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More info on : T1


What Services Does the Telecom Broker Network Provide?

T-1 Internet Lines:
An Internet T1 (or T-1 line) is a digital, dedicated local access connection supporting data rates of 1.544 Megabits Per Second (Mbps) that can be channelized into 24 individual channels that each provide 64 Kilobits Per Second (Kbps). Each 64 Kbps channel can connect to the Internet individually or the Internet T1 can be configured to aggregate all of the 24 channels into one large 1.544 Mbps concatenated channel.





DIRECTV HD Entertainment:
DIRECTV satellite TV service has been rated higher than Comcast, Time Warner Cable, Adelphia, Cox, Charter and other cable companies in customer service for the last seven years according to the 2007 American Customer Satisfaction Index (University of Michigan Business School).

If you move, you can keep your DIRECTV equipment and service by calling us at 1-866-WAY-U-MOVE (1-866-929-8668). This is a free program available to our customers and you can call before you actually move to take advantage of DIRECTV MOVERS CONNECTION. Simply leave the dish/es behind in your old place and take your DIRECTV equipment to your new place of residence. For Alaska or Hawaii, new equipment might be needed. And unless you are moving to Latin America, for anyone moving out of the United States, it is legally prohibited to offer services to you. If you are moving to Latin America, please review our offerings for that market. In new residence, sports blackouts and local channels may be affected.

Join the Millions of people who are switching to the #1 satellite TV service, DIRECTV - the largest satellite TV provider in the United States!

Unlike Dish Network, DIRECTV offers all local stations that come in digital quality with top of the line sound and picture quality. The majority of Americans love watching the shows aired on their local networks, and DIRECTV is the number one local network provider, broadcasting local channels to over 94% of households in the United States, most of which are aired in High Definition (HD). DIRECTV also provides local channels to cities that are out of Dish Network’s range such as Baton Rouge, LA; Lafayette, LA; Corpus Christi, TX; Wilmington, NC; and Springfield, MA.









Hosted Voice over IP (VoIP):
Hosted Voice over Internet Protocol (VoIP) is a voice and data technology that supports several telecommunications protocols, such as Session Initiation Protocol (SIP) and Internet Protocol (IP), that that makes it easy for people to use the Internet to make telephone calls while saving money on premise hardware.

Hosted VoIP eliminates the need to purchase or lease expensive PBX equipment to gain advanced calling features such as voicemail, automated attendants, extension dialing, call forwarding, call park, or call transfer. Hosted VoIP also eliminates the need to obtain service from multiple carriers for local and long distance calling, PBX tie-lines, private lines, etc. The service also includes Internet access and Quality of Service (QoS) to guarantee voice quality all on one invoice. Hosted VoIP offers freedom from legacy equipment costs, eliminates reliance on slow-moving traditional phone companies, multiple bills, and offers flexibility to deliver customized user productivity solutions for your company.







ADT Home Security Alarm Systems:
ADT is the leader in affordable high-tech alarm systems in the United States based on state-of-the-art technology and equipment that provide Interactive Monitoring with World Wide Web access, mobile phone access, email alerts and other notifications of intrusions upon the safety of your family.





Telecom Brokerage and Consultant Services:
Network Equipment and Networking Solutions: If you are in the market for a complete network solution, we offer you both LAN and WAN solutions including network hardware such as switches and routers. Use our VARSearch engine to find a networking dealer in your local area who can find you terrific deals on popular network equipment such as Cisco Systems and ADTRAN. Call us at (888) 255-5859.




MPLS
MPLS VPNs use Multiprotocol Label Switching (MPLS) to set up Virtual Private Networks (VPNs) that can isolate data traffic to provide Class of Service (CoS), Quality of Service (QoS), and ease network administration with minimal network overhead. Layer 3 MPLS VPNs (L3VPNs) use BGP, traffic isolation and Virtual Routing / Forwarding (VRF) for network routing and security. MPLS VPNs are more efficient and robust than IPSec VPN, ATM, MPLS L3VPNs.

Layer 2 MPLS VPNs (L2VPNs) are similar to Frame Relay, Asynchronous Transfer Mode, or point-to-point Wide Area Networks (WANs). MPLS VPNs transport layer 2 packets across the network and encapsulate transport protocols such as ATM, Ethernet, and SONET, allowing MPLS networks to seemlessly upgrade and replace legacy layer 2 networks without requiring network reconfiguration or using protocols higher than layer 2. In comparison, layer 3 VPNs must use the layer 3 Internet Protocol (IP).




High Speed Internet Access via Ethernet
High Speed Internet Access via Ethernet local access connects end user Ethernet local area networks (LANs) to the Internet over a metropolitan wide area networks (WANs) at speeds ranging from 1 megabit per second (Mbps) up to 1 gigabit per second (Gbps). Internet access via Ethernet is an "always on", flat-rate service that offers faster, more cost effective Internet access than is available through traditional telecommunication access technologies such as T1 / T3 or E1 / E3 connections.

Internet access via Ethernet is becoming more and more popular to meet the growing demand for dynamic high bandwidth increases. For example, an increase from 10 to 100 Mbps can be accomplished by a High Speed Internet over Ethernet provider by simple changing the settings on already installed Ethernet switches. This scalability is cost effective for customers in that bandwidth can be increased or decreased quickly and easily, on demand, without the necessity of adding or changing datacom equipment as would be required with T1 / T3 or E1 / E3 local access lines.




DSL (Digital Subscriber Line) Service:
Digital Subscriber Line (DSL) is a voice and data access service that supports both voice and data communication across a copper plain old telephone serivce (POTS) line and significantly increases the digital capacity of analog POTS access lines.

POTS local loop speed is increased by up to 50 times when a DSL modem is attached at the customer premise and a Digital Subscriber Line Access Multiplexer (DSLAM) is connected to the local access loop at the local telephone company central office (CO).

DSL service is delverd as Asymmetric DSL (ADSL) which is the most common application for Internet access, where fast downstream is required, but slow upstream is acceptable, and as Symmetric DSL (SDSL) which supports high speed access across the local access loop in both directions.




Wireless Internet Service:
High-speed satellite and microwave Internet connections for business can replace or back up traditional terrestrial landlines such as Internet T1s and Digital Subscriber Line (DSL) service. With wireless IInternet service in place as your primary or backup Internet connection, you can always count on low-latency connection to the Internet that means you will have an "always up", "never down", "zero outage" service that eliminates wasted time and increases productivity.




Telecommunications Information on the Wold Wide Web:
Have you been frustrated trying to find telecommunications information on the Internet? Are descriptions of services unclear and so carrier specific that you do not trust the content? Telecom Links understands that there is a shortage of clearly-written information about the myriad of telecom services available today. Consequently, the Telecom Links mission is to be the most comprehensive source of telecommunications information on the World Wide Web.

If you are looking for high-quality, up-to-date information in a simple, easy-to-use format, click on the banner below and you will be taken to the Telecom Links web site where you are always just a mouse click away from information about the telecommunication services you are looking for.




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 Frame Relay Multisite Survey

Written by: Patrick Oborn - Dec 2, 2008


Frame Relay was developed to solve communication problems that other protocols could not: the increased need for higher speeds, an increased need for large bandwidth efficiency, particularly for clumping ("burst" traffic), an increase in intelligent network devices that lower protocol processing, and the need to connect LANs and WANs. Like X.25, Frame Relay is a packet-switched protocol. But the Frame-Relay process is streamlined. There are significant differences that make Frame Relay a faster, more efficient form of networking. A Frame-Relay network doesn't perform error detection, which results in a considerably smaller amount of overhead and faster processing than X.25. Frame Relay is also protocol independent-it accepts data from many different protocols. This data is encapsulated by the Frame-Relay equipment, not the network.

Today's LANs and computing equipment have the potential to run at much higher speeds and transfer very large quantities of data. With the diversity and complexity of today's networks, management can be a mammoth task if you don't have the proper tools. Each environment is a unique combination of equipment from different vendors. Frame Relay uses a packet-switching technology, similar to X.25, but is more efficient. As a result, it can make your networking quicker, simpler, and less costly.

Frame Relay sends information in packets called frames through a shared Frame-Relay network. Each frame contains all the information necessary to route it to the correct destination. So in effect, each endpoint can communicate with many destinations over one access link to the network. And instead of being allocated a fixed amount of bandwidth, Frame-Relay services offer a CIR (committed information rate) at which data is transmitted. But if traffic and your service agreement allow, data can burst above your committed rate. Since Frame Relay has a low overhead, it's a perfect fit for today's complex networks. You get several clear benefits: First, multiple logical connections can be sent over a single physical connection, reducing your internetworking costs. By reducing the amount of processing required, you get improved performance and response time. And because Frame Relay uses a simple link layer protocol, your equipment usually requires only software changes or simple hardware modifications, so you don't.