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Maximum safe voltage for Ryzen 5 3600

Maximum safe voltage for Ryzen 5 3600

K
kcristan
Senior Member
514
11-07-2019, 03:47 PM
#1
I attempted to push my R5 3600 beyond its limits, but the best speed reached was around 4.1ghz, which Prime95 or Cinebench didn't sustain for long—after about 30 minutes it crashed. Following buildzoid's instructions and online advice suggested a stable 1.3375v as safe for everyday overclocking, but I didn’t go that high. When trying 1.45v, my experience was mixed: games ran, but performance tests like Prime95 and Cinebench failed immediately. The forum suggestion came from someone who claimed minimal long-term damage on a Dera8 AUER board, though their video focused on 5000 chips. My motherboard uses voltage offsets and lacks static or LLC settings, which adds another layer of uncertainty. Considering these factors, it’s unclear whether jumping to 1.45v would be worthwhile without more reliable data.
K
kcristan
11-07-2019, 03:47 PM #1

I attempted to push my R5 3600 beyond its limits, but the best speed reached was around 4.1ghz, which Prime95 or Cinebench didn't sustain for long—after about 30 minutes it crashed. Following buildzoid's instructions and online advice suggested a stable 1.3375v as safe for everyday overclocking, but I didn’t go that high. When trying 1.45v, my experience was mixed: games ran, but performance tests like Prime95 and Cinebench failed immediately. The forum suggestion came from someone who claimed minimal long-term damage on a Dera8 AUER board, though their video focused on 5000 chips. My motherboard uses voltage offsets and lacks static or LLC settings, which adds another layer of uncertainty. Considering these factors, it’s unclear whether jumping to 1.45v would be worthwhile without more reliable data.

L
LynWiR
Junior Member
16
11-07-2019, 05:38 PM
#2
It's fine for a short period, but I wouldn't use it regularly.
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LynWiR
11-07-2019, 05:38 PM #2

It's fine for a short period, but I wouldn't use it regularly.

E
EmmaRosie629
Senior Member
459
11-08-2019, 10:12 PM
#3
I operate mine at 4.3 GHz with a voltage of 1.2 V
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EmmaRosie629
11-08-2019, 10:12 PM #3

I operate mine at 4.3 GHz with a voltage of 1.2 V

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_Pilif
Member
114
11-08-2019, 11:11 PM
#4
For regular use, maintain proximity to the FIT voltage during CPU load and around OC levels. Enable PBO while keeping everything else active. Execute Prime95 with 128k FFT, run in-place without ticking, and monitor the v-core (SVI2 TFN). This value represents your chip's fitness voltage. Variations exist among chips due to cooling differences, which significantly affect the boost algorithm.
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_Pilif
11-08-2019, 11:11 PM #4

For regular use, maintain proximity to the FIT voltage during CPU load and around OC levels. Enable PBO while keeping everything else active. Execute Prime95 with 128k FFT, run in-place without ticking, and monitor the v-core (SVI2 TFN). This value represents your chip's fitness voltage. Variations exist among chips due to cooling differences, which significantly affect the boost algorithm.

A
Adddio
Junior Member
34
11-09-2019, 07:12 AM
#5
Consider a faster operation while keeping the voltage constant.
A
Adddio
11-09-2019, 07:12 AM #5

Consider a faster operation while keeping the voltage constant.

R
Real_Michi
Junior Member
2
11-09-2019, 04:46 PM
#6
There are numerous methods to adjust the algorithm compared to simply using brute force overclocks. Some users enable PBO and use a negative offset v-core to reduce temperatures for a greater temperature difference, which enhances performance. Boosting EDC and PPT supports stronger core boosts while maintaining a higher PBO range from +50mhz to +200mhz (settings differ by manufacturer). Alternatively, you can overclock using multipliers and manually adjust the v-core. You might experiment with sustaining around 4.4 to 4.6ghz across all cores at approximately 1.3v for various scenarios.
R
Real_Michi
11-09-2019, 04:46 PM #6

There are numerous methods to adjust the algorithm compared to simply using brute force overclocks. Some users enable PBO and use a negative offset v-core to reduce temperatures for a greater temperature difference, which enhances performance. Boosting EDC and PPT supports stronger core boosts while maintaining a higher PBO range from +50mhz to +200mhz (settings differ by manufacturer). Alternatively, you can overclock using multipliers and manually adjust the v-core. You might experiment with sustaining around 4.4 to 4.6ghz across all cores at approximately 1.3v for various scenarios.