Showing posts with label wide area network. Show all posts
Showing posts with label wide area network. Show all posts

Monday, October 21, 2024

Dark and Lit Private Lines

By: John Shepler

The Internet is a marvelous network. It enables all of us to connect to any of us anywhere in the world and at a very reasonable cost. Why wouldn’t you use the Internet for all your communications? Much of the time we do, both for personal and business needs. It works great… well, it works just fine a lot of the time. There are a few snags, though.

See what private network options are available for your business.Network Priority
One is priority for highly sensitive applications like interactive voice and video. Say, telephone calls. There is no priority. Your voice packets get the same treatment as your next door neighbors video stream or someone backup up files to the cloud. Get in line and take your turn. When things get too busy, called network congestion, your real-time stream may break up or stop completely for a short time.

Cloud Critical Applications
The same is true for business critical applications running in the cloud. If you are taking orders, interacting with a customer or needing fast answers to deal with rapidly moving situations you may be drumming your fingers as you wait for the system to respond. Trying to make a quick financial trade in the market? Maybe it executes immediately. Maybe not. You may or may not get the price you had in mind.

Network Security
Another issue is security on the Internet. There is none. If you want security, you need to add it yourself. That means encryption. A popular way to encrypt your traffic when out of the office is by using a VPN or virtual private network. This is end to end encryption that makes it safer to use public access points like WiFi in coffee shops or send sensitive documents across the Internet. SSL or, now, TLS encryption has made possible online shopping and banking with confidence using web browers over the Internet with or without a VPN.

Improving Performance with Private Lines
You can get better network performance with private lines. Think private road versus crowded superhighway. The idea is to limit the competition from other people’s traffic.

You can still use the Internet but make it run better with a private line called DIA or dedicated Internet access. This gives you a private, not shared, connection between your location and your Internet service provider. Of course the Internet core itself is still a shared resource, but most of the congestion is in the last mile where you and hundreds or thousands of other users share the same connection to the service provider.

Direct to the Cloud
A direct cloud connection is a private line between you and your cloud service provider. Since you are the only user on that line, your cloud services should run much more like they would if the servers were right down the hall in your building. This type of connection avoids the Internet and its vagaries completely.

Why not expand that concept to your own private WAN or wide area network? This means private lines to connect your offices, factories, data centers and branch locations or retail outlets. Think of it like having your LAN expand to include all of your other business locations. You have control of the traffic and no interference from other outside users. Both privacy and performance are improved.

Dark and Lit Fiber
So far we are talking about fiber optic services, likely Ethernet over Fiber, which is the most popular connection method today. These are “lit” fiber connections where the laser equipment that maintains the signal is owned and operated by a service provider. The ultimate in performance and privacy over metropolitan and wider areas is using “dark” fiber. Dark means the fiber strands that you lease have no termination equipment at either end. You are responsible for providing the equipment that “lights” the fiber and sets the protocol. Since the glass fiber strands have nearly unlimited bandwidth, you have tremendous ability to send traffic from point to point dependent only on your budget and technical staff.

Wireless Private Lines
Finally, there is a new type of wireless service called 5G private networking or 5G network slice that lets you have the advantage of private lines while portable or mobile. It’s something like your own private corporate WiFi, but over much wider distances. Coupled with fiber optic private lines for most of your traffic, private wireless can give you a comprehensive business network wherever you are.

Is private networking right for your business? Find out what private network and security options are available now.

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



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Tuesday, February 09, 2021

Bandwidth for Cloud and On-Premises

By: John Shepler

Whether you choose to have your data center on-premises or in the cloud, you’ll need high performance WAN bandwidth for connectivity. Let’s look at the various options.

Find the bandwidth connection you need at a great price.Everything’s On Premises
One big advantage of maintaining your own in-house servers and other data center equipment is that you control the premises network. Your local area network (LAN) likely runs at least 100 to 1000 Mbps. The connections in the data center may be much higher for the short runs needed to interconnect storage, processing security appliances and the rest.

It’s important to note that this is a dedicated network for your exclusive use. If congestion is a problem, you need to upgrade the weak links because it is your operation that is causing the problem. There are no outsiders to cause interference. We’ll come back to that later.

Since all of your company connections are local, why do you need a a wide area network (WAN) at all? For one thing, you’ll have remote employees or employees that occasionally connect from home. For another, your operation may not be contained in one closed campus. You may have multiple offices, retail sites, franchises, warehouses or factories. Even if they are just across town, you have to lease network bandwidth to connect.

Ideally, you’d like these operations to look like they are also on your local network. You can do that with WAN network connections that look like your LAN connections. Metro Ethernet and long haul Ethernet connections are available from 10 Mbps to 10 Gbps and look just like very long LAN cables. Transparent LAN service (TLS) is a managed carrier service that links locations no matter how far apart they as switched nodes.

Connecting to the Outside World
How is it that you connect to your customers and suppliers? These days it is probably via the Internet. You’ll want a high speed dedicated Internet connection to reach out to customers and suppliers and access Internet resources. You may well have a security appliance in the line between the Internet link and your network to keep malicious actors out of your company.

Remote employees will also use the Internet but may connect using a VPN or Virtual Private Network. This adds encryption to your Internet sessions so that they can’t be accessed by anyone not authorized.

Another consideration is the connection that customers use to access your E-commerce servers. Sometimes that bandwidth for this activity is much larger than what you are actually using in-house. You’ll want a fiber optic dedicated Internet access connection to your customer facing servers.

Facilities in the Cloud
The joke going around is that there really is no cloud, it’s just somebody else’s computer. Strictly speaking, that’s true. The advantage of the cloud is that one massive data center can host and maintain thousands of servers with backup power and massive connectivity at reasonable prices. Some companies may want to keep their in-house processes under local control and have their e-commerce servers in the cloud where they can have those massive scalable resources.

The cloud provider will take care of Internet bandwidth out to your customers. You’ll also need an Internet connection with enough bandwidth to efficiently upload and download files from your cloud servers. If you choose to have business process software running on cloud servers, you connectivity will be crucial to the in-house user experience. Latency can be a big issue in responsiveness. Variations in latency due to congestion or line issues can kill productivity and become a major morale problem.

For the best performance, you’ll want a high speed dedicated connection directly to your cloud service provider, avoiding the Internet completely. If that is not available or beyond the budget, a dedicated Internet connection with enough capacity for everyone is a reasonable substitute.

Why Dedicated Bandwidth?
As you may have surmised, there are two types of line services: Dedicated and shared. Dedicated lines are assigned to your traffic only. Whatever you don’t use at the moment sits idle, but you never have to contend with someone else hogging the bandwidth. Point to point E-Line, E-Line and E-Tree connections are all dedicated, as are T1 lines and DS3 bandwidth.

MPLS networks are actually a shared resource, but are a private network carefully managed to ensure that the committed resources in the contract are available at all times. They behave like dedicated resources, but with a cost savings if you need to link many sites.

The public Internet is inherently a shared resource. The core network has reasonably high performance, although equipment failures can occasionally grind performance to a halt. The Internet is designed to work around faults, but may not be able to maintain full speed if some nodes are overloaded.

The real issues with the Internet revolve around the last mile connection performance and no ability to set priority for highly sensitive packets like VoIP telephone calls and video conferences. Shared Internet connections include DSL, cable and cellular broadband. They work well for many uses and offer bargain rates, but you have to accept variations in performance that can range from unnoticeable to highly annoying.

It also should be noted that shared Internet connections tend to offer much higher download than upload speeds, often in the range of 10 to 1. That’s because most users, especially those watching video, are receiving far more data from the Internet than they are sending. Dedicated connections usually offer the same speeds on download and upload, which might be important for business processes, file transfers, telephone, video conferencing and data backups.

Are you in need of a bandwidth upgrade or new service? Get a suite of quotes from competitive providers to see what’s available for your location and how prices compare.

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



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Thursday, January 07, 2021

Ethernet WAN to Complement Your LAN

By: John Shepler

Traffic on your company’s Local Area Network (LAN) zips along at 1 Gbps or more. In most cases that’s so fast it seems like the network is transparent. Yet, access a resource outside your building and things just seem to creep along. Wouldn’t it be nice to just stretch that LAN across town or to one of your remote locations? Well, maybe you can.

Find Ethernet WAN services for your business location. Yes, The WAN is Ethernet
Networks can be divided into two categories: The ones you own and the one’s you lease. You typically install and administrate your company network, called the LAN. When you leave the premises, you connect to another network that operates as a utility. That's the WAN or Wide Area Network. Originally, this WAN was owned and operated by the telephone companies and implemented their proprietary standards. That includes your phone voice lines, ISDN dial-up, T1, DS3, and SONET fiber optic. Connecting to any of these standards requires specialized equipment to do the protocol conversion to and from the Ethernet that runs on the LAN.

These days, most outside lines connect directly to Ethernet without any protocol conversions. The suppliers can be telephone companies or competitive carriers who run their own fiber optic networks. Interoperability is made easy by Carrier Ethernet Standards established the MEF (Metro Ethernet Forum) industry consortium.

Ethernet WAN Services
There are three services typically offered by Ethernet service providers that you’ll want to know about.

E-Line or Ethernet Virtual Private Line is a point to point service that connects two locations as if there was a really, really long Ethernet cable in-between.

E-LAN or Ethernet Virtual Private LAN is for multiple locations that want to communicate as if they are on a private bridged Ethernet network.

E-Tree or Ethernet Virtual Private Tree is also a multipoint service, but used more for broadcasting, streaming or content distribution. It is a one-to-many service with a single root and multiple leaves.

Getting Ethernet WAN Service
Within a metropolitan area, the service is called Ethernet MAN or Metropolitan Area Network. Over longer distances that leave the area, Ethernet WAN or Wide Area Network is the term used.

You’ll contract with a service provider or carrier that has points of presence in the locations you want to connect. You may have several to choose from.

The equipment installed at your location consists of terminal equipment with an Ethernet port that supports the network speed you desire. Unlike older systems that require equipment changes for every change in service level, you can order Ethernet service at many different speeds up to the limit of the installed port. This has the advantage of letting you pay for the service level you need now and then upgrade easily as you need more capacity. Often that’s as easy as making a change via your online service portal or with a simple phone call.

Ethernet to the Internet
The Internet is the ultimate Wide Area Network, connecting just about everybody, everywhere. You can order an Ethernet Dedicated Internet Access to connect your company to the Internet at whatever bandwidth you desire. The advantage of a dedicated connection is that the full bandwidth of the line is at your disposal and not affected by the carrier’s other customers. These lines are also typically symmetrical, meaning that upload and download speeds are identical.

Why not just use the Internet to connect your far flung locations as well as connecting to customers? Many companies do. it’s likely your lowest cost option. What you give up is the ability to establish Class of Service so that sensitive applications like VoIP phone calls and video conferences have priority over less critical applications such as file transfers and backups. Internet performance is also somewhat unpredictable because of unexpected congestion, indeterminate packet routing, jitter, latency and packet loss.

For companies with multiple locations, a hybrid arrangement may work best. Use dedicated Ethernet services to interconnect business locations and the Internet to communicate with supplier and customers.

Does Ethernet WAN sound right for your business? Get a suite of competitive quotes for Ethernet WAN or MAN services now with a single inquiry.

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



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Thursday, August 17, 2017

How SD-WAN Hands-Off Seamlessly

By: John Shepler

It would be nice if WAN network connections were uninterruptible. Of course, they aren’t. Even the best copper, fiber or wireless Internet or point to point dedicated lines goes down eventually. With it goes your phone calls and other work in progress. You lose productivity and perhaps even sales. But, what if you had a magic box that made sure your connections never experienced more than a glitch for a fraction of a second no matter what the problem?

The magic box has a name. It is called SD-WAN or Software Defined Wide Area Networking. The box itself controls multiple redundant broadband links and has the intelligence to analyze the quality of each link and assign or remove traffic instantly.

Think this fiction? Have a look at a real time demonstration from Telarus, a leader in deploying this networking technology:


Did you notice that each link was different? Once was cable broadband, one was high speed fiber, and one was LTE wireless. An SD-WAN system will work with whatever links you have available, ranging from DSL to T1, DS3, Satellite, line of sight wireless and so on.

There’s an advantage in not having all your links the exact same type. All it takes is one backhoe to chop through a copper or fiber bundle and you can be out of business for hours, days or even weeks before they can patch it all back together.

If your business needs both speed and reliability in its digital connections to maximize productivity and profit, you should take a closer look at what SD-WAN from Telarus can do for you at a very reasonable cost. Find out what SD-WAN systems and connections are available for your business location now.

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



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Wednesday, January 25, 2017

SD-WAN is Your Super LAN

By: John Shepler

Are you caught in the great cloud migration? You can almost hear the giant sucking sound of racks and servers being vacuumed up and sent packing to remote data centers. OK, that’s a little dramatic. Even so, the trend of moving more and more telecom and IT functions from in-house to cloud providers is clear. The problem is how to reconnect over vast distances as efficiently as you could with a few hundred feet of Cat6 cable.

SD-WAN is your ladder to the cloudThe New Internet is SO Much Bigger
The Internet we became comfortable with starting in the mid 90’s is an electronic text messaging system and distributed library of text and images, accessible from anywhere. That has been expanded, of course, to include video content and e-commerce. Even with 20 years of improvements, the traditional Internet experience hasn’t changed that much. You still access what you want through an email client or Web browser. It’s the next morphing of the Internet that makes it so much more comprehensive. This is the expansion of Internet functions to include remote applications and their associated databases, and unified communications in place of the venerable office phone.

The Cloud is a Huge Data Center… But You Can’t See It
There’s really nothing magical or even spooky about “the cloud”. It’s just a metaphor for an enormous data center well beyond your line of sight. Inside the cloud are probably servers, storage drives, routers, switches and miles of cable similar to what you used to have. It’s just the scale that is so jaw dropping. The cost savings that is driving this change of IT operations is due to the multi-tenant nature of clouds. You and a hundred or a thousand of your best friends and total strangers are sharing the same facilities and divvying up the costs.

Where the Internet Goes Horribly Wrong
What we’ll call the legacy Internet is a network of incrementally increasing speed. It mirrors the evolution of the PC. How much have we shelled out over the years to get higher and higher MHz processors, then more and more cores, Kilobytes… Megabytes… and now Gigabytes of RAM, and similar storage capacity that is now in the Terabytes? Similarly, Internet access has gone from a few Kbps dial-up to X.25 connections to DSL, T1 lines, DS3, Cable Broadband, SONET Fiber Optics and now Gigabit Ethernet, 10 GigE and even 100 GigE. You may need some or all of this capacity to support your growing functions in the cloud, but can you afford it?

The problem with your traditional Internet access is that it evolved in parallel with the traditional Internet services. What’s happened with this cloud paradigm is that there has been a step-change in functionality without a corresponding step-change in connectivity. If you try and move your phones to hosted PBX and your applications to Software as a Service over the same old Internet connection, you can find yourself with an office that hardly functions at all. Voice communications are choppy and even dropped. Video tears up and stops. Your apps still work, but it seems to take forever to get a response from the system. Worst case, you could rue the day you ever tried to save a buck with all this new technology.

Can You Put Humpty Dumpty Back Together Again?
It IS possible to get back to the time where everything worked seamlessly and the systems were invisible to everyone using them. Employees want appliances to do their jobs, not finicky tech that may or may give the same result twice in a row. For that to happen, you need to make what’s going on in the cloud act like it’s located right now the hall and not thousands of miles away. What that takes is more appropriate connectivity.

The Internet is a two-edged sword. It’s attractiveness comes from being able to connect anywhere to anywhere, anytime, at dirt-cheap prices compared to private telecom lines and networks. The downside is that it is a public resource where everybody and everything is moving around in one big swarm. You can get clogs where it all moves at a snail’s pace. Some of the information just mysteriously disappears. How you are getting from point A to point B is a mystery and the routing changes by the minute for no discernible reason. That’s OK if you are just looking something up in Wikipedia or buying some parts from a wholesaler. The system was designed to work accurately as long as you can be a little flexible on how fast things run. It’s real time functions like telephone, video conferencing and interactive apps that can’t take the variability in performance without choking.

This is why a lot of the bigger companies have gone to direct cloud access using private point to point connections like Fast Carrier Ethernet or GigE fiber. These lines provide the closest you can get to what you had on your local network. Traditional Internet access is handled by a separate connection that is a lot less expensive for uses that are a lot less demanding.

SD-WAN To The Rescue
A new approach to handling the Internet has appeared in the last few years to improve the performance of broadband connections so they can work with the new cloud applications but not break the bank. It’s a clever mash-up of connectivity that takes advantage of the fact that no two connections over the Internet are likely to experience the same problems at exactly the same time. One broadband service may vary all over the place with speed, latency, jitter and packet loss. Combine several diverse connections and an electronic traffic cop and you’ll have one much, much better service. The cost of two or three cheap wireline, wireless, Cable or satellite services can be a LOT less expensive than a single dedicated line service, but give you nearly the same experience.

What’s happening in the Software Defined Wide Area Network, as it’s called, is that each path through the Internet is monitored constantly as to how it is performing. When the next packet enters the network, the system decides right there and then which path to use. The next packet in line may go the same way, or it might get routed on a different connection if that one is better at that particular instant. There’s a lot of decision making going on in this SD-WAN, but it is invisible to you. You’ve got one connection from your local network, just like you did before.

Are you dissatisfied with using the Internet to support your business, but can’t cope with the eye-popping cost of a dedicated fiber line? Perhaps an SD-WAN approach could give you the performance you really need at a fraction of the cost. Get pricing and learn more about how SD-WAN can make the cloud work so much better.

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



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Friday, November 04, 2016

Will SD-WAN Eat MPLS?

By John Shepler

SD-WAN has become a hot service recently. It is often touted as an alternative or replacement for MPLS networks. Just comparing costs makes a compelling argument that SD-WAN may do to MPLS what MPLS did to Frame Relay. Is this really the case? Let’s take a look.

Find SD-WAN services now.

What Problem Are We Trying to Solve?
The issue is networking, specifically computer networking. Most of us have some need for computers as part of our job. That could be a traditional desktop computer, a laptop in a hotel room or conference center, or perhaps a tablet or or cellphone while we move around. It could also be a point of sale terminal, an industrial process controller, a 3D printer or just a laser printer in the office. All of these things need to be hooked together, or networked, or they just plain won’t work.

It’s actually worse than that. Remember when you bought software in a box? Not much software is sold that way anymore. Now everything is apps and they are delivered and updated virtually. The really heavy lifting software doesn’t even reside on your device. It’s at a remote data site or vendor’s platform. Without a connection, you can’t even run the application.

Private Lines: The Old Gold Standard
If you want to stay in complete control of every aspect of your network, you build your own for your exclusive use. Most companies do that internally. It’s when you leave the building that you have a problem. You need to hand off your packets to a service provider, or carrier, to transport them to another location.

The closest thing to stringing the wires yourself is to order private point-to-point circuits. T1, DS3 & OCx SONET are the traditional PTP circuits. More modern replacements are Ethernet over Copper and Ethernet over Fiber. All of these are still extremely popular with high performance, high security and high reliability. Cost and provisioning time are really the only issues.

MPLS Networks Save Money and Go Worldwide
You can approach the quality and security of private point to point lines using MPLS networks. MPLS or Multi-Protocol Label Switching is a replacement for the old-timey Frame Relay networks that were popular when high speed was 64 Kbps. It’s a privately run wide area network that handles multiple customers at the same time without them being aware of each other. Since the core network is shared, the cost is lower than running private lines to every satellite office you want to connect. Plus they’re already built-out, so you only need to provision an access line for each location.

MPLS networks are very popular for connecting companies with multiple business locations in the US or worldwide. Once again, they offer high performance, high security and high reliability. Also once again, cost can be an issue.

Why Not The Internet?
The lure of the Internet is strong. It’s the lowest cost of any method to reach anyone, anywhere in the world. However, there are issues.

Security is an obvious one. Just read the headlines any day and you’ll feel insecure about being online. Encryption, especially IPsec and SSL, make the risk acceptable for e-commerce and banking. However, performance is variable and out of your control. Latency, Jitter and packet loss are not only variable, they’re unpredictable. Companies running high performance business-critical applications wince at the thought of trusting their livelihood to the public Internet. Even so, the cost is really, really attractive compared with other solutions.

The Hybrid Network Compromise
Fact is, most companies need a broadband Internet connection for communications with suppliers and customers and access to the nearly unlimited news and information available online. A popular compromise is to use the MPLS network for internal communications and the Internet to go outside in a hybrid network arrangement.

Another use of the Internet is as a backup in case your private network fails. That happens enough with line cuts that it has a name: backhoe fade. If the broadband connection is just there on standby, all that bandwidth goes to waste most of the time.

SD-WAN Makes the Internet Suitable
The Software Defined Network (SDN) was invented to reduce the time and labor required to run complex networks. It “virtualizes” the network so you don’t have to deal with all the complexity of so many diverse routers, switches and appliances spread throughout the physical network.

SD-WAN or Software Defined Wide Area Network does the same thing for outside networks to connect far flung locations. SD-WAN manages multiple connections according to rules that you set up through a control panel. Once running it automatically directs traffic and works around problems without you having to get involved.

For instance, the SD-WAN can make use of Cable broadband, DSL, T1 lines, MPLS networks, LTE wireless, Satellite links and whatever else you have. It will monitor the characteristics of each path, in both the upload and download directions, for bandwidth congestion, packet loss, jitter and latency. It decides what path to use for each packet based on the instantaneous characteristics of the paths available. These can vary all over the place and change in milliseconds. You couldn’t possible keep up with all of this manually, but the SD-WAN system can stay on top of it.

With SD-WAN, you don’t need to waste the perfectly good bandwidth of your backup connection when the main link is running. SD-WAN will combine the bandwidths and make sure that the more critical apps, like VoIP and UC voice and video run on the best paths available and less critical file transfers use the lower performance paths.

Companies are finding that even having two diverse Internet broadband connections can give excellent performance compared with a single broadband service as long as they are being managed by SD-WAN. Two broadband services can easily cost only a fraction of even one private line for the same or less bandwidth. The core of the Internet usually runs pretty well. It’s the access connections, like WiFi and cable or DSL, that generally get flakey. Using SD-WAN to watch and select the best path at any given instant can dramatically improve the performance of the “virtualized” WAN network.

Is SD-WAN right for your business? You’d be remiss if you didn’t at least take a closer look at what connections are available and at what price for your particular business locations. Remember that you don’t have to go 100% on the Internet. SD-WAN will manage private lines, MPLS networks, satellite and wireless connections as well.

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



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Wednesday, August 12, 2015

Big Data Needs Big Bandwidth

By: John Shepler

Bandwidth levels are growing almost exponentially. One of the major infrastructure build-outs underway is a move to 100 Gbps or 100 GigE wavelength service on cross-country and international routes. It seems that Gigabit Ethernet was introduced only a few years ago and thought impractical for all but the most demanding business applications. Now GigE is almost considered entry level in some quarters. What could possibly be behind this massive increase in bandwidth demand?

Big Data On Board warning signs. Check 'em outIt All Started With Video
It is said that most of the world’s Internet traffic is now video. That’s right, not telephone calls, not file transfers, not even big graphics. Video alone is sucking up as much bandwidth as it can get. That’s not likely to change, either. SD video has migrated to HD video and 4K video is well on the way. How soon will the marketplace demand 8K video across the board?

Every increase in pixel density cranks up the bandwidth requirement to transport high quality images. Compression can help a great deal, but there’s a tradeoff between picture quality and depth of compression. Broadcasters and video producers really want to transport uncompressed video and leave the compression artifacts to be dealt with in the final link to the consumer.

Send In The Clouds
When cloud services meant taking all night to back up the day's files as a contingency to local storage, bandwidth levels weren’t too demanding. That’s all changed. The cloud is no longer just a non-critical backup service. It’s the main data center for many companies.

What’s sometimes forgotten is that your WAN (Wide Area Network) bandwidth becomes far more critical when key processes move to the cloud. Networking is much easier and cheaper when you’re talking about hundreds of feet within your own facilities. When you have to take that same flood of traffic and send it over a common carrier to get to your remote data center or cloud provider, line demands go way up. Remember, the WAN used to be just to link facilities and for communication with the outside world. Now it’s the main artery for everything you do.

What that means is that WAN bandwidth demands jump by 10, 100 or 1000 times. Other characteristics, like jitter, latency and packet loss, become huge factors in how well your cloud processes perform. If you scrimp in any of these areas, you may find yourself frustrated by underperforming processes and even losing productivity instead of gaining efficiency.

You Think the Internet of People Is Demanding?
Online business applications are generating more and more interesting and potentially useful data. Mobile apps with location services fall into this category. Pretty much anything that you do online has some potential value in customizing services or creating statistical data to improve marketing. That’s a flood of data that has to be handled by wireless and fiber connections.

Human generated big data is nothing compared to what we’ll be dealing with when the Internet of Things (IoT) gets rolling. For every person online, there will be dozens, hundreds or even thousands of “things” chatting wildly and generating volumes of data that would be useful if it could only get where it can be analyzed and put to use. That’s going to multiply the load on every communications channel.

Will they be able to handle it? Not with yesterday’s creaky links. Everything will need an upgrade. It’s in process now. Wireless channels are being expanded as fast as they can be rounded up and auctioned. Current 4G standards will become 5G and then 6G before you know it. But, what about terrestrial lines?

Fortunately, the bandwidth of fiber optic cables is nearly limitless from our current point of view. The 1 to 10 Gbps or so capacity of each strand can be multiplied by multiplexing dozens to hundreds of wavelengths. Wavelengths can be aggregated to create larger services of 100 Gbps and beyond. The build buildout now is 100 Gbps. Soon that will be 400 Gbps and then 1 Tbps, and it will happen sooner that we think.

Is yesterday’s bandwidth keeping you from becoming tomorrow’s high performance company? You should know that bandwidth prices have been falling almost as fast as demand has been increasing. The bandwidth upgrade you need may fit well within your budget. Want to find out? Get prices and availability on high performance fiber optic bandwidth services now.

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


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Monday, September 23, 2013

Private IP Networks vs The Internet

By: John Shepler

Private vs Public. This is a big dividing line between business connectivity services. Let’s take a closer look at what the differences are and how you go about picking the right solution.

Compare private IP networks with Internet business solutions.Private lines have been a staple of business operations since they were first offered by the telephone companies. They are renowned for their high reliability, excellent consistent performance, desirable specs… and high prices.

The Internet is the new kid on the block, relatively speaking. Remember the dial-up days? Long gone. Now just about everyone who wants a broadband connection and can pony up $40 to $60 a month can hook into a universal worldwide network from just about anywhere. In fact, if you have a business and want to connect with consumers you WILL be on the Internet.

That suggests an interesting approach. If you have to be connected to the Internet to do business with your customers and, often, suppliers, why not use the Internet for everything? If it would work, you could save a bundle of money and only have to worry about your last-mile access connection instead of an entire wide area network. Somebody else will take care of making sure the Internet core will be available 24/7.

The actual Internet core network is highly reliable. The issues that business users have generally break down into performance, security and reliability of that last mile connection.

Let’s take the last mile first. You know that you can connect to the Internet using a business version of the same DSL, cable and wireless broadband services that are popular with consumers. The price is right, but you will be dealing with variable performance due to the bandwidth being shared among many users, asymmetrical (much higher download than upload speeds), and no service level agreements to give you the priority you need when things occasionally go wrong.

The solution to these limitations is DIA or Dedicated Internet Access. This is a last mile connection using a T1 line, DS3, Ethernet over Copper or Fiber or SONET fiber optic service. Now your last mile is every bit the quality of a private line. So, does that also make the Internet the ideal business network?

Not necessarily. The Internet is designed for universal access and is self-healing to maintain connectivity even if one path is cut or routing equipment fails. That’s good, right? It sure is if you want to make sure your packets get from one place to another. Not so good if you need consistency in bandwidth, latency, jitter and packet loss. Remember, you are sharing the Internet with millions of other eager users. That can result in things backing up, like the congestion you get on a public highway. Nobody guarantees performance, so you get what you get. For nearly all consumers and many businesses it’s a good tradeoff.

Security is another matter. There is no security on the Internet. It’s open to anyone and everyone. However, you can create your own security by using data encryption to build a private tunnel through the public network. SSL (Secure Socket Layer) encryption is the standard for ecommerce and can be used for private business communications, too.

It the Internet won’t cut it for your critical internal operations, you can construct your own private IP network using point to point dedicated lines and your own switches and routers. The PTP lines simply extend your network around town, cross country or internationally. This is the ultimate in performance and security, but it costs a pretty penny. Is there anything else that will work?

MPLS networks are becoming the new gold standard for private business communications. This means connections between multiple business locations, remote data centers or cloud services. Only paying customers get on this network and the Multi-Protocol Label Switching technology is proprietary to the network. This is why they’ll often be referred to as MPLS VPN or virtual private networks. The network operator ensures that each user has the connectivity they need with committed bandwidth and guaranteed levels of low latency, jitter and packet loss. From your perspective, you are the only one on the network. In actuality, there are likely thousands of other customers using the same core network. There is no interaction between them.

MPLS networks are considerably less expensive than building your own private network but more expensive than using the Internet. So, how do you decide? In many cases, the answer is to use both. The Internet is perfect for connecting prospects and customers to your public-facing servers. The private network connections are perfect for sensitive internal communications, VoIP telephony, video conferencing, and efficient cloud connections.

Does your business need solutions for internal connections, public communications or both? Check out the different options for Internet and private IP connections available for your business locations.

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



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Monday, May 13, 2013

Fiber Optic Service FAQ, Part 3

Here are more frequently asked questions and answers about fiber optic service for your business You may also be interested in the first and second lists of fiber FAQs.

Wondering about fiber optic service? Get more information now...Q: What is a lit building?

A: This is a building that already has fiber installed and “lit” for service. Usually only a single carrier lights each building. If your building is lit, you can easily get bandwidth services from that carrier.

Q: What are wavelength services?

A: A wavelength or Lambda is a particular color of laser light that carries the signal through the optical fiber. Early fiber systems used only a single light beam. Today, multiple beams travel the same fiber strand using a process called WDM or Wavelength Division Multiplexing. You can lease an entire wavelength for your exclusive use if you wish.

Q: Why would you lease a wavelength rather than just buying bandwidth?

A: Leasing a wavelength gives you high bandwidth dedicated to your use. Typically each wavelength supports 10 Gbps. You can decide whether to use SONET, Ethernet or some other protocol over the wavelength because the service does not share traffic with other users.

Q: What is dark fiber?

A: This refers to fiber strands that have been installed but not lit for service. Most fiber optic cable has dozens or hundreds of fiber strands all bundled together. Carriers that have extra strands they aren’t using will often lease them to other carriers or businesses that need the capacity.

Q: What’s the advantage of dark fiber?

A: Bandwidth is nearly unlimited and security is high because there is no traffic on the fiber strand other that what you provide.

Q: What protocols does dark fiber support?

A: Anything you can generate, including SONET, Ethernet, Fibre Channel and others. By using Wavelength Division Multiplexing, you can assign a different protocol to each wavelength and they won’t interact.

Q: Why wouldn’t you select dark fiber?

A: You’ll need to provide the termination equipment at each end, which can be rather expensive. On wavelength and other bandwidth services the carrier does this. Also, there may not be any dark fiber available on the route you have in mind.

Q: How does fiber support cloud services?

A: Cloud communications are bandwidth intensive. All the traffic that used to run to your in-house data center now goes over a WAN (Wide Area Network) connection to the cloud. You need high bandwidth and low latency connections for this to work properly, just what fiber is good at.

Is fiber bandwidth service the right solution to your business needs? Compare costs and service options for the fiber optic service options available for your business locations.

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

You may also be interested in reading Fiber Optic Service FAQs, Part 1 and Part 2.



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Wednesday, December 05, 2012

Long Range Ethernet Goes Beyond The LAN

Ethernet has grown from its inception in the 1980s to become the dominant Local Area Network (LAN) protocol. The big technical advance in this decade is the rise of Ethernet as a Metropolitan Area Network (MAN) and Wide Area Network (WAN) protocol of choice. It’s likely that when this process is complete it will be Ethernet as far as the eye can see. What is it that is driving this move to Ethernet everywhere and what advantages does it offer for your business?

See if long range Ethernet will meet your business needs...What’s solidified Ethernet in the LAN for now and the foreseeable future is economy of scale. Nearly every piece of networking gear you can buy has standard copper or fiber Ethernet connectors. The most popular of these, of course, is the RJ-45 connector. You recognize it immediately without even having to look at the legends near the connector or any equipment manuals. Within the organization, everything plugs into Ethernet sockets to connect to the network.

The big disconnect occurs when you want your traffic to leave the confines of your building or campus. You might find a contractor who will interconnect businesses within an office or industrial park, but that’s about as far as you can install private network cable. You might get a little farther with optical line of sight or microwave wireless transmissions. However, if you want to be able to connect to the Internet or establish a private network around town or across the country, you need to use a telecom carrier.

The first carriers were local telephone companies. Today’s ILECs or Incumbent Local Exchange Carriers offer far more than telephone service. They have twisted pair copper bundles running to every home and business. They also generally have fiber optic cabling for their own use and to lease to major businesses. These services have their own unique protocols invented by the telephone industry to transport phone calls. Copper data transmissions use T-Carrier, such as T1 or T3. Fiber optic transmissions use SONET (Synchronous Optical NETwork) standards, such as OC-3, OC-12 and OC-48.

How do you connect an Ethernet protocol network to a T-Carrier or SONET protocol carrier? Very carefully! You need what’s called a protocol converter. This is generally in the form of a plug-in module for your router. The conversion process changes the signals and timing of one protocol to another so that they can exchange digital data.

This conversion process has worked well for decades, so why change it? The reasons are efficiency, new services and cost.

What’s happened is that new competitive carriers have emerged. These carriers don’t have the legacy of telephone company standards to support and have embraced IP networking for their regional and nationwide fiber optic networks. Since your network runs Ethernet and their network runs Ethernet, it seems logical to interconnect them via Ethernet.

The standardization of what’s called Carrier Ethernet by the industry standards group, Metro Ethernet Forum (MEF), has opened the door to handing off network traffic from business to carrier and between carriers within the Ethernet protocol. Getting rid of the conversions makes the process more efficient. More importantly, it has made possible services that you can’t get on the old telco networks. Notably, these are E-Line or Ethernet Line service and E-LAN or Ethernet LAN service. The difference is that E-Line connects two locations and E-LAN can connect multiple locations in a mesh network.

By keeping everything as Ethernet, it is now possible to bridge LANs at two or more locations at the layer 2 level using Ethernet switches. Essentially, you take all these individual LANs and join them to form one much larger corporate LAN.

Another advantage of using Carrier Ethernet to transport your traffic is that it was designed from the beginning to be easily scalable in much finer increments than the telco protocols. You install a port, say 100 Mbps, 1000 Mbps or 10 GigE, that sets the maximum bandwidth of your connection. However, you don’t need to order the highest speed that the circuit will support you can start off at a quarter or half of that and then increase your bandwidth when needed. Often, all that is needed is a call to your Ethernet service provider. The change can be implemented in hours or days because there are no equipment swaps that need to be made.

Finally, Carrier Ethernet has a significant cost advantage compared to bonded T1, T3 (DS3) bandwidth and SONET services. On a per-Mbps basis, Ethernet often costs just half of what you pay for the older technologies. That mean you can save money for the company on your next telecom contract or double your bandwidth for the same budget.

Does long range Ethernet meet your needs? A good way to find out is to get competitive quotes for both traditional bandwidth and Carrier Ethernetservices and compare cost and features.

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



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Wednesday, January 11, 2012

What is an Ethernet Connection?

When we think of connecting to the outside world, what comes to mind is traditional telecom services. Those include POTS and PRI telephone lines for voice and T1, DS3 and OCx SONET for data. A newer technology that deserves a closer look is Carrier Ethernet. It’s Ethernet in the WAN to match up with Ethernet on the LAN.

Compare services and pricing for Ethernet WAN connections...The idea of extending an Ethernet connection from your building or campus to the Internet or another facility on the other side of the country might seem a bit odd at first. After all, the legacy telecom carriers have pretty much owned that space for over a century. That’s all changing fast. New competitive service providers are coming into the bandwidth marketplace without the history or traditions of using telco standards to define their networks. That frees them to take a “blank sheet” look at what a Wide Area Network (WAN) should be, how it should be priced and what services it should offer.

Let’s say, for the sake of discussion, that the WAN starts where the LAN leaves off. I know that there’s often something called the MAN or Metropolitan Area Network in-between. MAN and WAN technologies are more alike than different. It’s mostly a matter of scale. While the MAN tends to cover a city and perhaps suburbs, the WAN has no geographical limitation. WAN services can be regional, national or even international.

Now let’s consider Ethernet WAN connections. Ethernet is the packet switching protocol now nearly ubiquitous on Local Area Networks. It wasn’t always that way. Even a few decades ago, there were competing standards such as Token Ring. Ethernet has become so popular now that the economy of manufacturing scale makes it more economical to implement than other standards. Ethernet has taken over the LAN, but it is just starting to make inroads on the WAN. In the coming decades, we may see a repeat of Ethernet dominance for local, metropolitan and wide area networks.

The Metro Ethernet Forum (MEF) has done the standardization work necessary to establish what’s known as Carrier Ethernet. This frees LAN Ethernet from its distance limitations so that it can connect from your building to the other side of the world. The MEF has also standardized Ethernet services so that the Ethernet you get from one carrier is the same as you get from another. This makes competitive bidding possible, driving down the cost for the buyer. It also enables carriers to extend their service footprint by interconnecting with other carriers through Ethernet Network to Network Interfaces (E-NNI).

WAN Ethernet has some definite advantages over the legacy telecom services we’re used to. First is the interface. If you want to connect to a T1 line or DS3 service, you need a specialized piece of equipment or a very specific plug-in module for your router. You can’t just take an Ethernet patch cord and connect your edge router to the carrier’s “smart jack.” The protocols are completely different. However, you can do exactly that with an Ethernet connection. Most often the carrier provides a common RJ-45 jack or a managed router that you simply patch into.

Second is services. You can order Ethernet Line Service to mimic the point to point or last mile dedicated Internet connections that you have with T1 or DS3. You can also order Ethernet LAN service. That’s a multipoint networking service that ties together multiple business locations. You don’t need to mess around with running individual private lines to each location. They all connect through the Ethernet LAN service.

Unlike T-Carrier and SONET services, Ethernet is highly scalable. In other words, you can get a wide range of bandwidths delivered to your installed Ethernet port. That will prove valuable if business suddenly increases and you need to increase your WAN bandwidth to handle the traffic. A change in bandwidth level can often be handled with a telephone call to your provider, with no need wait for equipment to be replaced.

Finally, Ethernet WAN connections have a cost advantage. It’s not uncommon to get twice the bandwidth for the same price as a T1 line. At higher speeds, the cost savings is even more dramatic.

You owe it yourself to at least compare services and pricing for Ethernet WAN connections to what you have now to see if you may be missing out on cost and performance benefits. Ethernet WAN is available over both twisted pair copper and fiber optic cabling.

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




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Tuesday, November 29, 2011

10 Gigabit Bandwidth Options

Metropolitan and wide area network speeds are on the rise. Undersea cables are being upgraded from 10 to 40 and soon 100 Gbps bandwidths, with terrestrial fiber runs moving to 100 Gbps now. Likewise, major corporations, healthcare providers and video content producers are starting to feel the squeeze of too small network connections. Fortunately, there are more options and better pricing available today than ever before.

Affordable bandwdith levels are moving up from 1 Gbps to 10 Gbps and beyond...There are several practical solutions to increasing your MAN or WAN bandwidth above the Gigabit per second level and up to 10 Gbps. Let’s see what we can do with SONET, Ethernet, Wavelength and Dark Fiber.

SONET is the telecom fiber optic standard invented by Bell Labs for the telephone industry. It was originally deployed to transport thousands upon thousands of simultaneous telephone calls between switching centers. SONET has evolved to carry data as well as digitized phone calls. As it turns out, voice traffic is in the minority now.

SONET stands for Synchronous Optical NETwork. That describes how it is designed. This is a tightly synchronized time division multiplexed system intended for switched circuit implementation. There are specific service levels associated with SONET levels. These are designed as OC or Optical Carrier levels. The lowest generally available is OC-3 at 155 Mbps, followed by OC-12 at 622 Mbps.

The next level OC-24 takes you to the Gigabit level at 1.24 Gbps. OC-24 isn’t as commonly deployed as the next level, OC-48 at 2.5 Gbps. OC-48 is becoming the new high bandwidth standard for organizations that need high speed private lines or dedicated Internet connections. OC-192 is the 10 Gigabit service level, running at a line rate of 9.95 Gbps. From there you jump up to OC-768 at 40 Gbps. You’ll recognize that as a backbone network bandwidth for fiber optic carriers. OC-768 isn’t generally required at the corporate level just yet.

Notice that there are fairly wide gaps in the service levels between SONET OC levels. If you need 2 Gbps, OC-48 service at 2.5 Gbps makes sense. However, if you need 3 Gbps, you have to go all the way up to OC-192 at 10 Gbps. In some cases, you can find fractional OC-48 service at a better price. This is simply OC-48 that is throttled to provide only the 3 Gbps or other bandwidth you need. There might not be much cost savings, since OC-48 is a standard service level and fractional SONET services are a special order, if available.

Carrier Ethernet is a far more scalable service than SONET. It does have industry standard service levels, such as 100 Mbps Fast Ethernet, 1 Gbps Gigabit Ethernet and 10 Gbps 10 GigE. Most service providers will allow you to scale your service in small increments up to the maximum capacity of the installed port. With a 10 GigE Port, you can easily get 3 Gbps, 9 Gbps or bandwidths in-between. Since Ethernet networks were designed with this scalability in mind from the beginning, service level changes are fairly automated and can be made in a matter of days, if not hours, with no equipment changes needed.

Wavelength services are offered for high performance latency sensitive applications. Dense Wavelength Division Multiplexing (DWDM) splits the fiber optic laser beam into dozens of individual wavelengths or colors that act as independent private lines. There is no interconnection between wavelengths. A wavelength is dedicated to your needs and carries your traffic exclusively. Typical speeds available are 1 GigE, 2.5 Gbps, 10 Gbps, 10 GigE and 40 Gbps. Note that both SONET and Ethernet protocols are available over individual wavelengths.

Dark Fiber gives you the ultimate in flexibility. It is simply a glass strand between two of your locations. You can run any protocol you like at any speed you want over as many wavelengths as you care to deploy. Bandwidth is nearly unlimited, but the catch is that you have to buy, install and maintain the transmission equipment that feeds the fiber.

Have your requirements reached the point where 10 Gigabit bandwidth services are a reasonable consideration. The good news is that there are multiple carriers eager to bid for your business between 1 Gbps and 10 Gbps or beyond. Get competitive quotes for Gigabit and 10 Gigabit level fiber optic services now. You may be surprised how affordable these high bandwidth services have become.

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



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Monday, November 07, 2011

100 Mbps Internet for Business

DS3 Internet bandwidth at 45 Mbps has been the mainstay of many mid-size businesses. It is readily available and a substantial bandwidth increase over T1 or even bonded T1 lines. Now even DS3 bandwidth isn’t enough to keep up with many simultaneous video users or cloud service applications. It’s time to move on up to 100 Mbps Internet access.

Check prices for 100 Mbps bandwidth options...The 100 Mbps service level is particularly significant because it precisely matches one of the standard Ethernet LAN speeds called “Fast” Ethernet. Most all NICs (Network Interface Cards) built into nearly everything from PCs to routers, switches and printers support 10/100 Mbps Ethernet. That’s the 10 Mbps and 100 Mbps network speeds. Newer NICs expand that to include Gigabit Ethernet or GigE with 10/100/1000 Mbps ports.

The point is that if your LAN is running at 100 Mbps and you connect to the Internet at some lower speed, you are going to experience a slowdown on anything to or from the Internet. At low network activity levels, you may not notice the difference. It’s when there are lots users doing lots of things simultaneously that the congestion occurs. The big choke point, more often than not, is the WAN or wide area network connection to the Internet.

Fortunately, 100 Mbps Internet service for businesses is more available and less expensive than ever before. Let’s take a look at the different technical approaches and their advantages or disadvantages.

The traditional 100 Mbps telecom service is OC-3, which actually runs at about 155 Mbps. This is a SONET fiber optic service offered by switched circuit telecom companies nationwide. OC-3 is a transport service that can carry anything from thousands of telephone calls to private point to point connections to dedicated Internet access. It’s also often used to deliver lower speed services, such as DS3. You probably don’t think of DS3 as a fiber optic service because your connection is through BNC connectors on small diameter coaxial cables. Still, it’s likely dropped off at your location using an add/drop multiplexer connected to a SONET fiber cable.

OC-3 has the advantage of being a well established and highly popular digital line service. It comes with an SLA or Service Level Agreement, standard in the telecom industry. Your bandwidth is both dedicated and symmetrical. Dedicated means that you don’t share that 155 Mbps with any other company or individual users. Whatever bandwidth you aren’t using at the moment sits there idling so that you always have the full 155 Mbps at your disposal. Symmetrical means that you have 155 Mbps in both the upload and download directions. Sometimes this is expressed as 155 x 155 Mbps Internet access.

Competing directly with OC-3 bandwidth is Carrier Ethernet. Fast Ethernet at 100 Mbps is an easy interface to your LAN. All you need to do is plug in a standard RJ-45 patch cable and your router has Internet access. There’s no need for fiber optic cabling and special interface cards like you have with OC-3 or a managed OC-3 router installed by the service provider. Like OC-3, 100 Mbps FAST Ethernet is both symmetrical and dedicated. It also comes with an SLA from the provider.

Fast Ethernet service is available over both fiber optic and twisted pair connections. In fairness, the Ethernet over Copper service at this speed is fairly distance limited so you’ll likely find it only in major metropolitan business districts. Slower speeds, say 10 or 20 Mbps, have a much greater range and are more readily available.

Ethernet over Fiber is similar to OC-3 with two important advantages. First, the cost per Mbps is often lower, even much lower than OC-3 where available. Another advantage is that Carrier Ethernet services are highly scalable. The next increment up from OC-3 is OC-12 at 622 Mbps. With Carrier Ethernet, you could go from 100 Mbps on up to 200, 500 or even 1,000 Mbps without an equipment change. The trick is to have a Gigabit Ethernet port installed initially. Then order the bandwidth you need today with the understanding that you can easily upgrade in the future when you need to.

A final option that is becoming more available is 100 Mbps Cable business broadband. This is a shared asymmetrical bandwidth service sold without service level agreements. It’s very similar to the Cable broadband you get at home, but with extra features such as static IP addresses and special customer support. Your 100 Mbps is in the download direction only. Upload speeds are on the order of 10 Mbps. This bandwidth is shared by many other users, so it varies all over the place even during business hours. Even so, you can’t beat the pricing which is similar to a T1 line. If all you need is casual Internet access for many employees and have a very limited budget, this could be the answer for you.

Are you ready to establish Business Internet service at a new location or upgrade from bonded T1 or DS3 to 100 Mbps or higher Internet access? If so, check 100 Mbps Internet pricing and availability for your business location. Complementary consulting is also available to help you sort through the options.

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




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Wednesday, February 23, 2011

Cloud Computing and WAN Bandwidth

Cloud computing has become a major trend in IT services. It sometimes seems like there is a wild stampede to anything and everything in the cloud. What may get lost in the details is just how you actually get to the cloud. That mechanism is WAN bandwidth.

Connecting to the cloud requries WAN bandwidth.The WAN, or Wide Area Network, is often used to describe any connection beyond the boundary of the business office or corporate campus. Locations in town may be served by a MAN, or Metropolitan Area Network, that is limited to a small geographical area. Beyond that, you need WAN bandwidth to reach other locations or networks.

So, why is WAN bandwidth so important? It all has to do with traffic levels and where that traffic goes on the network. When data centers were all local, network traffic primarily stayed on the LAN. Once remote data centers were implemented for backup and disaster recovery, MAN or WAN bandwidth increased to accommodate the extra resource needs. Now that the server racks and disks have been replaced by cloud services, the lion’s share of network traffic goes to and from the cloud.

Where is the cloud? One of the most popular depictions of the cloud is the Internet. You don’t need to be formally involved with cloud computing to be using the Internet. Most everyone does. The reason that the cloud symbol is used for the Internet is that, as users, we don’t have to be concerned with the details of what all is on the Internet nor how it all interconnects. All we need to know is that we connect using a broadband Internet access service and use certain resources available through the Internet.

Now the term “cloud” is used to describe other services that may or may not have anything to do with the Internet. In may cases, it’s only the network that changes. The idea of having servers running applications and using storage owned by a service provider at some distant location isn’t unique to the Internet. What’s different about today’s cloud is that your connection is likely a private point to point data line that is used only to connect your business to the cloud services you require. With the Internet, many, many services and many, many users all share the same network.

This is where WAN bandwidth comes in. If you happen to be using cloud services on the Internet, you’ll be wanting a dedicated broadband Internet connection with enough bandwidth to ensure that your link is never congested. For non-Intenet services, you’ll want private line services with similarly adequate bandwidth. In some cases, latency and class of service are also critically important to your needs. That’s especially true for high performance applications such as financial trading or real time services such as enterprise VoIP, content delivery or telepresence.

Some clouds are private clouds in that they are owned by a particular organization for its own needs. The idea of having your own cloud is a way to share computing, applications, and storage among multiple company locations. The need for adequate WAN bandwidth still applies. You need to ensure that the traffic displaced from the LAN to the WAN still has a large enough pipe to flow through unobstructed.

Are you involved with private or public cloud computing as a user or supplier? You may have more bandwidth options that you realize. Find out by checking prices and availability of WAN bandwidth services for your business locations.

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


Note: Cloud networking diagram courtesy of Guivaloz on Wikimedia Commons.



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Friday, October 15, 2010

Gaining Ethernet Internet Access

You’ve no doubt heard by now that access to the Internet for business locations offers cost and bandwidth advantages over traditional telecom connections. So, how do you gain Ethernet Internet access? That’s easy. Just use this handy Ethernet Internet Finder.

Use the Ethernet Internet Finder to locate Ethernet Internet Providers. Click to access.


You’ll likely find that there are a number of options for Ethernet Internet service, although not all of them are available at every business address. Note that this is a business service only. If you need residential or home office broadband, try “Can I Get DSL?” for DSL, cable, satellite, wireless 4G, and fiber to the home.

Your least expensive option for Ethernet Internet access is probably Ethernet over Copper, where available. That’s generally in metropolitan and suburban areas with dense populations. EoC, as it is called, offers bandwidths typically from 3 to 20 Mbps. You’ll pay about as much for a 3 Mbps Ethernet connection as you’d pay for a 1.5 Mbps T1 line. A very popular service is 10 Mbps Ethernet access, which is the standard Ethernet network speed.

Of course, local area network bandwidth has increased dramatically since Ethernet was first introduced. Most LANs are now operating at the Fast Ethernet speed of 100 Mbps or Gigabit Ethernet at 1000 Mbps. Would you be surprised to know that Ethernet WAN connections are also available at 100 and 1000 Mbps? That includes dedicated broadband Internet access with Ethernet in the first mile. These services require a fiber optic connection over SONET or native IP network.

Even if your business is located a bit beyond the service footprint for EoC or fiber optic delivery, it may still be possible for you to get Ethernet over DS1. Bonding T1 lines together may give you the Ethernet bandwidth you need at a reasonable price.

Does Ethernet Internet Access offer advantages for your business? Use the Ethernet Internet Finder to run a quick check and see.

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




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Wednesday, September 01, 2010

ENLAN Spans The Nation

The idea of having all your company locations on a single extended LAN is one that is gaining traction. Why continue to manage a nightmare of dozens or hundreds of connections to link an array of branch offices or retail locations when a single managed network can handles this for you?

TW Telecom calls this service ENLAN for Extended Native LAN. It provides users with a fast reliable and secure network that extends to encompass what is normally considered the WAN or Wide Area Network territory.

The WAN has traditionally been the jurisdiction of the telecom companies. If you needed to leave your own property, you were forced to convert your traffic to a telco standard to travel on their network and then convert back at the remote location. No more. A combination of Ethernet and MPLS is making the WAN invisible. It all now looks like one big LAN.

The way this works is that the core of the extended LAN is the TW Telecom MPLS Cloud. As a multi-protocol network, the MPLS Cloud can transport whatever digital format is required. That includes voice, video and data packets as well as traditional TDM services.

Ethernet is a perfect fit with MPLS networks. TW Telecom lets you keep everything in the Ethernet protocol, just like it is on your LAN. Rather than going through a speed bump when you have to exit your edge router and enter the WAN, you simply hook up to an Ethernet connection that leaves your facility. When this Ethernet access network reaches the MPLS Cloud it is assigned to one or more L2 Tunnels where it is transported to its intended destination. From there another Ethernet access connection takes it to the remote location.

Note that all connections are Ethernet and the transport takes place through layer 2 tunnels. That allows you to keep a switched Ethernet protocol linking all your desired locations. It looks just like one big LAN, even though you are traversing a MPLS cloud network on the way from point to point.

Being able to stay at the layer 2 switching level is one advantage of ENLAN. Another is that the Ethernet access connections and MPLS tunnel bandwidth is scalable. You can order bandwidths from 2 Mbps up through 1 Gbps. Your access is through IEEE standard 10/100/1000/10000 Mbps Ethernet interfaces. With scalability you can get the bandwidth you need to support your operations right now and then easily upgrade as needed.

Is ENLAN or Ethernet / MPLS networking right for your business or organization. To find out quickly and easily, simply request a quick quote for the bandwidth and locations you need to support. Then see if you can justify not saving a small fortune on your network services.

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




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Wednesday, March 31, 2010

Metro Ethernet over Copper

You’ve heard that Metro Ethernet service offers exceptionally good pricing and higher bandwidths than you can get from your copper-based T1 lines. But those huge savings can vaporize once you get the estimates for fiber optic construction. Is there any way you can participate in the cost advantages of Ethernet service without having to come up with a large amount of capital funding?

Metro Ethernet over Copper. Click to find.You bet there is. It’s a technology that combines the advantages of Ethernet connection services with the availability of twisted pair copper cabling. The service you want to ask for is “Metro Ethernet over Copper”.

Just what is Metro Ethernet over Copper and how does it differ from what’s generically called Metro Ethernet?

Actually, the similarities are many and the differences are few. Metro Ethernet over Copper, also called Ethernet over Copper or EoC, is more about the delivery mechanism or physical network than the service itself. Ethernet for the Wide Area Network (WAN) is Ethernet regardless of how it is provisioned. Metro Ethernet refers to Ethernet services that connect your business location to a carrier’s point of presence or an extension of your Local Area Network (LAN) to other locations within a city or suburban area. The copper reference means that multiple twisted pair copper is used to connect your building instead of brining in a fiber optic cable.

Where does this copper come from and why is it cheaper than fiber? The copper is already there. It’s the same multiple pair binder cable that the telephone company installed when the building was constructed. These cables generally have many small gauge copper wires twisted together in pairs. Each pair can carry one analog telephone conversation or be used to transport a digital signal. Metro Ethernet service providers install a special piece of termination equipment at your site to connect the copper pairs they’ll be using. The more pairs they an employ, the higher the bandwidth they can provide.

How much Ethernet bandwidth can you expect with copper-based service? It depends a lot on how close you are to an on-network fiber lit building or a carrier office. The digital signal degrades with distance. Generally, you can get anywhere from 10 Mbps to 50 Mbps Ethernet service over copper. That’s a lot more than T1 lines at 1.5 Mbps and as much bandwidth as most small and medium size businesses need.

Are you interested in finding out if you can get high bandwidth, low cost Ethernet service? If so, check Metro Ethernet over Copper prices and availability for your location now. You may be surprised by how much you can get for your telecom dollar.

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




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Tuesday, March 30, 2010

40 Gbps Bandwidth Available For Business

XO Communications has upped the ante on business bandwidth options by making two 40 Gbps network services available in all major metropolitan markets of its nationwide fiber optic footprint. Listen to Randy Nicklas, Chief Technology Officer of XO Communications, explain the advantages of the new 40 Gbps wavelength and IP transit services:

Click to listen to this interview about 40 Gbps services.


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Clearly, we’re entering a new and exciting era of very high bandwidth applications for businesses as well as service providers, such as Cable companies. High speed financial trading demands the lowest latencies possible. You snooze for a millisecond, you lose. This pushes the requirements for both transport speed between cities and also minimal time delays going through the routing and switching equipment. Content delivery networks may be less latency sensitive than the financial trading networks, but they have an insatiable need for bandwidth. There is no upper limit in sight as of this writing. Surely 40 Gbps is just a incremental level on the way to 100 Gbps and beyond. Why? Because everybody wants the video they want to see when they want to see it, and high definition video has massive bandwidth demands. Every Internet user on Earth couldn’t possibly send enough email, visit enough web sites, or update their software often enough to match even the current demand for video transport. This is why Cable TV companies and other video distributors are moving away from the public Internet to privately run content delivery networks to meet their demands for bandwidth and stability. Is your company involved in video production or distribution, or perhaps financial services? If so, you certainly have demands for high levels of wide area networking bandwidth at reasonable prices. Other business users may not be pushing the technology limits just yet, although getting the best prices on fiber optic bandwidth is equally important. For all of these situations, you can find highly competitive fiber optic bandwidth pricing from XO Communications and other top tier providers through our GigaPackets bandwidth service and Telarus expert consultants.
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