![]() ![]() However, if the frame rate drops below 30 FPS, it means that something is wrong (for example, the system cannot keep up with the current workload). As a rule, in most cases, browsers render frames at a speed of 60 FPS (although sometimes a slightly lower speed may be acceptable). The number of frames per second (abbreviated as FPS) indicates how fast your browser is able to render new frames. As you might have guessed, the number of points directly depends on the speed and the test duration. The number of score points indicates how many hashes were computed during the test. Thus, more power and threads will provide higher speed and CPU load (for example, 50% power + 10 threads will result in a 500% load). Since the power and the number of threads almost proportionally affect the speed, a 100% power + 1 thread will give the same speed as 50% power + 2 threads, or 25% power + 4 threads. #Overdrive cpu stress test full#The power indicates how much CPU time can be used by one thread (for example, 100% power means full speed without time idle). Multi-core CPUs cope better with the multithreading, this is why in such cases modern processors work faster and get better results. ![]() Thus, more threads lead to a higher speed, but at the same time to a higher load. The number of threads determines the number of simultaneous operations for computing hashes. However, you need to remember that for maximum speed you need to use the full power of the CPU (that is, specify as many threads and power as possible). Obviously, a more powerful processor develops a higher speed. The speed measures how fast the processor is, and is measured in the number of hash operations per second. Given that not all processors and devices withstand high loads, it is strongly recommended to gradually increase indicator values. The final step would be setting your DDR4 kit to the advertised speed and making sure that is also stable with doing one final burn-in test, just select the D.O.C.P./XMP profile and it should set all the settings for you.Power -5 +5 Start CPU Stress Test What do the indicators mean?īefore starting the CPU stress test, review the indicators below to understand what they are for. ![]() Once you are satisfied with your Vega GPU overclock do a stress test with Heaven benchmark for about 30 minutes. Rinse and repeat adjusting GFX core frequency, GFX core voltage, and VDDCR SoC Voltage. When it passes you can go back into the BIOS and adjust the GFX core frequency to 1650 and stress test with Heaven benchmark, Or lower the GFX core frequency when it fails. Now do a quick Heaven Benchmark of 10 minutes and check your monitor for stuttering or artifacting. When your CPU overclock is stable than its time to overclock the internal Vega GPU start by adjusting the GFX core frequency to 1600, VDDCR SoC Voltage to 1.25, and GFX core voltage to 1.3 save those settings and boot into windows. When you are satisfied with your Core Ratio and VDDCR CPU Voltage save those settings as well and do at least a 30 minute Prime 95 Small FFT's stress test. When it passes lower the VDDCR CPU voltage by 0.25 and repeat the Cinebench and Prime 95 Small FFT's stress tests until it crashes. Now save these settings in a BIOS profile and try to run a Core Ration of 40.00 with a VDDCR CPU voltage of 1.4 and do another Cinebench and Prime 95 Small FFT's stress test. ![]() When that passes keep lowering the voltage and repeat the Cinebench and Prime 95 Small FFT's stress tests until it fails. If it passes you can keep the Core Ratio as it is but lower the VDDCR CPU Voltage to 1.3750 and do Cinebench run and validate that with a Prime 95 Small FFT's stress test 10 minutes. If this fails you want to go back into the BIOS and set a Core Ratio of 38.50 and repeat the above-named process. Start with entering a Core Ratio of 39.00 and adjust the VDDCR CPU Voltage to 1.4 most Ryzen APU's will boot and pass a stress test do a quick Cinebench run and see if it is stable at all if that passes run a Cinebench and a 10 minute Prime 95 Small FFT's stress test.
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