F5F Stay Refreshed Hardware Desktop You have damaged CPU pads due to corrosion.

You have damaged CPU pads due to corrosion.

You have damaged CPU pads due to corrosion.

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Puppy_Power4
Member
167
12-05-2016, 11:42 PM
#11
You misunderstood the pinout layout for the LGA socket—it's designed for the CPU placement, with specific pins like K1, L1, and L2 that can get damaged. The burned pads are indeed critical connections, including DMI links that link components such as the north bridge and south bridge in your PC. It’s a good sign the system still works, but be aware you might face problems like data corruption, unexpected restarts, or BSODs if these pins are affected. If possible, consider replacing the CPU and motherboard to avoid further complications.
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Puppy_Power4
12-05-2016, 11:42 PM #11

You misunderstood the pinout layout for the LGA socket—it's designed for the CPU placement, with specific pins like K1, L1, and L2 that can get damaged. The burned pads are indeed critical connections, including DMI links that link components such as the north bridge and south bridge in your PC. It’s a good sign the system still works, but be aware you might face problems like data corruption, unexpected restarts, or BSODs if these pins are affected. If possible, consider replacing the CPU and motherboard to avoid further complications.

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COLIN20052012
Posting Freak
857
12-06-2016, 09:12 PM
#12
as long as they manage to conduct electricity with minimal resistance, the cpu and board should work okay. i might even be able to solder the pads to create a low-resistance path since only the gold has been removed.
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COLIN20052012
12-06-2016, 09:12 PM #12

as long as they manage to conduct electricity with minimal resistance, the cpu and board should work okay. i might even be able to solder the pads to create a low-resistance path since only the gold has been removed.

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Kurogano
Member
183
12-07-2016, 12:57 PM
#13
Using the adjusted picture and rotating it so the top remains on top will align with the real-life photo you shared for your 3470.
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Kurogano
12-07-2016, 12:57 PM #13

Using the adjusted picture and rotating it so the top remains on top will align with the real-life photo you shared for your 3470.

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stampy0114
Member
76
12-07-2016, 01:17 PM
#14
normally when I was testing a 4.2ghz OC and kept running it nonstop on my 3770k for a while, I checked the bottom and found I needed to clean the pads. I was trying to make the core cooler, but only one pin on the 3770k was damaged—everything else was fine. After reassembly, I increased it to 4.5 for benchmarks, then lowered the core to 4.4 and reduced the voltage since the temperature gap between core and chip was the main issue. The real problem was PLL OVERVOLTAGE ENABLED stayed on for months after I brought it back down to 4.4.
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stampy0114
12-07-2016, 01:17 PM #14

normally when I was testing a 4.2ghz OC and kept running it nonstop on my 3770k for a while, I checked the bottom and found I needed to clean the pads. I was trying to make the core cooler, but only one pin on the 3770k was damaged—everything else was fine. After reassembly, I increased it to 4.5 for benchmarks, then lowered the core to 4.4 and reduced the voltage since the temperature gap between core and chip was the main issue. The real problem was PLL OVERVOLTAGE ENABLED stayed on for months after I brought it back down to 4.4.

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Sheray
Member
218
12-07-2016, 10:06 PM
#15
today i opened the pin to find it’s pitted. The i5 3470 uses pins designed for frequency, so you can only set the multiplier to 4.0 GHz. Going higher needed using the BCLK clocks. I had the PLL OVERVOLTAGE ENABLED on the chip, and it worked smoothly for two years. The main issue was with the BSODs because of a faulty Mybram OC.
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Sheray
12-07-2016, 10:06 PM #15

today i opened the pin to find it’s pitted. The i5 3470 uses pins designed for frequency, so you can only set the multiplier to 4.0 GHz. Going higher needed using the BCLK clocks. I had the PLL OVERVOLTAGE ENABLED on the chip, and it worked smoothly for two years. The main issue was with the BSODs because of a faulty Mybram OC.

M
Mike7474
Junior Member
47
12-09-2016, 04:31 AM
#16
The key detail I need is whether the PLL OVERVOLTAGE is responsible for the pitting, and if so, are these components connected to the PLL?
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Mike7474
12-09-2016, 04:31 AM #16

The key detail I need is whether the PLL OVERVOLTAGE is responsible for the pitting, and if so, are these components connected to the PLL?

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amandalou1
Member
182
12-09-2016, 05:37 AM
#17
It seems you're trying to explain your confusion about the electronics in your computer. The affected components are DBR#, BCLK_ITP, and BCLK_ITP#. These are related to the data bus reset, system bus clock signals, and differential clocking. BCLK is used for clocking, and issues with it can cause EMI, jitter, or problems with power states. You mentioned a concern about deep sleep mode, which might require these clocks. It looks like those ports are likely connected in parallel for debugging purposes, so it should be okay.
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amandalou1
12-09-2016, 05:37 AM #17

It seems you're trying to explain your confusion about the electronics in your computer. The affected components are DBR#, BCLK_ITP, and BCLK_ITP#. These are related to the data bus reset, system bus clock signals, and differential clocking. BCLK is used for clocking, and issues with it can cause EMI, jitter, or problems with power states. You mentioned a concern about deep sleep mode, which might require these clocks. It looks like those ports are likely connected in parallel for debugging purposes, so it should be okay.

D
dumafe
Member
110
12-13-2016, 11:11 PM
#18
It seems quite unusual that the pads got damaged. I’m assuming they’re gold-plated? Maybe the gold turned to ash or melted away? From what I gather, cleaning them with alcohol helps because ground points matter. Could this be related to PLL overvoltage? Absolutely, it’s possible. Or perhaps it could fry the PLL chip completely. It looks like a pad might have been removed from the chip. I don’t have a clear answer yet, but someone like @Beerzerker might have more insight on this topic. Overclocking always brings risks—anything could go wrong.
D
dumafe
12-13-2016, 11:11 PM #18

It seems quite unusual that the pads got damaged. I’m assuming they’re gold-plated? Maybe the gold turned to ash or melted away? From what I gather, cleaning them with alcohol helps because ground points matter. Could this be related to PLL overvoltage? Absolutely, it’s possible. Or perhaps it could fry the PLL chip completely. It looks like a pad might have been removed from the chip. I don’t have a clear answer yet, but someone like @Beerzerker might have more insight on this topic. Overclocking always brings risks—anything could go wrong.

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