IP Library › Granted Patent US 11,947,170
Granted Patent B2
US 11,947,170 · App. 17/312,772 · Granted Apr 2, 2024

Connector system, optical connection method, and optical connection member

Inventors: Hirotaka Asada (Chiba, JP); Kansei Shindo (Chiba, JP); Kunihiko Fujiwara (Chiba, JP)
Assignee: Fujikura Ltd.
G02B6/3885G02B6/04G02B6/32G02B6/3825G02B6/3882G02B6/403
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Quick Facts
Patent No.
US 11,947,170
App. No.
17/312,772
Granted
Apr 2, 2024
Kind
B2
Abstract

A connector system includes: a first ferrule configured to hold end parts of multi-core fibers; a second ferrule configured to hold end parts of single-core fibers; and an optical connection member. The optical connection member is arranged between the first and the second ferrule, and includes an optical system configured to optically connect respective cores included in the multi-core fibers and the single-core fibers. A guide pin is formed on one of the first and the second ferrule, and a guide hole is formed in another of the first and the second ferrule. A through hole is formed in the optical connection member, and the first ferrule, the optical connection member, and the second ferrule can be aligned by fitting the guide pin in the guide hole through the through hole.

Claims (60)

1. A connector system comprising:

a first ferrule that holds end parts of multi-core fibers;

a second ferrule that holds end parts of single-core fibers; and

an optical connection member that:

is disposed between the first ferrule and the second ferrule, and

comprises an optical system that optically connects respective cores of the multi-core fibers and the corresponding single-core fibers, wherein

one of the first ferrule and the second ferrule comprises a guide pin, and the other of the first ferrule and the second ferrule has a guide hole,

the first ferrule, the optical connection member, and the second ferrule are aligned by fitting the guide pin in the guide hole through a through hole of the optical connection member,

the optical connection member further comprises:

a first lens plate disposed on an end face of the first ferrule;

a second lens plate disposed on an end face of the second ferrule; and

a relay plate disposed between the first lens plate and the second lens plate,

the first lens plate comprises first lenses corresponding to the multi-core fibers,

the second lens plate comprises second lenses corresponding to the single-core fibers,

the relay plate comprises:

first optical elements corresponding to the first lenses; and

second optical elements corresponding to the second lenses,

the relay plate propagates an optical signal between the first optical elements and the second optical elements,

the first optical elements face a corresponding first lens such that collimated light propagates between the respective first lenses and the corresponding first optical elements, and

the second optical elements face a corresponding second lens such that collimated light propagates between the respective second lenses and the corresponding second optical elements.

2. The connector system according to claim 1 , wherein

the first lens plate comprises first end optical elements corresponding to the cores of the multi-core fibers, and

the first end optical elements have normal directions different from each other to spread an interval between optical paths formed between the first end optical elements and the first lenses further toward the relay plate.

3. The connector system according to claim 2 , wherein all normal lines of flat surfaces constituting the first end optical elements are inclined with respect to a direction parallel to central axes of the multi-core fibers.

4. The connector system according to claim 1 , wherein the second optical elements corresponding to the multi-core fibers are disposed along a direction perpendicular to a direction in which the multi-core fibers held by the first ferrule are aligned.

5. The connector system according to claim 1 , wherein the collimated light propagating between the second lens and the second optical element is in a direction parallel to an axis direction of the guide pin.

6. An optical connection method comprising:

disposing an optical connection member between a first ferrule and a second ferrule, wherein the first ferrule holds end parts of multi-core fibers and the second ferrule holds end parts of single-core fibers;

aligning the first ferrule, the optical connection member, and the second ferrule by fitting a guide pin of one of the first ferrule and the second ferrule in a guide hole of the other of the first ferrule and the second ferrule through a through hole of the optical connection member; and

optically connecting respective cores of the multi-core fibers and the corresponding single-core fibers via an optical system of the optical connection member, wherein

the optical connection member comprises:

a first lens plate disposed on an end face of the first ferrule;

a second lens plate disposed on an end face of the second ferrule; and

a relay plate disposed between the first lens plate and the second lens plate,

the first lens plate comprises first lenses corresponding to the multi-core fibers,

the second lens plate comprises second lenses corresponding to the single-core fibers,

the relay plate comprises:

first optical elements corresponding to the first lenses; and

second optical elements corresponding to the second lenses,

the relay plate propagates an optical signal between the first optical elements and the second optical elements,

the first optical elements face a corresponding first lens such that collimated light propagates between the respective first lenses and the corresponding first optical elements, and

the second optical elements face a corresponding second lens such that collimated light propagates between the respective second lenses and the corresponding second optical elements.

7. An optical connection member comprising:

a first lens plate

disposed on an end face of a first ferrule that holds end parts of multi-core fibers, and

comprising first lenses corresponding to the multi-core fibers;

a second lens plate

disposed on an end face of a second ferrule that holds end parts of single-core fibers, and

comprising second lenses corresponding to the single-core fibers; and

a relay plate

disposed between the first lens plate and the second lens plate, and

that propagates an optical signal between the first lenses and the second lenses, wherein

a pair of through holes are formed in each of the first lens plate, the second lens plate, and the relay plate,

the first lens plate, the second lens plate, and the relay plate are aligned with respect to the first ferrule and the second ferrule by fitting guide pins in the through holes,

the relay plate comprises:

first optical elements corresponding to the first lenses; and

second optical elements corresponding to the second lenses,

the relay plate propagates an optical signal between the first optical elements and the second optical elements,

the first optical elements face a corresponding first lens such that collimated light propagates between the respective first lenses and the corresponding first optical elements, and

the second optical elements face a corresponding second lens such that collimated light propagates between the respective second lenses and the corresponding second optical elements.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2021
From: ASADA, HIROTAKA; SHINDO, KANSEI; FUJIWARA, KUNIHIKO
To: FUJIKURA LTD.
Reel/Frame 056835/0214 →
Priority Claims (1)
JP 2018-240880 · Dec 25, 2018 · national
Continuity (1)
Related Publication 20220050250A1 · Feb 17, 2022