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Haswell 4670K/4770K Batch and Serial Numbers


Massman

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X6800/E6600/965/980X Rules works here again ?

Hot chip on Air best chip on LN2

 

L310B488 5g 1.35 32m 85 degrees 6510 1.8 CB -134 CBB -132 very very hot chip wprime 4.3 1.25 95 degrees

L310B488 5g 1.31 32m 67 degrees 6380 1.90CB -112 CBB -108 wprime 4.3 1.25 75 degrees

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X6800/E6600/965/980X Rules works here again ?

Hot chip on Air best chip on LN2

 

L310B488 5g 1.35 32m 85 degrees 6510 1.8 CB -134 CBB -132 very very hot chip wprime 4.3 1.25 95 degrees

L310B488 5g 1.31 32m 67 degrees 6380 1.90CB -112 CBB -108 wprime 4.3 1.25 75 degrees

 

ooh nice find man,

 

extra warm chip + low CB is excellent combination.

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Haswell is such an interesting animal...so,after 15 chips....

 

-general rule for me,the better the core(lower voltage for 5 ghz) the better the cache/ring frequency

-some chips can do 4.5 stable with 1.15 let's say but they end up not doing 5 ghz at all,while some require 1.2 and they do 5 ghz under 1.4

-VID could be an indicator of chip quality but not main factor,got 2 0.97 that would require 1.45+ for 5 ghz while my best chips*under 1.3 * had 1.02

-imc quality varies,but not related to core/cache,the best imc i encountered*3400 stable 32M with 1.15 vccio a/d had almost the worst cores i've seen requiring 1.3V just to enter os at 4.4 ghz

-chips behave differenty when searching for lowest voltage for a given frequency,example while testing for 5 ghz 32M some chips would give not exact in round or sqrt,some would simply freeze the screen while others will do classic 101 or 124.

-ram frequency play a role in vcore required for stability but not to all pieces,testing stability at DDR3-3000 some would require +0.02-0.3 over DDR3-2133,some would need the same vcore.

 

Still have some things to figure out,maybe other members can chime in with experiences and binning multiple haswell so we can create a has$$well wikipedia here :D

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Haswell is such an interesting animal...so,after 15 chips....

 

-general rule for me,the better the core(lower voltage for 5 ghz) the better the cache/ring frequency

-some chips can do 4.5 stable with 1.15 let's say but they end up not doing 5 ghz at all,while some require 1.2 and they do 5 ghz under 1.4

-VID could be an indicator of chip quality but not main factor,got 2 0.97 that would require 1.45+ for 5 ghz while my best chips*under 1.3 * had 1.02

-imc quality varies,but not related to core/cache,the best imc i encountered*3400 stable 32M with 1.15 vccio a/d had almost the worst cores i've seen requiring 1.3V just to enter os at 4.4 ghz

-chips behave differenty when searching for lowest voltage for a given frequency,example while testing for 5 ghz 32M some chips would give not exact in round or sqrt,some would simply freeze the screen while others will do classic 101 or 124.

-ram frequency play a role in vcore required for stability but not to all pieces,testing stability at DDR3-3000 some would require +0.02-0.3 over DDR3-2133,some would need the same vcore.

 

Still have some things to figure out,maybe other members can chime in with experiences and binning multiple haswell so we can create a has$$well wikipedia here :D

Thanks Alex. How did you test stability? Which tests did you use(LinX, Prime95 or SuperPi 32m)? ))

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4770K	L314B511 2113	4500MHz 1,22 32m passed	4800 didn't boot 1.35V
4770K	L314B511 3137	4500MHz 1,195 32m passed	4800 booted 1,35V/5000 didn't LOAD OS 1.4V
4770K	L314B511 1810	4500MHz 1,19 32m passed	4800 booted 1,35V/5000 didn't LOAD OS 1.4V
4770K	L314B511 1920	4500MHz 1,195 32m passed	4800 booted 1,35V didn't LOAD OS
4770K	L314B511 1804	4500MHz 1,17 32m passed	
4770K	L314B511 1567	4500MHz 1,21 32m passed	4800 didn't boot 1.35V
4770K	L314B511 1806	4500MHz 1,175 32m passed	
4770K	L314B511 3317	4500MHz 1,25 32m passed	4800 didn't boot 1.35V
4770K	L314B511 0406	4500MHz 1,175 32m passed	
4770K	L314B511 0406	4500MHz 1,225 32m passed	

No one from them didn't LOAD OS at 5000MHz

Edited by MaJ0r
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