Intel To Introduce New 3D NAND Based SSDs in 2017 – Complete Storage Roadmap for 2017 Leaked, Including Optane SSDs

Dec 6, 2016 at 04:20am EST

Intel’s 3D XPoint platform is eagerly awaited by most of the storage industry and promises to disrupt current SSD technologies. It offers a leap in performance that you will not get from the gradual performance upgrades of typical NAND SSDs. However, it looks like Intel will be ramping up production of 3D NAND with brand new products along with the expected Optane platform. Thanks to a report by DigiTimes, we now have a very accurate idea on when we can expect mass production to begin for the new consumer SSD platforms: Q2 2017

Intel's Storage Roadmap Detailed for 2017: 3D NAND based SSDs

It goes without saying that the Optane SSD platform is going to pose a serious business risk to existing players including Samsung Electronics, SK Hynix and Toshiba just to name a few. Once the technology matures, its price/performance characteristics should outstrip typical SSDs by a long shot. However, Intel can still have a piece of the pie by updating its current lineup with brand new products using 3D NANAD that are targetted alongside the Optane platform (expected to land in 2017).

First Quarter 2017

Second Quarter 2017

Third Quarter 2017

Fourth Quarter 2017

Intel Optane Roadmap 2017: Arriving under Mansion Beach and Stoney Beach platform by the end of 2016

The Intel Optane Memory 8000p will come in two categories: 16 GB and 32 GB. Since we are not talking about DIMMs here, I have to assume that they are referring to the block size which means that this is a significant increase over the current SSD standard and will result in large SSD sizes. PCI Gen 3.0 is supported as well as the M.2 2241 and 2280. The 32 GB variant is the superior one while as the 16 GB variant offers slightly lower performance numbers. Both, however, easily outstrip mainstream SSDs on the market right now (I took the liberty of adding a comparison table at the end).

The Optane Memory 8000p series will feature random read in the range of 285000 to 300000 IOPs which is an almost three times increase over conventional SSDs. Random write on the other hand is ranged between 75000 to 120000 IOPs and the lower value is about the same as conventional SSDs while the top end is slightly more.The 8000p series features a sequential read speed of 1400 MB/s to 1600 MB/s and is roughly 2.5-3 times greater than the sequential read of mainstream SSDs. Something very interesting, however, is the sequential write speed, which ranges between 300 MB/s and 500 MB/s and is exactly what you would expect from any decent SSD.

Since Mansion Beach and Stoney Beach are set to arrive first, it would be a fair bet that 8000p series is part of them. Logic would dictate that the 8000p is part of the Stoney Beach series of SSD. Both platforms are supported under Kaby Lake and we expect them to hit the market once KBL gets market-wide availability. We don't have any news on pricing at the moment although its a safe assumption that they will be more expensive than high end ssds in the beginning. Micron is also working on their own 3D XPoint based memory solutions and calls them QuantX memory.

We already know that:

At the end of this year, Intel Optane is going to debut for the mainstream side of things with the Mansion Beach platform under the overarching roadmap of Kaby lake. The Mansion Beach platform will be for the very first mainstream SSDs based on Optane tech and supporting the NVMe PCIe Gen 3 x4 configuration (4 lanes support).

Mansion beach will also have a relatively lower end variant: the PCIe 3.0 x2 variant by the name of Brighton Beach. All other specifications will remains the same, only the amount of PCI lanes the SSD can access will change. Mansion Beach will remain as is all through Kaby Lake (and Q1 2017) and will be refreshed when the time comes in 2018 and on wards under Cannonlake architecture.

Brighton beach however, will be succeeded by Carson Beach platform that introduces PCI 3.0 x4, the M.2 as well as BGA configuration support. At about the same time, Stony Beach is going to debut for the enterprise side of things with the very first Intel Optane powered memory tech designed to be used as 'system accelerators'.

The Stony Beach platform will be configured as PCIe Gen 3 x2 (along with support for the M.2 controller). Interestingly, the roadmap also specifies "System Acceleration Generation 1.0" which appears to be a brand new standard as far as the platform is concerned. Stony beach will be succeeded by Carson Beach with pretty much the same specifications as the Enthusiast side of the platform with the added benefit of System Acceleration Generation 2.0.

That's not it either, the roadmap also reveals Intel's plans for its usual 3D NAND platform. The Pro 600p and 600p SSDs with PCIe 3.0 x4 (M.2) support will be in cycle till the first half of 2017. At which point, production will stop for the remaining half year. Intel will debut its 2nd Generation 3D NAND based SSDs under the Cannonlake architecture (approximately in 2018) with configurations in the PCIe and SATA flavors.

Intel Optane SSDs and 3D XPoint Overview


Intel has previously talked about its 3D XPoint memory and Optane based SSDs as well as released benchmarks of the same – both of which aim to be part of its framework in the future. The 3D XPoint memory technology has 1000x the endurance of NAND flash and is 10 times denser and in some cases upto 1000x faster as well. The 3D XPoint memory will be available in market during next year and will revolutionize the tech industry with the latest 3D XPoint based Optane SSDs and DIMMs.

All Optane based devices will feature a cross point array structure, which consists of perpendicular connectors connecting around 128 Billion memory cells (16 Gigabytes per chip). This “3D” method is the reason why Optane based devices have 10x times the density of conventional solutions. Like DRAM, Optane memory is stackable in nature. One of the biggest changes in this technology, however, is that it eliminates the need for transistors – accessing the memory cells by varying the voltage sent to the particular sector. Basically, using the bulk of the material itself.

Intel Optane Memory 8000p Series Comparison

Specification Intel Optane Memory 8000p Series 16 GBIntel Optane Memory 8000p Series 32 GBSamsung 850 Evo SSD
Random 4KB2 Read (up to)285000 IOPs300000 IOPs94000 IOPs
Random 4KB2 Write70000 IOPs120000 IOPs88000 IOPs
Sequential 128KB Read31400 MB/s1600 MB/s540 MB/s
Sequential 128KB Write3300 MB/s500 MB/s520 MB/s

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