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Finally got my qx9650 stable at 4.0ghz but have a question - Page 3

post #21 of 62
Thread Starter 
i dont know what else to do its the only way the chip will stay stable at 4.0ghz and from what intel has on there spec data sheet maximum is 1.45v wicdh is were im sitting at.
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post #22 of 62
The Load-line calibration being on will put some serious stress on the CPU with 1.47v. I noticed that you said you tried turning it off in your other thread, but with no luck. If you turn LLC off you will have to make the Vcore higher in the BIOS because it will be lower in windows under 100% load. Just make sure you keep that in mind if you try making it stable with the LLC off.
post #23 of 62
Thread Starter 
i guess i can try to bump it down alittle hopefully it wont make it unstable again like i said only way to this thing stable at 4.0ghz is to put all that vcore threw it.
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post #24 of 62
Thread Starter 
Quote:
Originally Posted by tbates1244 View Post
The Load-line calibration being on will put some serious stress on the CPU with 1.47v. I noticed that you said you tried turning it off in your other thread, but with no luck. If you turn LLC off you will have to make the Vcore higher in the BIOS because it will be lower in windows under 100% load. Just make sure you keep that in mind if you try making it stable with the LLC off.
so with llc off i would need to raise the vcore in bios higher but will not be higher in windows?
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post #25 of 62
Correct. You will have to have the vcore higher in the BIOS but it will be lower in Windows. Example with LLC off on my P5q-e when I enter 1.387v in BIOS I get 1.284 in Windows under 100% load. (Granted that is a LARGE vdroop) Some motherboards have a larger droop than others.
post #26 of 62
Thread Starter 
Quote:
Originally Posted by tbates1244 View Post
Correct. You will have to have the vcore higher in the BIOS but it will be lower in Windows. Example with LLC off on my P5q-e when I enter 1.387v in BIOS I get 1.284 in Windows under 100% load. (Granted that is a LARGE vdroop) Some motherboards have a larger droop than others.
isnt that they same thing though if i shut it off and enter 1.387v for example in bios if its lower in windows that wont hold my stability if i need almost 1.45v to run it stable.
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post #27 of 62
I was using 1.387 as an example to show how much the drop from BIOS to Windows 100% load can be (on some boards your Rampage formula might have less vdroop). If you need 1.45v to run stable then you need to enter 1.53-1.55v to get that voltage under load without LLC. But it is ok to have that much voltage in the BIOS what matters is how much voltage you push through that chip in windows under load.
post #28 of 62
Thread Starter 
ok i will attempt this ah i get it u would only get that 1.45v under full load with llc off as were with it on im constantly pushing 1.45v thrw it
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post #29 of 62
Thread Starter 
ok i put it on 1.52v in cpuz it reads 1.448v under load with no load it reads 1.496v i dont get it thats higher then me just running it at 1.45v
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post #30 of 62
Thread Starter 
thats pritty confusing i set it to 1.52v in bios with llc off when u boot into windows cpuz reads it at 1.48v 1.49v under load it drops to 1.432v but if im not under load isnt it bad having it almost to 1.49v
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