T3-DS3

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T3 and DS3 are terms which in the field of telecommunication are often used interchangeably to describe a 45 mbps (megabits per second) circuit. A T3-DS3 is the equivalent of 28 T1s. People who are more technically inclined will often refer to DS3 when they are talking about the configuration of the circuit, and T3 if they are referring to the physical facilities which carry the circuit. Most people, however, use both terms interchangeably. On this website, these two terms will be used interchangeably. (For more about T3-DS3 please click here)

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Coverage Area

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

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T3-DS3 Applications

T3 is a relatively large data bandwidth pipe which is commonly used for internet connectivity, voice lines, direct point-to-point connection between two business locations, Multiprotocol Label Switching (MPLS) networking between multiple locations of a business and integrated circuits which combine any combinations of these applications.

T3-DS3 Internet

A T3 data circuit can support up to 600 internet users, depending on application and simultaneous usage. DS3 is also great for facilitating servers which will allow hundreds of simultaneous users to access information from servers.

T3-DS3 Voice

A DS3 voice circuit is excellent for large call centers, or for facilitating the telephone needs of hundreds of occupants of an office complex. T3 voice can be provided either as local voice, for local and long distance calling, or as long distance voice, which provides wholesale per minute long distance prices but does not facilitate local calling. Both long distance and local voice can be integrated into one DS3 voice circuit.

T3-DS3 Private Point-to-Point

DS3 point-to-point circuits are extremely popular for connected two or more business locations. To clarify, with point-to-point a separate circuit is needed for each two locations networked. These circuits can facilitate location to location transfer of large data files, multiple file transfers between hundreds of employees, location-to-location voice traffic and video conferencing.

T3-DS3 MPLS Networking

DS3 MPLS networks are better suited for networking more than two locations than point-to-point circuits. This is because MPLS facilitates any-to-any location networking rather than requiring a separate circuit for each two locations required by point-to-point networks. Also, with Class of Service (CoS) MPLS can prioritize applications. With CoS, applications such as routine data transfer, voice, and video can be efficiently implemented simultaneously over one bandwidth pipe, without interfering with each other. MPLS is a major advancement when compared networks based on point-to-point or frame relay.

T3-DS3 Integrated

One T3-DS3 integrated circuit can accommodate all applications mentioned above on one circuit. For example, with an integrated DS3 circuit, local voice, long distance voice, video, internet and networking can all be facilitated on one circuit.

T3-DS3 and the Need for Build-Out

DS3 requires fiber or other forms of special wiring to reach each business location. This is very important because new customers, or customers considering upgrading from t1, bonded t1, or ethernet over copper, must pay for this wiring (build-out cost) before their building can receive t3 or OC circuits. Buildings which are connected to fiber, and therefore able to receive DS3 are referred to as being “lit”. It is not uncommon for customers to fail to plan for this unexpected upfront cost when planning the installation of DS3. Build-out often costs tens of thousands of dollars.

Alternatives to T3-DS3

There are many alternatives for customers who need less or more bandwidth than can be provided by DS3. If a customer needs between 15 mbps and 35 mbps, then fractional T3 is an excellent choice. If 12 mbps or less are needed, then ethernet or bonded t1 are excellent alternatives. It is important to consider these alternatives if less that 45 mbps are needed because bonded t1, and ethernet are delivered over copper phone lines and therefore do not require expensive build-out costs. Often bonded t1 and ethernet are installed for free. If more than 45 mbps is needed, then OC 3 (155 mbps) is a good alternative. Both fractional DS3 and OC circuits require build-out for buildings which are not lit.

Ethernet over T3-DS3

Larger ethernet circuits can be delivered over DS3. There are at least three advantages of ethernet over DS3. First, ethernet over DS3 can deliver higher bandwidth than a regular DS3 circuit. Ethernet over DS3 can provide up to 88 mbps. Second, ethernet over DS3 can be less expensive per mbps then DS3. An 88 mbps ethernet over DS3 circuit can often be offered for less than $6000 per circuit. Depending on location, $6000 is the average cost for a 45 mbps DS3 circuit. Third, ethernet over DS3 requires much simpler and less expensive hardware for handoff at the customer premise than does DS3.

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 Is MPLS Causing Frame Relay to be Obsolete?

Written by: Dennis Green - Nov 20, 2008


MPLS (multiprotocol label switching), is only one of many factors that are resulting in a diminishment of demand for frame relay. Other factors include the lower cost of clear channel T1, increased demand for; VOIP (Voice over Internet Protocol), video conferencing, class of service (CoS), and a tendency toward converged services on one large pipe. At one time, and for many years, frame relay was considered the state-of-the-art broadband technology. This time has now passed. Many substantial businesses continue to rely on frame for their bandwidth and networking needs, but in most cases, this has more to do with procrastination and a lack of understanding about just how easy, and cost effective it would be to switch to a fully managed, any-to-any location network based on MPLS technology. In the not to distant future, virtually all companies will switch from frame, to MPLS based networks. To make this change now is virtually free. Installation is commonly free, the routers, and configuration of routers is often free, the cost of MPLS bandwidth is usually far lower than bandwidth provided with frame relay, and the speed of bandwidth provided with MPLS is often far higher than the much smaller circuits utilized with frame for the same cost. MPLS networks are often completely managed by telecom providers, thus lowering customer costs for networking staff and reducing the workload of often overworked IT personnel. MPLS has far more abilities than frame. For example, with MPLS, many applications can be provided over one circuit simultaneously. This eliminates the need for individual circuits for each application. With MPLS, the need for a multitude of permanent virtual circuits (PVCs) needed to connect various network locations is eliminated. MPLS based networks provide any-to-any network location connectivity without the need for a myriad of PVCs required with frame. MPLS easily facilitates routine data transfer, VOIP, and video conferencing simultaneously with application prioritization. This prioritization, accomplished with CoS, prevents routine data transfer from interfering with higher priority applications such as VoIP and video conferencing utilizing the same circuit.