Gaming and Synthetics on Processor Graphics

Intel's GT2 (HD 4600) design dominates most of the Haswell CPU lineup from i3 and up. The differentiator between the i3, i5 and i7 CPUs tends to be the IGP multiplier, which affords 1150 MHz to 1250 MHz depending on the exact SKU. The AMD APUs run away with the top places in most of our IGP tests, and it is pretty clear that overclocking the CPU has little-to-no affect at these quality settings.

F1 2013

CPU IGP, Average FPS, F1 2013

CPU IGP, Minimum FPS, F1 2013

Bioshock Infinite

CPU IGP, Average FPS, Bioshock Infinite

CPU IGP, Minimum FPS, Bioshock Infinite

Tomb Raider

CPU IGP, Average FPS, Tomb Raider

CPU IGP, Minimum FPS, Tomb Raider

Sleeping Dogs

CPU IGP, Average FPS, Sleeping Dogs

CPU IGP, Minimum FPS, Sleeping Dogs

Company of Heroes 2

CPU IGP, Average FPS, Company of Heroes 2

CPU IGP, Minimum FPS, Company of Heroes 2

CompuBench 1.5

CompuBench is a new addition to our CPU benchmark suite, and as such we have only tested it on the following processors.  The software uses OpenCL commands to process parallel information for a range of tests, and we use the flow management and particle simulation benchmarks here.

CPU IGP: CompuBench 1.5 Optical Flow

CompuBench 1.5 64k Particle Simulation

CPU IGP: CompuBench 1.5 64k Particle Simulation

3DMark Fire Strike

CPU IGP: 3DMark FireStrike

CPU Benchmarks Discrete GPU Gaming
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  • leoblaze9 - Friday, July 11, 2014 - link

    WOW! what happened in the particle simulation test? that difference is STAGGERING!!
    just one of the prime examples of the benefits of using both cpu and gpu together as a cohesive whole rather than two discrete entities. I am genuinely amazed at AMD's engineering! kudos AMD....you deserved that one!
  • MamiyaOtaru - Saturday, July 12, 2014 - link

    possible reason they don't use solder anymore: http://iweb.tms.org/PbF/JOM-0606-67.pdf

    specifically:
    "At higher thermal cycles the cracks have propagated across the entire center region of the die and significantly degrade thermal performance.This failure mechanism is predominant on small die form factors. The center degradation mode is not observed, as the die size is increased to the large and medium sizes"

    Smaller die sizes are more likely to see cracks in the solder spread to the middle, significantly harming thermal performance. Ivy Bridge / Haswell with their process shrink have smaller die sizes, perhaps making solder unworkable as a TIM
  • ZeDestructor - Monday, July 14, 2014 - link

    Interesting....
  • Galatian - Saturday, July 12, 2014 - link

    I agree: 4,6 GHz seems to be the sweet spot. Mine uses 1,25V core and a 0,175 V offset uncore to reach Ringbus parity. I needed 1,294V for 4,7 and 1,345 for 4,8. Temperatures were off the hook though and this is with a custom-liquid loop with 2 480mm radiators (one monsta and one 25mm) as well as Liquid Ultra. Stability tested with Prime95 24h and IBT 20 runs on maximum (kudos to IDK in the forum for is stability guide).

    It is an improvement as it seems to be easier to get a rock stable CPU, but temperatures still are a problem. The thing is: I don't believe a better solution would ultimately change anything. I mean when you clearly see that the sweet spot is 4,6 GHz with 1,25V one would assume that 5 GHz probably needs something like 1,5V and that's just dangerously high IMHO.

    Also what I realized is that DC needs a lot less Input Voltage. Stock was at 1,8V, but even with my overclock I could dial it all the way down to 1,5V, which is amazing. Ian have you checked how low you can go? (I can't believe I just said that...). Also how exactly can Prime95 ruin a CPU? I still consider it gold standard, as it would show problems within minutes when other stress tests would happily run for hours. I know it is a hassle to let it run for 24h but nothing gets close to rock stable setting then Prime95.
  • pierrot - Saturday, July 12, 2014 - link

    Now we just need the OC'd Anniversary Pentium benchmarks added in!
  • andrew-1983 - Saturday, July 12, 2014 - link

    The image is blurry, but the batch number of the 4790k looks
    like L336... which if I'm decoding it right means 2013 36th week,
    around 2013 September. Does that matter that you are testing
    a 10 month old CPU for overclocking?
  • Galatian - Saturday, July 12, 2014 - link

    That number stand for the time the silicon was started to be manufactures or something alike...(read the forums...it has been mentioned several times now)...there are a lot more step until a final chip is put together, so it really is not a 10 month old processor.
  • andrew-1983 - Sunday, July 13, 2014 - link

    Ok I get that, but when the retail cpu we buy has an L418C164 that's still
    an 8-month difference, whatever the numbers actually mean, and there is
    a new microarchitecture or die shrink in every year..
    What I'm trying to say is overclockability should be tested with
    silicon similar to what people will buy after reading the review.
  • bludragon - Saturday, July 12, 2014 - link

    My chip need 1.237v to be prime95 stable at 4x4.4GHz. This is the stock vid for aturbo on 1 or 2 cores. Using an NH-D14 it would throttle on cores 2 and 3 (so hitting 105+deg?) withing a few minutes. Delidded it maxes at 91 degrees, so at least 15 degrees better and I used the Noctua TIM. I tried 4.6 but the voltage nneds to be 1.27 or higher as it throttled again there.
  • ratbert1 - Saturday, July 12, 2014 - link

    With an i5-2500k I still do not see the need to upgrade. I have run at 4Ghz with speedstep and voltage on auto for 3 years. My synthetics will be slower, but using an SSD my everyday usage is fine. Just ran Bioshock Infinite benchmark and got 115 fps average and 41 fps min. @1080p on GTX770 running stock speed(card is OC'd version though). Hopefully Broadwell early next year.

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