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prabhakar_deosthali
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re: Supercomputing 2011 ultimate slideshow
prabhakar_deosthali   11/30/2011 10:59:30 AM
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Wow! This is the real face of the computing. And the future looks really bright. Sitting here in India, I am just envious of those people who could witness this in person.

Robgarn
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re: Supercomputing 2011 ultimate slideshow
Robgarn   11/29/2011 10:00:39 PM
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Thanks. (That was easy for me to spot, give my role as co-lead of the SPARC architecture at Sun in 1984. :-)

bpa1
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re: Supercomputing 2011 ultimate slideshow
bpa1   11/29/2011 8:59:15 PM
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Thanks - great job!

KB3001
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re: Supercomputing 2011 ultimate slideshow
KB3001   11/29/2011 5:46:03 PM
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Excellent job Sylvie. Today's supercomputing power is tomorrow's mobile phone computing power, so it's always good to follow the latest news from SC.

Silicon_Smith
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re: Supercomputing 2011 ultimate slideshow
Silicon_Smith   11/29/2011 5:25:03 PM
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The Cray computers place looks really cool, wish I was there!

kfield
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re: Supercomputing 2011 ultimate slideshow
kfield   11/28/2011 11:38:35 PM
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It's great, Sylvie, to read about all the investments being made in Supercomputing Technology by our National Research Labs. Some really awesome work being done there.

SylvieBarak
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re: Supercomputing 2011 ultimate slideshow
SylvieBarak   11/28/2011 11:13:41 PM
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You are indeed correct, Rob. I will change that right away. Thank you for spotting it!

Robgarn
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re: Supercomputing 2011 ultimate slideshow
Robgarn   11/28/2011 10:42:05 PM
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Page 6 says: "AMD took the first three places, powering the world's three largest supercomputers – “K”, Tianhe-1A and Jaguar." However, the Fujitsu "K" (Kei) supercomputer is powered by 88,128 2.0-GHz 8-core SPARC64 VIIIfx processors, making it the first SPARC computer to top the LINPACK list.

goafrit
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re: Supercomputing 2011 ultimate slideshow
goafrit   11/28/2011 9:58:04 PM
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Good job. Excellent.

SylvieBarak
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re: Supercomputing 2011 ultimate slideshow
SylvieBarak   11/28/2011 8:37:30 PM
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Thank you Jack! This was my first slideshow, so your feedback was lovely!

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As data rates begin to move beyond 25 Gbps channels, new problems arise. Getting to 50 Gbps channels might not be possible with the traditional NRZ (2-level) signaling. PAM4 lets data rates double with only a small increase in channel bandwidth by sending two bits per symbol. But, it brings new measurement and analysis problems. Signal integrity sage Ransom Stephens will explain how PAM4 differs from NRZ and what to expect in design, measurement, and signal analysis.

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