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It lacked support for Samsung’s Magician utility, and it was primarily focused towards OEMs. The SM951 wasn’t meant for consumers, though. Samsung has already released one such drive: the NVMe version of its SM951 SSD.
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The final piece of puzzle is an NVMe SSD-one built in the M.2 2280 form factor and driven by four PCIe Gen3 lanes. So we have the interface, we have the connector, we have the protocol, and we have the software to support it all. Additionally, most Z97 and Z170 boards now support booting from an NVMe drive, either out of the box or with a firmware update. Windows 8.1 and 10 both support NVMe natively for secondary storage. Poised to replace the aging AHCI standard, the NVMe protocol is engineered to scale much better with the broadly parallel NAND configurations in most SSDs nowadays.
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The Z170 chipset offers an abundance of PCIe Gen3 lanes for next-generation storage devices, allowing builders to run graphics cards and PCIe SSDs in tandem without cannibalizing precious bandwidth.
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Intel’s Skylake platform takes full advantage of these developments. Blessedly, notebook and motherboard manufacturers seem to have settled on a single physical form factor and connector (M.2 2280) to dedicate to consumer PCIe storage. These days, any mid-grade to high-end laptop worth its salt comes with a PCIe storage option, and M.2 slots can be found on nearly every modern Intel motherboard. PCIe drives have long been available to those with thousands to spend on storage, but costs have come down considerably. However, a storage revolution has been brewing steadily for last few years. SATA 6Gbps SSDs have been around since 2009, and they still have yet to be displaced as the staple of any mainstream enthusiast build. The inertia inherent to component manufacturing prevents sweeping changes from coming around too often. Hardware innovation doesn’t usually happen overnight.