Showing posts with label OC3. Show all posts
Showing posts with label OC3. Show all posts

Thursday, December 1, 2011

150 Mbps Ethernet vs OC3 Cost

When DS3 bandwidth at 45 Mbps isn’t enough anymore, it’s time to take a look at higher service levels. So, do you make the jump to OC3 at 155 Mbps or take a look at competing Ethernet services? It can be worth your while to do the comparison. Let’s see why.

Taking a look at competitive costs of 150 Mbps Ethernet vs OC3 SONET service...Once you start moving into higher bandwidth services, you are looking at fiber optic delivery. Yes, in rare situations you may qualify for 100 Mbps or higher Ethernet over Copper or fixed wireless microwave service. For these to work you need to be very, very close to the provider’s office and, in the case of microwave, have a clear line of site from your building to theirs. For everyone else, it’s fiber optic cabling. Fiber can transport Ethernet or OC3 equally well. So, how do you choose?

One big factor in your decision may be the cost of construction. If there is fiber running nearby, but not yet installed into your building, there is a certain one time cost involved in trenching the fiber and its conduit underground or bringing in the fiber cable overhead. Oddly enough, in densely packed downtown business districts, the cost of fiber construction can be higher than it is out in the burbs. Why? It’s because the available conduits may be all full or hard to obtain and the expense of tunneling under major roadways can be a deal breaker.

Don’t be discouraged by the possibility of high construction costs until you get competitive quotes for fiber optic service to your building. Each situation is unique. The cost for installing similar service to buildings across the street from each other can vary wildly. It’s also possible that you may get your installation for free or at a big discount. Some fiber providers are aggressively building out their networks. If they want your location, they may foot the bill for construction or at least part of it. The more bandwidth you need, the more attractive your situation is. If you are in a multi-tenant building, it could be worth your while to get together with other tenants and offer a much larger bandwidth requirement to lure potential service providers.

Another possibility is that your building is already “lit” for fiber optic service from one or more carriers. Let’s say that someone in your building is already leasing OC3 bandwidth from a telecom carrier. That carrier has already gone to the expense and trouble of bringing in the multi-strand fiber cable and installing termination equipment. They’ve hooked up the other end to their metro fiber network running nearby. How much trouble is it to also provide you with OC3 fiber optic service?

Not much trouble at all. Unlike copper cables, fiber optic bundles can support nearly unlimited bandwidth. It’s a matter of setting their add/drop multiplexers to bring enough bandwidth into the building and demultiplex it into separate services for each subscribing tenant. As you can imagine, the construction costs will be minimal, perhaps even complementary.

The same is true if there is already high bandwidth Ethernet over Fiber service installed in the building. The Ethernet service provider has done all the hard work. They can easily add you to the network rapidly and at minimal cost.

This may be the deciding factor. If one service is already installed and the other is not, the capital cost factor can outweigh other advantages. What if both services are in the building? Then it becomes a more level playing field. In general, Ethernet service is less expensive and easier to scale than SONET services, such as OC3. There is also a service called Ethernet over SONET that uses traditional SONET ring networks to carry the newer Carrier Ethernet protocol. That means a legacy carrier may well be able to offer you either OC3 or 150 Mbps Ethernet at an attractive price over already installed infrastructure.

How much will it cost you to get the high bandwidth business connectivity you require? Each situation needs to be evaluated on its own merit. You can get cost quotes for Ethernet services up to 1 Gbps instantly, with fast response on SONET or Ethernet over SONET services by using the Fiber Network Quotes service for US based locations. US to international destination quotes are also available upon request.

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





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Thursday, October 20, 2011

Metro Ethernet vs MPLS Networking

In addition to dedicated Internet access, many companies also need point to point private lines and/or multipoint network connections. The classic way to accomplish this has been to lease private lines to create your own wide area network setup. There are two other methods available that can give you the same results for considerably less cost.

Metro Ethernet vs MPLS Network solutionsMetro Ethernet service has been seen as a way to get point to point connections in town at a lower cost than leasing dedicated line services, such as DS3 or OC3. This service is called E-Line or Ethernet Line. It’s is standardized by the MEF (Metro Ethernet Forum) so you can compare E-Line services from multiple vendors and know that you are getting the same product.

What’s the difference between ordering an E-Line connection at 50 Mbps versus a DS3 dedicated line at 45 Mbps? When you order a dedicated line, you can envision having a pair of wires going from your headquarters, through a cross-connect at the telco central office and then out to your branch office. That’s probably true for a T1 line provisioned on two twisted copper pair. When you get into DS3 and higher bandwidths, your connection will probably be carried via SONET fiber optic service using an add/drop multiplexer. Along the way, your signal will be traveling with many other who share the same fiber strand.

Here’s what’s important: Unless you actually go out and construct or lease the copper or fiber transmission medium, you are using a shared or multi-tenant service. It’s true with Metro Ethernet and MPLS Networks. It’s also true with dedicated line services. The difference is that MPLS and Metro Ethernet are packet switched networks while T-Carrier and SONET services are circuit switched. With circuit switching, the circuit is used only for your traffic on a single path that is “nailed up” for the time you hold the lease. With packet switching, other traffic can share common paths through the network. That does two things. It lowers the price of the service and it makes some additional services possible.

Metro Ethernet has both an Ethernet Private Line and Ethernet Virtual Private Line service available. The virtualization means that you only need to install one Carrier Ethernet port to have connections with two or more locations. The actual physical line is shared among your own traffic. You may have ten or more branch offices, retail stores or other locations in town. With EVPL you can have point to point connections to many locations coming in through one UNI (User Network Interface).

Here’s another service you can get with Metro Ethernet. It’s called E-LAN or Ethernet LAN service. This is a meshed network that lets many locations all communicate without going through a single point. E-LAN is popular for interconnecting a company’s many independent LANs in the same geographical area. This can be done at the layer 2 level so that the entire network looks like one giant bridged network.

Interconnecting multiple locations is also the domain of MPLS or Multi-Protocol Label Switching networks. Many of these have regional, national or even international service footprints so that all of your far flung locations can interact on the same network. MPLS may be the solution of choice for covering geographical areas larger than a single city and its suburbs. MPLS can also be used to create point to point connections for only two locations. When those locations are located on opposite coasts or in different countries, MPLS can be a better deal than Ethernet Line service or point to point dedicated line services.

Since Ethernet and MPLS services overlap to some extent, what criteria do you use to make a choice? I’d recommend getting price quotes for these, plus dedicated lines, and comparing the total lease cost for the same bandwidth and other requirements. You can get networking bandwidth quotes from multiple service providers quickly and easily using the GeoQuote tool. In fact, many line services to 1 Gbps quote automatically online.

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




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Thursday, February 3, 2011

WDM Wavelength Services Offer Expandability

If your need is for high bandwidth, security and flexibility, you should take a look at wavelength services. This is more than the typical fiber optic bandwidth service. It’s almost like owning the network facilities yourself.

Wavelength division multiplexing gives you multiple color beams on a single fiber optic strand. Click for pricing and availability.The thing about fiber optic transmission is that it offers almost limitless bandwidth. That’s a foreign concept to anyone who’s been tied to copper wireline services. It’s also an odd notion for those who pick a fiber optic service level and sign a contract for it. If you order OC3 SONET service, what you get is a line that runs at 155.52 Mbps with a payload of 148.608 Mbps. You don’t have to fill the pipe continuously, but the capacity is there all the time. If you need more bandwidth, you only recourse is to add an additional service or upgrade to something like OC12 or Gigabit Ethernet.

What you are using with fiber optic services is not the entire bandwidth of the fiber. In fact, you may be totally unaware that your signals are multiplexed with lots of others all traveling on the same fiber strand. If there is only one laser beam with a single color or wavelength shining through that fiber, it likely has a capacity of at least 10 Gbps. Chances are, though, that there are many different color beams all riding simultaneously down the fiber. They don’t interfere because they are different colors of light, called Lambdas, all in the infrared region of the spectrum. Each Lambda or wavelength has a carrying capacity as high as 10 Gbps. You can think of these as equivalent to individual high capacity lines. If the fiber optic strand were made of copper, each wavelength would be a separate pair of wires.

What if you could lease a wavelength instead of a copper wireline or a fixed bandwidth service on a fiber optic cable? The wavelength doesn’t care what modulation or data pattern you use. It’s just a pure light beam of one wavelength. There’s no fancy footwork required to convert between one protocol and another just to be compatible with what’s running on the line. That opens some interesting possibilities. You could use your leased wavelength to carry Gigabit Ethernet or Fast Ethernet, SONET OC3, OC12 or OC48, Fibre Channel, or ESCON.

Need to transport a variety of high bandwidth protocols? OK. Just lease multiple wavelengths and give each protocol its own Lambda. The won’t interfere. In fact, they won’t even known the other wavelengths exist.

This type of network transport is no longer a pipe dream. All you need to do is lease WDM Wavelength Services from a fiber optic network carrier such as AboveNet. What AboveNet has done is install a base of dark fiber in many metropolitan areas. It’s called dark because it hasn’t already be put into service with a particular fiber optic service in mind. It’s like a blank canvas ready to become any work of art. AboveNet “lights” the fiber as needed using WDM equipment to create their wavelength services.

WDM stands for Wavelength Division Multiplexing. It’s the technology that creates multiple wavelengths on a single fiber strand. This is a standardized process that ensures there is enough separation between the wavelengths that they won’t interfere and that different brands of networking equipment will work together. There are two flavors of WDM: CWDM or Coarse Wavelength Division Multiplexing and DWDM or Dense Wavelength Division Multiplexing. The difference is that DWDM squeezes more wavelengths, up to 160, onto a given fiber but at a higher cost than CWDM.

Is this affordable? AboveNet says that their CWDM service becomes competitive at the OC-3 service bit-rate. If you can use more bandwidth than that, you’ll save money with CWDM. Typical applications include connecting corporate headquarters with branch offices and data centers, or connecting multiple hospitals and medical centers for exchange of medical images and other health service records.

Has your business or organization become limited by the network services available? Perhaps it’s time to move up to wavelength services. Find out by getting prices and availability of fiber optic wavelength services for your locations. Complementary consulting by bandwidth experts is also available for serious applications.

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


Note: Image of light spectrum from prisms courtesy of Marcellus Wallace on Wikimedia Commons.



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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 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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Tuesday, November 2, 2010

Reduce Expense of T3 or DS3

You currently have or are considering 45 Mbps service using T3 or DS3. Before you re-sign or initiate a new contract, take a look at how you might save considerable expense in the process.

Find cost reductions on DS3 and T3 line service. Click for pricing and availabilityT3 and DS3 are often considered to be identical. They’re not, but they are very close technically. T3 refers to a specific T-carrier system created by Bell Labs. It can transport 45 Mbps of data in both directions (full duplex) or 672 telephone conversations. Do you have a T1 line now? It is part of the same T-carrier system. A T3 line can carry 28 T1 lines, to give you an idea about how much bandwidth 45 Mbps represents.

DS3 is the digital signal that rides on a T3 line. It is the specification that describes how you get all those telephone calls or T1 lines worth of data into that particular format of data stream. In other words, a physical T3 line transports a DS3 formatted digital signal. Sounds almost redundant until you learn that there are other ways to transport that DS3 signal. Most important is using a compatible fiber optic SONET connection. OC3, the lowest level of SONET fiber service generally available, runs at 156 Mbps and can transport three independent DS3 signals. A service provider might drop off one at your locations and another down the block. Or you might order an OC3 and break out the 3 streams yourself if you need that much bandwidth.

How, exactly, you get DS3 service to your PBX phone system or network router depends on what service providers in your area are offering. In dense metropolitan locations you may be able to get DS3 service via fixed wireless microwave connection, as well as fiber optic cable and perhaps coaxial copper wire. You’ll connect from the carrier’s termination to your DS3 router using a pair of copper coaxial jumper cables.

The fact that there are different delivery mechanisms for DS3 is one key to being able to reduce your telecom line expense. Not too long ago, the local telephone company was the only one offering this service. Now there are competitive carriers, each with their own fiber or wireless networks, who aggressively pursue high bandwidth customers. That has tended to drop the cost of DS3 service dramatically in recent years.

If you don’t specifically need DS3, but only the bandwidth level that DS3 can provide, there is another option you should seriously consider. That is metro or carrier Ethernet. At the 45 Mbps level, Ethernet may be delivered to your location by either fiber optic line or bundled copper pair. The copper solution only works within a short distance of the carrier’s nearest point of presence. But not everyone needs the full 45 Mbps. If your requirement is, say, 20 Mbps, then you may be able to get EoC or Ethernet over Copper over a wider area than is available for 45 Mbps service. You’ll also pay less, since Ethernet is priced per Mbps.

Ethernet is also a good choice for companies that have an immediate and anticipated need for more than 45 Mbps. It is a scalable service, so you can get 50 Mbps now and upgrade to 100 or 200 Mbps later without a major effort. Ethernet at these levels is delivered by fiber optic cabling. Fiber support an almost unlimited bandwidth capacity. Ethernet services are readily available at 100 Mbps Fast Ethernet, 1,000 Mbps Gigabit Ethernet and 10 GigE.

Does your organization have a need for increased bandwidth or would you like to check competitive prices before you commit to a new contract? Our Telarus consultants will be happy to get you a listing of bandwidths and pricing for DS3, Ethernet and other bandwidth services available for your location. As a bandwidth broker, Telarus works with dozens of carriers and can get you more competitive pricing than you could hope to get on your own. Best of all, this is a complementary service for all serious business applications.

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




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Monday, August 23, 2010

MPLS VPN Access Solutions

You’re convinced that an MPLS networking solution is the answer to connecting your geographically diverse business locations. But just how are you going to connect to the MPLS cloud from all those locations?

MPLS VPN Access. Click for options.What you need is individual access networks for each location that will connect to the ingress tag router serving that geographical area. Right now the most popular connection technology is the venerable T1 line. Why? Because T1 lines are almost universally available, highly reliable, private, symmetrical, and relatively high bandwidth. Relatively means 1.5 Mbps in both the upload and download directions. For many businesses that exchange data files and even some voice traffic, this may be enough line speed. That’s especially true for branch offices and retail locations that simply need to connect to headquarters. But some applications may be limited by a 1.5 Mbps ceiling.

The next thing you can do is take advantage of T1 bonding to increase access line speed. T1 lines are readily combined, or bonded, to double, triple or otherwise expand bandwidth. There’s a practical limit of around 10 or 12 Mbps for this approach, but that can be more than adequate for many needs. Even video and medical image transmission can get by with this level of bandwidth as long as demands aren’t too high.

What if you need higher bandwidth levels to access your MPLS network? DS3 is still a good intermediate level solution at 45 Mbps. It’s a mature technology and available in many areas, no not nearly as prolific as T1 when you get beyond the metropolitan and suburban cores.

How about Ethernet as an access solution? Metro and Carrier Ethernet services are highly popular for a number of reasons. First, costs are often lower and sometimes much lower than traditional last mile connections for the amount of bandwidth you are ordering. For instance, it is not uncommon to get 3 Mbps Ethernet service for the same price as a 1.5 Mbps T1 line. 10 Mbps Ethernet is probably the most popular choice for new connections. It is priced attractively and available in most metro areas.

Another feature of Ethernet access services are that they are readily scalable up to the capability of the installed port. You may well start out at 3 Mbps but then find you need to double or triple that as business activity picks up at a particular location. No problem. A simple phone call to your service provider may be all you need to get that location upgraded. That can happen rapidly and independently of connection speeds at other locations.

If you are originating and terminating Ethernet packets, it only makes sense to use Ethernet connections to access the MPLS network. The network itself can easily transport Ethernet as well as other protocols. This gives you the option to keep everything in the Ethernet protocol and perhaps even create a multi-location LAN for ease of network management.

Higher bandwidth access connections, such as DS3 or Fast Ethernet, require fiber optic connections. With your building lit for fiber, you may be able to scale your bandwidth up to OC3, OC12, or OC48 SONET levels or GigE and 10 GigE Ethernet.

What type of MPLS VPN access connections do you need to support your multiple locations? Explore the complete range of options available to you now as MPLS VPN Access Solutions.

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




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Sunday, August 8, 2010

Ethernet over DS3 Advantage

Ethernet over Copper and Ethernet over Fiber are the hot new WAN network connections. They are growing in popularity because of high competition reducing Ethernet prices and services such as layer 2 switching available with direct Ethernet connections. So, why would you want a solution such as Ethernet over DS3?

Ethernet over DS3 offers scalable Ethernet bandwidth over existing DS3 installations.It sounds like a hybrid arrangement. DS3 is a commonly available telecom service offering 45 Mbps from a T-Carrier standard TDM (Time Division Multiplexing) technology. Most users of DS3 order it for dedicated point to point connections, broadband business access for larger organizations, and high volume telephone trunking in enterprise contact centers and commercial call centers. Why put a new protocol like Ethernet over a legacy protocol like DS3?

The big advantage of Ethernet over DS3 is that it gives you the Ethernet connectivity and services you desire in areas where Metro Ethernet or Carrier Ethernet services are not yet available or too expensive. You may already have DS3 brought into your building. If so, the physical layer already exists to transport any protocol that is compatible with that DS3 service.

Another situation is when SONET fiber runs close to your location and it is quite affordable to demultiplex a DS3 connection and bring a drop to your building. The native Ethernet over Copper and Ethernet over Fiber networks may not have build-outs anywhere near you. While the range of services and pricing from competitive carriers operating their own IP-core networks can be impressive, they may not have a service footprint in your area. DS3 is a more mature transport technology and may well be available to business locations nearby.

What can you expect from Ethernet over DS3? Bandwidth is limited to DS3’s rate of 45 Mbps, although Ethernet services are often very scalable and can be ordered from a few Mbps right on up to the limit of the port speed. If you need higher bandwidth, say 100 Mbps Fast Ethernet or higher, it may be possible to bond DS3 services the way T1 lines are bonded to multiply bandwidth. Also, If DS3 is available it is likely being carried on a SONET fiber optic service, such as OC3 at 155 Mbps. You may be able to get a higher bandwidth connection if there is extra capacity in the fiber service that delivers your DS3.

Is Ethernet over DS3 the right option for your business? The best way to find out is to get a set of competitive quotes for all bandwidth services available at your business location. There may be more options at lower prices than you expect.

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




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Wednesday, June 23, 2010

USA Digital Offers Comprehensive Call Center Services

Call centers and company contact centers have special requirements for the high volume telephony services they use. USA Digital serves this market with a suite of high performance cost effective telecom services.

Find cost savings on call center telecom services. Click to find.USA Digital Communications Inc., often called USA Digital for short, is a licensed, certified carrier in all 50 states. Since founding in 1991, their business has been known for rapid growth and customer retention. Wouldn’t a lot of companies like to claim that? The secret to USA Digital’s success may be summed up as excellent customer service combined with an extensive range of services to support both voice and data needs.

Call center operations are a special focus for USA Digital. It starts with digital line services from T1 through OC12. T1 is a popular service and provided by many carriers. However, not all of those T1 services are optimized for cost on high volume calling. For instance, USA Digital offers initial six second billing minimum. That’s typical in the industry. But then USA Digital billing switches to one second increments. That alone can save you 30% in the cost of the minutes you use.

Another big saver is 4 digit versus 2 digit rounding. Those decimal points might seem arcane, but in high volume calling minor fractions of a second add up to big money. That’s especially true if 4 digital rounding is combined with low dedicated interstate rates on T1 service.

USA Digital has a service team experienced in provisioning voice lines, PRI’s, CO meet-point circuits, cross connects and SS7 links. That same experience is applied as you move up the circuit class to DS3 (T3) trunks and into the fiber optic services from OC3 to OC12. These OCx connections are truly business carrier class services needed by the largest call center operations and requiring the highest levels of expertise for support. An OC3 gives you the capacity of about 3 DS3’s and OC12 is the bandwidth of 4 OC3’s or 12 DS3’s. USA Digital can deliver OC3s in the form of 3 DS3’s that may be separated into individual T1 services.

In addition to bandwidth, dedicated outbound services are a specialty of USA Digital. They offer FTC telemarketing sale rule and do not call services to make sure you are in compliance with government regulations for outbound call centers. Their do not call services are capable of blocking 100% of calls registered to both state and national do-not-call lists. In addition, USA Digital provides customized Caller ID Service so that you can communicate appropriate caller information over your service lines.

USA Digital’s services are appropriate for in-house customer service contact centers up through major independent call centers and carriers, including ILEC, CLEC and wireless. Beyond traditional switched circuit voice trunks, they also support VoIP (SIP, H3223), point to point dedicated lines, and MPLS networks for linking multiple business locations.

Can you benefit from business telecom services like these? If so, you’ll want to get customized telecom service pricing and consultation for USA Digital and other competitive service providers as soon as possible. You could be looking a major cost savings.

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




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Monday, June 21, 2010

Fiber Ethernet WAN Bandwidth Advantages

Large businesses and other larger organizations generally require more bandwidth than is available through T1 lines or other broadband services that can be provisioned over copper twisted pair. Fiber optic connections can provide nearly unlimited bandwidth, but what is the most cost effective service?

Check Fiber Ethernet prices and availability. Fast service on fast Etherent services.If you are a current user of fiber optic bandwidth, you are probably leasing a SONET/SDH service such as OC3, OC12, or OC48 for your wide area networking needs. These are traditional telecom services that were originally developed for the telephone companies to carry large numbers of telephone calls. They are circuit switched channelized networks that have been adapted to transport today’s demand for high data bandwidth connections.

A newer service that is offering serious competition to the legacy telco services is Ethernet over Fiber or EoF. It’s a packet-switched network that transports Ethernet at the layer 2 switching or layer 3 routing level. Within metropolitan areas, this service is known as Metro Ethernet. Over long distances, it is called Carrier Ethernet or Long Haul Ethernet. Just about all bandwidths are available, but generally you’ll find fiber Ethernet being used to carry 100 Mbps Fast Ethernet, 1 Gbps Gigabit Ethernet, 10 Gbps 10 GigE. Even high bandwidths, including 40 Gbps and 100 Gbps, are used for carrier backbone networks.

One advantage of fiber Ethernet is that it is scalable. You may start out with 100 Mbps service but quickly find out that you need more bandwidth. With traditional SONET services, there can be long delays in upgrading your service to the next level. There may also be a big jump in bandwidth and cost to get to that next level. OC3 gives you 155 Mbps. But OC12, the next readily available increment, runs at 622 Mbps.

Fiber optic Ethernet can easily scale up to the limit of the installed port. For instance, if you have a port that is capable of 1,000 Mbps, you don’t necessarily have to buy that much bandwidth. It’s common to order a fraction of the port’s capability, say 100 Mbps and then upgrade to 200 Mbps when demand justifies such a move. Often this can be done with only a phone call to your Ethernet service provider. Only when your demand exceed the 1,000 Mbps capacity of the port will new equipment need to be installed.

Perhaps the biggest advantage of fiber Ethernet services is cost savings. In additional to the traditional telephone companies, there are numerous competitive carriers that have their own regional or nationwide fiber optic networks and points of presence. These carriers can build-out a fiber connection to your building. It may not be that expensive if you can guarantee a high enough bandwidth level to justify the construction. You’ll find the monthly lease rate attractive, too. They are often only a fraction of what you’d pay for equivalent OCx services.

How can you determine if fiber Ethernet services are the best option for your business or organizational needs? You can get a quick answer with multiple vendor quotes and recommendations now using the Fiber Ethernet Services Inquiry form that you’ll find at Ether Rabbit. It’s fast service on fast Ethernet services.

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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.

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Tuesday, February 23, 2010

Diverse Connections For Data Centers

When you are running a data center or collocating your servers in a colo data center, the reliability of the data connection is critical to the availability of your services. Any one single piece of equipment and any one data line can fail. To ensure that no link failure will take you down, you need more than just several separate network connections. You need multiple diverse data connections.

The difference between multiple connections and multiple diverse connections is in where those connections go to. If you simply have 3 Fast Ethernet or OC3 links to a single service provider, you’ve only gained a small amount of protection. Especially within the colo facility, it’s relatively unlikely that only the network cable for a particular feed or the interface circuits on both ends will fail. It’s more likely that something more catastrophic will take down the entire connection with that provider.

If you are in your own facility, you’ve got the same concern only multiplied. A service provider within a colocation facility probably has multiple incoming connections. The line that comes to your building is likely a single connection that runs for miles underground or overhead. There’s lots of opportunity for a natural disaster or someone doing construction to break that line or multi-pair bundle.

So how do you protect your interests for services that absolutely can’t afford to go down even for a few hours? In addition to the usual server redundancies, you need to get multiple data line services from different providers coming in on different routes. It does you no good to contract with three separate vendors only to find that they are all bundled in the same copper or fiber optic cable. In fact, you don’t even want them sharing the same trench or poles, if at all possible. The ideal situation is to be fed by unrelated suppliers coming from different geographical directions. The only place they’ll be in proximity is within your facility.

This requirement is common for large colocation data centers that host hundreds or thousands of companies. Within the colo center, you can typically order service from several carriers who will individually provide lines to your racks. For your own facilities, you’ll need to do your homework to ensure that your are, indeed, getting diverse data connections.

Sounds like a lot of work to find and evaluate multiple providers who will serve your business location, doesn’t it? Fortunately, there’s help available from a telecommunications service broker who routinely works with dozens of service providers offering everything from point of sale wireless data connections, through the popular T1 lines and DS3 connections, on up to OC3 and above SONET fiber optic services and Ethernet at the GigE and 10GigE levels. You can save yourself a lot of grief and a lot of time by letting the broker work with the available carriers to meet your requirements. What’s that extra service going to cost you? Nothing. Nothing, at all.

Seems to only make sense to get some complementary expert consulting help with your critical infrastructure projects. Call the toll free number or put in an online inquiry now and you’ll be getting the support you need almost immediately.

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