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Frame relay is designed to provide cost effective data transmission over a shared network. Frame relay derived its name from the fact that it transfers data via various sized units referred to as frames. These frames are commonly transmitted through a shared network. Frame relay is many times faster than its predecessors, such as x.25, because frame relay is a streamlined protocol designed for speed. (For more about frame relay please click here)

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Coverage Area

Unlike DSL and other broadband technologies that are limited to only densely populated areas, T1 service is available just about anywhere with a phone line. T1, also known as DS1, uses repeaters to boost up the signal strength of the transmission - allowing it to travel up to 50 miles away from the nearest Central Office location.

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This protocol flourishes because it is designed to compliment modern digital lines which are virtually noise free. With frame relay, data transmission usually originates through the private line of a customer, transfers to a shared network at the nearest frame relay switch, travels the majority of its distance through the shared frame relay network, and then transfers to the private line closest to the receiving customer. Frame relay is normally less expensive than point-to-point lines because many customers use and share the cost of the frame relay network, rather than each paying for a private line for the entire distance their data is transmitted. Private line cost is distance sensitive, so the longer the distance utilized via a shared network, the greater the cost savings experienced by the customer. Another factor which makes frame relay less expensive than point-to-point is that the nearest frame relay node is often much closer to the customer than the provider’s central office. This results in less private line distance being calculated into pricing. An additional benefit is that with frame relay it is often possible to connect to a provider which is hundreds of miles away for close to the same price as connecting to a local provider. For this reason, the number of providers which can be compared is significantly expanded. Frame relay is primarily used for the transmission of intermediate data between LANs, and between end points of a wide area network. The rapid increase in use of LANs and increased availability of fiber optic links has resulted in increased usage of frame relay. Frame relay is at times used for video conferencing, however, point-to-point lines are much better suited for the on-going high rate of bandwidth required by video conferencing. For companies which can afford point-to-point and absolutely require the best stability and most secure line possible, point-to-point continues to be considered a preferred option. (Click here to return to top of page)

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 MPLS Facilitates Convergence

Written by: Dennis Green - Dec 3, 2008


With the emergence of multiprotocol-label-switching (MPLS), great strides have been achieved toward the goal of telecom convergence. In the past, telecom applications such as voice, internet, networking, and video conferencing have been treated as separate, commonly each needing their own source of bandwidth. This was expensive, because it is often far more costly to provide several relatively small bandwidth pipes, then it would be to provide one large pipe. Generally speaking, the larger the pipe, the less cost per megabit per second (mbps). Other issues which were frequent with a lack of convergence were that it was common for providers to specialize in one application, but not all. For this reason, it was required for businesses to be forced to deal with multiple providers, to obtain multiple types of service. Also, the business (customer) would need staff who could specialize in each application. For example, staff that specialized in coordinating the company phone system, staff that specialized in setting up internet access, and staff who specialized in setting up wide area and local networks (WANs and LANs). With a lack of convergence, capital costs were much higher as well. I.e., separate routers for connections to the WAN and LAN, separate routers for the internet, and separate equipment for connecting to the public switched telephone network.

With convergence, this is all improving for the business owner. Now, it is possible to obtain a completely managed system, which includes voice, internet, free long distance service, free toll free service, and soon to come, networking all on one bandwidth pipe, provided by one provider. This results in less expense for bandwidth, fewer company staff resources required to manage, and less expense for each application. With the emergence of dynamically allocated bandwidth, far greater efficiency is being achieved in bandwidth utilization as well. For example, not only can you have both voice and internet on the same T1, but you can now utilize all bandwidth for internet, when the phones are not in use.

At this point, MPLS is most affecting the convergence of communication within the communication network of each company. With MPLS, companies can now converge all applications, such as company location-to-location voice, routine data transfer, and video conferencing into one network. All can be transferred over one pipe, with any-to-any connectivity. With MPLS, class of service (CoS) prioritizes these applications so that those which are more sensitive to packet loss and latency receive priority over applications such as routine data transfer. For example, routine data transfer would not be allowed to compete directly with voice traffic. Routine data traffic is not sensitive to minor packet loss or latency, and therefore would be given a lower priority than voice or video traffic.

Converting from an out-dated frame relay or point-to-point network to a fully managed MPLS based network is an extremely painless process. In most cases, all installation is free, equipment and configuration is managed by the telecom provider, and the telecom provider takes full responsibility for monitoring the network 24 hours a day, seven days a week, and providing all maintenance for the network. All of this is usually provided for far less than the monthly cost of the existing network.

For free availability and quotes for MPLS, please use the short pricing tool at the top of this page, or on our home page. It is free, easy to use, and without obligation. (Click here to return to top of page)