They discussed the incompatibility of the components, and there was a lot of material that contradicted itself, saying that the processor was extremely hot, like the heat from an inferno. They also discussed the incompatibility of the components. In my opinion, it has demonstrated itself to be an exceptional processor that satisfies the requirements of the user's computer to an extent that is greater than ninety percent. The voltage regulator module (VRM) located on the motherboard does not produce even the slightest bit of heat, which is a fact that is of the utmost significance. Because I did not trust the monitoring signs, I removed the top cover of the case and felt the motherboard with my hand. It used to be terribly uncomfortable to touch the motherboard; however, when we got our hands on it this time, the temperature was barely warm at all, which is simply astounding. The sensors report that the temperature is currently at forty degrees. From my point of view and based on my experiences, having a conversation about usage in relation to percentages is pointless. The phrase "put it in and forget it" does not apply in this situation since the voltage that is being provided to the processor is excessively high, which is wholly unreasonable, and as a result, the cooler begins to experience temperatures that are entirely out of control. After disabling the PBO, clamping the voltage at 1.250, setting all cores to 4400, and manually adjusting the fan curve, the system was ready for operation. As a consequence, the system is able to perform very well. After a few days of messing around with overclocking, I noticed that the fans make less noise after I reset the BIOS to its factory settings. This was after I had been playing around with increasing the CPU speed. In contrast to the level of noise created by the fans when the CPU was first turned on, this level of noise was far lower. It is possible that the firewood used to make the chipset did not perform up to its full capability when it was first used. The voltages do not jump to 1.450 at the moment, which brings one to the conclusion that the anecdote about "inserted and forgot" may very well be applicable in this situation. Nonetheless, if increasing the clock speed is possible, it is recommended to do so because the benefits of doing so are clear to see. After a week of work, we were successful in stabilizing the CPU at 4300 MHz with a voltage of 120.222.2 volts and LLC2; the memory began operating at 3800 MHz with a frequency of 1900 FCLK and a voltage of 1.45 volts; and the LLC2 timings were 16-18-19-19-40 with lowered secondary timings. This turned out to be a fantastic outcome for these chips (HYNIX-AFR). read 53000 while allowing 65 nanoseconds for the lag. The stability was tested for a total of eight hours using Prime95's custom mode, which placed a strain on both the memory and the processor. It is pointless to take 4400mhz on the CPU because in my case it was not possible to stabilize the system at this frequency due to the voltage being 1.300 volts and the temperatures being above the permissible ones. Taking 4400mhz on the CPU is pointless because it was not possible to stabilize the system at this frequency. As a direct consequence of this, I decided to stop at 4300 and keep it there. Nonetheless, the memory can run at a maximum speed of 3600, which is also its maximum speed. 3800 prime does not pass 9 hours.
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