IP Library Granted Patent US 12706430
Granted Patent B2
US 12706430 · App. 18/164,941 · Granted Aug 11, 2026

Fiber laser apparatus

Inventor: Mitsuaki Masubuchi (Chiba, JP)
Assignee: Fujikura Ltd.
H01S3/06704H01S3/0407H01S3/0675H01S3/094011H01S3/0941
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Quick Facts
Patent No.
US 12706430
App. No.
18/164,941
Granted
Aug 11, 2026
Kind
B2
Abstract

A fiber laser apparatus includes: amplification optical fibers including first and second amplification optical fibers, each of which having different amplification characteristics and including a core to which an active element is doped; one or more cooling plates having a first cooling surface that thermally contacts and cools the first amplification optical fiber and a second cooling surface that thermally contacts and cools the second amplification optical fiber; one or more module boxes including a gain module box that houses the amplification optical fibers and the one or more cooling plates; and an enclosure housing the one or module boxes. The first and second cooling surfaces are disposed at different heights in the gain module box. At least a portion of the first cooling surface overlaps at least a portion of the second cooling surface as viewed along a height direction.

Claims (23)

1 . A fiber laser apparatus, comprising:

amplification optical fibers including a first amplification optical fiber and a second amplification optical fiber, each of the amplification optical fibers having different amplification characteristics and comprising a core to which an active element is doped;

one or more cooling plates having a first cooling surface that thermally contacts and cools the first amplification optical fiber and a second cooling surface that thermally contacts and cools the second amplification optical fiber;

one or more module boxes including a gain module box that houses the amplification optical fibers and the one or more cooling plates; and

an enclosure housing the one or module boxes, wherein

the first cooling surface and the second cooling surface are disposed at different heights in a height direction in the gain module box,

at least a portion of the first cooling surface overlaps at least a portion of the second cooling surface as viewed along the height direction,

a first cooling plate of the one or more cooling plates has the first cooling surface,

a second cooling plate of the one or more cooling plates has the second cooling surface, and

the first cooling plate and the second cooling plate are different in size.

2 . The fiber laser apparatus according to claim 1 , wherein

the first amplification optical fiber is connected upstream of the second amplification optical fiber, and

the first cooling plate is larger than the second cooling plate.

3 . The fiber laser apparatus according to claim 1 , wherein each of the first cooling plate and the second cooling plate includes:

a passage through which a cooling medium passes,

an inlet port that supplies the cooling medium to the passage, and

an outlet port that discharges the cooling medium from the passage.

4 . The fiber laser apparatus according to claim 3 , further comprising a connection pipe connecting the outlet port of one of the first cooling plate and the second cooling plate to the inlet port of the other of the first cooling plate and the second cooling plate.

5 . The fiber laser apparatus according to claim 1 , wherein the amplification optical fibers are connected in series to each other.

6 . The fiber laser apparatus according to claim 1 , wherein the first cooling surface does not face the second cooling surface.

7 . The fiber laser apparatus according to claim 1 , further comprising:

an intermediate optical fiber connecting the first amplification optical fiber to the second amplification optical fiber; and

one or both of the first cooling plate and the second cooling plate have a fiber hole or a notch in which the intermediate optical fiber is disposed.