HTPC Aspects : Miscellaneous Factors

In this section, we cover some miscellaneous HTPC aspects that are too short to warrant a separate section. These include a discussion of various display refresh rates supported, a short look at the hardware encoder (NVENC) in action and a summary of our thoughts on the GT 750Ti as a HTPC GPU.

Refresh Rate Accuracy:

NVIDIA provides an easy way to customize refresh rates. The process remains the same as what we explained in our review of the GT 640. The 23 Hz setting gives us a refresh rate of 23.971 Hz. With Intel providing rock-solid 23.976 Hz support in Haswell, it is time NVIDIA got the out-of-the-box refresh rate support correct.

NVIDIA also allows setting of refresh rates not reported as available by the display's EDID. On the Sony KDL46EX720, it allowed driving of 1080p50 without any issues. The flexibility is definitely appreciated, though it would be nice to have better accuracy without all the tweaking.

Hardware Encoder: NVENC

We used CyberLink MediaEspresso v6.7 to evaluate the hardware encoder block. Our test clip was a 3-minute long 1080p24 H.264 stream at 36 Mbps and the target was a 720p24 H.264 stream at 6 Mbps. The time taken for conversion and the power consumption at the wall during the conversion process are provided in the table below.

GPU Video Encoding Performance
  Conversion Time Power
NVIDIA GeForce GTX 750 Ti 2:54 88.97W
NVIDIA GeForce GT 640 0:36 108.18W
AMD Radeon HD 7750 (VCE) 1:06 76.84W
Intel HD 4000 QuickSync (Better Quality/Fast Conversion) 0:24 63.91W

It appears as if the 750Ti is using the CUDA path rather than NVENC, while the 640 seems to use NVENC fine. We had readied ourselves for some quality comparison using objective metrics for the new NVENC. It looks like we have to wait for this issue to be resolved before proceeding down that path. [Update: NVIDIA got back to us indicating that this is a Maxwell-related driver issue. We are waiting for new drivers]

HTPC Verdict - Wait and Watch

We have taken a look at the HTPC credentials of the 750Ti and compared it with the GT 640 and the HD 7750. In terms of power efficiency, it is hard not to recommend the 750Ti. With a 60W TDP, it is amenable to passive cooling also. However, it comes to the market at a time when the HEVC standard has just been ratified (preventing it from having a full-blown hardware accelerated decoder) and HDMI 2.0 with 4Kp60 support being right around the corner. The perfect HTPC GPU would include support for both, but the 750Ti, unfortunately, is a bit early to the game. More troublesome is the fact that CyberLink's MediaEspresso seems unable to take advantage of the new NVENC and the fact that some of our 1080p60 H.264 clips are showing decoding artifacts (considering they play perfectly using the GT 640).

We would suggest HTPC enthusiasts to adopt a wait-and-watch approach to the GT 750Ti, particularly with respect to driver bugs specific to the 750Ti and also the extent of HEVC decode support that will be available. Depending on the requirements, it might also be prudent to wait for a Maxwell GPU with HDMI 2.0 support.

HTPC Aspects : Decoding & Rendering Benchmarks The Test
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  • dylan522p - Tuesday, February 18, 2014 - link

    They are waiting for 20nm for the entire 800 series .
  • MugatoPdub - Tuesday, February 18, 2014 - link

    Interestingly, it seems Nvidia has simply followed Intel in the "mobile first" market race, it is starting to feel as if the enthusiast will be left in the dust within the next few years =(
  • Krysto - Tuesday, February 18, 2014 - link

    Not likely, thanks to the boom in VR that we'll be seeing, which at 4k and 120fps games, will require 16x the performance we get now for games, just to play the same games, in a few years.

    So if anything, Nvidia should be making GPU's at the high-end that are a level or two ABOVE Titan (think 20-30 TF GPUs in 2015).
  • A5 - Tuesday, February 18, 2014 - link

    They probably will? I'm guessing we won't see stuff below the top end (or SLI) targeted at 4K until late 2015/spring 2016, though.
  • madmilk - Tuesday, February 18, 2014 - link

    I doubt enthusiasts will be left behind, simply because HPC users will demand a 225W Tesla card. That in turn can easily sold as a 250W enthusiast card, perhaps under the Titan line.
  • Mondozai - Wednesday, February 19, 2014 - link

    Also, Nvidias desktop business is contributing to their profits and is seeing revenue growth. Their Tegra business revenue is falling almost 50% year over year.

    The desktop high-end GPU market will grow in good health for years to come. Their discrete laptop GPUs, however, will face doom in a relativeley short period of time as integrated GPUs performance rises to a level when most people are satisfied. Laptops specifically for gaming continues to be an unsignificant market.
  • jkauff - Tuesday, February 18, 2014 - link

    madVR NNEDI3 uses OpenCL, and works fine on Intel and AMD boards. NVIDIA OpenCL support has been broken for the last couple of driver iterations. Please use your influence with the NVIDIA developers to get this fixed in the next driver release.
  • IKeelU - Tuesday, February 18, 2014 - link

    ugh, cryptocoin
  • texasti89 - Tuesday, February 18, 2014 - link

    Wow! .. Substantially faster than 260x and consuming less than 60w using same process node. Really impressive. I can't wait to see how Maxwell arch performance & power scale at 20nm. I'm really convinced now that AMD GCN is not as efficient as many reviewers think. AMD will very likely have a hard time in this round.
  • g101 - Tuesday, February 18, 2014 - link

    *slower...Almost always slower than the 260x.... , all for power savings in the range of 5-10%...How...exciting?

    You should try reading the actual words that have been written in the article.

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