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  1. ROG CROSSHAIR VIII Series 4001 BETA BIOS 1. Update AGESA version to ComboV2PI 1206 New AGESA version has been applied, but there may be bugs. So please rollback to the previous version if you have any problems Thanks ROG CROSSHAIR VIII HERO BETA BIOS 4001 ROG CROSSHAIR VIII HERO WIFI BETA BIOS 4001 ROG CROSSHAIR VIII FORMULA BETA BIOS 4001 ROG CROSSHAIR VIII IMPACT BETA BIOS 4001 ROG CROSSHAIR VIII DARK HERO BETA BIOS 4001 ROG CROSSHAIR VIII EXTREME BETA BIOS 0601 FOR XOC 3001 BIOS (Some CPUs have better XOC in old bios, so need to test it) HERO : https://drive.google.com/file/d/19phgI9Uqw1dyly0svQEGAsz05Y6uhpxX/view?usp=sharing HERO WIFI : https://drive.google.com/file/d/1IB78aBuTMM3oyhThv1q3DGNa56xhF1Ga/view?usp=sharing FORMULA : https://drive.google.com/file/d/1fJLp-XpeShG72o-QNywLjH4vNo6vM9wH/view?usp=sharing IMPACT : https://drive.google.com/file/d/1DBP_QdaNfCtjFDdImicZYRUxn6gwB5l3/view?usp=sharing DARK HERO : https://drive.google.com/file/d/1j3N0deJg94ZTbEYVMq9biIpZMW2rHRNx/view?usp=sharing NEW OC PACK TURBOV : https://drive.google.com/file/d/1Kkf430LfxOE22lykbp62N7yzF7XPOmcC/view?usp=sharing OCTOOL : https://drive.google.com/file/d/1rUROnjW53ZD80IhaONVk3bl7hsUdv0zV/view?usp=sharing tRFC / tRFC2 / tRFC4 now max value can do 1023. LN2 jumper enabled, FCLK = 1566, VDDG CCD = 1.2V, VDDG IOD = 0.9V. LN2 jumper enabled DRAM voltage = 1.65V. USB Flashback LN2 OC TIP There is an FCLK cold bug under LN2 so try to stay around 1400~1600 for FCLK under LN2 to get a good compromise between temps and perf. To improve stability in this case: VDDG 1.15v, SOC 1.28v, disable DF Cstates. Depending on the CPU and FCLK, may have to control temps -120C ~ -170C. I typically use 1.35v ~ 1.55v SOC just to get as high an FCLK/Cold bug margin as possible. Do not be alarmed when it resets when temperature changes, pcie and fclk needs to retrain when temps change. Also sometimes there is temperature hole so going lower than it hangs may help. FCLK Biggest problem on the platform 1200 default freq and supposed to go 1:1 with memory for best latency. Improves performance but limited, ~ 1800+ on air and 1400 on LN2. FCLK instability includes hang at postcodes such as ‘07’, stuttering in OS, drop performance in Cinebench. CPU has FCLK cold bug. Improve FCLK Margin by using 1.15VDDG (too much will hang) and 1.3+v SOC. Since VDDG is sourced from SOC so SOC should be higher. VDDG only takes effect at 1400+ FCLK so under LN2 you need to set 1400. Higher usually fails during LN2. Enable LN2 mode, Use the Load LN2 profile as a base template, this uses low vcore so you can save exit when it’s not cold. You will need to do this before -40C to avoid cold bug. You need 1400 FCLK + 1.15v VDDG and 1.35~1.45VSOC. Post codes 07 : too high fabric / fabric unstable (can press reset 2~3 try but If not solved You need to reset the flck clock after lowering the temperature to -120c.) F9 or 23 : High Memory Clock / Tight Timings (Memory reset need) other code : (can press reset 2~3 try but If not solved You need to lower the temperature to 100c ~ 120c.) About AMD Limitations Safemode cannot restore back to stock memory settings as this takes place in the ‘PSP’ which the BIOS has no control over at that point of time. Either you have to clear cmos or wait for 5 times of post code ‘F9’ to get into AMD’s recovery mode. AMD’s recovery mode restores every AMD option back to stock, including timings and CLDO voltages. Because of the above, try not to clear cmos during LN2, at most go safe mode if your settings can be sustained with 1.5v DRAM, since BIOS will apply 1.5v for safemode when LN2 enable. IF you clear cmos, FCLK will go back to Auto and CLDO VDDG voltage will too. When cold, FCLK needs to be 1400+ and VDDG 1.15v if not Fabric will be unstable so you need to torch up to maybe -60c in this case. Therefore test your Memory settings on ambient first. Cold CPU improves Memory OC so you don’t need to worry about MC cold bug. TRY NOT TO CLEAR CMOS WHEN CPU IS COLD Enjoy!
  2. Official BIOS ROG Rampage VI Extreme Encore 0401 Bios Download : https://bit.ly/2OqWWOq OCPACK TurboV, MemTweakIt, OCPACK : https://bit.ly/2Ov7Br4 TurboV W7 : https://bit.ly/2LNcIBg (Windows7 use turbov old version.) USB Flashback LN2 OC TIP Same as SKX, Enable ln2 mode, load ln2 profile, adjust volt and ratios accordingly. NOTE: Default SATA mode is RAID mode so to boot into an AHCI Drive you need to switch to AHCI under PCH storage config low core profile (10core or 12core or 14core) high core profie (16core or 18core) Big pots should be used for good temp control. Typically, Coldbug temp is -100c ~ -110c cpu voltage and cache voltage depend on cpu (etc 1.45 ~ 1.55) As with SKX, at -80c plus high mem freq like 4000, manually tune DQS and uncore voltage offset, whether its hard lock in os or AF/00 at mem training. Set all to And set uncore voltage to +0.25 and start adding uncore v offset from there. If have good memory, 4000MHz 12 11 11 is very easy. OCTOOL Skewed voltage sets the specified voltage to the worst core and slightly lesser voltage to the better ones to minimize heat. Skew ratio drops a certain percent of the worst cores to a lower ratio than the one specified while better ones remain at the specified ratio Ratio hot key to hot key a ratio to apply, click start when ready change the worst core voltage and percentage. (Depends on cpu) change the cpu speed using hotkeys (ALT + A , ALT + B, ALT + C) Enjoy!
  3. LN2 BIOS ROG ZENITH II EXTREME 0036 BIOS DOWNLOAD : https://bit.ly/36aJALz Official BIOS ROG ZENITH II EXTREME 0602 BIOS DOWNLOAD : https://bit.ly/2rngx8Y 01.Update AURA Led FW version to 0202. 02.Update AGESA BIOS code to the latest PI1.0.0.2 03.Improve system performance. Before running the USB BIOS Flashback tool, please rename the BIOS file (Z2E.CAP) using BIOSRenamer. OCPACK Turbov and CCX OC Tools : https://bit.ly/2REIMef MemTweakIt : https://bit.ly/2UhX8An Zen Perfboost : https://bit.ly/34W7hap (After loading CineBench R15 or Geekbench3 bench then run the boost, just click defaults button after benching to prevent bsod) USB Flashback LN2 OC TIP Enable LN2 mode, Use the Load LN2 profile as a base template, this uses low vcore so you can save exit when it’s not cold around 0C. You will need to do this before -40C to avoid cold bug. (note, ln2 profile disables some usb ports) Always press reset if hang 94 for bios 1,, 07/20/21 post codes also can press reset many times to try Typically when running 8 sticks, the FCLK margin is slightly worse. To improve margins on the Fabric, two key rails to control are VDDG IOD and VDDG CCD voltage and SOC voltage. VDDG is sourced from SOC voltage and therefore will not be able to exceed SOC voltage. On ambient 1.0 VDDG CCD + 1.10 VDDG IOD is enough to max out FCLK. On LN2 you want around 0.9 VDDG IOD and 1.20 VDDG CCD. On the chipset, when bclk is overclocked, the SATA would all drop out. For BCLK oc use a pcie raid card or NVME, and this will do. Typically margins would be better for devices under the CPU PCIE lanes. TRY NOT TO CLEAR CMOS WHEN CPU IS COLD IF you clear cmos, FCLK will go back to Auto and CLDO VDDG voltage will too. When cold, FCLK needs to be 1400+ and VDDG voltages if not Fabric will be unstable so you need to torch up to maybe -60c in this case. There is an FCLK cold bug under LN2 so try to stay around 1400~1600 for FCLK under LN2 to get a good compromise between temps and perf. To improve stability in this case: 0.9 VDDG IOD and 1.20 VDDG CCD, SOC 1.35v, disable DF Cstates. ~ 40% cpus have no CB when fclk is 1400 with these settings. Depending on the CPU and FCLK, may have to control temps -120C ~ -170C. Typically on ln2, with 1.55vcore and -160++C 5.3~5.5 should run cinebench. Use performance bias to improves scores, CBAggressive will BSOD within 1 minute so use the tool to execute it then bench then execute Gentle or defaults after bench. Post codes Hang 92/98 too high VDDG CCD Hang 90/07 too high fabric/ fabric unstable Hang 20/21 too tight timings, can reset a few times to try to pass. Hang 94, often with LN2 bios, can press reset. Enjoy!
  4. So I know that GP102 is banned, however there is no mention of Vega. My question stems from the fact that while Vega is definitely out prior to the start of the comp, Asus has yet to get around to launching ANY Vega cards of their own prior to the comp. So assuming Snsv gets around to launching Vega before this comp ends will it be valid to sub?
  5. introduction Behind many waters, far far away in some land...there was engineering Office. And there few smart people, put their heads together and created ROG hardware for enthusiast and overclockers:) It was more than 10 years ago. LOng time ago until last generation the "Extreme" products were focused for LN2 directly. Others ROG boards could work very well with LN2 also, but Extreme was something more. DRAM switches, PCIe switches, voltage points etc... However, this year in January was presented new series "APEX", which functionally replaces Maximus Extreme. To Maximus Extreme will include other water - literally Apex is motherboard for LN2 with all stuffs inside. Even the original design was so geeks that the motherboard did not have all audio tracks. Because for hardcore overclockers is audio useless thing. Signal interference. But afterall, the board looks like looks and has it audio part SUpremeFX. CHIPSET Let's look at the chipset itself. Intel introduced a trio of chipsets for termination field: Z270, H270 and B250. Simplifield difference is in the number of PCIe lines in southbridge and therefore other support M.2 SSDs (explained later), support for dual graphics cards AMD/Nvidia, the number of USB 3.0 / 3.1, and even according to the manufacturer's plate. But we are focused at Intel Z270 and concrete at Maximus IX Apex general characteristics of chipset Z270 memory support 2400 MHz DDR4 16x PCIe 3.0 lines in CPU extra 4 PCIe 3.0 lines in PCH compared to Z170 Dual Optane support - up to 2x M.2 SSDs NVMe/RAID 10x USB3.0 6x SATA -for APEX, eg. 4x SATA, no needed for LN2 games Note that Apex has dedicated some USB lines for special functions such as keybot. At Z270 chipset u can run two M.2 PCIe in NVME protocol mode. In H270 also (one of the discs working at the speed X2), but B250 has not (one be in mode PCIe, second must be in SATA mode). If you will to use the M.2 SATA disc, you should know that the communication part is shared with certain SATA connectors, it can always check in advance before plugging the system. Generally it can say that Z270 is a modern and enjoyable chipset, where the next 4 PCIe lines are are useful. Motherboard description in theory Although the board is equipped mainly for extreme overclocking, also has benefits for watercooling setups. These are connectors for AIO or for classic watercooling pump and flowsensor and tempsensor of IN and OUT also. Very smart solution. Water cooling is controlled with 3A fan header, AIO has "only" 1A. Connectors are useful Konektory lze použít i traditional way for PWM/DC control. The fans power plan. Now very special DDR slot. It is designed for devices that support installation of two M.2 drives. But why to inside DIMM slot? Better cooling capabilities and commonly better access to hardware components. You can also put on device RAM cooler, which then cool down M2 SSDs alone. At DIMM2 device we can see few vents, those used for air flow, which can supply CPU fan. Second slide. DIMM2 slot is on the board identical to DDR4, but still makes it different safety plug, so that even a beginner can not functionally obfuscate. Finally something about extreme OC . Special new LEDs are a great innovation with detection of condensation! Very helpful. Condensation is the biggest enemy of extreme overclocking. This motherboard has 13 detection sensors. 3 are near the CPU and others around DIM slots, and PCIe. OC zone of motherboard include buttons start, reset, slow mode, pause, CBB switch, retry button, safe button, LN2 jumper, slot PCIe switch, jumpers for activation/deactivation DIMM slots for DRAMs. Take a look at two white 4-pins for fans, these working at full speed LN2 mode jumper = customized settings for LN2, best way enabled it between -100 až -120 C Slow mód pÅ™epínaÄ = switch for CPU working at low C-state (in default 800 MHz), switch off and CPU clocks jump up to maximus (sets in BIOS or in TurboV software). Useful for max validations process example. Pause switch = hardwarová pause, PC is in pause/freezing mode, you can it cool down or heat up in your LN2 pot and after continue in hard load benchmark. CBB switch = no more coldbootbugs :-). Eg. Kaby Lake/Skylake has around the -130 C coldbootbug property. If your CPU got coldbootbug, seems as "dead" (00 postcode), you must heat it up. Detection points of condensation - we already know from the previous paragraph Apex board can also support 3D printing. One bracket, eg for minicoolers for DIMM2 slot AURA is everywhere, APEX is coming with lights. With jumpers you can some of the locations turned on/off or even expand on RGB strips. AURA and AURA SYNC is just what a marketing standpoint moves the world, whether one likes it or not. Despite the software it yourself tune in color, synchronization, backlight modes ... Audio Supreme FX its not only Realtek ALC1220, ALC1220 characteristic at the left and at the right is new SupremeFX, sound signal is more clear. Interesting software, which is bundled on the DVD, however, works only with KabyLake on another PC I failed to install (Maximus VIII Hero). The board can be equipped with individual charm, make your own logo. Motherboard description and accessories On the back of the box are then specification and label themselves boards Apex Open the box with ROG logo inside Accessories: set of ROG stickers small ROG stickers eg. at SATA cables 4x SATA cabels RGB extender IO cover Q connector DVD with drivers Manual discount coupon for the sleeve cables of PSU ROG coaster DIMM2 device for M.2 discs M.2 screws ROG HB SLI bridge Installation pad for processor strip for custom logo backlight The motherboard has an atypical design, where individual corners "stretched" and linking the corners of an imaginary forms the letter "X". It stands for "eXtreme". The basic layout of ATX24 pin connector and 2 x 8 pin connectors are at traditional locations. It is well-marked, which osmipin that is primary and the other is only for LN2. Board dimensions correspond with ATX format, but you will certainly be taken aback that the board has only two slots for memory. Why? Because of the extreme overclocking always achieve better results with less crosstalk, and there's two more than 4 :-). I would say that there are about a millimeter closer to the CPU socket than usual. Even so this board can reach one of the few above 4000 MHz DDR4. Upper right corner belongs to the OC zone. Bottom left corner, then audio. Bottom right corner occupies classic case connectivity while the zone for water sensors and RGB. On the motherboard also find three reinforced PCIe slots for video cards. Fourth bottom is connected electrically with the south bridge (PCH). The actual distribution lines for the graphics card is either: 1x 16 PCIe 3.0 (first slot) 2x 8 PCIe 3.0 (first + third slot) 1x 8 + 2x 4 PCIe 3.0 (first+seocnd+third slot) For PCH are shorter two PCIe 1x 3.0, ex for audio card or avermedia card. Look at the M.2 DIMM card. Put this card inside the DIMM2 slot, the slot is near the DDR4 slots. Electrically connected to the south bridge and the equipment itself can place a pair of M.2 NVMe SSDs. Three RAMs? Not, only 2x GSkill TridentZ and DIMM2 device. Few details of motherboard OC zone, where we find the start button, reset, display post, retry and safe button, special LN2 switches, white 4-pins for RGB LED strips, switches of PCIe slots, DRAM jumper and power VRM of memory circuit. Passive coolers are relatively low, mounting screws only from the top, which is an excellent idea, especially for extreme overclockers. At the upper edge of the board are also connectors for fans, controlled PWM/DC itself according to the connected fan. Here we can see a quartet of SATA ports, OC crazy guys dont need much of it. Furthermore, the front USB3.0 port, and extra power for PCIe (Molex). I circled section of jumpers to activate/deactivate some parts of AURA RGB lights. Also white connectors for temperature and fluid flow in wattercooling systems. The lower part contains from left to right: front audio connector, the second RGB header, TPM port, a pair of USB 2.0 ports for connections, ROG connector I / II connector for OC Panel, fans 4-pins and BIOS switch. Motherboard has two BIOSes. This corner contains SupremeFX audio with the FX1220. Generally it contains a chip ALC1220A, extra system of amplifiers and Japanese audio capacitors. PCB is obviously separated, due to low interference. Note also the main control chip ICs from Nuvoton (opposite the second PCIe x16 slot). On this section are some chips for USB3.1 and HDMI. And then encapsulated chip LANguard, protecting against surges the LAN port. IO outputs are solid. We can find a pair of PS2 ports, which is useful to extreme overclockers. Before them is still button for BIOS Flashback feature (below) and CMOS BIOS button (top button). Following DisplayPort and HDMI, 6x USB3.0, LAN, USB3.1 A + C, audio jacks. Digital power of motherboard, VRMs Motherboard for overclocking is definitely created at a solid level. Let's look at the VRM complex of motherboard. I highlighted in red power circuit for processor cores nad iGPU part. This CPU part has 8 digital controlled phases, without any dividers. Exactly its 8 + 2 (CPU+iGPU). Full digitally controlled, high precision using an IR chip. VR chip is framed in red (small frame). CPU has another part called IO and SA. The power circuit is located under the logo of the Republic of Gamers, I've highlighted orange rectangle. It has two separate voltage controllers (red small squares), one for IO and the second for SA. Power circuit for memory has separate, well-controlled digitally also. It is a two phases-and called it in blue color. The main part of the power circuit for CPU cores is probably the most important. MOSFETs are encapsulated (sorry for my english, how to say it-integrated mosfet+drivers) and the manufacturer is Texas Instruments, named CSD87350Q5Ds. You can dismiss an insane value - current up to 400A! The OC is indeed not limited And despite somewhat worse useful practice properties, if necessary MOSFETs are heated to 60 C. BIOS main menu Extreme Tweaker profiles RAM settings Extreme Paradise Advanced settings for SATA and M2 storages or ROG LEDs BOOT section Tools SOFTWARE The board includes the entire package Software. Perhaps most interesting is AI Suite III with many functions. It will offer auto-tuning your PC in the performance, power, cooling, management of energy savings. And most it really works! The interesting part called "turbo applications" which assigns your PC for specific tasks that you have defined frequency turbo processor. Sonic Radar for gamers. Personally for me is more practice Sonic Studio ROG Ramcache, ROG RAM Disk and new one ROG CLone Drive And AURA software RGB effects -AURA Board has literally brutal backlight option, via jumpers certain parts can be deactivated. For example, it glowing logo "Flank3r" or "Republic of Gamers". [VIDEO] [/VIDEO] PC AND TEST RESULTS BEFORE AND AFTER overclocking CPU i7-7700K retail L641G series MB Maximus IX Apex CPU cooling AIO Silverstone TD02 Slim RAM GSkill TridentZ 4000 MHz XMP 2x 4GB (in default tests worked at JEDEC 2133 MHZ, in OC at XMP profile) PSU Corsair AX1200 1200W GPU Asus Strix GTX 1050 Ti OC SSD HyperX 3K 120GB Windows 10 Home 64-bit Measurements I performed in several tests for processor, already on the ground that the video card is different than last time and SSD capacity did not allow me to upload more interesting games. Maybe next time the test frequency RAM influence on performance. The results were summarized in the table. In advance I can tell you that the CPU did not disappoint and again I got to the 5 GHz stable. OVERCLOCKING For overclocking I chose a stability test AIDA 64 Engineer, running about 30 minutes in stress mode (AVX ready). I was pleased that retail is still a bit better than ES sample. At 5 GHz sufficed only 1.31V in the BIOS with LLC5. But AIO setup and cooling temperatures are peaked above 80 degrees. CPU Kaby Lake is hotter than Skylake. If you are not going to delid it, I see a border around 1.35-1.375 V for vcore as the limit for long-term operation. With delid you can go on further 0.05V, perhaps even a 0.1V up. Ideally keep the temperatures in the load stress test up to 90 C at cores (or better, of course, even less). Cache was OCed together, at 4700 MHz! Good things at APEX for Kaby Lake Table of safe voltage ranges when the conditions cooling according to Asus. Each piece of CPU warms slightly differently, everything is good simply adjust temperatures. Protecting CPU is at 100 C. Post display codes, ideal for LN2... Overclocking for benchmarks only I tried then the maximum frequency for the benchmarks. First problem was the temperature, I could not CPU cool down in harder tests more than at 1.425V. This corresponds to the frequency of 4150 MHz. Maybe the CPU with a little hard work could work at 5200 MHz, but certainly not beyond, delid will be necessary ... Cinebench R11.5 at 5152 MHz Cinebench R15 at 5152 MHz Blender "Ryzen" benchmark with 150 samples Less stress test as legacy old Superpi means I can use more voltages, 5450 MHz and Superpi 1M CPU worked at longer Superpi 32M at 5450 MHz also! I tried twice the frequency 5506 MHz for 1M, but in both cases the PC frozed I have only a photo... Overclocking of Kaby Lake is really fun, it's fast, has a very strong IPC and manages itself very high frequency. CONCLUSION Like the boys at the photo from the world scene of extreme overlcocking, and I give a thumbs up :up::clap: The board is grandiose and not only because it was the first board at which seamlessly working RAM at 4000 MHz XMP profile (with noedit operating system), that has a PS2 ports, button for eliminating coldbootbug and all OC zone part, interesting DIMM.2 slot NVMe SSD in RAID, the possibility of mounting passives with mounting screws from above and further details: clap:: thumbup: And it will be a good figure in an enthusiastic system build. Later, other comments complementing the other results during the weeks. In the granary got yet another piece i7-7700K and a third on the way. We'll see which one is really the best
  6. Here the newest Nvidia ROG Matrix card from Asus, the ROG GTX 780 Ti Matrix. The card is still under NDA, but here already some nice pictures for you guys. This week I will test him to see what he is capable off. First step will be to test the card to the max on air, after that I will put him under cold. Start with my cascade and after that under LN2.
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