IP Library Granted Patent US 12689172
Granted Patent B2
US 12689172 · App. 18/268,081 · Granted Jul 21, 2026

Optical amplifier

Inventor: Takefumi Oguma (Tokyo, JP)
Assignee: NEC CORPORATION
H01S3/06754G02F1/31H01S3/0014H01S3/094011H01S3/0941H01S3/1301H04B10/25
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Quick Facts
Patent No.
US 12689172
App. No.
18/268,081
Granted
Jul 21, 2026
Kind
B2
Abstract

An optical amplifier according to the present disclosure includes a first excitation light coupler, a first optical amplification medium, a first optical switch configured to output the optical communication signal output from the first optical amplification medium to either a first branch path HGP or a second branch path, and a second optical switch configured to transmit the optical communication signal transmitted through the branch path to downstream, and the first branch HGP path includes a second optical amplification medium, a second excitation light coupler configured to synthesize the optical communication signal and the excitation light directed towards the second optical amplification medium, and a first gain equalizer, and the second branch path includes a third excitation coupler configured to synthesize the optical communication signal and the excitation light directed towards the first optical switch, and a second gain equalizer.

Claims (24)

1 . An optical amplifier comprising:

an input terminal configured to input an optical communication signal;

a first excitation light coupler configured to synthesize the optical communication signal and an excitation light;

a first optical amplification medium provided downstream of the first excitation light coupler and configured to amplify the optical communication signal by the excitation light;

a first optical switch provided downstream of the first optical amplification medium and configured to output the optical communication signal output from the first optical amplification medium to either a first branch path or a second branch path;

a second optical switch configured to select either the first branch path or the second branch path and transmit the optical communication signal transmitted through the selected branch path to downstream; and

an output terminal provided downstream of the second optical switch and configured to output the optical communication signal,

the first branch path including:

a second optical amplification medium configured to amplify the optical communication signal by the excitation light;

a second excitation light coupler provided downstream of the second optical amplification medium and configured to synthesize the optical communication signal and the excitation light directed towards the second optical amplification medium; and

a first gain equalizer provided downstream of the second excitation light coupler and configured to correct gain wavelength characteristics, the second branch path including:

a third excitation light coupler configured to synthesize the optical communication signal and the excitation light directed towards the first optical switch; and

a second gain equalizer provided downstream of the third excitation light coupler and configured to correct gain wavelength characteristics.

2 . The optical amplifier according to claim 1 further comprising:

an excitation laser diode configured to emit the excitation light;

a third optical switch configured to guide the excitation light to either the second excitation light coupler or the third excitation light coupler, and

a two-branched coupler configured to branch the excitation light to both the first excitation light coupler and the third optical switch.

3 . The optical amplifier according to claim 1 , wherein

the first gain equalizer corrects the gain wavelength characteristics of a total gain of the first optical amplification medium and the second optical amplification medium, and

the second gain equalizer corrects the gain wavelength characteristics of the gain of the first optical amplification medium.

4 . The optical amplifier according to claim 1 , further comprising:

between the input terminal and the first excitation light coupler, a first monitor unit including a first tap configured to branch the optical communication signal input from the input terminal and a first photodiode configured to detect an optical intensity of the optical communication signal branched by the first tap; and

between the second optical switch and the output terminal, a second monitor unit including a second tap configured to branch the optical communication signal output from the output terminal and a second photodiode configured to detect an optical intensity of the optical communication signal branched by the second tap.

5 . The optical amplifier according to claim 1 , wherein the first optical amplification medium and the second optical amplification medium are erbium-doped fibers.