end up with is an extra 3.0 supporting slot. Note that many boards may have x16 slots, but they are x8 electrically, so you won't see the full bandwidth anyway in those slots.
  • sorten - Tuesday, July 9, 2019 - link

    Thanks Gavin! This is a great resource and is exactly what I needed to help build my new system.
  • willis936 - Tuesday, July 9, 2019 - link

    The return of the 40mm fan! Those are the most obnoxious components ever. No one has missed them in the past ten years.
  • Kastriot - Tuesday, July 9, 2019 - link

    Buy Asrock aqua and problem solved.
  • FreckledTrout - Tuesday, July 9, 2019 - link

    I'm waiting for the next iteration of board for this reason. I'm speculating the next round the chipset will be on 7nm.
  • abufrejoval - Tuesday, July 9, 2019 - link

    The genious about that chiplet design is that the chipset doesn't actually benefit nearly as much from the shrink, as pure logic or SLC caches: The monolithic guys pay the 7nm overhead (e.g. EUV) for I/O while the geometry of the transistors in the I/O area is mostly determined by the need to power long motherbord or even slot traces.

    So while waiting is never a bad idea when your need clearly isn't overwhelming you, waiting for that shrink could turn out rather long. These days I/O heave chips might never be done in smaller geometries, because of that and because packaging has matured.

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