Samsung this week announced its first LPDDR4 memory chips made using its 10nm-class DRAM fabrication technology. The new DRAM ICs feature the industry’s highest density of 16 Gb, are rated to run at 4266 MT/s data rate, and open the door to more mobile devices with 8 GB of DRAM.

Earlier this year Samsung started to produce DDR4 memory using its 10nm-class DRAM manufacturing process (which is believed to be 18 nm) and recently the firm began to use it to make LPDDR4 memory devices, just as it planned. The thinner fabrication technology allowed Samsung to increase capacity of a single LPDDR4 DRAM IC to 16 Gb (up from 12 Gb at 20nm introduced in August, 2015) while retaining a 4266 MT/s transfer rate.

The first product to use the 16 Gb ICs is Samsung’s 8 GB LPDDR4-4266 mobile DRAM package for smartphones, tablets, and other applications that can use LPDDR4. The device stacks four memory ICs and provides up to 34 GB/s of bandwidth when connected to an SoC using a 64-bit memory bus. The 8 GB DRAM package comes in a standard 15 mm x 15 mm x 1 mm form-factor, which is compatible with typical mobile devices, but Samsung can also make the package thinner than 1 mm to enable PoP stacking with a mobile application processor or a UFS NAND storage device.

Samsung's 8 GB LPDDR4 DRAM Package
  SEC 634
DRAM IC Capacity 16 Gb
Number of DRAM ICs 4
Data Rate 4266 MT/s
Bus Width x64
Bandwidth 34 GB/s
Package 15 mm x 15 mm x 1 mm
Process Technology 10nm-class (18nm?)

Samsung has not revealed a lot about the cost efficiency or power consumption of the 16 Gb LPDDR4 ICs, nor have they discussed those details for the 8 GB LPDDR4 package either. What little Samsung has said is that the latter consumes approximately the same amount of power as a 4 GB LPDDR4-3200 device (four 8 Gb ICs) made using its 20 nm-class process technology. Taken at face value, one can extrapolate that the switch to the 10nm-class fabrication process allowed Samsung to double the capacity and increase performance by 33% at the same power. Unfortunately, we do not know anything about the geometry scaling of the new ICs relative to Samsung's older ICs, so it's hard to even guess how much Samsung's newest DDR4 costs to fab.

Samsung has not officially commented on when it plans to start commercial shipments of its 8 GB LPDDR4 packages, but it is reasonable to assume that the company will commence sales of such devices in the coming months, with actual products hitting the market in 2017.

Source: Samsung

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  • drbroom - Saturday, October 22, 2016 - link

    Maybe this will make an appearance in the Nintendo Switch?
  • prisonerX - Monday, October 24, 2016 - link

    640K should be enough for anyone.
  • Lolimaster - Monday, October 24, 2016 - link

    Because people are stupid and keep a ton of non-sense apps running in the background like they were some kind of CEO/Stock trader who need to know about many things 24/7.

    Weather app, twitter, facebook, whatsapp, currency, photos, etc. Why you need to keep all of those open?
  • Pippa Loyal - Friday, October 21, 2016 - link

    Did this xplode as well?
  • Michael Bay - Friday, October 21, 2016 - link

    Whatever their phone faults may be, SEC RAM is usually solid.
  • cditty - Friday, October 21, 2016 - link

    Can we give it a freaking rest? It's tiresome to see every single article about something Samsung makes have a set of explosion comments.
  • TheinsanegamerN - Monday, October 31, 2016 - link

    you seem a bit FIRED up.
  • zeeBomb - Saturday, October 22, 2016 - link

    Samsung ahead of the game with their semiconductors...I would LOVE to see this on a Tablet or a special Note version.
  • Lolimaster - Monday, October 24, 2016 - link

    So LPDDR4 for mobile devices is advancing faster than PC DRAM. Where is DDR4 4266 CL17-18?

    32GB sticks?
  • dealcorn - Monday, October 24, 2016 - link

    Last time I checked, NewEgg offered no LPDDR4 DIMM's. While not yet supported in announced products, Apollo Lake supports LPDDR4. This product is not just for mobile and I will be pleased if independent testing verifies that energy efficiency is doubled.

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