Does aanyone here work with consuming (not just passing it kn) these amounts of traffic? How do you manage to get anything meaningful out of it?
network engineer here: nobody connects a 200 or 400GbE interface linecard off a router to a single anything... The purpose is for ISP-to-ISP interconnections for truly huge amounts of traffic. For example direct peering in the same IX/carrier hotel between a huge source of content (youtube/google, netflix, etc) and a huge ISP (comcast, centurylink). For a big ISP, also things like 100GbE connections from a city's pai…
New Optical Form Factors for 400 Gigabit Ethernet
21–30 of 78 posts
Re: New Optical Form Factors for 400 Gigabit Ethernet
#22Does aanyone here work with consuming (not just passing it kn) these amounts of traffic? How do you manage to get anything meaningful out of it?
Re: New Optical Form Factors for 400 Gigabit Ethernet
#23I wonder when we will start seeing > 1Gpbs Ethernet in consumer products. I've read about initiatives for 5 or 10Gb consumer Ethernet. I'd love to be able to push/pull from my NAS at > 100MB/s.
Apart from some Prosumer and Business usage there just isn't enough market to scale this down to a cost competitive product. I think it may possibly remain as a niche. ( Please Prove me wrong as I too want my NAS to transfer at 500MB/s )
I saw some article suggest Small Cells in 4.9G/5G or 802.11ax WiFi will be key to this acceleration, both are coming in 2019.
Re: New Optical Form Factors for 400 Gigabit Ethernet
#24QSFP-DD is backwards compatible so that you can run your 400G port as a 100G or 40G with 4 lanes at 25G/10G. OSFP will be able to do the same thing but with an adapter from OSFP to QSFP
But what this article fails to mention is that OSFP is the connector of the future that will support 8 lanes of 100G to support 800G ethernet with good signal integrity and capability to support high power optics for longer distances. ( This looks to be in 2020 )
So QSFP-DD is a 1 generation connector...
OSFP will see us through 400G and 800G.
Disclaimer I work at Arista Networks who is bullish on OSFP.
For more info see Andy Bechtolsheim's talk on 400G optics at OCP
Re: New Optical Form Factors for 400 Gigabit Ethernet
#25Earlier quoted context omitted.
network engineer here: nobody connects a 200 or 400GbE interface linecard off a router to a single anything... The purpose is for ISP-to-ISP interconnections for truly huge amounts of traffic. For example direct peering in the same IX/carrier hotel between a huge source of content (youtube/google, netflix, etc) and a huge ISP (comcast, centurylink). For a big ISP, also things like 100GbE connections from a city's pai…
The only potential consumers I can imagine are like the Great Firewall of China traffic monitoring systems.
Re: New Optical Form Factors for 400 Gigabit Ethernet
#26I wonder when we will start seeing > 1Gpbs Ethernet in consumer products. I've read about initiatives for 5 or 10Gb consumer Ethernet. I'd love to be able to push/pull from my NAS at > 100MB/s.
It's a fair question; I suspect most of the reason for the lag is that consumer internet connections rarely offer >1gbps, consumer LAN applications requiring >1gbps of traffic haven't emerged (for NAS/SAN, a directly connected USB 3 is probably the way to go for 10gbps transfer, which is what you're looking for here), and WiFi - how most people are connecting their consumer devices to the network - doesn't offer more…
1) dual, separate 2.4 and 5.x GHz radios
2) 3x3 MIMO
3) 802.11ac wave2 (1024QAM)
4) use of really wide channel sizes, even an 80 MHz wide 802.11ac channel won't get near 1 Gbps aggregate throughput, needs to be the ridiculous 160 MHz channel size in the 5.x GHz part 15 frequencies.
5) all of the above combined, or more than two radios in an AP such as expensive high density Xirrus or Ruckus WAPs which can have two or three separate 5.x GHz radios in one physical body.
Re: New Optical Form Factors for 400 Gigabit Ethernet
#27I remember having to schedule a 780Kb download overnight and hoping no one picked the phone up. Or years later having to download shows in advance (illegally because they weren’t available) because streaming wasn’t possible. Now I casually (and legally) boot up any show I feel like within seconds at HD resolutions. I love thinking about the sheer amount of data that is traversing around the internet now. And it’s mor…
Re: New Optical Form Factors for 400 Gigabit Ethernet
#28Earlier quoted context omitted.
60hz even is low today by competitive standards for FPS games. 128 is nice, it should be a minimum.
Often it’s only on LAN games for tourneys where the tick rate is that high. With internet latency or bandwidth requirements at that rate you are going to start dropping more and more packets and suffer from potentially more client side mispredictions.
Re: New Optical Form Factors for 400 Gigabit Ethernet
#29The real debate is between OSPF and QSFP-DD as they are the only ones with a shot at high density. QSFP-DD is backwards compatible so that you can run your 400G port as a 100G or 40G with 4 lanes at 25G/10G. OSFP will be able to do the same thing but with an adapter from OSFP to QSFP But what this article fails to mention is that OSFP is the connector of the future that will support 8 lanes of 100G to support 800G et…
The only bad thing about OSFP is that its highly similar name will confuse the hell out of network engineers who never see the OSI layer 1 of a network, and deal with things at OSI layer 3.
OSFP != OSPF (the routing protocol).
Re: New Optical Form Factors for 400 Gigabit Ethernet
#30The real debate is between OSPF and QSFP-DD as they are the only ones with a shot at high density. QSFP-DD is backwards compatible so that you can run your 400G port as a 100G or 40G with 4 lanes at 25G/10G. OSFP will be able to do the same thing but with an adapter from OSFP to QSFP But what this article fails to mention is that OSFP is the connector of the future that will support 8 lanes of 100G to support 800G et…