Tuesday, March 1, 2016

Basics for Network Professional

OverView of Basics for Network Profe

Various diverse WAN advances have been created in the course of the last half-century. Some have vanished for better or more favored strategies; others have stayed useful even following quite a while of utilization. This article is the first of three on WAN innovations being used on today's systems that ought to be well known to network engineers. For each of these advancements, at first you truly need to know sufficiently only to pass your affirmation exams. Be that as it may, since strategies differ starting with one association then onto the next, you ought to add to a decent broad information of these innovations, progressing more profound as time and need permit.

In this article we'll focus on four main technologies:

Fiber technologies, including Synchronous Optical Network (SONET), Dense Wavelength Division Multiplexing (DWDM), and Coarse Wavelength Division Multiplexing (CWDM)
Frame Relay (FR)
Asynchronous Transfer Mode (ATM)
Multiprotocol Label Switching (MPLS)



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Common Fiber WAN Technologies
Fiber-based WAN technologies are very common. We'll examine three: SONET, CWDM, and DWDM.

SONET
SONET has been around for over 20 years. It was designed to replace the older T-carrier Time-Division Multiplexing (TDM) networking technologies (T1, T3, and so on). SONET was laid out similarly to those older standards, with multiple tiers of service in synchronous transport signal (STS) frames, which have a base signal rate of 51.84 Mbps. Each of these frames can be carried in an Optical Carrier 1 (OC-1) signal. However, SONET is implemented using higher OC levels, including the following:

OC-3 (155.52 Mbps)
OC-12 (622.08 Mbps)
OC-48 (2,488.32 Mbps)
OC-192 (9,953.28 Mbps)
OC-768 (38,813.12 Mbps)

Dense Wavelength Division Multiplexing (DWDM)
DWDM was actualized because of the exponential development in movement request on Internet administration supplier systems. SONET systems could offer rapid connections by utilizing one fiber pair for each circuit. DWDM gear can distribute particular wavelengths of a fiber for a particular circuit, permitting various circuits to be multiplexed over the same fiber pack. As of now accessible gear can give up to 25.6 Tbps of limit for each fiber.

Course Wavelength Division Multiplexing (CWDM)
CWDM gadgets came after DWDM gadgets and were intended to be less expensive over shorter separations. By definition, a CWDM gadget utilizes less than eight wavelengths for each fiber, though DWDM utilizes eight or more. These gadgets utilize wide recurrence ranges contrasted with their DWDM cousins, and are more tolerant of wavelength float.

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