IP Library Granted Patent US 11,243,349
Granted Patent B2
US 11,243,349 · App. 16/705,724 · Granted Feb 8, 2022

Wavelength conversion device and excitation light switching method

Inventors: Tomohiro Yamauchi (Kawasaki, JP); Takeshi Hoshida (Kawasaki, JP); Shingo Hara (Kawasaki, JP); Hiroki Satou (Kawasaki, JP)
Assignee: FUJITSU LIMITED
G02B6/12033G02B2006/12109G02B2006/12145G02B2006/12164
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,243,349
App. No.
16/705,724
Granted
Feb 8, 2022
Kind
B2
Abstract

A device includes a first excitation light source that emits first excitation light, a second excitation light source that emits second excitation light, a wavelength converter that converts signal light of a first wavelength into signal light of a second wavelength according to the first excitation light, and a measurer that measures a frequency difference between the first excitation light and the second excitation light, wherein when an abnormality of the first excitation light is detected, the second excitation light source is adjusted so that a frequency of the second excitation light is aligned with a frequency of the first excitation light before the abnormality detection, based on the frequency difference before the abnormality detection, and the wavelength converter converts the signal light of the first wavelength into the signal light of the second wavelength according to the second excitation light, after adjusting the frequency of the second excitation light.

Claims (36)

1. A wavelength conversion device comprising:

a first excitation light source that emits first excitation light;

a second excitation light source that emits second excitation light;

a wavelength converter that converts signal light of a first wavelength into signal light of a second wavelength according to the first excitation light; and

a measurer that measures a frequency difference between the first excitation light and the second excitation light,

wherein the measurer specifies an adjustment amount according to the frequency difference,

when an abnormality of the first excitation light is detected, the second excitation light source is adjusted so that a frequency of the second excitation light is aligned with a frequency of the first excitation light before the abnormality detection, based on the adjustment amount before the abnormality detection, and

the wavelength converter converts the signal light of the first wavelength into the signal light of the second wavelength according to the second excitation light, after adjusting the frequency of the second excitation light.

2. The wavelength conversion device according to claim 1 , further comprising:

a third excitation light source that emits third excitation light,

wherein the wavelength converter converts the signal light of the first wavelength into the signal light of the second wavelength according to the first excitation light and the third excitation light,

the measurer measures a frequency difference between the second excitation light and the third excitation light,

when an abnormality of the third excitation light is detected, the second excitation light source is adjusted so that the frequency of the second excitation light is aligned with a frequency of the third excitation light before the abnormality detection, based on the frequency difference before the abnormality detection, and

the wavelength converter converts the signal light of the first wavelength into the signal light of the second wavelength according to the first excitation light and the second excitation light, after adjusting the frequency of the second excitation light.

3. The wavelength conversion device according to claim 2 , further comprising:

a first switch;

a second switch that switches between the first excitation light source and the first switch with respect to the wavelength converter; and

a third switch that switches between the third excitation light source and the first switch with respect to the wavelength converter,

wherein the first switch switches between the second switch and the third switch with respect to the second excitation light source.

4. The wavelength conversion device according to claim 1 , further comprising:

a filter that sets a normal frequency of the first excitation light to a transmission wavelength; and

an abnormality detection circuit that compares an output level of the first excitation light before passing through the filter with an output level of the first excitation light after passing through the filter, and detects an abnormality of the output level of the first excitation light or an abnormality of a frequency deviation based on a comparison result.

5. The wavelength conversion device according to claim 1 , further comprising:

a branching device that optically branches the signal light after wavelength conversion by the wavelength converter;

a filter that sets a normal frequency of the first excitation light to a transmission wavelength; and

an abnormality detection circuit that compares an output level of the first excitation light before passing through the filter with an output level of the first excitation light after passing through the filter, and detects an abnormality of the output level of the first excitation light or an abnormality of a frequency deviation based on a comparison result.

6. The wavelength conversion device according to claim 1 , further comprising:

an adjuster configured to adjust a frequency of the second excitation light which is output form the second excitation light source.

7. An excitation light switching method executed by a wavelength conversion device, the method comprising:

emitting first excitation light;

emitting second excitation light;

converting signal light of a first wavelength into signal light of a second wavelength according to the first excitation light;

measuring a frequency difference between the first excitation light and the second excitation light;

specifying an adjustment amount according to the frequency difference;

when an abnormality of the first excitation light is detected, performing adjustment so that a frequency of the second excitation light is aligned with a frequency of the first excitation light before the abnormality detection, based on the adjustment amount before the abnormality detection; and

converting the signal light of the first wavelength into the signal light of the second wavelength, according to the second excitation light, after adjusting the frequency of the second excitation light.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 072436/0149 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2019
From: YAMAUCHI, TOMOHIRO; HOSHIDA, TAKESHI; HARA, SHINGO; SATOU, HIROKI
To: FUJITSU LIMITED
Reel/Frame 051203/0835 →
Priority Claims (1)
JP JP2018-239161 · Dec 21, 2018 · national
Continuity (1)
Related Publication 20200200973A1 · Jun 25, 2020