Not sure what you mean by 3800x. Could you clarify the context?
Not sure what you mean by 3800x. Could you clarify the context?
I just got a 3800x and installed the first Ryzen here. The screenshot isn’t great for Cinebench R15/20, but lowering the voltage is really low if I raise it to around 1.35V—it still runs smoothly. I have an H115i Platinum cooler for that.
The voltage shown is the standard level for the CPU. Going above this can raise the temperature, which affects performance.
These chips behave unexpectedly. Remember that the system usually tweaks voltage and clocks based on boost conditions, which can lead to higher voltages. When only one core is active, you might notice elevated voltages. But with all cores engaged, voltages tend to stabilize at more normal levels, while clocks slow down relative to the single-core boost timing. Refer to the profiles provided with Ryzen Master for your specific CPU to understand the ideal stock voltage settings. For the TR 1920X, the typical value is around 1.225V or 1.215V, though it can vary without manual adjustment or profile use.
It's solid with over 5 in Cinebench. On my R7 3700X at 4.5GHz I can match your results. With a 360mm radiator I reach around 85°C. Also, try Ryzen Master to build a new profile and set your CoreCLOCK to the advertised boot speed or 0.1GHz higher. Make sure your voltage stays under 1.4V.
Disregard the reported voltage in stock condition since it doesn’t connect to all-core overclocks. All-core overclocks generally stay around 1.325 volts for safety, allowing you to set a fixed value without constant adjustments. Running at 1.325v tends to be cooler and can boost performance by roughly 6-8% in multi-threaded tasks—similar to stock but with some variability based on cooling and power use. On certain motherboards, especially those with custom BIOS settings like GamersNexus, you might see comparable gains (around 6-8%) while managing higher temperatures or even lower power draw. On the other hand, a powerful motherboard such as a GODLIKE model could produce intense heat under overclocking at 1.325v, potentially causing instability or damage. Experience suggests that sustained performance improvements are more consistent with static overclocking than with frequent 1.325v adjustments.