• On TV.com: TOP 10 Shows CANCELED Too Soon
April 14, 2008 12:15 PM PDT

IBM: Faster, not hotter, 32-nanometer chips coming

by Brooke Crothers
  • Font size
  • Print
  • 1 comment

Chips in 2009 will run faster but not necessarily hotter. That's the gist of what IBM, along with its joint development partners such as Samsung Electronics and Toshiba, announced Monday.

IBM-fabricated 32nm SRAM chip

IBM-fabricated 32nm SRAM chip

(Credit: IBM)

The IBM alliance is using "high-k/metal gate" technology to achieve this, the same category of process technology that Intel currently uses in its 45-nanometer processors. The alliance says it is seeing performance improvements of up to 35 percent over 45nm technology at the same "operating voltage" or power levels.

This allows alliance chipmakers such as Samsung, Toshiba, and Freescale Semiconductor (formerly an arm of Motorola) to build more powerful chips that don't necessarily generate more heat. This is a necessary advancement for small devices such as cell phones, as well as data centers that use a large number of servers. The power reduction compared to 45nm technology can range as high as 30 percent to 50 percent, depending on the operating voltage, according to IBM.

The announcement serves as more of a progress update than a breakthrough achievement. At the beginning of last year, IBM announced technology to "speed the implementation of...high-k/metal gate in next-generation 32-nanometer computer chips."

A gate is a basic building block of a digital circuit, while high-k/metal is the material used. Intel, for example, used a high-k material called hafnium to replace the transistor's silicon dioxide gate dielectric for its 45nm processors. As transistors shrink, leakage current can increase. For chipmakers, it is crucial to minimize leakage. This is where high-k/metal gates come into play.

The technology will be available to alliance partners in the second half of 2009, though the design process for devices that use this technology can start now, IBM said. AMD was not included as part of the alliance because technically, it is a member only of a separate alliance, SOI (Silicon-On-Insulator).

Brooke Crothers has been an editor at large at CNET News, an analyst at IDC Japan, and an editor at The Asian Wall Street Journal Weekly, among other endeavors, including co-manager of an after-school math-and-reading center. He writes for the CNET Blog Network and is not a current employee of CNET. Disclosure.
Recent posts from Nanotech - The Circuits Blog
AMD: Our claims about Intel have been 'ratified'
AMD talks 'Hemlock' graphics, next ultra-thin laptops
Intel Celeron chip anchors $249 Acer Windows 7 laptop
Nvidia CEO says 'no' to Intel-compatible chip
First iPhone, now Droid. Who needs Windows?
One charge hard to level at Intel: Raising prices
Nvidia CEO unsurprised by Intel lawsuit
N.Y. lawsuit details Intel's 'largesse' toward Dell
Add a Comment (Log in or register)
by Mam00th April 14, 2008 12:47 PM PDT
Why is SRAM for? I know it's basicly RAM but what advantage do you get from not always refreshing your memory as in DRAM?
Reply to this comment
advertisement

As alternative energy grows, NIMBY greens

With more renewable energy projects trying to come online, the country grapples with the balance between local land use and a national push for clean energy.

Google to remake programming with Go

A Unix co-creator is among those behind a language Google hopes will speed computers and programming. Today, Go becomes open-source software.

advertisement

About Nanotech - The Circuits Blog

Brooke Crothers was formerly editor-at-large at CNET News.com, an analyst at IDC (International Data Corp.) Japan, and an editor at The Asian Wall Street Journal Weekly (The Wall Street Journal, Dow Jones), among other endeavors, including a recent hiatus from the tech industry when he co-managed an after-school math and reading center. Nanotech covers computer chip technology and how it defines the computing experience. He is a member of the CNET Blog Network, and is not an employee of CNET. Disclosure.

Add this feed to your online news reader

Nanotech - The Circuits Blog topics

advertisement
advertisement

Inside CNET News

Scroll Left Scroll Right