Showing posts with label cloud data center. Show all posts
Showing posts with label cloud data center. Show all posts

Tuesday, May 25, 2021

When You Need Massive Bandwidth

By: John Shepler

Most businesses do just fine with common bandwidth offerings from telco, cable and fiber service providers. Sometimes, though, your application just won’t squeeze through the pipe. You need more than typical WAN bandwidth. You need massive bandwidth.

Find massive bandwidth for your big data. How Massive Are We Talking?
Over the last few decades, mirroring the growth of the Internet, WAN bandwidth needs have multiplied from a paltry T1 level of 1.5 Mbps up to 10 or 20 Mbps for the smaller businesses, at least 100 Mbps for companies with many employees, to a now commonly expected Gigabit per second.

Those bandwidths levels are easily accommodated by most service providers. Copper twisted pair can bring in 20 Mbps or so. Cable broadband is good for at least 100 Mbps and pushing 1 Gbps in many areas. Fiber optic service easily delivers 1 or 2 Gbps and can readily scale to 10 Gbps. Where you might find yourself limited is in rural or underserved locations where your choice is still T1 lines, LTE or 5G wireless, or synchronous satellite broadband.

Massive bandwidth starts at 10 Gbps and goes up from there. Can you reasonably take advantage of 100 Gbps up and down? OK. How about 400 Gbps, 800 Gbps or even a full Terabit per second? Those are carrier level services, but not out of the realm of possibility for the most data or streaming intensive businesses.

Who On Earth Needs THAT Much Bandwidth?
What were absurd levels of bandwidth are now aspirational and may become common sooner than you think. One big driver is the move of everything digital to the cloud. When your data center was just down the hall, nobody worried about bandwidth. You can string as much fiber as you want above the ceiling tiles. Once you pay for installation, usage is pretty much free.

Not so much anymore. When the connection leaves your building you lose control. You’re not going to string any cable across town, much less across several states. For that you need to hand off your traffic to a carrier or service provider. This third party will then lease you the amount of bandwidth you need, or at least can afford, for a monthly fee. The carrier, not you, takes care of all maintenance and reliability between locations.

Some companies get a surprise when they realize that the 30 Mbps Internet connection that was more than adequate when the data center was on premises is now painfully slow when all the applications are in the cloud. One solution is to install a high speed direct line to the cloud service provider and keep the old Internet connection as-is. That solves the bandwidth problem and avoids business critical apps having to deal with the vagaries of Internet performance.

Another application that just won’t play on standard connectivity is content distribution. If you are sending massive amounts of content consistently, you may need to avoid the standard Internet and move over to a purpose built privately run network called a content delivery network. These are designed to handle continuously high levels of video or data without congestion.

Sometimes you only need massive data for a brief time. Say you have Terabytes of disk drives full to the brim and you want to send that to the cloud for safe keeping or to a customer who needs those design or simulation models on their system. Shoving it through a normal connection will take forever. Is there a better option?

Colocation and Cloud Data Centers
If there is one place that you’ll find massive bandwidth already installed and running, it is in cloud and colo centers. Both are massive facilities with nearly unlimited servers, disk drives and bandwidth connections from multiple carriers. The difference between cloud and colo is that cloud centers provide all of the equipment and service needed. A colo or colocation facility lets you bring in your own equipment and set up your own data center in their racks and cages. It’s like what you would have at home, but in a shared building with plenty of space, backup power, HVAC, security and even round the clock staffing.

Some colos will provide a direct fiber hookup between your company and any others located in the same facility. if you need to connect outside, you won’t have to worry about finding a service provider or paying hefty fees to bring in service from afar. They are already inside and serving other customers. You just get a hookup at whatever bandwidth you need.

More Exotic Massive Bandwidth Options
There really is no limit to how much bandwidth you can utilize these days, other than your budget. If you can afford it, consider these options:

Wavelength Services
Most fibers are now lit with DWDM or dense wavelength division multiplexing. That means multiple lasers feeding the same fiber, but on different frequencies or wavelengths. A wavelength can handle perhaps 10 Gbps and each fiber strand can handle perhaps 100 wavelengths. Combine them all and the total bandwidth is mind boggling.

Many carriers are now leasing entire wavelengths for your use. It’s like a fiber within a fiber. Some will combine multiple wavelengths to create 100 Gbps and higher bandwidths for you, or you can lease the wavelengths and multiplex them yourself.

Dark Fiber
The ultimate in bandwidth and control is had by leasing one or more dark fiber strands. Dark means that the fiber is in the cable but totally unused at present. You add the laser termination and multiplexing equipment at each end and “light” the fiber.

Dark fiber is as close to having your own in-house cabling as you can get outdoors. There is nobody else’s traffic to contend with. You decide how much capacity to press into service. Run out of bandwidth? Just upgrade your terminal equipment. Same fiber, more Gbps. You don’t have total control. The carrier still owns and maintains the fiber physical plant, including cabling and repeaters. The rest is up to you.

Are you feeling unduly restricted when it comes to bandwidth to efficiently run your business and take advantage of new opportunities? If so, look into higher bandwidth fiber optic services now. You may find them more affordable than you think.

Click to check pricing and features or get support from a Telarus product specialist.



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Monday, April 07, 2014

Why Such a Stampede to The Cloud?

You can hardly turn around these days without hearing something about “the cloud.” Is it true that there is a mass migration under way from local data centers to cloud service companies? For those who make the move, why are they doing it and what do they hope to achieve?

The Cloud You Don’t Know
Cloud storage is the big app that’s getting all the press, but unlimited server capacity is also a strong draw. One application that you may not be thinking of is Hosted PBX or Hosted VoIP. This is a replacement for your in-house telephone system. Yes, you still have phones, but they plug into your data network rather than their own telephone wiring. There is no switching system in-house. That’s in the cloud.

Why Hosted PBX?
You get rid of all the headaches associated with buying and maintaining the in-house system, including all of those moves, adds and changes. Plus, you pay only for what you need. Add phones as you need them and pay by the month for each one in service. Don’t need them anymore due to downsizing or change of business direction? Get rid of ‘em. Some providers will even give you the phones so you don’t have to buy them yourself. It’s a pretty sweet deal.

How can the cloud help your business?
Get the latest on competitive cloud services available for your business operations.

Click to check pricing and features or get support from a Telarus product specialist.



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Wednesday, April 04, 2012

10 Mbps Is The New T1

T1 service has long been the gold standard for business connectivity. They’re deployed as point to point private lines, dedicated Internet access, and PBX telephone trunks. T1’s are readily available, reasonably priced and highly reliable. Their one limitation was once their prime selling point. It’s the fixed bandwidth of 1.5 Mbps.

Get 10 Mbps Ethernet WAN bandwidth for less than you might expect...Now it’s true that 1.5 Mbps still meets the needs of many small retailers and companies that aren’t technology driven, although even that is starting to change fast. Everyone from insurance professionals, physicians, video producers and engineers is now highly connected. Some of those connections are private lines or virtual private lines. Others are dedicated access to the Internet. What they have in common is a need for far more than yesterday’s bandwidth of 1.5 Mbps.

What’s more appropriate for today’s needs? It’s looking like 10 Mbps is becoming the new gold standard. Why is that? First, let’s look at what’s happened to bandwidth requirements. Nearly everyone connected to the Internet now has broadband rather than dial-up access. The wireless industry is under tremendous pressure to move from 3G speeds of around 1 Mbps, not that much different from T1, to 4G speeds of 3, 6, 10 and higher Mbps downloads and at least 1 Mbps upload.

Broadband speeds are under the gun because they are now the limiting factor to the success of computing. The PCs themselves, including Macs, have gone to multi-gigabyte memories, terabyte storage and multi-core processors. They’ve got the horsepower to create whatever user experience is required. Even tablets are now multi-core and connected to WiFi, 3G or 4G broadband. The WAN is the limiting factor in getting information into and out of the computing platform.

This wasn’t the big deal a few years ago because most all computing was done locally. You either had a software package on your PC or accessed a corporate server over a Local Area Network. Web pages were small, static and mostly text and low resolution graphics. Email is an undemanding text-based service. Ecommerce solutions may have sophisticated processing on the back-end, but don’t necessarily need to transmit that much data back and forth during a transaction.

What’s happened now is that graphics are going high resolution to match higher resolution screens and the natural output of higher resolution still cameras and HD video cameras. Video content is a greater portion of the traffic on any WAN connection. Even more importantly, everything is moving off to the cloud. The cloud is your data center, somewhere, out there, and everything flows to and from the cloud over your WAN connection. This might be a private line or an Internet access service. Either way, it better be a fairly large pipe or you will be feeling constrained in everything you try to do on your computer.

TelePacific is one carrier that is embracing the demand for higher business bandwidth levels and deploying what they call EoX or Ethernet over Anything. That’s Ethernet over copper, TDM, fixed wireless or fiber optic cabling. Why Ethernet? It has the cost advantage over traditional telecom services, an easy interface to corporate LANs, and rapid bandwidth scalability. Most popular is EoC or Ethernet over Copper. What EoC offers is provisioning over the same type of twisted pair copper telco wiring that transports T1 lines, but with higher bandwidths and lower prices per Mbps than T1.

For instance, to get 10 Mbps over T1 lines you need to bond 7 T1 lines together at a cost of 7 times the price of a single T1 line. For half that cost or less, you can get 10 x 10 Mbps Ethernet over Copper. If need be, you can easily ramp that up to 15, 20 or 25 Mbps or more when the need arises. As a reference point, the price you were paying for a single T1 line a few years ago will get you 10 Mbps EoC service today.

Are you feeling constrained by your WAN bandwidth, especially that aging T1 line? If so, it’s time for an upgrade that is likely less expensive than you think. You can probably afford 10 Mbps or more right now. Find out by getting prices and availability for Ethernet bandwidth services suitable for your business location.

Click to check pricing and features or get support from a Telarus product specialist.


Note: Ethernet patch cords photo courtesy of Wikimedia Commons.



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