Double-ring feedback gain flattening erbium-doped optical fiber amplifier
An erbium-doped fiber and feedback gain technology, which is applied in the field of erbium-doped fiber amplifiers, can solve problems such as damage to equipment and error signals, and achieve the effects of cost saving, fast response, and flat gain
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Embodiment 1
[0022] Embodiment 1 Overall structure of the present invention
[0023] Such as figure 1 As shown, the structure of the present invention has a signal source 1, a first optical isolator 2, a first coupler 3, a first wavelength division multiplexer 4, a first erbium-doped optical fiber 5, a second wavelength division multiplexer 6, The basic amplifying optical path that the second optical isolator 7, gain flattening filter 8, the second coupler 9, the second erbium-doped optical fiber 10, the third optical isolator 11, the first optical splitter 12 and the pumping module 22 constitute; The basic amplifying optical path and the three-port first circulator 13, the fiber optic loop mirror 14, the three-port second circulator 15, the grating 16, the fourth optical isolator 17, and the optical attenuator 18 together form a gain flat feedback loop; the basic amplifying optical path It forms a power control feedback loop with the photoelectric converter 19, the PID control circuit 20...
Embodiment 2
[0025] Embodiment 2 Basic amplifying optical path of the present invention
[0026] The basic amplifying optical path of the present invention is similar to the traditional erbium-doped fiber amplifier, and the structure is that the signal source 1 is connected with the input end of the first optical isolator 2, and the output end of the first optical isolator 2 is connected with the first coupler 3 of the first optical isolator. The two input terminals are connected, the output terminal of the first coupler 3 is connected with the 1550nm signal input terminal of the first wavelength division multiplexer 4, and the optical output terminal of the pump module 22 is connected with the 980nm pumping terminal of the first wavelength division multiplexer 4. The input end is connected, and the output end of the first wavelength division multiplexer 4 is connected with the input end of the second wavelength division multiplexer 6 through the first erbium-doped optical fiber 5, and the ...
Embodiment 3
[0029] Embodiment 3 Gain flat feedback loop of the present invention
[0030] exist figure 1 Among them, the basic amplifying optical path and the three-port first circulator 13, the fiber optic loop mirror 14, the three-port second circulator 15, the grating 16, the fourth optical isolator 17 and the optical attenuator 18 together form a gain flattening feedback loop.
[0031] The signal light amplified by the basic amplification optical path enters the ① end of the three-port first circulator 13 through the 99% output end of the first optical splitter 12, enters the fiber optic loop mirror 14 through the ② end of the three-port first circulator 13, The signal light of the fiber optic loop mirror 14 has two parts: reflected light and transmitted light: the transmitted light part enters the three-port second circulator 15 from the ① end, and the ② port of the three-port second circulator 15 is connected to the fiber grating 16, and the fiber grating 16 The reflected light ent...
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