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[ENG]Intel will mass produce 3D transistors, allowing processors down to 10nm by 2015 - Page 6  

post #51 of 82
Quote:
Originally Posted by cmeeks View Post
Easy. Buy a Sandy Bridge system now and drop in an Ivy Bridge CPU (it's still 1155) next year. Done!
But Im mr. Dumbo when it comes to BIOS and MoBo's I heard that the Ivy would need a BIOS update and only some MoBo Chipset would allow Ivy
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post #52 of 82
Quote:
Originally Posted by tubers View Post
But Im mr. Dumbo when it comes to BIOS and MoBo's I heard that the Ivy would need a BIOS update and only some MoBo Chipset would allow Ivy
Ahhh, looks like you're right according to this article. Oh well, just sell the 2500k and Z68 combo and then you will have the latest chipset features as well! Certainly not the end of the world - especially if you just stick with a cheap Z68 board.

EDIT: there's this article which says Ivy Bridge WILL be compatible with 6 series motherboards after a BIOS update - so it's rather confusing. This article is also a couple months newer and seems to contain a little more detail. At some point you just have to make a decision and go for it.
Edited by cmeeks - 5/4/11 at 9:40pm
    
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post #53 of 82
Quote:
Originally Posted by HarbingerOfLive View Post
Well not really "faster" per say. It is more of a cooling feature. The smaller the chip, the more you can get out of it per say. So you can make it faster, due to the fact that it is cooler....
per say, per say, per say, per say, per say. hahahaha just joshin
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post #54 of 82
Solid. Time to start saving for an epic build!
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post #55 of 82
Quote:
Originally Posted by cmeeks View Post
Ahhh, looks like you're right according to this article. Oh well, just sell the 2500k and Z68 combo and then you will have the latest chipset features as well! Certainly not the end of the world - especially if you just stick with a cheap Z68 board.

EDIT: there's this article which says Ivy Bridge WILL be compatible with 6 series motherboards after a BIOS update - so it's rather confusing. This article is also a couple months newer and seems to contain a little more detail. At some point you just have to make a decision and go for it.
Thanks + rep Will wait for more z68 reviews when it's out and for dozer as well

With all things quickly moving forward I hope AMD will also quickly announce more info regarding the future of the upcoming AM3+ boards.. or are those called AM4s? xD
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post #56 of 82
Oh shi...DO WANT! Go Intel!
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post #57 of 82
Quote:
Originally Posted by Hephasteus View Post
This is how distorted it get's and how rounded off it gets normally on the pic I've attached. They compensate by distorting to start with to reduce distorting. So at 22nm and 14nm and stuff they are going to have to try to create mistakes that create mistakes that make something that's not a mistake. In other words. If you're cpu is right it's because it was made from 2 wrongs.
that's about the biggest bulls**it I have ever seen on OCN, it's obvious you don't have a clue and just assembled a few sentences together.
such an amazing effort took to create such a process, if you think there is any room for error you are terribly wrong.
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post #58 of 82
So can those be patented?
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post #59 of 82
Quote:
Originally Posted by DjiXas View Post
So can those be patented?
Nah I'm pretty sure you can go make a few yourself if you want
post #60 of 82
Quote:
Originally Posted by frycicle View Post
"Control of current is accomplished by implementing a gate on each of the three sides of the fin – two on each side and one across the top — rather than just one on top, as is the case with the 2-D planar transistor. The additional control enables as much transistor current flowing as possible when the transistor is in the "on" state (for performance), and as close to zero as possible when it is in the "off" state (to minimize power), and enables the transistor to switch very quickly between the two states (again, for performance)."

The 3 sides of the fin allows for less leak.

Interesting, thanks. Seems like they're solving the biggest issue with speed, which is getting rid of that current to register a 0.

I bet these chips are going to clock insanely under LN2.
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