IP Library › Granted Patent US 10,234,704
Granted Patent B2
US 10,234,704 · App. 15/695,652 · Granted Mar 19, 2019

Optical module that includes optical modulator and bias control method for optical modulator

Inventor: Iori Shirakawa (Kawasaki, JP)
Assignee: FUJITSU OPTICAL COMPONENTS LIMITED
G02F1/0123G02F1/2257H04B10/50575G02F2001/212G02F2201/58
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Quick Facts
Patent No.
US 10,234,704
App. No.
15/695,652
Granted
Mar 19, 2019
Kind
B2
Abstract

An optical module includes: an optical modulator, a superimposing unit, an offset adding unit, a detector, and a bias controller. The optical modulator includes a first modulator to generate a first optical signal, a second modulator to generate a second optical signal and a phase shifter to provide a specified phase difference between the first optical signal and the second optical signal so as to generate a modulated optical signal. The superimposing unit superimposes a low frequency signal on a DC bias of the first modulator. The offset adding unit adds an offset to a DC bias of the second modulator. The detector detects a low frequency component from output light of the optical modulator. The bias controller controls a DC bias that is applied to the phase shifter based on the low frequency component detected by the detector.

Claims (22)

1. An optical module comprising:

a light source configured to generate continuous wave light;

an optical modulator that includes a first modulator that modulates the continuous wave light so as to generate a first optical signal, a second modulator that modulates the continuous wave light so as to generate a second optical signal, and a phase shifter that provides a specified phase difference between the first optical signal and the second optical signal, the optical modulator being configured to combine the first and second optical signals between which the phase difference is provided so as to generate a modulated optical signal;

a superimposing unit configured to superimpose a low frequency signal on a DC bias of the first modulator;

an offset adding unit configured to add an offset to a DC bias of the second modulator;

a detector configured to detect a low frequency component corresponding to the low frequency signal from output light of the optical modulator; and

a bias controller configured to control a DC bias that is applied to the phase shifter based on the low frequency component detected by the detector, wherein

an operation by the superimposing unit to superimpose the low frequency signal on the DC bias of the first modulator is performed in parallel with an operation by the offset adding unit to add the offset to the DC bias of the second modulator.

2. An optical module comprising:

a light source configured to generate continuous wave light;

an optical modulator that includes a first modulator that modulates the continuous wave light so as to generate a first optical signal, a second modulator that modulates the continuous wave light so as to generate a second optical signal, and a phase shifter that provides a specified phase difference between the first optical signal and the second optical signal, the optical modulator being configured to combine the first and second optical signals between which the phase difference is provided so as to generate a modulated optical signal;

a superimposing unit configured to superimpose a low frequency signal on a DC bias of the first modulator;

an offset adding unit configured to add an offset to a DC bias of the second modulator;

a detector configured to detect a low frequency component corresponding to the low frequency signal from output light of the optical modulator; and

a bias controller configured to control a DC bias applied to the phase shifter according to a difference between a low frequency component detected by the detector when a positive offset is added to the DC bias of the second modulator and a low frequency component detected by the detector when a negative offset is added to the DC bias of the second modulator.

3. The optical module according to claim 2 , wherein the bias controller controls the DC bias applied to the phase shifter so as to reduce the difference.

4. The optical module according to claim 2 , wherein an absolute value of the positive offset is equal to an absolute value of the negative offset.

5. A bias control method for controlling a DC bias of a phase shifter in an optical modulator that includes a first modulator that modulates continuous wave light so as to generate a first optical signal, a second modulator that modulates the continuous wave light so as to generate a second optical signal, and the phase shifter, the phase shifter providing a specified phase difference between the first optical signal and the second optical signal, the optical modulator being configured to combine the first and second optical signals between which the phase difference is provided so as to generate a modulated optical signal, the bias control method comprising:

superimposing a low frequency signal on a DC bias of the first modulator;

obtaining a first measured value by detecting a low frequency component corresponding to the low frequency signal from output light of the optical modulator while adding a positive offset to a DC bias of the second modulator;

obtaining a second measured value by detecting a low frequency component corresponding to the low frequency signal from the output light of the optical modulator while adding a negative offset to the DC bias of the second modulator; and

controlling a DC bias that is applied to the phase shifter based on a difference between the first measured value and the second measured value.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 043564 FRAME: 0763. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Nov 16, 2017
From: SHIRAKAWA, IORI
To: FUJITSU OPTICAL COMPONENTS LIMITED
Reel/Frame 044935/0091 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2017
From: SHIRAKAWA, IORI
To: FUJITSU LIMITED
Reel/Frame 043564/0763 →
Priority Claims (1)
JP 2016-191227 · Sep 29, 2016 · national
Continuity (1)
Related Publication 20180088359A1 · Mar 29, 2018