Earlier quoted context omitted.
Back in 60's AT&T make lots and lots of circular waveguide, intending to bury it across the country. One of the circular modes is dispersionless; then fiber was invented; lot's of money lost on circular waveguide. Interesting that mmWavguide is still rectangular. Wonder if one could do a mmWave fiber? Don't see why not.
millimeter wave waveguide on the rear of a parabolic antenna (30, 60cm dish) is actually circular (cylindrical), supporting dual polarity operation (opposite H and V). Individual radio heads like this russian radio or other 80 GHz radios are still single polarity. In certain scenarios you can mount two radio heads on a T-shaped waveguide on the rear of one dish antenna, one in H, one in V.
10 gigabit Ethernet 80 GHz point-to-point bridges
81–90 of 94 posts
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#82There's a huge number of houses with idle fiber installed 10+ years ago. Gigabit ethernet was introduced 17 years ago and carries 5 km over fiber. Cable is just waiting for providers to switch on 10 Gbps since years ago. Phone line copper has similar story..
Maybe something like this could jump-start the stalled development of last-mile consumer internet.
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#83it's worth noting that this is just the first one publicly announced and not under NDA.. It's from a russian radar/microwave/millimeter wave manufacturer. All of the other much larger players such as Bridgewave also have 10 Gbps radios coming.
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#84Earlier quoted context omitted.
>higher sample rate ADCs and DACs becoming more viable Question, on optical networks doesn't this make dispersion more of a problem?
80 GHz isn't quite optical yet. It's a couple octaves down from infrared. SFAIK, it's still very much radio.
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#85According to Nielsen's law of bandwidth, consumer gigabit last mile should be common by now and 10G would be a logical next step development, becoming ubiquitous in 2020 or so. There's a huge number of houses with idle fiber installed 10+ years ago. Gigabit ethernet was introduced 17 years ago and carries 5 km over fiber. Cable is just waiting for providers to switch on 10 Gbps since years ago. Phone line copper has…
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#86It's interesting to see the huge channel bandwidths they're using to attain this. Advances like this are largely driven by higher sample rate ADCs and DACs becoming more viable in recent years. Edit for clarity: channel bandwidths in the datasheet are up to 2 GHz. Need to close the link at 32 QAM to hit 10 gb before error correction overhead at that bandwidth, which is certainly doable. Also, it's interesting to note…
What sort of latency would you expect with a system like this (I mean the link in this submission, not satellites)?
h1 - sw1 - ptp1a -/- ptp1z - sw2 - ptp2a -/- ptp2z - sw3 - r1 - h2
h1 : Sun Fire server
sw1 : Cisco 3560G switch
ptp1a : 6 GHz point-to-point microwave transceiver ("A" end)
ptp1z : 6 GHz point-to-point microwave transceiver ("Z" end)
sw2 : Cisco 3560G switch
ptp2a : 6 GHz point-to-point microwave transceiver ("A" end)
ptp2z : 6 GHz point-to-point microwave transceiver ("Z" end)
sw3 : Cisco 3560G switch
r1 : Cisco 3945
h2 : Sun Fire server
All connections are 1 GbE. ptp1a to ptp1z : 12.80 miles (20.60 km)
ptp2a to ptp2z : 05.01 miles (08.06 km)
From h1 to h2: --- x.x.x.x ping statistics ---
20 packets transmitted, 20 received, 0% packet loss, time 19305ms
rtt min/avg/max/mdev = 0.955/0.995/1.157/0.049 ms
Each of the two microwave links are advertised as being capable of 761 Mbps full-duplex.Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#87According to Nielsen's law of bandwidth, consumer gigabit last mile should be common by now and 10G would be a logical next step development, becoming ubiquitous in 2020 or so. There's a huge number of houses with idle fiber installed 10+ years ago. Gigabit ethernet was introduced 17 years ago and carries 5 km over fiber. Cable is just waiting for providers to switch on 10 Gbps since years ago. Phone line copper has…
Do you have a source for that? Verizon may have passed 18 million homes, but only the homes which have placed an order for Fios were ever connected. So, no or very little idle fiber.
> Gigabit ethernet was introduced 17 years ago and carries 5 km over fiber.
Wrong. You can buy off the shelf SFPs with 200 km reach. Use amps if you want longer reach.
> Cable is just waiting for providers to switch on 10 Gbps since years ago.
You don't just switch on 10 Gbps on cable. First your vendor needs to release DOCSIS 3.1 equipment and you need to test it. Then you need to upgrade your CMTS to DOCSIS 3.1 and swap out any cable modems that don't support 3.1 and dedicate spectrum to DOCSIS 3.1 downstream channels.
And it's not since years ago. DOCSIS 3.1 was released a bit over two years ago. Comcast will start rolling out commercial DOCSIS 3.1 service this year.
> Phone line copper has similar story...
What?! G.fast can theoretically give you 1 Gbps, but only if you already have fiber to your driveway. There aren't even any commercial deployments yet and all vendors don't even have products yet.
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#88According to Nielsen's law of bandwidth, consumer gigabit last mile should be common by now and 10G would be a logical next step development, becoming ubiquitous in 2020 or so. There's a huge number of houses with idle fiber installed 10+ years ago. Gigabit ethernet was introduced 17 years ago and carries 5 km over fiber. Cable is just waiting for providers to switch on 10 Gbps since years ago. Phone line copper has…
You can put the savings into better bandwidth for consumers or lower cost for ISPs. With no competitive pressure for the former in the majority of the country, providers have happily pocketed the 3+ order of magnitude improvements while providing the same old 1990 speed.
So, even with competitive pressure, consumers can't expect to receive the latest and greatest for peanuts.
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#89Earlier quoted context omitted.
Thanks for the info. I got to mess with W-band stuff years ago, but I'm mostly Ku and below now. Would love to tear down some 80 GHz hardware. Have you seen anything come of the "angular momentum" polarization discovered a few years ago? Seemed specific for P2P microwave.
I would love to hear more about that - have any links? From a quick google, all I can dig up makes it sound like it's normal circular polarization, which is used quite often in satellite. Not sure why it wouldn't make it into terrestrial, since it has some interesting advantages (no x-pol alignment issues!)
Re: 10 gigabit Ethernet 80 GHz point-to-point bridges
#90It's interesting to see the huge channel bandwidths they're using to attain this. Advances like this are largely driven by higher sample rate ADCs and DACs becoming more viable in recent years. Edit for clarity: channel bandwidths in the datasheet are up to 2 GHz. Need to close the link at 32 QAM to hit 10 gb before error correction overhead at that bandwidth, which is certainly doable. Also, it's interesting to note…
> Advances like this are largely driven by higher sample rate ADCs and DACs becoming more viable in recent years. I'm looking forward to what these will do for SDR. I salivate over the thought of an SDR using something like the TI ADC12J4000 [1] which has a 4 GSPS sampling rate. [1] http://www.ti.com/product/ADC12J4000/description