Vcore voltage insufficient?
Vcore voltage insufficient?
The processor runs well above 3.2 GHz. It's important to note I have just one stick of RAM, which might affect performance here.
The 3.2Ghz is quite low. Based on what I'm observing, the overall core boost should aim for around 3.4Ghz. https://www.techpowerup.com/review/amd-r...00/16.html That should be included.
It seems the system isn't functioning as expected with the current defaults.
You mentioned you didn’t talk about overclocking. Instead, you might have considered:
- Resetting the system by clearing CMOS
- Updating the BIOS settings
- Avoiding the latest Windows releases (like version 2004)
The problem has existed since I installed the CPU. I'm just beginning to adjust some configurations, but the OC profile isn't working yet. I can recreate the crash during overclocking with Ryzen Master, which uses 1V by default in the profile, leading to the CPU shutting down. I believe the issue stems from insufficient voltage at the default level. Even though the BIOS is current and chipset drivers are up to date, the crashes still occur occasionally. I can use the PC throughout the day except during those rare incidents that bother me.
Attached photos are included. I recently changed the Vcore to 1.25, but it still reads around 1.05 on the default configuration. The CPU is set to mode 8 in BIOS. It seems the hardware or drivers might not be functioning correctly. As far as I understand, the default settings should work properly. I’m confused about the voltage values shown and what’s missing.
The CPU appears to be positioned correctly. The initial screenshot showing 4GHz claims is misleading; the voltage would actually rise significantly under load, reaching about 1.4V for 4000MHz. This matches expectations for manual overclocking. The base clock stands at 3.2GHz, with a maximum single-core XFR boost of 4.1GHz. Clocks between 3500 and 3600MHz are within the boost range. The 2700X model only raises stock speeds to 3.8-3.9GHz. Everything seems fine from my perspective. Increasing the LLC frequency could help avoid stalls. If successful, continue with this setup. V-droop and V-drop are genuine concerns. The FX-9590 experienced these issues severely in the past.
I believe it should work fine; no hardware changes needed if they happen. I’ll look into it further. Thanks a lot!
I trust it will function properly. If it succeeds, you can adjust the LLC once and explore further.