ASRock Fatal1ty Z77 Professional In The Box

ASRock boxes either fall into one of two categories: either almost nothing or a lot of bang for your buck.  There could be reasons for this – either ASRock has overspent on the board and are trying to bring the cost down, or ASRock has under spent and want to justify the bringing the level of cost on the board up a notch by including everything under the sun to hit the next price point above.  Both can be construed as trying to squeeze more profit margins, or an actual genuine attempt to win over market share from the competitors.  Today with the Fatal1ty Z77 Professional, we get in the box:

Rear IO Panel
User Guide + Manual
Driver CD
Front USB 3.0 Panel + Rear Converter
3-slot SLI bridge
Six SATA connectors, locking
Two 4-pin molex to SATA power cables

On the most positive note, ASRock has included their combination USB 3.0 bay and SSD holder.  I love this bit of kit, which would probably retail for $15 on its own if not more.  Compared to the $230 ASUS P8Z77-V Pro board however, this ASRock at $230 does not include an add-in WiFi card.

Voltage Readings

After my first publication of OCCT voltage readings, a few readers responded with a more in-depth reasoning behind some of the results we were seeing.  With this in mind, I would like to re-describe what we are doing with this test, and how it comes about.

Much of what an enthusiast overclocker does is monitor CPU temperature and voltage.  Whatever settings a user places in the BIOS or OS is at the mercy of the motherboard - in terms of actually setting the values and reporting the values back.   As an enthusiast, we have to rely on what readings we get back, and hope that motherboard manufacturers are being honest with their readings.

Take CPU voltage.  What we as a user see in CPU-Z or OCCT is a time-averaged value that hides voltage ripple (if any) for power delivery.  It is very easy for a motherboard manufacturer to hide this value, or to disregard slight deviations and report a constant value to the user.  The CPU voltage reading can be taken at a variety of places on the power plane, which can vary between motherboards and manufacturers, meaning that each reading is essentially not comparable with the other.  Nevertheless, as an enthusiast, we will constantly compare value A with value B. 

Whether or not I can achieve 4.7 GHz with 1.175 volts on a particular board is inconsequential - your motherboard may perhaps produce the same result with a reading at 1.200 volts.  The only way to test the actual value is with consistent methodology is via an oscilloscope connected to similar points on each board.  This may sound like taking an OCCT reading is therefore redundant.

However, motherboards have settings relating to load line calibration.  As load is applied to the CPU, the voltage across the processor decreases (VDroop).  Load Line calibration essentially attempts to control this level of droop, by increasing voltage when voltage drops are detected away from a fixed value.  Manufacturers have different ideas on how to modify LLC with respect to load, or whether the level of modification should be controlled by the user.  Some manufacturers offer the option at a variety of levels, such that overclockers can be sure of the applied setting (even if it increases peak voltage, as explained by AnandTech in 2007).

By doing a full load OCCT test, we are essentially determining both how aggressive the motherboard is reporting the CPU voltage under load and how aggressive load line calibration is performing (from the point of view of the user without an oscilloscope or DVM).  If someone has one of the motherboards we have tested and you have a different one, variations in load voltage should describe the offset you may require for overclock comparisons.

ASRock has pulled a fast one on the Fatal1ty Z77 Professional.  So far on all the boards I have tested, default settings give load voltage around the 1.050 volt mark on the i7-3770K.  With the Fatal1ty Z77 Professional, the load voltage is almost 0.100 volts lower, at 0.956 volts.  This opens up a can of worms – is this standard across processors?  Will all processors still act fine at stock at this voltage?  I know from testing that the processor I have will run at stock at 0.900 volts set in the BIOS, but can ASRock be sure that all processors will do this?  It is a very interesting prospect.

  Reported Load Voltage / V
ASRock Fatal1ty Z77 Professional 0.956
ASRock Z77 Extreme4 1.050-1.058
ASUS P8Z77-V Deluxe 1.085
ASUS P8Z77-V Pro 1.090
Gigabyte Z77X-UD3H 1.067
MSI Z77A-GD65 1.020

Overclocking

Note: Ivy Bridge does not overclock like Sandy Bridge.  For a detailed report on the effect of voltage on Ivy Bridge (and thus temperatures and power draw), please read Undervolting and Overclocking on Ivy Bridge.

Automatic overclocking comes from the BIOS only, where we have ‘Advanced Turbo Mode 30’ and ‘Load Optimized CPU/GPU’ settings.  The former offers a preset of 4.7 GHz, while the latter gives another menu for 4.0 GHz to 4.8 GHz in 200 MHz increments (also as a series of presets).

Manual overclocking is performed primarily in the BIOS, where we have many of the normal CPU+memory speed/voltage options.  The only downside to these settings I found that was that I could not manually apply the XMP sub-timings of my DDR3-2400 9-11-11 memory kit, as ASRock had artificially limited the options of those timings.  My memory kit would only boot at XMP (with enhanced voltage) around 40% of the time, so I was sitting at my desk a lot hoping that it would boot correctly.

Automatic Overclock: Using the Advanced Turbo Mode 30 setting, the system applied a 47x multiplier on the CPU and 1600 MHz on the iGPU.  This was in conjunction with a +0.085 volt offset on the CPU (LLC Level 1) and +0.120 volt offset on the iGPU (LLC Level 2).  In the OS, this led to 1.272 volts on the CPU at load and a monstrous 102ºC on the CPU at load during PovRay.  I would not be happy running these settings.

With the ‘Load Optimized CPU Setting’ options, the following results were obtained:

- At ‘Turbo 4.0 GHz’, the CPU was at 1.168 volts on load which led to a peak 79ºC during PovRay and 80ºC during OCCT.
- At ‘Turbo 4.2 GHz’, the CPU was at 1.176 volts on load which led to a peak 80ºC during PovRay and 81ºC during OCCT.
- At ‘Turbo 4.4 GHz’, the CPU was at 1.192 volts on load which led to a peak 83ºC during PovRay and 85ºC during OCCT.
- At ‘Turbo 4.6 GHz’, the CPU was at 1.200 volts on load which led to a peak 86ºC during PovRay and OCCT.
- At ‘Turbo 4.8 GHz’, the CPU was at 1.240 volts on load which let to a memory error during PovRay (and 95ºC during load).

Manual Overclock: Our standard testing methodology for Ivy Bridge processors has been to test the minimum voltage for each multiplier on the CPU from 45x and up.  This was also performed on this board.  Apart from adjusting the CPU multiplier and voltage, the PLL Overvoltage option was also enabled.

- The 45x multiplier was stable at a minimum of 1.100 volts, showing 1.096 volts at load in the OS and reaching a peak temperature of 74ºC during PovRay and 75ºC during OCCT.
- The 46x multiplier was stable at a minimum of 1.125 volts, showing 1.128 volts at load in the OS and reaching a peak temperature of 77ºC during PovRay and 78ºC during OCCT.
- The 47x multiplier was stable at a minimum of 1.200 volts, showing 1.200 volts at load in the OS and reaching a peak temperature of 89ºC during PovRay and OCCT.
- The 48x multiplier was not stable even at 1.275 volts, giving 102ºC during PovRay as well as memory errors.

ASRock Fatal1ty Z77 Professional BIOS and Software Test Setup, Power Consumption, POST Time, Overclocks
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  • borden5 - Tuesday, May 22, 2012 - link

    idk about you guy but i won't buy something that just because of a person image on it, it doesn't feel special about the board since whenever i think of my motherboard that guy pop up instead of something else, i'd rather prefer asrock sticker on it than this crap.
  • kam24 - Tuesday, May 22, 2012 - link

    I was looking through the Z77's on Newegg and this caught my attention because of IDE. I'll probably retire my old IDE hard drives along with my dusty old floppy (my current OS drive is SATA and I'll keep that for extra storage)...but I have two IDE optical drives with custom painted face plates. Nothing fancy but I'd like to reuse them. I was disappointed though with how the board fared in this review. When paying this much for a board I'd expect better power management and more polish. I don't care either way about the branding aspect.

    I'd just like to, as someone else mentioned, be able to take a bare bones board and add what I'd like. I wonder how much it would cost a company like MSI or Asus to offer that. I'd pay a little extra for a board perfect for me.
  • frankanderson - Wednesday, May 23, 2012 - link

    You guys know that they do sell IDE enclosures for old school drives and external DVDRW/BR devices right? I have a external usb floppy which I only use to boot up old motherboards that don't like to boot off USB thumb drive for some reason, or insert SCSI driver into floppy.. I just don't like having a floppy in my system anymore, I don't even have a DVD installed, the DVD is installed in my Home Server, I'll network whatever data over that I need, most of my games and apps are digital copies now, they are downloaded in a simple install package and left on my server, can't remember the last time I actually bought a software in a box (I think it was Windows 7 Ulitimate which was years ago)..

    Another thing is "Wendal" is a great gamer, a pro gamer and probably one of the greatest out there, sure it's a dream that someone can do what they love and still make a living from it.. I just don't believe that because it's "endorsed" by him, means that it's the best product..

    And where I am from, most "endorsed" products are just for publicity, us as consumers don't really believe they really use that product at home, even if it's free.. just my $0.02
  • smithrd3512 - Wednesday, May 23, 2012 - link

    Looks like I can put a 5.25" floppy on my new build with this board.

    Would give the kids something to ask me what the heck is a floppy.
  • redwolfe98 - Monday, June 4, 2012 - link

    i disagree that a floppy connector is not needed.. it is needed if you are running "windows xp", as i am..

    read how to flash the bios on a MSI motherboard, which doesn't have a floppy connector, when running win xp:

    "get yourself an external floppy drive with a USB connector; add files to floppy disk so that the external floppy drive is recognized (if it works as intended); if all goes well ie if the external floppy drive is recognized, proceed to flash bios..

    i remember when Dell quit shipping floppy drives.. lots of people weren't able to install the drivers that were needed for "sata", because they didn't have a floppy drive, and, consequently, had to switch things in the bios to "IDE compatibility"..

    i don't see any reason for not including a floppy connector, at least not until windows xp is dead and buried and long forgotten..

    i also like using PS/2 connections for mice and keyboards..
  • spencerp - Monday, June 4, 2012 - link

    I bought a gamer computer back in the day (the HP Blackbird 002 with Voodoo DNA). It has an optical drive with a proprietary LED/button AND it's IDE. It still plenty fast for the occasional optical drive use.

    Due to the ASRock motherboards supporting both the IDE and legacy CPU coolers, it has allowed me to continue to breath new life into my hardware and use my Blackbird (I have the older, but nearly identical z68 version).

    It's got pretty heavy branding which is extremely obvious out of the box. However, when the video cards and CPU cooler is installed, it's not as bad.

    http://www.flickr.com/photos/spthealien/6387705167...

    It has been rock solid.
  • DreadStorm - Friday, May 2, 2014 - link

    Instead of bitching about WHY people use floppies and EIDE, why not just accept the fact that some of us still do - and leave it at that? There are several useful reasons to still use a floppy - or other obsolete removable media - the main one being that no one else has such drives, and what better way to secure data than to place it on a medium that no one else has? USB, Firewire, rack-mounted hard drives, all suffer the same similarity: Everyone has them, and can connect to and try to crack into them. With a floppy, Orb, Zip, Jaz, hell even a 5.25", no one uses anymore, so it makes the data that much more secure against hack attempts. "Old school" hardware still has a number of useful applications nowadays. Personally, I have about 12 different obsolete removable media drives connected to my Fatal1ty Z77 Pro (most via SCSI card). And all work like a champ - except for the floppy drive controller on this board, which had never worked since day one. For the floppies, I have an older P4 machine networked together for those, because of the floppy connector issue on this board.

    If they ever got it fixed, I wouldn't need the older machine anymore. But other than that, I have no intention of relieving myself of older media. If for nothing else than nostalgia and uniqueness.

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