F5F Stay Refreshed Hardware Desktop Ryzen 5 2600 at 3.8GHz with 1.2v BIOS is working fine. Adding OC-enhanced RAM up to 3200 MHz improves performance.

Ryzen 5 2600 at 3.8GHz with 1.2v BIOS is working fine. Adding OC-enhanced RAM up to 3200 MHz improves performance.

Ryzen 5 2600 at 3.8GHz with 1.2v BIOS is working fine. Adding OC-enhanced RAM up to 3200 MHz improves performance.

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stephanie2005
Member
233
10-11-2018, 08:53 PM
#1
I recently set up a new Ryzen PC with stock configuration for a few days. After experimenting, I decided to undervolt it and then try overclocking simultaneously. I adjusted the BIOS settings to lower the core voltage and managed to keep stable performance below 1.2V. Then I increased the base clock speed to explore maximum performance while maintaining low power consumption and CPU temperature. Your setup looks promising—see the screenshots in the BIOS for reference. The system is a Ryzen 5 2600, 3.8GHz @ 1.2V, 8GB DDR4 2933 (Profile 2). With memory, I plan to push it to around 3200MHz and 1.34V on the MSI B450i Gaming PLUS AC ITX board.
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stephanie2005
10-11-2018, 08:53 PM #1

I recently set up a new Ryzen PC with stock configuration for a few days. After experimenting, I decided to undervolt it and then try overclocking simultaneously. I adjusted the BIOS settings to lower the core voltage and managed to keep stable performance below 1.2V. Then I increased the base clock speed to explore maximum performance while maintaining low power consumption and CPU temperature. Your setup looks promising—see the screenshots in the BIOS for reference. The system is a Ryzen 5 2600, 3.8GHz @ 1.2V, 8GB DDR4 2933 (Profile 2). With memory, I plan to push it to around 3200MHz and 1.34V on the MSI B450i Gaming PLUS AC ITX board.

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zCosmicCorvus
Member
212
10-26-2018, 10:10 PM
#2
Increase the voltage slightly to achieve a consistent 4GHz frequency output.
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zCosmicCorvus
10-26-2018, 10:10 PM #2

Increase the voltage slightly to achieve a consistent 4GHz frequency output.

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impiiii
Member
135
10-28-2018, 05:07 PM
#3
Test at 1.35 volts with a 4 GHz frequency.
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impiiii
10-28-2018, 05:07 PM #3

Test at 1.35 volts with a 4 GHz frequency.

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SpillQ
Junior Member
46
10-28-2018, 05:26 PM
#4
I considered 4GHz but realized it’s an ITX build and cooling isn’t ideal. So this seems like the "best" option I could choose without temperature concerns.
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SpillQ
10-28-2018, 05:26 PM #4

I considered 4GHz but realized it’s an ITX build and cooling isn’t ideal. So this seems like the "best" option I could choose without temperature concerns.

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privy223
Member
115
10-28-2018, 11:41 PM
#5
I believe I’m reaching stable around 1.28v - 1.3v, though I haven’t run a stress test yet. The heat is getting worse and the fans are spinning too fast—I’m not sure if [email protected] is acceptable or just normal.
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privy223
10-28-2018, 11:41 PM #5

I believe I’m reaching stable around 1.28v - 1.3v, though I haven’t run a stress test yet. The heat is getting worse and the fans are spinning too fast—I’m not sure if [email protected] is acceptable or just normal.

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F01lEo
Member
105
10-29-2018, 01:03 AM
#6
I think it should be about 1.25V, but keeping the temperature control more crucial than jumping to 200MHz (though some might prefer that too)
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F01lEo
10-29-2018, 01:03 AM #6

I think it should be about 1.25V, but keeping the temperature control more crucial than jumping to 200MHz (though some might prefer that too)

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Candy_737
Senior Member
254
10-31-2018, 12:09 AM
#7
It's worth wondering... even with manual overclocking, will the CPU actually increase its core speed or just stay at the settings you set? Your stress tests reveal boosts up to around 4GHz on some cores, while regular benchmarks like 3DM Mark or Cinebench sometimes display higher values.
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Candy_737
10-31-2018, 12:09 AM #7

It's worth wondering... even with manual overclocking, will the CPU actually increase its core speed or just stay at the settings you set? Your stress tests reveal boosts up to around 4GHz on some cores, while regular benchmarks like 3DM Mark or Cinebench sometimes display higher values.

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pocio77
Posting Freak
783
11-06-2018, 10:36 PM
#8
It seems the system should operate at higher loads by adjusting a setting that reduces heat and power consumption. If you switch it off completely and keep it in full overclock mode, you might be missing the name of that adjustment.
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pocio77
11-06-2018, 10:36 PM #8

It seems the system should operate at higher loads by adjusting a setting that reduces heat and power consumption. If you switch it off completely and keep it in full overclock mode, you might be missing the name of that adjustment.

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cw1502
Member
79
11-07-2018, 12:07 AM
#9
When you adjust the OC settings for XFR/turboboost in Zen, it stops working properly. It keeps running at a fixed high frequency. If you need the Ryzen's built-in XFR/boost feature, avoid manual adjustments.
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cw1502
11-07-2018, 12:07 AM #9

When you adjust the OC settings for XFR/turboboost in Zen, it stops working properly. It keeps running at a fixed high frequency. If you need the Ryzen's built-in XFR/boost feature, avoid manual adjustments.

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Kynedee
Posting Freak
784
11-09-2018, 04:07 PM
#10
I own a 3.9GHz all-core processor running at 1.15V with no problems.
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Kynedee
11-09-2018, 04:07 PM #10

I own a 3.9GHz all-core processor running at 1.15V with no problems.