F5F Stay Refreshed Hardware Desktop Overclocking Basics?

Overclocking Basics?

Overclocking Basics?

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clay__
Member
159
12-01-2019, 01:04 PM
#1
I’m a bit puzzled too. While working on overclocking a Ryzen 5 3600, they ended up with MHz around 100 or sometimes not exceeding the boost clock. I’m unsure why they did that when it seemed like a better option was available. Thanks for your assistance! Smile
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clay__
12-01-2019, 01:04 PM #1

I’m a bit puzzled too. While working on overclocking a Ryzen 5 3600, they ended up with MHz around 100 or sometimes not exceeding the boost clock. I’m unsure why they did that when it seemed like a better option was available. Thanks for your assistance! Smile

E
esalo
Junior Member
15
12-02-2019, 05:36 AM
#2
Highlight the main improvements and overclocking aspects. All key enhancements and overclocking features are emphasized. Achieving single-core speed boosts is possible with full core tuning, though it demands proper cooling support.
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esalo
12-02-2019, 05:36 AM #2

Highlight the main improvements and overclocking aspects. All key enhancements and overclocking features are emphasized. Achieving single-core speed boosts is possible with full core tuning, though it demands proper cooling support.

T
TheDemonKing
Junior Member
40
12-03-2019, 08:24 PM
#3
Clock speed enhancement is a single-thread boost. My 3700X's base boost frequency is 4.4 GHz (reaches it only under stock or PBO settings), while my overclock setting runs at 4.2 GHz across all cores, which exceeds the chip's sustained boost of 4 GHz during CB20. It seldom surpasses 4.2 GHz overall.
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TheDemonKing
12-03-2019, 08:24 PM #3

Clock speed enhancement is a single-thread boost. My 3700X's base boost frequency is 4.4 GHz (reaches it only under stock or PBO settings), while my overclock setting runs at 4.2 GHz across all cores, which exceeds the chip's sustained boost of 4 GHz during CB20. It seldom surpasses 4.2 GHz overall.

V
Vincie_
Member
209
12-11-2019, 06:06 PM
#4
On Ryzen achieving single-core performance boosts after a full overclock is extremely challenging. Even with per-CCPX tuning, my best setup still suffers from a weak core that limits results.
V
Vincie_
12-11-2019, 06:06 PM #4

On Ryzen achieving single-core performance boosts after a full overclock is extremely challenging. Even with per-CCPX tuning, my best setup still suffers from a weak core that limits results.

K
KawiianMili
Posting Freak
786
12-11-2019, 08:22 PM
#5
I understand... However, there are always exceptions. Many factors come into play. One point I covered was in the quote you mentioned only partially.
K
KawiianMili
12-11-2019, 08:22 PM #5

I understand... However, there are always exceptions. Many factors come into play. One point I covered was in the quote you mentioned only partially.

O
omerneao111
Member
140
12-12-2019, 01:55 AM
#6
Ryzen delivers strong performance at a surprisingly low voltage, but when cooling options are tight it slows down significantly. 1usmus shared an excellent OC solution for Ryzen, https://www.guru3d.com/articles-pages/cl...mus,1.html. Boosting stock single-core boost speeds through all-core tuning depends on luck with silicon and effective cooling.
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omerneao111
12-12-2019, 01:55 AM #6

Ryzen delivers strong performance at a surprisingly low voltage, but when cooling options are tight it slows down significantly. 1usmus shared an excellent OC solution for Ryzen, https://www.guru3d.com/articles-pages/cl...mus,1.html. Boosting stock single-core boost speeds through all-core tuning depends on luck with silicon and effective cooling.

C
clix800
Member
122
12-12-2019, 02:28 AM
#7
Verify the OC with a short FFT afterward; you might need to adjust clocks slightly for better stability, as I experienced.
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clix800
12-12-2019, 02:28 AM #7

Verify the OC with a short FFT afterward; you might need to adjust clocks slightly for better stability, as I experienced.

D
147
12-14-2019, 12:10 AM
#8
Absolutely, I understand. It's important to highlight that cooling is a major concern for these characters, and I should have included the full sentence as requested.
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DGfanboyiscool
12-14-2019, 12:10 AM #8

Absolutely, I understand. It's important to highlight that cooling is a major concern for these characters, and I should have included the full sentence as requested.

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GreatGamers
Junior Member
4
12-14-2019, 06:45 AM
#9
I discovered with Zen+ chips that the processors perform excellently even at low temperatures. The CPUs delivered the expected performance improvements as temperatures dropped. I found that using TEC cooling allowed me to run at around -30°C while maintaining full core boosts of 4300MHz. However, the cooling system limited the maximum load temperature to about 25°C based on water flow adjustments. For instance, a 4GHz all-core/threads setup with TEC cooling needed only 1.188V. The testing was confined to benchmarks, highlighting significant power savings and reduced leakage. Still, the chip's architecture restricts higher clock speeds—things like the piping affect this. Longer delays in instruction per cycle mean lower IPC, while shorter delays boost it. Compared to FX chips, ZEN offers better efficiency, partly due to size and density differences. Generally, high voltage isn't essential for achieving higher clocks; most users opt for sub-ambient cooling instead.
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GreatGamers
12-14-2019, 06:45 AM #9

I discovered with Zen+ chips that the processors perform excellently even at low temperatures. The CPUs delivered the expected performance improvements as temperatures dropped. I found that using TEC cooling allowed me to run at around -30°C while maintaining full core boosts of 4300MHz. However, the cooling system limited the maximum load temperature to about 25°C based on water flow adjustments. For instance, a 4GHz all-core/threads setup with TEC cooling needed only 1.188V. The testing was confined to benchmarks, highlighting significant power savings and reduced leakage. Still, the chip's architecture restricts higher clock speeds—things like the piping affect this. Longer delays in instruction per cycle mean lower IPC, while shorter delays boost it. Compared to FX chips, ZEN offers better efficiency, partly due to size and density differences. Generally, high voltage isn't essential for achieving higher clocks; most users opt for sub-ambient cooling instead.

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rockgold100
Junior Member
16
12-14-2019, 07:22 AM
#10
Well, ctr showed me a bit lower than what I thought was stable after manual setup. It seems the chip has thermal boundaries, so it's not pushing silicon limits. Ctr 1.1 isn't very helpful right now—notes say stress tests are affected, and even with low voltage and frequency temps are too high to run them. There are only small improvements under 55°C, which is interesting. I'm eager to see how voltage scaling behaves.
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rockgold100
12-14-2019, 07:22 AM #10

Well, ctr showed me a bit lower than what I thought was stable after manual setup. It seems the chip has thermal boundaries, so it's not pushing silicon limits. Ctr 1.1 isn't very helpful right now—notes say stress tests are affected, and even with low voltage and frequency temps are too high to run them. There are only small improvements under 55°C, which is interesting. I'm eager to see how voltage scaling behaves.

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