Today’s Review: Radeon R9 Fury X

Now that we’ve had a chance to cover all of the architectural and design aspirations of the Fiji GPU and its constituting cards, let’s get down to the business end of this article: the product we’ll be reviewing today.

Having launched last week and being reviewed today is AMD’s Radeon R9 Fury X, the company’s new flagship single-GPU video card. Featuring a fully enabled Fiji GPU, the R9 Fury X is Fiji at its finest, and a safe bet to be the grandest video card AMD releases built on TSMC’s 28nm process. Fiji is clocked high, cooled with overkill, and priced to go right up against the only GM200 GeForce card from NVIDIA that anyone cares about: the GeForce GTX 980 Ti.

AMD GPU Specification Comparison
  AMD Radeon R9 Fury X AMD Radeon R9 Fury AMD Radeon R9 290X AMD Radeon R9 290
Stream Processors 4096 (Fewer) 2816 2560
Texture Units 256 (How much) 176 160
ROPs 64 (Depnds) 64 64
Boost Clock 1050MHz (On Yields) 1000MHz 947MHz
Memory Clock 1Gbps HBM (Memory Too) 5Gbps GDDR5 5Gbps GDDR5
Memory Bus Width 4096-bit 4096-bit 512-bit 512-bit
VRAM 4GB 4GB 4GB 4GB
FP64 1/16 1/16 1/8 1/8
TrueAudio Y Y Y Y
Transistor Count 8.9B 8.9B 6.2B 6.2B
Typical Board Power 275W (High) 250W 250W
Manufacturing Process TSMC 28nm TSMC 28nm TSMC 28nm TSMC 28nm
Architecture GCN 1.2 GCN 1.2 GCN 1.1 GCN 1.1
GPU Fiji Fiji Hawaii Hawaii
Launch Date 06/24/15 07/14/15 10/24/13 11/05/13
Launch Price $649 $549 $549 $399

With a maximum boost clockspeed of 1050MHz and with 4096 SPs organized into 64 CUs, R9 Fury X has been designed to deliver more shading/compute performance than ever before. Hawaii by comparison topped out at 2816 SPs (44 CUs), giving R9 Fury X a 1280 SP (~45%) advantage in raw shading hardware. Meanwhile as a result of scaling up the number of CUs, the number of texture units has also scaled up to 256 texture units, a new high-water mark for the number of texture units in a single GPU from any vendor.

Getting away from the CUs for a second, the R9 Fury X features less dramatic changes at its front-end and back-end relative to Hawaii. Like Hawaii, R9 Fury X features 4 geometry engines on the front-end and 64 ROPs on the back-end, so from a theoretical standpoint Fiji does not have any additional resources to work with on those portions of the rendering pipeline. That said, what the raw specifications do not cover are the architectural optimizations we have covered in past pages, which should see Fiji’s ROPs and geometry engines both perform better per unit and per clock than Hawaii’s. Meanwhile the other significant influence here is the extensive memory bandwidth enabled by using High Bandwidth Memory, which combined with a larger 2MB L2 cache should leave the ROPs far better fed on R9 Fury X than it did on AMD’s Hawaii cards.

As for High Bandwidth Memory, the next-generation memory technology gives AMD more memory bandwidth than ever before. Featuring an ultra-wide 4096-bit memory bus clocked at 1Gbps (500MHz DDR), the R9 Fury X has a whopping 512GB/sec of memory bandwidth, fed by 4GB of HBM organized in 4 stacks of 1GB each. Relative to R9 290X, this represents a 60% increase in memory bandwidth, a true generational jump that we will not see again in an AMD GPU for some number of years to come.

Consequently the performance expectations for R9 Fury X will significantly vary with the nature of the rendering workload. For pure compute workloads, between the 45% increase in SPs and 5% clockspeed increase, R9 Fury X will be up to 53% faster than the R9 290X. Meanwhile for ROP-bound scenarios the difference can be anywhere between 5% and 120%, depending on how bandwidth-bound the task is and how effective delta compression is in shrinking the bandwidth requirements. Real world expectations are 30-40% over R9 290X, depending on the game and the resolution, with R9 Fury X extending its gains at higher resolutions.

For AMD, the Radeon R9 Fury X is a critically important card for a number of reasons. From a technology perspective this is the very first HBM card, and consequently the missteps AMD makes and the lessons they learn here will be important for future generation of cards. At the same time from a competitive perspective, the importance of a flagship cannot be ignored. While flagship card sales are only a tiny part of overall card sales for NVIDIA and AMD, the PC video card industry is (in)famous for its window shopping and the emphasis put on which card holds the performance crown. Most buyers cannot (or will not) buy a card like R9 Fury X, but the sales impact of holding the crown is undeniable, as buyers as a whole will favor whoever can hold the crown. After seeing their consumer discrete market share fall to the lowest level in years, AMD is gunning to get the crown back, and the halo effect that comes from it that spurs on so many additional sales of lower-end cards.

The competition for the R9 Fury X is of course NVIDIA’s recently released GeForce GTX 980 Ti. Based on a cut-down version of NVIDIA’s GM200 GPU, the GTX 980 Ti is an odd card that comes entirely too close to their official flagship GTX Titan X in performance (~95%), to the point where although the GTX Titan X is the de jure flagship for NVIDIA, it is the GTX 980 Ti that is the de facto flagship for the company. Meanwhile, although only NVIDIA knows for sure, given the timing of the GTX 980 Ti’s launch, there is every reason to believe that the company launched it with the specific intent of countering the R9 Fury X before it even launched, so AMD does not enjoy a first-mover advantage here.

Price-wise the R9 Fury X has launched at $649, the same price as the GTX 980 Ti, so between these two cards this is a straight-up fist fight. There is no price spoiler effect in play here, the question simply comes down to which card is the better card. The only advantage for either party in this case is that NVIDIA is offering a free copy of Batman: Arkham Knight with GTX 980 Ti cards, not that the PC port of the game is an asset at this time given its poor state.

Finally, as far as launch quantities are concerned, AMD has declined to comment on how many R9 Fury X cards were available for launch. What we do know is that the cards sold out on the first day and we have yet to see a massive restocking take place yet, though at just a week post-launch restocks typically don’t come quite this soon. In any case whether due to demand, supply, or a mix of the two, the initial launch allocations of R9 Fury X did sell out, and for the moment getting another card is easier said than done.

Summer 2015 GPU Pricing Comparison
AMD Price NVIDIA
Radeon R9 Fury X $649 GeForce GTX 980 Ti
  $499 GeForce GTX 980
Radeon R9 390X $429  
Radeon R9 290X
Radeon R9 390
$329 GeForce GTX 970
Radeon R9 290 $250  
Radeon R9 380 $200 GeFroce GTX 960
Radeon R7 370
Radeon R9 270
$150  
  $130 GeForce GTX 750 Ti
Radeon R7 360 $110  
The Four Faces of Fiji, & Quantum Too Meet The Radeon R9 Fury X
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  • Samus - Saturday, July 4, 2015 - link

    Being an NVidia use for 3 generations, I'm finding it hard to ignore this cards value, especially since I've invested $100 each on my last two NVidia cards (including my SLI setup) adding liquid cooling. The brackets alone are $30.

    Even if this card is less efficient per watt than NVidia's, the difference is negligible when considering kw/$. It's like comparing different brand of LED bulbs, some use 10-20% less energy but the overall value isn't as good because the more efficient ones cost more, don't dim, have a light buzz noise, etc.

    After reading this review I find the Fury X more impressive than I otherwise would have.
  • Alexvrb - Sunday, July 5, 2015 - link

    Yeah a lot of reviews painted doom and gloom but the watercooler has to be factored into that price. Noise and system heat removal of the closed loop cooler are really nice. I still think they should launch the vanilla Fury at $499 - if it gets close to the performance of the Fury X they'll have a decent card on their hands. To me though the one I'll be keeping an eye out for is Nano. If they can get something like 80% of the performance at roughly half the power, that would make a lot of sense for more moderately spec'd systems. Regardless of what flavor, I'll be interested to see if third parties will soon launch tools to bump the voltage up and tinker with HBM clocks.
  • chizow - Monday, July 6, 2015 - link

    Water cooling if anything has proven to be a negative so far for Fury X with all the concerns of pump whine and in the end where is the actual benefit of water cooling when it still ends up slower than 980Ti with virtually no overclocking headroom?

    Based on Ryan's review Fury Air we'll most likely see the downsides of leakage on TDP and its also expected to be 7/8th SP/TMU. Fury Nano also appears to be poised as a niche part that will cost as much if not more than Fury X, which is amazing because at 80-85% of Fury X it won't be any faster than the GTX 980 at 1440p and below and right in that same TDP range too. It will have the benefit of form factor but will that be enough to justify a massive premium?
  • Alexvrb - Monday, July 6, 2015 - link

    You can get a bad batch of pumps in any CLC. Cooler Master screwed up (and not for the first time!) but the fixed units seem to be fine and for the units out there with a whine just RMA them. I'm certainly not going to buy one, but I know people that love water cooled components and like the simplicity and warranty of a CL system.

    Nobody knows the price of the Nano, nor final performance. I think they'd be crazy to price it over $550 even factoring in the form factor - unless someone releases a low-profile model, then they can charge whatever they want for it. We also don't know final performance of Fury compared to Fury X, though I already said they should price it more aggressively. I don't think leakage will be that big of an issue as they'll probably cap thermals. Clocks will vary depending on load but they do on Maxwell too - it's the new norm for stock aircooled graphics cards.

    As for overclocking, yeah that was really terrible. Until people are able to tinker with voltage controls and the memory, there's little point. Even then, set some good fan profiles.
  • Refuge - Thursday, July 23, 2015 - link

    To be honest, the wine I've seen on these isn't anything more than any other CLC I've ever seen in the wild.

    I feel like this was blown a bit out of proportion. Maybe I'm going deaf, maybe I didn't see a real example. I'm not sure.
  • tritiumosu3 - Thursday, July 2, 2015 - link

    "AMD Is nothing if not the perineal underdog"
    ...
    perineal =/= perennial! You should probably fix that...
  • Ryan Smith - Thursday, July 2, 2015 - link

    Thanks. Fixed. It was right, and then the spell-checker undid things on me...
  • ddriver - Thursday, July 2, 2015 - link

    I'd say after the Hecktor RuiNz fiasco, "perpetual underdog" might be more appropriate.
  • testbug00 - Sunday, July 5, 2015 - link

    Er, what fiasco did Hector Ruiz create for AMD?
  • Samus - Monday, July 6, 2015 - link

    I'm wondering the same thing. When Hector Ruiz left Motorola, they fell apart, and when he joined AMD, they out-engineered and out-manufactured Intel with quality control parity. I guess the fiasco would be when Hector Ruiz left AMD, because then they fell apart.

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