Table Tunable Laser Light Source Built-In VOA Optional C/L/CL/O
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Table Tunable Laser Light Source Built-In VOA Optional C/L/CL/O he working principle of tunable lasers is mainly based on three ways to achieve laser wavelength tuning: Cavity tuning: Most tunable lasers use a working substance with wide fluorescent lines. The resonators that make up the laser have very low losses only over a very narrow wavelength range. Therefore, the wavelength of the laser can be changed by changing the wavelength corresponding to the low loss region of the resonator by some elements (such as a grating). Typical representatives of this method include dye lasers, chrysoberyl lasers and so on.
Specification
Benchtop tunable laser sources have a wide range of applications in a number of areas, including but not limited to: DWDM/AWG/PLC and ATM systems: In dense wavelength division multiplexing (DWDM) systems, tunable laser sources are used to test light signals at different wavelengths.
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