00:00 jensen fan
So we decided that we had to move forward.
00:05 jensen fan
No year is left behind, and cutting-edge calculations are performed every year.
00:13 jensen fan
And now we've been shipping the GB 200 for a year and a half. We are currently in full-scale production of the GB300.
00:24 jensen fan
And if Vera Rubin were to make it in time this year, it would be in production by now.
00:30 jensen fan
And today we can tell you that Vera Rubin is fully committed.
00:43 jensen fan
Want to see Vera Ruben? Okay, come on. Please play.
00:54 narrator
Vera Rubin arrives in time for the next frontier of AI.
01:01 narrator
This is the story of how we built it.
01:04 narrator
This architecture is a six-chip system designed to work as one and is the result of extreme collaborative design.
01:13 narrator
It starts with the custom-designed CPU Vera, which has twice the performance of the previous generation.
01:21 narrator
And Ruben GPU. Vera and Ruben were co-engineered from the ground up to enable faster, lower-latency, two-way, and consistent data sharing.
01:31 narrator
And 17,000 components come together on a Vera Rubin computing board.
01:41 narrator
A high-speed robot places the components with micron precision before a Vera CPU and two Ruben GPUs complete the assembly.
01:50 narrator
Deliver 100 petaflops of AI.
01:55 narrator
5 times more than its predecessor.
01:59 narrator
AI requires fast data.
02:03 narrator
Connect X9 provides 1.6 terabits/second of scale-out bandwidth to each GPU.
02:11 narrator
Bluefield 4 DPU offloads storage and security, so compute remains fully focused on AI.
02:20 narrator
The Vera Rubin compute tray has been completely redesigned to eliminate cables, hoses, and fans.
02:27 narrator
It features a Bluefield 4 DPU, 8 Connect X9 NICs, 2 Vera CPUs, and 4 Ruben GPUs.
02:35 narrator
Vera Ruben Computational building blocks for AI supercomputers.
02:40 narrator
Next up is the 6th generation NV-link switch.
02:47 narrator
Move more data than the global internet, connect 18 compute nodes, and scale up to 72 Ruben GPUs working as one.
02:59 narrator
Next up is Spectrum X Ethernet Photonics.
03:07 narrator
The world's first Ethernet switch that simultaneously packages 512 lanes and 200 Gigabit-capable optics scales out thousands of racks into an AI factory.
03:20 narrator
15,000 engineer years since design began. The first Vera Rubin NVL 72 rack is now online.
03:28 narrator
6 breakthrough chips, 18 compute trays, 9 NV Link switch trays, 220 trillion transistors,
03:37 narrator
It weighs almost 2 tons.
03:44 narrator
A giant leap to the next frontier of AI.
03:51 narrator
Ruben is here.
04:00 jensen fan
What do you all think?
