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Triple Play Over SDH Unites the Traditional With the Modern

To be able to provide an infrastructure for high-revenue broadband services like triple play, operators are working feverishly to deploy modern networks capable of supporting TV and video streaming. But “pure-bred” next-generation networks with end-to-end IP infrastructure will remain the exception in the foreseeable future. Even in modern carrier networks, traditional lines will continue to play a role, and technologies like Ethernet over SDH are making it possible to build pragmatic solutions.

With next generation networks (NGNs), carriers are deploying an Ethernet IP platform capable of supporting not just services like Layer-2 VPNs, VLANs, and voice over IP, but also video and TV transmission. These networks consist of IP/MPLS-based transport networks and Ethernet-based Metro networks. To reach the greatest possible number of customers, these networks support different types of access – on DSL copper lines, cable TV lines and optical Ethernet in the First Mile (EFM).

Triple Play services – a combination of Internet access, telephony, TV and video – are expected to offer considerable sales potential in the consumer segment. Triple Play has plenty of appeal for customers: they only need to pay for one access service and can place phone calls affordably over the Internet, surf the Web, watch TV, and access videos, games and music for their home entertainment platforms over the network. These services can be offered on both DSL lines and back channel-enabled broadband TV cable, so competition for consumer business will get tougher. DSL providers and TV cable network operators are suddenly finding that they are rivals in the same market.

There are, however, opportunities amid the competitive risks: Triple Play is seen as a means of increasing the average revenue per user (ARPU), attracting new customers, and offsetting shrinking margins in former cash-cow segments, like call charges and DSL access, with revenue streams from value-added services. So it’s hardly surprising that Internet service providers (ISPs) are working hard to begin offering attractive Triple Play services and to enrich these services with value-added communication capabilities and entertainment content.

But to deliver these services, ISPs need more than just a simple infrastructure for data transportation. They need modern networks that are optimized for real-time applications, that can sustain the transmission of TV broadcasts and video on demand and enable guaranteed Quality of Service (QoS). This is good for carriers because, with the decline in prices in recent years, they can hardly turn a profit worth mentioning by simply providing data transport infrastructure.

Modernization with IP DSLAMs

To support Triple Play services, the broadband infrastructure needs to be expanded. TV and video streams require much higher bit rates than, say, Internet access and VoIP applications. Because an individual video stream today needs a transmission rate of between 1 Mbps and 4 Mbps (and this will increase with the advent of tomorrow’s new high-definition TV formats), vendors need infrastructures capable of supporting rates of between 5 Mbps and 25 Mbps.

Furthermore, high Quality of Service is crucial to Triple Play services because no one, for example, would be willing to put up with a jerky motion on TV. So network operators are currently upgrading their networks to support more demanding services like IPTV (TV and video streaming over Internet Protocol) and deliver them to the customer on access technologies like ADSL2+. This means that the local loop needs to be modernized.

One key component in the new access networks are Internet Protocol DSL access multiplexers (IP DSLAMs). These provide residential users with the services on DSL lines and essentially form the backbone of the Local Loop. The multiplexers are connected to the network operator’s IP, MPLS or Ethernet transport infrastructures. Known as backhaul networks, these segments generally use packet-switched lines, with Ethernet being the connection of choice because of its simplicity. Unlike traditional DSLAMs, IP DSLAMs use IP or Ethernet rather than ATM. Besides the greater data throughput and the need to carry video streams smoothly, they also have to support voice traffic, in keeping with the principle of Triple Play. Equipment has to be capable of delivering the requisite high Quality of Service to sustain voice over IP and video real-time applications.

Connecting the Multiplexers

To connect an IP DSLAM, network operators generally use dark fiber and attach the equipment to the fiber over Gigabit Ethernet. Optical fiber is not available at every location, but instead of installing new fiber in such cases, DSL network operators can rent conventional fixed SDH lines to connect their multiplexers. This pragmatic approach is not just more economical, because there is no need to deploy an all-fiber infrastructure, but also creates valuable competitive advantages: Triple Play vendors are eager to get their services out into the marketplace and they need to roll out a suitable network infrastructure as quickly as they can.

Easy ConversionAs with many point-to-point applications, simple conversion at the protocol level is the most affordable means of carrying Ethernet traffic from the IP DSLAM across an SDH network. The IP DSLAM’s Gigabit Ethernet interface is connected using a protocol converter. This converts the Ethernet data into virtual containers (VC-4) and transfers them across the STM-1 interface directly to the network operator’s add-drop multiplexer (ADM).

One known issue associated with Ethernet over SDH is avoided here: the transportation of signals of variable length like Ethernet frames on fixed-size units like virtual containers (VC) in SDH is anything but efficient. And the scale of Ethernet traffic (100 Mbps, 1,000 Mbps) does not fit the hierarchy levels in SDH (around 150 Mbps with STM-1 and 450 Mbps with STM-3). Thus, the transmission of traffic on a fully loaded Fast Ethernet interface over an STM-1 line would waste one-third of the available bandwidth.

Here, however, the traffic from an only partially loaded Gigabit Ethernet interface is transported on the STM-1 line, and the size of converter can be chosen to best suit the actual data throughput. In the application example in the sidebar, an intelligent RIC-155GE Ethernet-over-SDH converter carries Gigabit Ethernet traffic with a maximum rate of around 150 Mbps from the IP DSLAMs across an STM-1 line. This prevents bandwidth loss and eliminates the need for complex and costly solutions like virtual concatenation technology. If additional bandwidth is needed, equipment with an STM-4 interface can be deployed.

The name of RAD Data Communications’ product reveals plenty about the device: it is a rate and interface converter with STM-1 (155 Mbps) and Gigabit Ethernet interfaces. The converter has a number of additional functions, which make it especially well suited for use in Triple Play-enabled networks. It supports a large number of MAC addresses and, therefore, a large number of DSL users. In addition, when traffic is high the converter can buffer data when it peaks. Using VLAN priority tagging, the device can also distinguish between applications – an important capability, particularly for the efficient transmission of TV channels (multicasts) on a network.

At a glance

The requisite IP connectivity is not always on hand to transport Ethernet data streams. One way around this problem is to convert IP traffic into SDH containers and to carry it on an SDH transport network. Bandwidth can be adjusted as necessary, depending on the data rate.

Closing gaps in IP networks affordablyTelefónica Germany is expanding its broadband infrastructure for business customers and Internet Service Providers (ISPs). Technology from RAD Data Communications is being deployed to connect the Ethernet infrastructure transparently using conventional leased lines: the RIC-155GE Ethernet-over-SDH converter enables Gigabit Ethernet interfaces to connect up over SDH lines.

Telefónica Germany has a comprehensive, nationwide MPLS-based backbone. The company is currently building an unbundled Local Loop (LLP) platform. By the middle of this year, up to 40 percent of all households in Germany will be connected. With this highly advanced, Ethernet-based DSL infrastructure, service providers will be able to offer broadband services like ADSL2+ and, later, multimedia services like Triple Play.

Missing linkAround 1,600 IP-DSLAMs will be connected over Gigabit Ethernet lines to form ring-structured Metro networks, mostly on dark fiber. However, fiber is not available at every DSLAM location. Telefónica soon found a solution to close the gap: It leases SDH lines from other network operators to carry its Ethernet traffic. To be equipped to meet tomorrow’s demands, the company was looking for an affordable product that would transparently convert the data traffic and support multicasts.

“When new services are rolled out, the issue is not rapid time to market. If a company does not have its own Ethernet or IP lines for DSLAM backhaul and if no dark fiber is available, SDH networks, which are still widely available, can provide an answer,” explains Ramon Horkany, Product Line Manager at RAD Data Communications. “Leasing lines is often more economical, particularly as the current price trend is very favorable.” Says Ingo Stampe, Director Networks with Telefónica in Germany, “Of all the solutions we looked at, RAD’s RIC-155GE converter proved to be the most affordable option for carrying Gigabit Ethernet interfaces over SDH lines.”

To download the PDF please visit RAD data communication site.

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Advantages of Magic Jack

Magic Jack is a USB supported peripheral (a peripheral is a device added or attached to a host computer which expands the host’s capabilities, in this case providing VoIP capability) which, combined with standard telephone equipment, allows users to speak to other users in the United States and Canada using VoIP (Voice over Internet Protocol). The telephone service required to run Magic Jack is provided by the related YMAX Corporation. The complete device is essentially 2 different components put together to form the finished product. One side is a USB device which connects to the host computer, and comes with the software necessary to activate Voice over Internet Protocol, while the other end contains an SLC (subscriber line interface). An SLC is basically a modular electronic circuit which interfaces telecommunication lines provided by the supplier to the rest of the telecommunication access network.

The advantages of Magic Jack are twofold. One advantage is that it is similar to any other Voice over Internet Protocol service. Just like its competition, Magic Jack comes at a cost far less than conventional telephone service providers and their large monthly bills. You can reduce your telephone bills to only about 15 pounds a year. Considering the amount of money we spend on both a landline and a cell phone every year, devices like Magic Jack are coming into the forefront because of a combination of not only low cost, but also high sound quality matching that of conventional phones.

The other advantage is its ease of use. With technology advancing at the rate that it is, it is becoming harder and harder to keep up for the layman. Understanding these technologies may be hard, but operating them is also quite a task. Magic Jack though, is a very simple device that anyone can operate successfully. A simple USB drive that you can plug into your computer with a port to connect your normal telephone to is all that you have to do. This device configures itself automatically to your broadband settings, and within no time, enables you to make calls over the internet.

The advantages don’t end there. Another great feature of this device is that you don’t need to download any software onto your computer. All the software required to run this device is in the USB device itself and doesn’t need to be installed. This translates to added mobility. You can plug your Magic Jack into any host which has a broadband connection. Computers at internet cafes, hotel rooms etc. with this device allow you to call any phone you want at no cost.

The advantages of this device have put this product into a league of its own when it comes to conversing using Voice over Internet Protocol. As hardware, it is small, easy to carry and convenient to use, and on the software front, this product is also absurdly simple to configure and use. A great way to save money on those long distance calls, at only $ 19.95 a year.

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Nokia E5 MENU and Features [HD]

На русском языке!!! Software platform & user interface Symbian OS version v. 9.3 S60 3rd Edition, Feature Pack 2 Java™: MIDP2.0 C++ & Java SDKs Speech codecs: AMR, NB-AMR, HR/FR/EFR Over the air SW update (FOTA) Ovi Suite (PC/Mac) Applications Email (SMTP, IMAP4, POP3), SMS, MMS (OMA 1.3), audio messaging (AMS), Nokia Messaging: Email and Chat Communities People-Centric homescreen Office Converter Dictionary Quick Office Suite Adobe PDF Reader (try & buy) ZIP Intranet Notes Active Notes Calculator Device Encryption OVI Contacts 1.1, Lotus Notes Traveler, World Traveler, Vlingo, VPN client, Device management (TARM support), VoIP Personal Information Management (PIM) Detailed contact information Calendar To-do list Notes & Active Notes Recorder Calculator Clock Converter Communications Back to top Email and messaging Nokia Messaging email Mail for Exchange Nokia Messaging IM Easy Dialling Calendar Facebook client * Some services may be available only by downloading or upgrading. Only devices that offer compatible multimedia message or email features can receive and display multimedia messages. Content appearance may vary. Some images and ringtones can not be forwarded. Call management Easy dialling Contacts with Facebook status and support for multiple phone and e-mail details per entry Audio messaging Logs of dialled, received and missed calls Speed dialling and enhanced voice dialling Talking ringtone Integrated hands-free speaker

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Know How to Get Started With a Skype Headset

Skype headset in combination with the Skype is a fantastic programme. With the help of this program you can talk to other Skype users through your computer. To be able to use Skype, all that you need to do is have a home computer and a sound card with running windows. Apart from this you will also need Skype earbuds that come with inbuilt speakers or a microphone or a headset.

However, for best results, the experts advise to use the Skype headphones if you have a Skype program. Though most of the computers today come with built in speakers and microphones still these are perfectly fine to be used for the normal voice chat programs. But the Skype program highly recommends the use of Skype headset for a better and more effective result.

The Skype headset is comparatively and unexpectedly inexpensive. These can be brought from the online Skype store or some departmental stores. These are also easily available in all electronic stores. Now, you need to exactly know how you can effectively use a headset for Skype. Given below are a few tips:

To begin with, purchase a headphone. This headphone should have a USB connector or two separate connectors.
Next, connect the headphone to your computer. While connecting the headphone, ensure that the right connector is connected to the right plug. To make things easy for the users, these plugs are usually colour coded with red and green.
Now, turn on the Skype program. After this log on to it with your user name and password.
After you log in, click on the “Skype”. Next you need to click on “preferences” and then the “audio”. Now, use the headset that has been connected with the computer. Now, you can use the Skype with your headset.
In case you face any problem you can use the Skype trouble-shooter to sort it out.

When looking for Skype headset, you may come across many variants of it. There are basically four different types of headphones for Skype which you can choose from. In fact there has been an explosion of the different models of these phones available in the market. These are:

Headsets
Speaker phones
Phones which can be used without a computer
There are also phones which can be used only when your computer is on.

If you consider the cost factor, then the Skype phones are available for as less as $10 and can also run up to hundreds of dollars. Thus, when selecting a headphone for Skype, buy one that suits your need rather than concentrating on buying something based on your budget.

Thus, with the advancement in technology, there are many software and programs which have been developed to improve the means of communication. There are many gadgets and programs which you can use today in order make long distance communication at a minimal cost. And, Skype has successfully brought in this revolution.

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SIP Trunking & Business Phone Systems

SIP trunking is still a relatively new technology, closely related to the modern business phone system and it is potentially a technology that can bring business benefits to many.

What is a SIP trunk?

In its simplest form, SIP trunks can be viewed as no different to an ordinary digital telephone line that is connected to a business phone system. In the way it is used, the purpose of what it is for, and if you went into an office picked up the phone and made a call you would not know if you were calling out on a standard digital telephone line or a SIP trunk service.

How are SIP Trunks delivered?

The most common methods are-

(i) As a data service over an existing xDSL or similar

(ii) Over a dedicated voice xDSL service or similar

Method (i) often routes calls over the public Internet, while method (ii) is a circuit supplied and normally guaranteed to provide a level of Quality of Service (QoS) as it links into the network backbone, therefore by-passing public Internet traffic.

Once the data circuit has been installed a connection then needs to be made to the actual business phone system, much the same as a conventional phone line needs too. If you would like to connect the SIP trunk to an older phone system (generally manufactured pre-2006) then it is likely a SIP converter unit would be required. The SIP converter unit connects to both the existing line ports on the phone system and to the xDSL SIP trunk circuit.

Many business phone systems manufactured post-2006 may require a license key, software upgrade or an additional piece of hardware to allow the trunks to be connected directly.

Why Use SIP Trunking?

SIP Trunking brings with it many new business benefits, the most important of which can be listed as follows-

o Lower line rental charges

o Lower call charges

o Free on network call charges (useful for multi-site businesses)

o Ability to retain telephone numbers no matter where the company moves

o Ability to have different National & International area codes numbers

o Instant call re-routing in the event of a disaster situation

Summary

SIP trunking is now widely available, a proven technology and with SIP Providers working closely with business phone system manufactures it should help to install confidence in the marketplace for rapid take up.

However this is just part of the story, to ensure a SIP solution works as it should, correct calculations need to be undertaken in terms of the bandwidth that is made available to allow the required number of simultaneous calls to be made or received. The last, but my no means least, part of the equation that needs to be right is the supply, installation and configuration of the necessary SIP hardware and SIP software may be required.

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