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The timing defaulted to CAS14, but manually specifying CAS12 didn't pose a problem.Of course, we tried to run our tests at this data rate, but the system was too unstable. For the best viewing experience please update your browser to Well, AMD locked a number of RAM timings in the BIOS, so they are not accessible to the user.

This represents barely 0.2 frames per second lower in a test that averages 30 FPS. First, I recommend getting a baseline of your CPU at stock settings. Is there anything else I can do like increasing some sort of voltage or something? NVME drives, SATA, GPU) and what is the risk (long and short term) of destroying themIf there are things that can be done to avoid destroying anything (besides not doing BCLK OC)How does this affect stability (i.e. Some changes has been made in comparison to previous overclock. Interesting, I'm running 3x3TB HDDs on SATA and a 256gb nvme on m.2 - and running stable (as in haven't rebooted in a few days stable in addition to passing prime95 and memtest) at 103.75. Some suggest that it's ok well above 105, others ~105, others ~102, others say it's not at all safe to do at all. 5 to 2. I overclocked the BCLK on two machines and this was the cause.The drives now do this no matter what machine I put them in, permanent damage :-(I restored that comps BCLK back to 100, had the same drive in it for 2 years and now never BSODs.I overclocked the BCLK on two machines and this was the cause.How does a slight boost in communication speed to your drive controller or chipset lead to Per spec, on the C6H, the highest you can go, without getting forced to use PCIe 2.0 instead of 3.0 mode is 104.8MHz as indicated by this article: I can't find the second source right now, but there was some ASUS OC guide, that indicated around the same. :)Since many games are poorly threaded, even though the raw clock gains are usually less with bclk the actual performance improvements are often greater.Especially how does this affect various peripherals (i.e. All three Ryzen 7 models include eight physical cores, 16MB of shared L3 cache, and unlocked multipliers. Of course, your bandwidth across the bus will be halved, but if you can get a significant clock boost by doing so, it could possibly be worth it (I don't think that's likely, but time will tell :)This is a fantastic post, thanks! Great job! Even though it won't guarantee the same results for you, you'll still get a general idea of what's reasonable. CPU: Ryzen 7 2700X Mobo: C7H RAM: G.Skill F4-3600C16D-16GTZ running at 3466Mhz (3500 with 101 BCLK) 14-15-14-28 (1.4V DRAM, 1.169 SOC) stable (Unique: 4) 3200 ratio and 100 MHz BCLK Frequency -> RAM frequency is 100 MHz x 32.00 = 3200 MT/s, tRC is 75, tRTP is 12, tFAW is 34. Keep an eye on this feature, though, since it could very well be the future of overclocking on AMD chips.You're probably itching to get going, but resist the urge to start pushing clock speeds just yet. In this example, dropping the mult to 31.33 would now make it 3227 (probably OK). They would just be unavailable to both OS and BIOS and reappear after a full shutdown BCLK was at 102MHz when it happened. Is the 0601 BIOS bugged maybe?

It was impossible to get the system to boot. This test is therefore very sensitive to memory bandwidth, and we suspect that lots of data must be transferred from one CCX to another. But if you're still hungry for more performance, there are a few other things you can check out in your BIOS...Do a bit of research on your motherboard and how it implements LLC—some boards use "1" as the highest setting, while others use it as the lowest—and do a little trial and error to see which option gets you closest to the Vcore you set in the BIOS (you can see the voltage being provided to your CPU in OCCT's monitoring window).