Exynos 7420: First 14nm Silicon In A Smartphone

This generation more than any generation in recent memory has been a time of significant movement in the SoC space. We were aware of the Exynos 7420 well before it was announced in the Galaxy S6, but for the most part I expected to see Snapdragon 810 in at least a few variants of the Galaxy S6. It was a bit surprising to see Samsung drop Snapdragon SoCs completely this generation, and judging by the battery life of the Galaxy S6 it seems that Samsung had their reasons for doing this.

For those that are unfamiliar with the Exynos 7420, this SoC effectively represents the culmination of their efforts in semiconductor manufacturing and integrated circuit design. On the foundry side, Samsung is leveraging their vertical integration to make the first SoC on their 14nm LPE (Low Power Early) process, which seems to be solely for Systems LSI until they can no longer use all production capacity.

We previously mentioned that Samsung’s 14nm process in general will lack any significant die shrink due to almost unchanged metal interconnect pitch, but this assumption was in comparison to their 20nm LPM process from which the 14nm LPE process borrows its BEOL (back end of line) from. Opposite to what we thought, the Exynos 5433 was manufacturered on a 20LPE process which makes use of a quite larger metal layer. The result is that one can see a significant die shrink for the 7420 as it is, according to Chipworks, only 78mm² and a 44% reduction over the Exynos 5433's 113mm². This is considerable even when factoring in that the new SoC had two added GPU shader cores. Beyond the swap from a LPDDR3 memory controller to a LPDDR4 capable one, the only other at first noticeable major functional overhaul on the SoC seems to be that the dedicated HEVC decoder block has been removed and HEVC encoding and decoding capability has been merged into Samsung's MFC (Multi-Function Codec) media hardware acceleration block.


Galaxy S6 PCB with SoC and modem in view (Source: Chipworks)

The move from a planar to FinFET process is crucial. Although this is covered in more detail in previous articles, the short explanation is that planar processes suffer from increasing power leakage at smaller process nodes as the bulk of the silicon becomes relatively more massive than the gate that controls the flow of current. This causes decreased power efficiency as the power source of the transistor starts to act as a gate itself. FinFET solves this problem by attempting to isolate the transistor from the bulk of the silicon wafer, wrapping the gate around the channel of the transistor to ensure that it retains strong control over the flow of current compared to a planar transistor design.

The effective voltage drop allowed by the process can be substantial. We can have a look at some voltage excerpts of common frequencies available on both the Exynos 5433 and 7420:

Exynos 5433 vs Exynos 7420 Supply Voltages
  Exynos 5433 Exynos 7420 Difference
A57 1.9GHz (ASV2) 1287.50mV 1056.25mV -234.25mV
A57 1.9GHz (ASV9) 1200.00mV 975.00mV -225.00mV
A57 1.9GHz (ASV15) 1125.00mV 912.50mV -212.50mV
A57 800MHz (ASV2) 950.00mV 768.75mV -181.25mV
A57 800MHz (ASV9) 900.00mV 687.50mV -224.50mV
A57 800MHz (ASV15) 900.00mV 625.00mV -275.00mV
A53 1.3GHz (ASV2) 1200.00mV 1037.50mV -162.50mV
A53 1.3GHz (ASV9) 1112.50mV 950.00mV -162.50mV
A53 1.3GHz (ASV15) 1062.50mV 900.00mV -162.50mV
A53 400MHz (ASV2) 862.00mV 743.75mV -118.25mV
A53 400MHz (ASV9) 787.50mV 656.25mV -131.25mV
A53 400MHz (ASV15) 750.00mV 606.25mV -143.75mV
GPU 700MHz (ASV2) 1125.00mV 881.25mV -243.75mV
GPU 700MHz (ASV9) 1050.00mV 800.00mV -250.00mV
GPU 700MHz (ASV15) 1012.50mV 750.00mV -262.50mV
GPU 266MHz (ASV2) 875.00mV 750.00mV -125.00mV
GPU 266MHz (ASV9) 800.00mV 668.75mV -131.25mV
GPU 266MHz (ASV15) 762.50mV 606.25mV -156.25mV

The ASV (Adaptive Scaling Voltage) numbers represent the different type of chip bins, a lower value representing a worse quality bin and a higher one a better quality one. Group 2 should be the lowest that is found in the wild, with group 15 representing the best possible bin and group 9 the median that should be found in most devices. As one can see in the table, we can achieve well up to -250mV voltage drop on some frequencies on the A57s and the GPU. As a reminder, power scales quadratically with voltage, so a drop from 1287.50mV to 1056.25mV as seen in the worst bin 1.9GHz A57 frequency should for example result in a considerable 33% drop in dynamic power. The Exynos 7420 uses this headroom to go slightly higher in clocks compared to the 5433 - but we expect the end power to still be quite lower than what we've seen on the Note 4.

On the design side, Systems LSI has also done a great deal to differentiate the Exynos 7420 from the 5433. Although the CPU architectures are shared, the A53 cluster is now clocked at 1.5 GHz instead of 1.3 GHz, and the A57 cluster at 2.1 GHz rather than 1.9 GHz. The memory controller is new and supports LPDDR4 running at 1555MHz. This means that the Galaxy S6 has almost double the theoretical memory bandwidth when compared to the Galaxy Note 4 Exynos variant, as we get a boost up to 24.88GB/s over the 5433's 13.20GB/s. We still need to test this to see how these claims translate to practical performance in a deep dive article in the future, as effective bandwidth and latency can often vary depending on vendor's memory settings and SoC's bus architecture. 

Outside of the memory controller, LSI has also updated the 7420 to use a more powerful Mali T760MP8 GPU. Although the Exynos 5433 had a Mali T760 GPU as well, it had two fewer shader cores which means that achieving a given level of performance requires higher clock speeds and higher voltages to overcome circuit delay. This new GPU is clocked a bit higher as well, at 772 MHz compared to the 700 MHz of the GPU in the Exynos 5433. We see the same two-stage maximum frequency scaling mechanism as discovered in our Note 4 Exynos review, with less ALU biased loads being limited to 700MHz as opposed to the 5433's 600MHz. There's also a suspicion that Samsung was ready to go higher to compete with other vendors though, as we can see evidence of an 852 MHz clock state that is unused. Unfortunately deeply testing this SoC isn’t possible at this time as doing so would require disassembling the phone.

Introduction and Design Battery Life and Charge Time
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  • bogda - Saturday, April 18, 2015 - link

    External SD on Android is mostly for media files so for me capacity is much more important than performance. Songs and videos will play the same regardless of SD speed.I am not going to watch video at 8x speed.
  • Notmyusualid - Saturday, April 18, 2015 - link

    To be honest, I'm happy you are happy with your purchase.

    To me, it looks gorgeous, but it seems a tiny step down from my GS5. No micro sd slot, no removable battery, no waterproofing (a big one this), and I notice the GFX Bench had worse battery life too.

    That record charge time might persuade me, if I were to lose my GS5 drunk etc. But then a second-hand GS5 is a bargin now.
  • ethebubbeth - Friday, April 17, 2015 - link

    My LG G3 has both removable battery and a microSD slot. Here's hoping they continue to carry the torch since it appears that Samsung has dropped it.
  • Ammaross - Friday, April 17, 2015 - link

    We'll find out at the end of the month when they announce the LG G4. I'm waiting to see/hear specs on it (officially) before pulling the trigger with an S6. The loss of the SD slot is a bit painful when you have to pony up an extra $100 for a measly extra 32GB....
  • akdj - Friday, April 24, 2015 - link

    Or two hundred for incredibly fast internal NAND storage, a bump of 96GB.
    I've owned each iteration of the Note (business line) except Note 2. Still have the Xoom. iPhones, same --- our employees carry them and I use the 6+ as my personal phone. I didn't upgrade Note 1 --> 2, as I couldn't get out of Note 1 quickly enough (contract). Slow as molasses. 2 changed that, and when it was time to get rid of it, the Note 3 was entirely new 'experience-wise' in comparison. Ten times quicker! I've had the Note 4 since release and I've found the further we move up in Android versions, the less 'control' I've had over where and what storage I'm able to keep on the microSD card
    Media, for sure....but for two bills more, over two years is $8/month for 128 GB. I've got the 6+/128 and I've never felt pinched. Even with 3 & 4GB HD movie files I've not compressed. Battery life is incredible on both and other than extended oversea flights I've never had a problem. I also have a TB or 4 at home sharable to the remote phones and tabs from the house but I've never needed to re download extra music or motion while on holiday travel. Best to get out and see the scenery than watch our phones.
    128 is a large chunk of internal data to hold. And it's 'not' expensive. If you're a DSLR shooter and use CF cards, motion, or proprietary capture (P2, SxS, RED's SSDs, etc.) --- you know how expensive a 'fast' card is. Even the quickest can't hold a candle to the latest Sammy and Apple MLC/TLC storage. Stairway to Heaven is going to sound the same when you get home but the ability to capture the shots you want, motion and speeds or different resolutions keep the internal NAND's speeds, reliability and prices continue to rise (first two), and drop (price) for these sealed, internal storage modules.
    As for batteries ...I've also owned each iPhone and other than Mophie cases on the smaller phones, I've found no such need on the 6+, from the scores shown here...that'll be the case with the S6 as well.
  • Peichen - Saturday, April 18, 2015 - link

    Seems like LG G4 will have removable back, battery and a microSD slot according to leaks.
  • Lonyo - Friday, April 17, 2015 - link

    They lost me. My new phone (replacing an S3) arrived yesterday. It has a MicroSD slot and a removable battery.
    I'm using a MicroSD card in it. It's the one I had in my S3.

    Samsung want me to pay $200 premium to upgrade from 32GB to 128GB when I already own 128GB of phone-compatible storage. They can shove it.
  • Notmyusualid - Saturday, April 18, 2015 - link

    +1
  • juxt417 - Wednesday, April 22, 2015 - link

    Hope you have everything backed up for if/when that bad boy fails. I gave up on SD cards after mine burnt out.
  • ahw - Friday, April 17, 2015 - link

    SD Card slot is the bigger issue, IMO. Samsung has already lost a customer: me. I have an S4 and am eligible for an upgrade. It won't be the S6.

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