Showing posts with label T1. Show all posts
Showing posts with label T1. Show all posts

Monday, December 19, 2011

Copper Bandwidth Connections Push 1 Gbps

Just when you think they’ve wrung all of the speed possible on ordinary twisted pair telephone wire, clever engineering demonstrates that we haven’t hit a bandwidth ceiling yet. Would you believe 1 Gbps copper business service?

Ethernet over Copper speeds and availability are increasing, while prices are dropping. Check now for your business.It’s not available in your office park yet, but it’s on the way. Chinese networking and telecommunications company, Huawei, has a prototype Giga DSL system that can deliver a combined rate of 1 Gbps line speed within 100 meters of a remote terminal (RT) cabinet. It scales down to 500 Mbps if you can connect within 200 meters of the cabinet.

This follows another Huawei project called SuperMIMO that uses four twisted copper pairs to deliver 700 Mbps over 400 meters. You might recognize MIMO as the WiFi 802.3n antenna technology used to extend range using multiple antennas for both transmitter and receiver. MIMO stands for Multiple Input Multiple Output. The ideas is that radio waves bounce around and interfere with each other and themselves in an effect called multipath distortion. With more than one antenna and some intelligence in the system, you can sort out the wave patterns and recreate a clean signal.

So what does wireless transmission have to do with copper wires buried in the ground? For business telecommunications, such as multi-line telephone, T1 and Ethernet over Copper, the twisted pair lines are not installed individually. Instead, collections of them run together in binder cables with 50 pair or more. The twisted conductors cancel out most electromagnetic interference for low speed transmission, such as analog phone and dial-up Internet access. Higher speed signals, such as EoC or T1, can transfer to other pairs in the cable creating crosstalk interference. This is where MIMO can reduce that interference between wired paths in the cable just like dealing with multiple paths through the air.

Other telecom equipment vendors have been active in this field as well. Alcatel-Lucent has their own approach called DSL Phantom Mode that delivers 300 Mbps over two copper pairs. Over longer distances up to 1 km, it can deliver 100 Mbps. With 1 km spans, this system would work well for Ethernet over Copper in business districts and industrial parks.

Alcatel-Lucent’s breakthrough is something called a phantom circuit. These circuits were used in the early days of wired communications to transmit more telegraph signals or telephone calls. The principle is that two phone lines, consisting of one twisted pair each, will carry two separate telephone calls. But if you connect a circuit between them, that can be used as to carry a third telephone call or telegraph signal. Interference is eliminated by using transformers on each end of the lines and connecting the third circuit between center taps on the transformers. Since the lines are balanced, they don’t notice this third or phantom circuit riding along on the same copper.

Alcatel-Lucent also uses bonded copper pair to increase bandwidth carrying capacity and VDSL2 vectoring to cancel the cross talk between multiple lines in the same bundle. Like MIMO, vectoring employs digital signal processing to analyze the effect of interference on signals among copper pairs on a symbol by symbol basis. This is something that was out of the question before high speed DSP became affordable. By throwing enough mathematics at the signal waveforms, it is now possible to make finer and finer corrections to maximize throughput of any wired or wireless transmission system.

What’s driving such a fury of investigative work into leveraging century old copper connected to telephone company central offices? Bandwidth demand is ramping up exponentially right along with the processing and storage needs of big data. The move from local data centers to the cloud also means that faster network lines are needed for WAN as well as LAN connections. Fiber speeds are increasing, too. But fiber only reaches 75% of business locations, at most, and is expensive and time consuming to install. If existing copper can be made to meet the increasing bandwidth demand, businesses can rapidly increase their MAN and WAN network speeds using connections they have now.

Are you feeling pressed for speed on your network connections? Both copper and fiber solutions are available now that weren’t in place even a short time ago. Check Ethernet over Copper and Fiber bandwidth prices now and see what’s available for your business location.

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




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Tuesday, November 1, 2011

Internet Wholesale Bandwidth Options

There are two types of organizations that buy Internet bandwidth. Most are end users. They want the access for their employees. The others are resellers. They take large Internet connections and divvy up the bandwidth to hundreds or thousands of individuals and businesses. These are Internet Service Providers (ISPs) looking to buy at wholesale and sell at retail.

Better wholesale bandwidth prices for Internet direct Internet access...The largest networks in the world, called Tier 1, don’t purchase Internet access. They are part of the core network itself. Those major world wide networks exchange traffic on basis of equals called peering. Each network gets as much traffic as it sends to the others, so all benefit and no money is exchanged.

Everyone else has to get to the Internet by accessing one of these Tier 1 networks. The next level down, the Tier 2 networks, are also very large Internet service providers. Since they don’t have the enormous global traffic to participate in peering, they purchase what is called IP Transit. This is Internet access sold on a per Megabit per second per month basis.

Smaller Tier 3 networks can purchase IP Transit from Tier 2 networks, if they are large enough to have an assigned AS or Autonomous System number (ASN) to identify them as part of the Internet. Large scale ISPs fall into this category as well as some large corporations and other organizations.

Local and regional Internet Service Providers, including WISPs (Wireless Internet Service Providers), buy DIA or Dedicated Internet Access. DIA connections are like point to point private lines, except that one end connects to the Internet. Other private line characteristics still apply. The bandwidth provided is completely dedicated to the ISP and not shared with anyone else. There are generally SLAs or Service Level Agreements that spell out characteristics such as maximum latency, jitter and packet loss as well as time to respond to outages and time to make repairs.

Dedicated also means that there are no extra charges for heavily loading the line. You can use the entire capacity of the circuit in both directions or only some of it. The price is the same.

The smallest DIA service is usually a T1 line running at 1.5 Mbps. This is a symmetrical service, meaning 1.5 Mbps upload and 1.5 Mbps download. Usually the download path is much heavier loaded than the upload path for typical Internet access. If fact most consumer Internet access is sold with 5x to 10x higher speeds on download than upload. For business users, upload speeds can be important when transferring large files to remote backup sites and servers within colocation centers.

Obviously, T1 lines can’t serve a large user base but they work great for WiFi hotspots and rural or subdivision WISP service where signed-up customers number in the dozens, not hundreds. A nice feature of T1 lines is that they can be bonded by adding more lines to double, triple and quadruple bandwidth up to about 10 or 12 Mbps. The other nice feature of T1 lines is that they are available where other line services don’t reach. If you can get business telephone system into a facility, you can probably get T1 DIA service.

The next increment in traditional telecom bandwidth is DS3, also called T3 lines. This service runs at 45 Mbps which is large enough for a good size service provider to offer competitive bandwidth. Beyond that, SONET fiber optic services include OC3 at 155 Mbps, OC12 at 622 Mbps and OC48 at 2.5 Gbps are very popular.

A strong competitor to T-Carrier and SONET bandwidth is Carrier Ethernet. It comes in two flavors, Ethernet over Copper (EoC) typically from 1 to 50 Mbps and Ethernet over Fiber (EoF) from 10 Mbps to 10 Gbps. In a some metropolitan areas, you can also get EoFW or Ethernet over Fixed Wireless at DS3 and Fast Ethernet speeds. Where available, Carrier Ethernet tends to have considerably better pricing than other services.

Do you resell Internet access to other ISPs or end users? If so, see if you can get better wholesale pricing on Dedicated Internet Access and IP Transit services.

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




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Sunday, June 5, 2011

Cheaper Connections To The Cloud

Companies often smack their lips as they compare the cost of cloud services to the capital investment and operating expenses of running their own data centers. Then they take another look and see a big gotcha. Oops! What is it going to cost for all this cloud connectivity?

Check the cost of connectivity to the cloud before you make the big move.What you pay for bandwidth now depends a lot on your mix of LAN, MAN and WAN traffic. Companies with data centers in the same building as most of their employees can expect that the lion’s share of their business applications traffic stays on the LAN. Certainly you need a dedicated broadband Internet connection to stay connected with the outside world. But if all you are doing is sending email and accessing Web sites for information, a modest line speed can support a lot of users.

E-commerce is another matter. If most of your traffic is from customers and other users via the Internet, you need a high bandwidth connection for your public facing servers. Your WAN traffic may even be larger than your LAN traffic.

Offsite, but in-town, data centers also require high bandwidth connections even if they are used primarily for disaster backup and recovery or data mirroring. In this case, the majority of your bandwidth may be over the MAN rather than the LAN or the WAN.

Now, here’s how things change when you move to the cloud. You public servers are now rented, not owned, and your bandwidth costs are part of the service fee. You may not need a MAN connection at all if you are buying storage in the cloud. What you will need is a much bigger pipe between your office building or buildings and your cloud service provider.

Companies that kept everything in-house can get some sticker shock when they find out that the cloud savings is offset by the increased cost of higher bandwidth private line services between their location and the cloud. Other companies that now have most of their bandwidth chewed up by Internet accesses may breath a big sigh of relief that the cloud provider is also supplying bandwidth to the Internet. It is well worth your while to build a quick chart that compares LAN, MAN and WAN bandwidth needs between your current setup and what you’ll have when you go to the cloud.

Regardless of how the mix works out, you’ll want to get the most bandwidth you can for your IT dollar. Fortunately, you have much more in the way of options now than even just a few years ago. One reason is heavy competition for higher bandwidth circuits. The other is new technology that adds to the option list.

The newest technology that you may not have investigated yet is EoC or Ethernet over Copper. EoC is a direct competitor for traditional T1 lines and higher bandwidth T1 lines. In some cases it can even be a substitute for fiber optic services.

Ethernet over Copper uses multiple twisted pair copper telco wiring, just like T1. It’s a more efficient modulation scheme, however, and offers higher bandwidths than are generally practical by bonding together T1 lines. Unlike T1, EoC is distance sensitive and requires you to be within 2 or 3 miles of the nearest telco office. For companies located in cities and their suburbs this generally works out fine. Out in the country, you won’t find much service.

Popular Ethernet over Copper bandwidth options include 2, 3, 5, 10 and 20 Mbps. Service equal to 45 Mbps DS3 is available in many metro locations. Some companies even offer 100 Mbps bandwidth using copper instead of fiber.

Even more exciting is the pricing for EoC services. You can often get 2 or 3 Mbps Ethernet service for the price of a T1 line. It’s not unheard of to pay half or less for the higher bandwidth Ethernet services than what you are used to paying for traditional telecom line services.

Are you contemplating a move to the cloud and need to know your bandwidth costs or just want to save money on the line services you have now? You may be pleasantly surprised by what you find when you check pricing and availability of EoC and other bandwidth services for your particular business locations.

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




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Monday, May 9, 2011

Gigabit Ethernet vs SONET

With the expansion of video content and moves to cloud services, business bandwidth now easily pushes the Gigabit per second level. This certainly means a move from copper to fiber optic services. But did you know that there are two types of fiber optic bandwidth to choose from? They are SONET and Gigabit Ethernet.

Both Gigabit Ethernet and SONET support high bandwidth applications.SONET is the original fiber protocol developed by the telephone companies to transport large numbers of simultaneous telephone calls between switching centers and internationally. SONET stands for Synchronous Optical NETwork. There is an international version of this protocol called SDH for Synchronous Digital Hierarchy. Together they are often referred to a SONET/SDH.

SONET’s origins go back to the initial development of digitized telephone conversations and the transmission of these a groups using trunks known as T1 lines. The larger T3 lines can carry the equivalent of 28 T1 lines or a data bandwidth of 45 Mbps. There are no faster copper telco standards. The next step up is OC-3 at 155 Mbps. That’s enough to transport 3 DS3 circuits and, indeed, the protocol is designed to easily multiplex and demultiplex lower level services. When you order a DS3 today, it will be transported most if not all of the way multiplexed into a OC service. A device called an ADM or Add-Drop Multiplexer gets the service on and off the optical network.

You’ve probably guessed that OC stands for Optical Carrier. There are a number of optical carrier levels that include OC-3 at 155 Mbps, OC-12 at 622 Mbps, OC-24 at 1.24 Gbps, OC-48 at 2.49 Gbps, OC-192 at 9.95 Gbps and OC-768 at 39.8 Gbps. When you hear about 10 Gbps SONET, it is an OC-192 service. The 40 Gbps that many carriers use for long haul transmission is OC-768.

What about intermediate rates? Not all levels between 1 and 768 are defined. Others, such as OC-9, OC-18, OC-36 and OC-96 are standardized but not generally offered in service.

SONET/SDH is set up in ring arrangements with two separate fiber strands for each ring. They are redundant circuits, so if one fails the other can pick up the load within 50 mSec.

Ethernet is a completely different protocol developed by the computer industry rather than the telephone companies. It is based on packets rather than telephone channels. Most LAN connected devices have a NIC or Network Interface Card that supports 10/100/1000 Ethernet. That means the device can run at 10 Mbps, 100 Mbps or 1,000 Mbps (1 Gbps). Corporate LANs may now run at 1 Gbps with some parts of the network using 10 Gbps or 10 GigE.

The equivalent of Ethernet in the LAN for local networks is Ethernet WAN or Wide Area Network. Switched Ethernet used for WAN applications is also called Carrier Ethernet. If the service is local to a particular city or metro area, it is often called Metro Ethernet or Metropolitan Ethernet and the network is referred to as a MAN or Metro Area Network.

Like telco services, Ethernet may be delivered over copper or fiber. Twisted pair copper telephone line can be used up to 100 Mbps. That speed is also available over coaxial copper cable through Cable systems. Beyond that, fiber optic connections can deliver 1 Gbps or 10 Gbps for business applications.

Ethernet is designed to be far more scalable than SONET. Instead of ordering a particular service level, such as OC-24, you order an Ethernet port capable of handling a maximum speed, say 1 Gbps. With the port in place, you can pay for Gigabit Ethernet if you need that much, or you can order 250 Mbps or 500 Mbps Ethernet and upgrade quickly and easily when the need arises.

Which fiber optic service should you order? In general, Ethernet is less expensive per Mbps than SONET. Sometimes the price savings can be dramatic. The one sticking point is that you need to have the service installed in your building. You may have one or the other services now or nothing at all. The cost of construction to bring in the right fiber from the right carrier can outweigh the monthly lease costs. You should know, though, that Ethernet can often be carried on SONET and that competitive carriers are hungry to get new buildings on their networks. These factors can affect the availability and pricing of fiber optic services to your building.

Fiber optic build-outs are progressing rapidly and the demand for high speed bandwidth increases. Even if you went out for bids a year ago, the situation may have changed for the better since then. The best thing to do is get new prices and availability for fiber optic bandwidth services for your particular business location.

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


Note: Photo of data center servers courtesy of WikimediaCommons



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Monday, February 21, 2011

Broadband Ethernet Connections

When we think of Ethernet, it’s probably in regard to the protocol that runs on our LANs. Broadband? That’s something else entirely. Or is it?

Get an Ethernet Broadband connection for your business for more bandwidth at less cost.Ethernet has moved from the LAN to the MAN to the WAN. That gives companies the opportunity to extend their networks across town, across the country and even internationally. But what about the Internet? What does Ethernet have to do with the Internet?

Ethernet and the Internet have been closely coupled from the beginning. The Internet is based on IP routing, not legacy telco circuit switching. But the Internet would have gone nowhere without telco technologies such as T1, DS3, and SONET/SDH (OC3, OC12, OC48, etc.) That’s because the telephone companies owned the digital lines and their mature technologies. The sensible and cost effective approach has been to do what is necessary to use these existing services to transport IP packets as well as other voice and data traffic.

That brings us to access. What do you have to connect with the Internet? It’s likely a T1 line, DS3 connection or a fiber optic service based on SONET. Very small businesses may be using DSL, Cable broadband, two-satellite or 3G & 4G cellular wireless. Why not use Ethernet as your last mile connection?

That’s a good question. In fact, it makes more sense now to install a broadband Ethernet connection to the Internet than ever before. The technology is proven and already deployed to most major cities and suburbs. What’s more, it will probably save you money.

The most popular and lowest cost Ethernet broadband services use Ethernet over Copper or EoC technology. This appears to be similar to T1 technology in that it is based on using twisted pair copper wires to bring the service into your building. Chances are that you have the wiring in place already for multi-line telephone service and perhaps a T1 line or two.

Ethernet over Copper offers dedicated Internet access, just like T1, where you have a committed bandwidth level that does not vary and is not shared with other users. The technologies are a bit different in that the EoC interface to your LAN is a simple Ethernet connector. If you are already using a managed T1 router, that may not be important because the interface is already handled by the service provider and you simply connect your edge router to the T1 router.

You’ll notice a difference in bandwidth scalability. T1 lines are designed around a fixed bandwidth of 1.5 Mbps. If you want more, you bond additional T1 lines in 1.5 Mbps increments. This is practical up to around 10 Mbps before it become too expensive for most applications. Ethernet over Copper bandwidth typically starts at 2 Mbps, with 3 Mbps a popular speed for about the same price as a single 1.5 Mbps T1 line. But EoC can easily deliver 5 Mbps, 10 Mbps, 15 Mbps and even 20 Mbps. If you order a port with enough capacity, you can often just call your service provider and have them increase your Ethernet bandwidth at will.

What about higher bandwidths? Above 20 Mbps, perhaps as high as 50 Mbps, you’ll need to switch to a fiber optic connection that offers almost unlimited bandwidth expansion. Once again, Ethernet over Fiber is as scalable as Ethernet over Copper. A Fast Ethernet speed of 100 Mbps is very popular because it is also a standard LAN speed. Larger organizations or more demanding applications will want 1 Gbps or Gigabit Ethernet speed. If you need it, 10 Gbps and even 40 Gbps or more is available.

Broadband Ethernet is not available for residential or home office users. For businesses with their own business addresses, you can get pricing and availability on broadband Ethernet services for whatever bandwidths you are interested in. Costs are very attractive, although Ethernet is a metro service and not readily available in rural areas. For those locations, you’ll need to stick with T1 and bonded T1 solutions.

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




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Wednesday, February 2, 2011

50 Mbps Ethernet Takes on DS3

DS3 connections have been the traditional upgrade path for companies that have outgrown their T1 lines. But now there’s a newer technology service that gives you more bandwidth at less cost than DS3 and offers an easy upgrade path. That service is 50 Mbps Ethernet.

Check pricing and bandwidth options for Ethernet vs DS3 and save. Let’s see why DS3 has become such a popular bandwidth service and why it will likely be replaced by Carrier Ethernet. A DS3, sometimes called a T3 line, isn’t simply 3x the bandwidth you get with T1. It is 28x the bandwidth. So if you have a 1.5 Mbps T1 line and you upgrade to DS3 service, your new bandwidth is about 45 Mbps. Those numbers are actually rounded so the multiplication isn’t exact. There are also overhead bits that must be assigned to manage a DS3 circuit.

As you might suspect, T1 and DS3 are in the same technology family. The tipoff is that DS3 is also called a T3 line. The “T” designation comes from “T-Carrier,” a set of specifications developed by the phone companies right after WWII to convert analog telephone trunks to digital. The T-Carrier specs are based on a 64 Kbps channel called a DS0 for Digital Signal level 0. A DS1 is comprised of 24 DS0 channels or 1.536 Mbps plus 8 Kbps for synchronization and maintenance for a total of 1.544 Mbps. That’s the T1 line speed.

A T3 line is also composed of DS0 channels at the most basic level. What’s so important about DS0 is that it is exactly the right size to carry one digitized telephone call. These channels can also be used to carry data packets instead of phone conversations. Package 672 DS0 channels together plus synchronization and maintenance bits and you have a DS3 running at 44.736 Mbps. That’s the T3 line speed.

T1 lines were designed to be delivered on 2 pair of ordinary twisted pair copper telephone wiring in a multi-pair binder cable. T3 lines were designed to be delivered on coaxial copper line or microwave transmission. Today, fiber optic cable is generally used to transport DS3 and higher bandwidth services. Bonded copper pair may get the job done over short distances, but is only found in densely populated cities.

The fact is that an upgrade from T1 to DS3 is a major move that requires equipment replacement, perhaps significant construction costs, and a considerable monthly lease price increase. Once you run out of bandwidth on a DS3, you need to move up to the next level of compatible services, OC3, at 155.52 Mbps.

What’s the competition for T1, DS3, OC3 and above? It’s a completely different family of network services called Carrier Ethernet, also known as Metro Ethernet. Carrier Ethernet has more in common with LAN Ethernet than it does with T-Carrier technology. T-Carrier was designed to transport telephone calls. Ethernet was designed to transport data packets. Yes, Ethernet can also be used to carry phone calls and does so exquisitely on converged voice and data networks. An Ethernet connection used to transport telephone traffic may also be called a SIP Trunk.

Now, let’s look at the replacement services for the old T-Carrier system. EoC or Ethernet over Copper is a direct replacement for T1 lines. There are two major benefits to going with EoC. First, the bandwidth is higher. A 2 or 3 Mbps Ethernet over Copper service replaces a 1.5 Mbps T1 line. The cost for both services is roughly the same. When you want to, you can upgrade to 10 or 20 Mbps over copper for more bandwidth.

The replacement for DS3 or T3 lines is 50 Mbps Ethernet. You get a modest increase in bandwidth and you’ll likely see a significant reduction in your monthly line services bill. It is not uncommon to pay half or less for 50 Mbps Ethernet compared with DS3.

You’ll need a fiber optic connection for either service. There is no standard fiber service that runs at the DS3 speed, so it is delivered on a SONET OC3 service using just a third of the available bandwidth. Ethernet is far more scalable. 10 Mbps, 100 Mbps and 1000 Mbps are standard network speeds, but you can get a wide range of increments between these levels. A good strategy is to order the Ethernet bandwidth you need now with an eye to easily upgrading to an incrementally higher speed as needed. The trick is to have an Ethernet port installed that can handle the maximum bandwidth you anticipate needing. If you have a 100 Mbps port, you can get 50 Mbps Ethernet out of that port now and then upgrade in steps to the maximum capacity of 100 Mbps later. Often, this can be done quickly and easily with a simple phone call to your service provider.

Are you anticipating a major WAN bandwidth upgrade, or are you already using DS3 service and either want more bandwidth or lower pricing? If so, get 50 Mbps Ethernet pricing and availability before you make any decisions. It’s a service that will serve you well in the coming years and offer a compelling cost savings as well.

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




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Sunday, January 30, 2011

DIA and VPN For Europe

Level 3 Communications, a Tier 1 Internet networking services company with a global fiber optic footprint, is bringing its Dedicated Internet Access (DIA) and Virtual Private Network (VPN) services portfolio to European markets, including France, Germany and the United Kingdom. As the worldwide business climate improves, international connectivity will become more and more important for business success in a global marketplace.

DIA and VPN network services for European, as well as other international markets. Click for pricing and availability.Major multinational corporations and larger Internet Service Providers may operate their own Autonomous System (AS) networks that give them the ability to peer with other networks and purchase IP transit services to get to the Internet backbone. But many businesses don’t have or want the level of investment that it takes to operate an International private network. These companies still need high quality, reliable Internet access for e-commerce, communication with their customers, and private connections between far-flung company locations.

Dedicated Internet Access is the service of choice for most business users. What dedicated means is that you have exclusive use of the bandwidth that you purchase to connect to the Internet. But isn’t that always the case? Not really. Residential users and smaller businesses get by with shared bandwidth arrangements such as DSL, Cable broadband, two-way high speed satellite Internet, and 3G or 4G wireless.

The motivation behind bandwidth sharing is that costs are shared as well. The cost of shared bandwidth broadband services is usually well below equivalent speed dedicated bandwidth services. The price you pay is acceptance of not having a guaranteed bandwidth. Indeed, the bandwidth at any given time is a function of how many other users are sharing the service and what they are doing. Just a few people download huge software, database or video files can bring a speedy line to a crawl.

You don’t experience this with Dedicated Internet Access. You have the full T1 line speed of 1.5 Mbps or E1 line speed of 2.0 Mbps available in both upload and download directions at all times. Ethernet access connections are becoming popular as replacements for legacy T1/E1 lines. Ethernet is highly scalable from 1 Mbps on up to 10 Gbps. The lower line speeds can be provisioned over twisted pair copper, while higher speeds require fiber optic connections.

The VPN or Virtual Private Network is a way to take advantage of the universal reach of the Internet while adding a layer of security to protect your data during the time it is traversing the Internet.

Many companies have private point to point connections to securely link multiple business locations within a metropolitan areas or in nearby states. International private lines are also available, but they are pretty expensive for smaller companies to connect with sales offices overseas.

The Virtual Private Network makes it possible for businesses of all sizes to interconnect their domestic or global facilities. Another popular use for VPNs is to provide access to company networks for employees working from home or on the road. Without VPN capability, the organization would have to install a dedicated line between the corporate data center and they employee’s home at considerable cost.

The way a VPN works is that it encrypts the data packets so that they can’t be decoded by anyone who happens to gain access to them along the way. The process is said to create a “tunnel” through the Internet. There a two popular ways to do this. One is IPSec, which requires special client software at each end to perform the encryption and decryption of the data. Another approach is SSL or Secure Socket Layer. This technique requires only a standard Web browser for access. It uses the same encryption employed by ecommerce sites so that visitors can make online purchases securely.

Do you have need for Dedicated Internet Access or Virtual Private Network service to support your business or organization? If so, get prices and availability for DIA and VPN services to meet your requirements.

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


Note: Physical map of Europe courtesy of Wikimedia Commons



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Sunday, January 16, 2011

WAN Network Design Options

It’s commonly assumed that the LAN (Local Area Network) and the WAN (Wide Area Network) are completely different animals. You need completely different network design philosophies for each... or do you?

Check WAN network design options for the best cost vs performance solution.The abyss between WAN and LAN became established by they way they came into being. LAN networks are owned by individuals, businesses and organizations and are based on packet switching. At one time, there were competing topographies such as ring, star and buss. Now it’s all Ethernet on the LAN, with some specialized networks used for such things as disk storage. Most networks are based on twisted pair copper, fiber optic cable, or some combination of the two.

WAN standards grew out of the telephone industry, which has a monopoly on twisted pair telco lines used for both voice and data. Until recently fiber optic networks were also primarily owned by or at least developed to telephone company SONET/SDH standards.

Clearly, there was a technological disconnect between packet switched LAN technology and circuit switched WAN technology. That’s not so much the case anymore, but it is true that you need to do a protocol conversion to connect point to point or to the Internet using telco services such as T1 lines, DS3 bandwidth or OC3 fiber optic connections. Both the circuitry and software needed for WAN network interface are off the shelf items. You simply by a T1 interface card for your router if you want to plug in a T1 line.

What this means is that you can generally mix and match WAN network technologies as long as you have the proper interfaces. T1 line prices have plunged in recent years, making them the entry level WAN option of choice. A T1 line can be used to provide a dedicated broadband connection to the Internet or a direct point to point connection between two business locations. Some companies build customized WAN networks by connecting each branch office back to headquarters using T1 lines to form a star network. The router at headquarters manages traffic between all locations.

What’s new in WAN networking is the rise of Carrier Ethernet and MPLS networks. These are very compatible technologies and can be used together or separately. Carrier Ethernet is a native packet switched technology that avoids LAN/WAN interface issues. You can replace point to point T1 lines with Ethernet line services. Ethernet can also be used to provide a last mile connection to the Internet. Unlike T1, there is an Ethernet LAN service that can be used to connect multiple locations together in a mesh network. Ethernet LAN is a direct replacement for private WAN networks based on T1 lines or higher bandwidth services.

MPLS networks provide a many to many WAN networking solution. MPLS is a protocol that can transport nearly any other protocol in a cloud network. You see T1 lines being used for network access. Ethernet service is also used for last mile network access to the same MPLS networks.

What Carrier Ethernet and MPLS networks offer compared to their telco WAN predecessors is a cost savings and the ability to get out from having to manage the WAN yourself. You can treat Ethernet LAN or MPLS network services as a true cloud that provides the bandwidth, latency and class of service controls you need for converged network operations. Competitive carriers own their core networks completely independent of the telephone companies. In major metropolitan areas, they also provide fiber optic access connections at considerable cost savings over legacy solutions.

What are the best WAN network design options for your company? Why not compare several competing architectures and see which offers the best cost savings for the performance required? Check WAN network solution prices and availability now.

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


Note: Photo of telecom equipment racks courtesy of Wikimedia Commons.



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Wednesday, December 8, 2010

What Leased Line Service Providers Offer

Most businesses get their telecommunication services from leased line service providers. That includes telephone, Internet, and point to point line services. You probably have some of these contracts yourself. But do you know about the cost reductions and all of the new services that have become available recently?

WirelineThe nature of telecommunications services has changed dramatically in recent years. The two biggest changes are cost savings that come from a flurry of new competitive service providers and the introduction of new technologies that offer additional services.

You can still get most of the telecom services that were available a decade or so ago. The most popular line service is T-carrier, especially the T1 line. T1 is a telephone company technology and comes in several flavors. The original use was a digital trunk to carry multiple phone calls between telco switching centers or into a multi-line business phone system. An upgraded version of the T1 telephone line is called T1 PRI or ISDN PRI. It gives you up to 23 outside phone lines plus a data channel for dialing, switching and Caller ID. Nearly every PBX phone system and many key telephone systems can be easily configured to use T1 PRI.

Another use for T1 lines is to provide point to point connectivity between two business locations. A point to point T1 line offers 1.5 Mbps in both directions simultaneously. If you need more bandwidth than this, you can get bonded T1 service that combines multiple T1 lines up to about 10 or 12 Mbps total.

A related service is the T1 access line. This is a last mile connection to a larger network. At one time, the larger network was called Frame Relay. Nowadays, MPLS networks have taken over this role of connecting business locations on a regional, national or international basis. MPLS networks have the advantages of nearly unlimited bandwidth that can transport just about any voice, data or video protocol.

T1 Dedicated Internet Access (DIA) is the choice for broadband Internet access for many smaller businesses. The cost is only a fraction of what it was a decade ago. As a professional grade telecom service, you enjoy a reliability and constant bandwidth not typical of consumer oriented services like DSL and Cable.

The new competition to T1 lines is coming from Carrier Ethernet services, including Metro Ethernet. Like T1, Ethernet is a wireline service. Also like T1, it is delivered on multiple twisted pair copper wiring for lower bandwidth services. That copper wiring is generally already installed for multi-line telephone service. Ethernet offers the same point to point and Internet connections you may be using with T1 lines now. But Ethernet can also give you layer 2 switched network service between several or more locations around town or over a wider area, including overseas offices.

Ethernet is gradually taking over from T1 in metropolitan areas where it is most available. A popular service is 3 Mbps Ethernet for about the same price as a 1.5 Mbps T1 line. For more demanding uses, 10 Mbps Ethernet is becoming a popular standard.

Once you get into the higher bandwidths, 45 Mbps and above, fiber optic cabling takes the place of twisted pair copper. DS3 is the T-carrier upgrade to T1. It is now delivered over SONET fiber optic services at 45 Mbps. The Ethernet equivalent is 50 Mbps Ethernet service, although Fast Ethernet at 100 Mbps is an industry standard and the speed of many local networks. Like copper-based Ethernet services Ethernet over Fiber tends to offer much lower costs per Mbps than equivalent traditional SONET telecom services.

You should also know that both T1 and Ethernet services have an option to get both telephone and Internet over the same line. Integrated T1 is the legacy wireline service. SIP trunking is the IP service that gives you VoIP telephony and broadband Internet access.

Have you been wondering if you are paying too much for the wireline services you’ve just kept renewing over the years? Find out by getting up to date quotes for both Ethernet and T1 or SONET wireline services from dozens of competitive service providers. The range of services and their current costs may astound you.

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


Note: Photo of multipair cable courtesy of Wikimedia Commons



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Monday, December 6, 2010

Internet Bandwidth Connections For Business

Internet access can be divided into three categories. Consumer residential broadband, dedicated business bandwidth, and 3G/4G mobile. Mobile broadband serves both individuals and business users. But fixed wireline is either business or consumer, but not truly both.

Find better deals on InWhy is that? There’s as cost vs performance decision that separates the two. Consumer services, and that includes home based businesses, are not even classified as telecom services. They have a designation as “information services.” What that does is keep them relatively unregulated with few commitments to the customer. In return, costs are kept low so that they are affordable by most households.

Business bandwidth is a regulated telecom service with high performance expectations. Unlike consumer connections, your business line services have a dedicated bandwidth level that is available 100% of the time. You can use that line up to its full capacity without bandwidth caps.

Business bandwidth also tends to be symmetrical. That is, you get the same bandwidth in both directions. An example is 10 x 10 Mbps Ethernet. What that means is that you get 10 Mbps in both the upload and download directions. Contrast that with consumer DSL, Cable and wireless services that favor the download direction by a large margin. That’s because most consumers download far more data than they upload. Business use tends to be more balanced.

Business bandwidth services are designed to be highly reliable. After all, the telecom companies and network carriers use the same line services themselves. Many come with an SLA or Service Level Agreement. That document defines the performance and availability of the line. If it goes down, it gets fast attention from the service provider. Most outages are restored in a matter of hours or less. There is no such commitment for consumer services. It’s a “best effort” arrangement with multi-day outages undesirable but not unknown.

Business Internet bandwidth is also called “dedicated” access. The dedicated term means that you and you alone have use of that much bandwidth. That may seem obvious, but do you realize that consumer broadband services are called “shared” and not dedicated? What the service provider does is purchase a large dedicated line service and then share that bandwidth among the user base. How much bandwidth you have at any given time is a function of how much your neighbors are also using. Bandwidth slowdowns during peak usage times are to be expected. This is why consumer bandwidth is sold as “up to” a certain Mbps.

Popular Internet bandwidth connections for business are T-Carrier, SONET and Ethernet. T-Carrier includes the popular T1 lines that offer 1.5 Mbps bandwidth and are available just about anywhere you can get telephone service. SONET is the big brother of T-Carrier. It is a fiber optic service with designations such as OC-3, OC-12, and OC-48. Ethernet can be provided on either copper or fiber. Ethernet over Copper is available in metropolitan areas at bandwidths up to 45 Mbps. Most popular are 3 Mbps and 10 Mbps Ethernet over Copper. They typically offer more Mbps for your bandwidth dollar, where available. Ethernet over Fiber offers near limitless bandwidth, although 100 Mbps Fast Ethernet, 1000 Mbps Gigabit Ethernet and 10 Gbps Ethernet are popular standard line speeds.

Are you frustrated by a poorly performing Internet connection or just want to compare pricing to ensure that you are getting the most for your money? If so, get competitive pricing and availability for business Internet bandwidth services now.

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




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Tuesday, November 16, 2010

Switch to Switched Ethernet Service

Are you still living in the world of telecom past? Those are the days when you had one network protocol inside and something completely different outside. Switch to switched Ethernet service and your network has more options and easier interfacing.

Try switched Ethernet service to gain more service for less costWhat constitutes telecom past? It’s the legacy transport services developed as telephone technologies and later pressed into service to connect data networks through the public switched telephone network. That includes such favorites as Frame Relay, T1, DS3 and SONET/SDH.

What’s so bad about these venerable telecom services? Nothing at all. They are time-tested solutions to business connectivity. All of these services are readily available, perhaps with the exception of Frame Relay which is being rapidly replaced by MPLS networks. They offer high reliability and dedicated bandwidth suitable for business operations. The only real question is whether these are the BEST options available for your connectivity needs.

There’s a newer networking technology being deployed nationwide, indeed worldwide, right now. What it does is simplify the LAN to MAN to WAN connection. Everything is standardized on the Ethernet protocol. Connectivity is seamless, since outside network connections simply plug into your network edge Ethernet switch and become an extension of your LAN.

Contrast this approach to having to install a CSU/DSU interface card into a router to make the networks compatible. Inside your company, everything is packet based. Outside, those packets have to be shuttled into and out of TDM channels that transport them between locations or to and from the Internet.

With an all-Ethernet system, you also gain some service options you didn’t have before. Ethernet line service gives you a point to point connection between two LANs at different locations. Ethernet LAN service creates a multi-point to multipoint network that links 3 or more locations. All of these locations will appear to be on one large bridged network with switched Ethernet service. The engineer at the desk across town is effectively right next door to the marketing manager a couple of states away and the warehouse on the other side of the globe.

Just to add icing to the cake, Ethernet services also tend to be lower in cost per Mbps than equivalent legacy telecom services. It’s not uncommon to get 3 Mbps Ethernet at the same price as 1.5 Mbps T1 service. The distinction gets even larger as you go up in speed and include multiple locations.

Are you missing out by still depending on yesterday’s telecom technology to support today’s business needs? Check pricing and availability of switched Ethernet service to see if you can get better service for less money? There’s a good chance you can.

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




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Sunday, November 14, 2010

Fiber Connectivity Options For Business

Fiber optic bandwidth is now well within the reach of most medium and large companies, and even smaller organizations that are bandwidth driven. What’s changed? Lower prices and more options. That’s good news for large bandwidth users. Let’s take a look at what’s available that you may not know about.

Ethernet vs SONET fiber optic service pricing. Click to get quotesFiber optic bandwidth services tend to fall into two categories. There is the traditional time division multiplexed technology that came out of telephone company research. Competing with those legacy services are the newer IP-centric networks being offered by competitive service providers as well as incumbent telecom carriers.

The fiber optic bandwidth service that is most familiar is called OC-3 or Optical Carrier - level 3. It runs at 155.52 Mbps, commonly referred to as 156 Mbps. What you might not realize is that some lower speed services travel part or all of the way from the service provider to your location on fiber optic cabling. These include T1 and DS3, generally thought of as copper-based telecom services. It’s up to the carrier how they want to transport their bandwidth services, but it’s made easier because both T1 and DS3 are easily multiplexed onto OC-3.

Why is that? It’s because T1, DS3 and OC-3 were all developed by the telephone industry for its own use. The smallest element is called a DS0, which is 64 Kbps of bandwidth organized as 8 data bits x 8 Kbps sampling frequency. A DS0 is exactly the size needed to carry one digitized telephone conversation. Package 24 of these DS0 channels together and you have a T1 line running at 1.5 Mbps. Package 28 T1 lines or 672 DS0 channels together an you have DS3 service at 45 Mbps. Now, package 3 DS3 services together and you have OC-3 at 156 Mbps. The device that does the packaging and unpackaging is called an Add/Drop Multiplexer or ADM.

OC-3 fiber optic service is part of an industry standard known as SONET for Synchronous Optical NETwork. SONET is a US standard. The equivalent international fiber optic standard is called SDH for Synchronous Digital Hierarchy. As you probably know, there are higher speed fiber services in the same OCx family. Commonly available services include OC-12 at 622 Mbps, OC-24 at 1.244 Gbps, OC-48 at 2.488 Gbps, OC-192 at 9.953 Gbps and OC-768 at 39.812 Gbps. That last one is primarily used by service providers themselves.

What’s characterized SONET fiber optic services for decades is high cost and very limited availability. Your best bet for connecting to these high bandwidth services has been at a colocation center, also called a carrier hotel. There’s little to no construction cost to get that level of bandwidth in a colo center, because the carriers have a presence within the building. It’s just a matter of getting a fiber optic cable drop from their equipment cage to yours.

SONET services delivered to your door have also come down in price due to increasing demand from business and heavy competition from another service called Carrier Ethernet. This is Ethernet like you have on your LAN, but extended into the metropolitan and wide area networks. The most familiar name for this service is Metro Ethernet. That’s also where you are most likely to find it - in major metropolitan areas.

Metro Ethernet is a packet or IP-based network service rather than a synchronous TDM service. One difference is that you don’t need special interface circuitry to connect to an Ethernet service. After all, it’s Ethernet and it’s delivered to you on an Ethernet connector. The other difference is the scalability of services. Common speeds are 10 Mbps, 100 Mbps and 1000 Mbps to mirror the standard network speeds. You can also get 10 Gbps now. But you are not limited to these particular bandwidth increments. Most carriers offer a wide variety of speeds from 10 Mbps to 10 Gbps. If you install an Ethernet port at the highest speed you expect to use, you can pay for a smaller bandwidth increment to get started and then upgrade to a higher speed when needed. Often, all that is required is a phone call to your service provider to request an increase in bandwidth.

How about fiber optic pricing? You may still find areas where SONET services are the least expensive, but most of the time it’s Ethernet that has the cost advantage. That’s especially true if you are not running at one of the standard SONET speeds. The cost difference can be half or less for the same bandwidth when you replace SONET with Ethernet.

Do you currently use fiber optic bandwidth services or are you considering them for your business? If so, don’t order anything until you get a side by side price comparison of SONET and Ethernet fiber optic bandwidth. You may be surprised by what’s available at a lower cost than you expected.

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




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Tuesday, September 21, 2010

NetWolves Leverages The Power Of The Pack

When you are looking for a comprehensive solution to all of your business voice and data needs, it’s pays to have a wolf doing your bidding. NetWolves is an aggressive service provider with an unusual flexibility to optimize the exact suite of services you need.

Check prices and availability of services from multiple aggressive service providers now.First and foremost, NetWolves is an FCC-licenced and tariffed carrier in all 50 states. But beyond that, they have strategic agreements with over 120 leading telecommunications carriers. By leveraging the power of the pack when it comes to telecom service providers, NetWolves can pick and choose from an enormous menu of available services to get exactly the right mix for your particular applications. Many carriers are working from a much shorter line card and need to fit your requirements into whatever they have available.

Most businesses, even the smallest, have a particular mix of needs that include telephone, Internet, security, offsite backup, remote workers, employees in the field, private data transfers, e-commerce, and perhaps multiple site connectivity. NetWolves takes all of this into consideration and custom designs an array of services tailored to your situation. They also offer consulting and management services as an adjunct to your IT team or as the IT support for companies that don’t have their own staff.

NetWolves can offer you a complete range of voice services including multi-carrier solutions on a single invoice. These voice services include switched outbound and inbound toll-free service plus intrastate, interstate and international calls over your existing business lines. Do you have your own PBX or IP PBX system? NetWolves can provide the ISDN PRI and VoIP services you need to support whatever phone system you have. That includes ANI (Automatic Number Identification) and DNIS (Dialed Number Identification Service).

Data services include private lines from 56K/DS0, DDS, T1/DS1 at 1.5 Mbps, on up to T3/DS3 lines running at 45 Mbps. For multiple locations, you can get MPLS network connections that create a VPN or Virtual Private Network. NetWolves also offers VPN security technology that includes IPSec VPN and SSL VPN. While IPSec VPN is ideal when transferring large amounts of data over a secure site to site connection, SSL VPN is an attractive solution to support business travelers and partners who need secure access only for email and small files.

NetWolves is capable of providing complete network management for your company. Their WolfPac security platforms act as network gatekeepers to control access into and out of a company’s network. Security services are scalable and include Stateful Inspection firewall, IPSec, SSL VPN, intrusion detection, congestion management, quality of service control, email virus protection, content filtering and other services with the ability to provide 24x7 monitoring.

Could your organization benefit from the capabilities of NetWolves or other highly competitive carriers anxious to bid for your business? If so, get price quotes tailored to your requirements for whatever level of service you need.

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




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Sunday, June 20, 2010

Find The Ethernet Internet Connection

Are you interested in more bandwidth for your business, but concerned about the cost? You may be able to get just what you want with an Ethernet Internet connection.

Find the Ethernet Internet Connection for your business in just a minute. Click to see.


Ethernet Internet connections are something new. Certainly, we’ve all been using Ethernet on our local area networks for as long as we can remember. The Internet itself is an IP service that is very compatible with your LAN Ethernet. The odd protocol in-between has been the telecom services available to link to the Ethernet itself.

You probably have T1 or DS3 service as your network access connection. Each of these requires a special CSU/DSU or router interface card at each end of the connection. These units and their associated software perform a protocol conversion and provide the proper signal interface to standard network Ethernet ports. But with Ethernet connections, none of that is needed. It’s Ethernet all the way. How do you connect to the Internet? How about just plugging into a standard RJ-45 connector?

In addition to simplicity of connection, Ethernet WAN or Wide Area Network services are also generally cheaper than T1 lines or DS3 bandwidth. In many areas, you can now get 3 Mbps Ethernet for the same price as 1.5 Mbps T1. 10 Mbps Ethernet is very popular for small to medium size businesses. It can be had for what T1 lines cost just a few years ago.

Ethernet Internet connections are also scalable. You can get bandwidths from 1 Mbps up to 1 Gbps. The lower speeds, from 1 Mbps to about 50 Mbps, can be provided over existing twisted pair copper telco cables. For the higher speeds, you’ll need a fiber optic connection. Those are also highly affordable compared to what you’ll pay for traditional telecom services at that level.

Are you interested in how you can increase your bandwidth and perhaps even save money at the same time. Take a minute now and use the Ethernet Internet Finder to get connection prices and availability for your business location.

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




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Wednesday, March 10, 2010

The DS1 DS3 Relationship

If you are involved with business telecommunications networking or need to be, you have probably heard the terms DS1 and DS3 bandied about. But what do these terms really mean and where did they come from?

The DS in DS1 and DS3 stands for Digital Signal level. It is a designation that is used to specify the capacity of a digital line in the T-carrier system. You know the most popular T-carrier service as T1. Another popular service is T3. In simple terms, DS1 goes along with T1 and DS3 goes along with T3.

Find the DS1 or DS3 bandwidth you need in your business.Now, let’s see what’s behind these DS levels and T-carriers. The history of this system goes back to the 1950’s, when Bell Labs recognized the advantage of changing from an all-analog telephone system to digital connections between telephone company offices. Digital transmission carries many conversations on few wires and eliminates the noise and cross-talk that were commonly heard on long distance calls at that time.

The most basic service is one two-way telephone conversation. That was made the most basic element of the T-carrier system and given the designation DS0 or Digital Signal level zero. A DS0 signal is the digital representation of a single voice call. It has a bandwidth of 64 Kbps formed by sampling the audio conversation at a rate of 8 Kbps with 8 bits of data. Those numbers are critical, because they represent the minimum bandwidth needed to give the same audio quality as an equivalent analog phone line.

If a DS0 is one phone call and consumes 64 Kbps of bandwidth, then what is a DS1? DS1 is a collection of 24 DS0 “channels” packed together in a bundle. That’s 24 separate telephone conversations. The bandwidth for this bundle is 1.536 Mbps. When you add 8 Kbps for synchronization, the total bandwidth is 1.544 Mbps. It’s commonly referred to as 1.5 Mbps. A T1 line is a DS1 digital signal package carried on a very specific physical network consisting of 2 pair of twisted pair telco wires with a defined voltage and waveform characteristic.

That’s what DS1 means. Now, how about DS3? If you bundle 28 DS1 signals, the equivalent of 672 DS0 voice channels, you get a DS3. The bandwidth of this signal is 44.736 Mbps, often referred to as 45 Mbps. A T3 line carries a DS3 signal on coaxial cable, although T3 service may also be sent by microwave.

Now, here’s where things get interesting. You can generate the DS digital signal protocol but not necessarily use a T1 line or T3 line for transport. In a process called multiplexing, multiple DS1 and DS3 signals can be combined and transported over fiber optic cable. The SONET fiber optic services were designed to directly accommodate this. The lowest bandwidth SONET service generally available is OC3, which carries 3 multiplexed DS3 signals with a total bandwidth of 155.52 Mbps. When the signals get to where they are needed, they are separated or demultiplexed to get back the 3 DS3 signals, which might be constructed of 28 DS1 signals each.

When used to transport data packets instead of telephone calls, the individual channels are generally invisible to the end user, although they exist within the T-carrier and SONET systems. DS1 and T1 can be said to have a bandwidth 1.5 Mbps. DS3 and T3 can be said to have a bandwidth of 45 Mbps. It is these numbers that you can use to compare pricing with competing telecom services , such as Metro Ethernet.

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




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