Wavelength Division Multiplexing (WDM) is a fiber-optic technology that allows multiple data streams to be transmitted simultaneously over a single optical fiber by using different wavelengths of ligh...
WDM is a technique in fiber-optic communications that combines multiple optical signals, each at a distinct wavelength, into a single fiber, significantly increasing the fiber's data-carrying capacity while enabling bidirectional communication over the same strand of fiber . Each wavelength, or "channel," carries an independent data stream, allowing aggregate capacities to reach terabits per second when multiple channels are used . This is analogous to converting a single-lane road into a multi-lane highway, where each lane represents a separate wavelength .
At the transmitting end, a multiplexer (MUX) combines the different wavelength signals into a single optical beam. At the receiving end, a demultiplexer (DEMUX) separates the combined signal back into individual wavelengths for processing . The wavelengths are carefully spaced to avoid interference, typically in the C-band (1530–1565 nm) or L-band (1565–1625 nm), where fiber attenuation is minimal .
WDM is widely used in telecommunications, data centers, and cloud networks to maximize the utilization of existing fiber infrastructure . It supports high-speed internet, 5G backhaul, and large-scale data transmission without the need to lay additional fibers. CWDM is preferred for cost-sensitive, shorter links, while DWDM is used for high-density, long-distance networks.
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