Intel has enjoyed great success with its NUC line of ultra-compact and small form-factor (UCFF & SFF) PCs. While the UCFF form-factor managed to provide enough horsepower for office tasks and other similar use-cases, the gaming market was not addressed. With the emergence of PC gaming as a growth driver, Intel took steps to expand the capabilities of the NUC lineup by creating the NUC6i7KYK (Skull Canyon) with a slightly larger form factor. It came with a high-end integrated GPU (Intel Iris Pro Graphics 580 with 128MB eDRAM) that provided consumers with a bit more gaming leeway compared to other NUCs. Back at the 2018 CES, Intel launched its successors - the NUC8i7HVK and the NUC8i7HNK (Hades Canyon). They are the first desktop PCs to make use of Kaby Lake-G with a Radeon GPU and HBM2 memory in the same package as the processor. Intel provided us with a sample of the high-end Hades Canyon NUC to put through our rigorous benchmarking and evaluation routines.

Introduction and Platform Analysis

Gaming systems and small form-factor (SFF) PCs have turned out to be growth segments in a desktop PC market that has been subject to severe challenges recently. Many vendors have tried to combine the two, but space constraints and power concerns have ended up as performance-limiting factors as soon as a discrete GPU is brought into the equation. We have seen interesting solutions using desktop GPUs in the recent past - namely, the Zotac E-series SFF PCs using high-end 175W TDP GPUs and coupling them with 65W desktop CPUs and liquid cooling. However, they still do not fit into the portability paradigm pioneered by the NUCs (both traditional and the Skull Canyon form factor).

Kaby Lake-G (KBL-G) ties together the processor die, discrete GPU die, and its associated HBM2 memory in one package with a single package TDP. This enables a common thermal solution and intelligent power sharing between the discrete GPU and the processor. These aspects of KBL-G are important to understand the performance of the Hades Canyon NUC. We will not discuss all the features of KBL-G in this article - readers unfamiliar with the product line can peruse our launch coverage.

Unlike Skull Canyon, which has only one SKU (NUC6i7KYK) with the Core i7-6700HQ, Intel is launching Hades Canyon in two versions - the NUC8i7HVK and the NUC8i7HNK. The NUC we are evaluating today is the more powerful of the two: the $999 VR-ready NUC8i7HVK sporting the 100W TDP unlocked Core i7-8809G. The footprint of the Hades Canyon NUCs (221mm x 142mm x 39mm / 1.2L) is slightly bigger than the Skull Canyon NUC (216mm x 116mm x 23mm / 0.69L). It is not surprising, given the additional cooling requirements for the higher TDP processor. Customizable RGB lighting for the lid is an attractive feature in the gaming market. Additional items in the product kit include a VESA mount and screws for the same and a geo-specific power cord to go with the 230W (19.5V @ 11.8A) adapter. A quick-start manual provides directions on how to add memory and SSDs to the unit.

Intel provided us a sample of the NUC8i7HVK with DDR4 SODIMMs and a couple of M.2 SSDs pre-installed. The specifications of our review unit are summarized in the table below.

Intel NUC8i7HVK (Hades Canyon) Specifications
Processor Intel Core i7-8809G
Kaby Lake, 4C/8T, 3.1GHz (up to 4.2GHz), 14nm+, 8MB L2, 100W Package TDP
Memory Kingston HyperX Impact HX432S20IB2K2/16 DDR4
20-22-22-42 @ 3200 MHz
2x8 GB
Graphics Radeon RX Vega M GH
24 CUs, 64 PPC
1063-1190MHz GPU, 800MHz Memory
4GB / 1024-bit HBM2
On-Package
Disk Drive(s) Intel Optane SSD 800p SSDPEK1W120GA
(118 GB; M.2 Type 2280 PCIe 3.0 x2 NVMe; Optane)
Intel SSD 545s SSDSCKKW512G8
(512 GB; M.2 Type 2280 SATA III; Intel 64L 3D TLC)
Networking Intel Dual Band Wireless-AC 8265
(2x2 802.11ac - 866 Mbps)
1x Intel I219-LM Gigabit LAN
1x Intel I210 Gigabit LAN
Audio 3.5mm Combo-audio Jack
Capable of 5.1/7.1 digital output with HD audio bitstreaming (HDMI)
Miscellaneous I/O Ports 2x Thunderbolt 3 (rear)
4x USB 3.0 Type-A (rear)
1x USB 3.1 Gen 2 Type-C (front)
1x USB 3.1 Gen 2 Type-A (front)
1x USB 3.0 Type-A Charging Port (front)
1x SDXC UHS-I Slot (front)
CIR (front)
2x USB 3.0 / 2x USB 2.0 internal headers
Operating System Retail unit is barebones, but we installed Windows 10 Enterprise x64 Build 16299.334
Pricing (As configured) $999 (barebones) / $1617 (as configured)
Full Specifications Intel NUC8i7HVK Specifications

The retail NUC8i7HVK kit doesn't come with a pre-installed OS. Our evaluation was done with Windows 10 Enterprise x64 Build 16299.334 and all the latest patches installed. The launch BIOS of the Hades Canyon NUCs is already protected against Meltdown and Spectre, and hence, our evaluation was done on a fully patched system. The gallery below shows the various features of the chassis as well as the disassembly pictures for the installation of the memory and the SSD.

An important aspect to note in the above pictures include the USB headers visible in the opening beneath the top lid (perfect for third-party lids to take advantage). The presence of dual M.2 slots and dual Thunderbolt 3 ports is quite interesting, and that brings us to the platform configuration.

Platform Configuration and BIOS Features

The NUC8i7HVK uses the Kaby Lake-H Sunrise Point HM175 chipset. It provides a wide variety of I/O options. Of particular interest to us is the availability of 16 PCIe 3.0 lanes configurable as a mix of x1, x2, and x4 connections. The CPU itself has 16 PCIe 3.0 lanes. The lanes are utilized as follows:

  • CPU:
    • PCI-E 3.0 x8 port #2      In Use @ x8 (Radeon RX Vega M GH Graphics)
    • PCI-E 3.0 x4 port #3      In Use @ x2 (ASMedia ASM2142 USB 3.1 xHCI Controller)
    • PCI-E 3.0 x4 port #4      In Use @ x1 (O2Micro Integrated MMC/SD Controller)
  • PCH:
    • PCI-E 3.0 x1 port #2      In Use @ x1 (Intel I210 Gigabit Network Connection)
    • PCI-E 3.0 x1 port #3      In Use @ x1 (Intel Dual Band Wireless-AC 8265 WiFi Adapter)
    • PCI-E 3.0 x4 port #5      In Use @ x4 (Intel Dual-Port Alpine Ridge JHL6540 Thunderbolt 3 Controller)
    • PCI-E 3.0 x4 port #9      In Use @ x4 (M.2 PCIe SSD) (Review Config In Use @ x2 (Intel NVMe SSD Controller))
    • PCI-E 3.0 x4 port #13      In Use @ x4 (M.2 PCIe SSD) (Review Config Empty)

Similar to the Skull Canyon platform, the M.2 SSD slots' PCIe lanes are multiplexed with the SATA lanes. This allows consumers to place either PCIe SSDs or SATA SSDs in the M.2 slot. In fact, our review configuration uses the PCIe 3.0 x2 800p SSD in one slot and the SATA III 545s SSD in the other. The use of the HM175 chipset enables the I219-LM NIC in the system, and the second NIC is made possible via the I210 controller hanging off the PCH's PCIe lanes. We also have a new ASMedia USB 3.1 controller - the ASM2142 that is also present in the newer Zotac ZBOX units such as the EK71080 reviewed yesterday. Interestingly, it is connected directly to the CPU - a privilege we would rather have given to the Alpine Ridge controller. The WiFi adapter is a Wireless-AC 8265 M.2 2230 module with 2x2 802.11ac and Bluetooth 4.2. We would have preferred the newer Wireless-AC 9260 with Bluetooth 5, but, fortunately, end-users can replace this M.2 module without voiding the warranty.

The various options available in the BIOS are covered in the gallery below:

The interesting screens are in the 'Performance' tab - allowing for overclocking of the processor and memory. It is also possible to enable or disable the Intel GPU in the 'Graphics' sub-section. It is enabled by default.

In the table below, we have an overview of the various systems that we are comparing the Intel NUC8i7HVK (Hades Canyon) against. Note that they may not belong to the same market segment. The relevant configuration details of the machines are provided so that readers have an understanding of why some benchmark numbers are skewed for or against the Intel NUC8i7HVK (Hades Canyon) when we come to those sections.

Comparative PC Configurations
Aspect Intel NUC8i7HVK (Hades Canyon)
CPU Intel Core i7-8809G Intel Core i7-8809G
GPU Radeon RX Vega M GH Graphics (4 GB HBM2)
Intel HD Graphics 630
Radeon RX Vega M GH Graphics (4 GB HBM2)
Intel HD Graphics 630
RAM Kingston HyperX Impact HX432S20IB2K2/16 DDR4
20-22-22-42 @ 3200 MHz
2x8 GB
Kingston HyperX Impact HX432S20IB2K2/16 DDR4
20-22-22-42 @ 3200 MHz
2x8 GB
Storage Intel Optane SSD 800p SSDPEK1W120GA
(118 GB; M.2 Type 2280 PCIe 3.0 x2 NVMe; Optane)
Intel SSD 545s SSDSCKKW512G8
(512 GB; M.2 Type 2280 SATA III; Intel 64L 3D TLC)
Intel Optane SSD 800p SSDPEK1W120GA
(118 GB; M.2 Type 2280 PCIe 3.0 x2 NVMe; Optane)
Intel SSD 545s SSDSCKKW512G8
(512 GB; M.2 Type 2280 SATA III; Intel 64L 3D TLC)
Wi-Fi Intel Dual Band Wireless-AC 8265
(2x2 802.11ac - 866 Mbps)
Intel Dual Band Wireless-AC 8265
(2x2 802.11ac - 866 Mbps)
Price (in USD, when built) $999 (Barebones)
$1617 (with SSD, and RAM, as configured / No OS)
$999 (Barebones)
$1617 (with SSD, and RAM, as configured / No OS)
Performance Metrics - I
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  • zodiacfml - Friday, March 30, 2018 - link

    I just like it for its integrated GPU which is a sign of good things to come.

    In the future, I just want to see more power from this setup. We'd see motherboards with a 6 or 8 pin connector for providing power to a more powerful GPU. Large coolers will be relevant again.

    For AMD, I'd like to see them make a similar setup but with the HBM memory accessible for both the CPU and GPU.
  • What would Jesus Do? - Saturday, March 31, 2018 - link

    Test comment test!!!
  • santiagodraco - Saturday, March 31, 2018 - link

    Can't play back UHD Blu-Ray? Wow. Intel you just lost a significant portion of the potential market for this pos. Why would anyone in their right minds buy this over say an Nvidia Shield, or hell a Shield + an Xbox X + a PS4 Pro... for the same money or less.

    Time to fire some folks in management.
  • santiagodraco - Saturday, March 31, 2018 - link

    Not to mention the price once you add an SSD and memory. My god, what are they thinking? This thing is an utter joke! You could build a far far better system without much more of a footprint than this hunk of junk, for less. Just mind boggling. I thought that after the fiasco with the original Skull Canyon that Intel would have learned something... but instead they went backwards. I can hear them now "Let's make it less capable and cost 1/3 to 2x more than the previous version....people will love it!"
  • Hifihedgehog - Monday, April 2, 2018 - link

    The hilarious thing is AMD’s Raven Ridge, which has Video Core Next (unlike its other Vega brethren), can properly decode UHD Blu-ray content and VP9 with fixed function decoding. Excluding gaming, AMD did end up giving Intel the second-rate goods after all. I am using a 2400G in a Streacom FC8 and VCN’s decoding quality is such a revelation that I now strictly use MadVR for UHD Blu-ray and HDR->SDR conversion.
  • medi03 - Saturday, March 31, 2018 - link

    And the reason not include 1060 / 1050 in the benchmarks is?
  • bill44 - Saturday, March 31, 2018 - link

    What a mess.
    Who can recommend a HTPC I can purchase or build that supports the following:

    Stereo 3D - BD 3D ISO frame packed support (without issues) over HDMI 2.x (before you reply, please red Intel's official reply from this thread https://communities.intel.com/thread/112109?start=...

    HDMI 2.x output that supports 176.4KHz, 88.2KHz as well was the usual 44KHz & 192KHz without resampling. As far as I know, NVidia can't do it. Reviews of GPUs do not include AUDIO specification or AUDIO testing anymore, only GAME GAME GAME!
    Apart from picture/movie/streaming, I would like to use my HTPC to play Hi-Res music back without resampling.

    UHD-BD playback - requires protected video/audio path, SGX, firmware & software support etc.

    That's it. Just 3 requirements. Intel iGPU is out, NVidia is out, maybe AMD?
  • bill44 - Saturday, March 31, 2018 - link

    Just one more thing: Displayport 1.2 only? I thought AMD supports 1.3/1.4.
  • Hifihedgehog - Monday, April 2, 2018 - link

    The 2400G actually works for HDMI 2.0 with current gen hardware. I just built an HTPC in a Streacom FC8 and Raven Ridge, which exclusively has Video Core Next (not even discrete Vega has this), has the best hardware video decoding I have ever used, bar none. See here for compatibility information :

    smallformfactor (dot) net/forum/threads/raven-ridge-hdmi-2-0-compatibility-1st-gen-am4-motherboard-test-request-megathread.6709/
  • Hifihedgehog - Monday, April 2, 2018 - link

    PS: Raven Ridge Vega’s VCN has fixed function VP9 decoding without restrictions. Prior revisions of Vega, including the revision on the Intel CPU+dGPU multi-die packages, use the old UVD system which, while considered by most videophiles to be the best hardware decoding option in terms of decoding quality compared to NVIDIA and AMD (see here: forums (dot) anandtech (dot) com/threads/does-anyone-review-video-decoding-quality-any-more.2410025/#post-36936833 ; despite being from 2014, this old post still pretty much applies), still lacks fixed function VP9 hardware support.

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