IP Library Granted Patent US 10,180,546
Granted Patent B2
US 10,180,546 · App. 15/632,973 · Granted Jan 15, 2019

Optical receptacle and optical transceiver

Inventors: Sho Kondo (Fukuoka, JP); Hirotsugu Agatsuma (Fukuoka, JP); Satoshi Hakozaki (Fukuoka, JP); Satoshi Kaneyuki (Fukuoka, JP); Kohei Tominaga (Fukuoka, JP); Hiroki Sato (Fukuoka, JP)
Assignee: Toto LTD.
G02B6/421G02B6/02004G02B6/38G02B6/3846G02B6/42G02B6/02033
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Quick Facts
Patent No.
US 10,180,546
App. No.
15/632,973
Granted
Jan 15, 2019
Kind
B2
Abstract

An optical receptacle includes: a fiber stub including an optical fiber, a ferrule, and an elastic member; and a holder holding the fiber stub, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole, the fiber stub having one end surface on the ferrule side, and another on an opposite side, the optical fiber including first and third portions on the opposite end surface sides and a second portion therebetween, a core diameter of the first portion being smaller than the third portion, and a core diameter of the second portion increasing from the first portion side toward the third portion side.

Claims (98)

1. An optical receptacle, comprising:

a fiber stub including an optical fiber, a ferrule, and an elastic member, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole; and

a holder holding the fiber stub,

the fiber stub having one end surface on a side of the ferrule configured to be optically connected to a plug ferrule, and one other end surface on an opposite side to the one end surface,

the optical fiber including a first portion having a length of at least 5 μm along a center axis of the fiber stub on an side of the one other end surface, a third portion having a length of at least 5 μm along a center axis of the fiber stub on a side of the one end surface, and a second portion between the first portion and the third portion,

a core diameter of the first portion being smaller than a diameter of the third portion,

a core diameter of the second portion increasing from a side of the first portion toward a side of the third portion,

the elastic member being provided between the optical fiber and an inner wall of the through-hole, and

an outer diameter of the second portion of the optical fiber is smaller than at least one of an outer diameter of the first portion of the optical fiber and an outer diameter of the third portion of the optical fiber.

2. The receptacle according to claim 1 , wherein

a refractive index of the core of the first portion, a refractive index of the core of the second portion, and a refractive index of the core of the third portion are equal one another,

a refractive index of the cladding of the first portion is smaller than a refractive index of the cladding of the third portion, and

a refractive index of the cladding of the second portion increases from the side of the first portion toward the side of the third portion.

3. The receptacle according to claim 1 , wherein

a refractive index of the cladding of the first portion, a refractive index of the cladding of the second portion, and a refractive index of the cladding of the third portion are equal one another,

a refractive index of the core of the first portion is larger than a refractive index of the core of the third portion, and

a refractive index of the core of the second portion decreases from the side of the first portion toward the side of the third portion.

4. The receptacle according to claim 1 , wherein

the core diameter of the second portion increases linearly from the side of the first portion toward the side of the third portion.

5. The receptacle according to claim 1 , wherein

the core diameter of the second portion increases nonlinearly from the side of the first portion toward the side of the third portion.

6. The receptacle according to claim 1 , wherein

the core of the second portion includes a step on a part of a region having the core diameter of the second portion increasing from the side of the first portion toward the side of the third portion.

7. The receptacle according to claim 1 , wherein

the core diameter of the first portion is not less than 0.5 μm and not more than 8 μm.

8. The receptacle according to claim 1 , wherein

a difference between a refractive index of the core and a refractive index of the cladding of the first portion is larger than a difference between a refractive index of the core and a refractive index of the cladding of the third portion.

9. The receptacle according to claim 1 , wherein

a difference between a refractive index of the core and a refractive index of the cladding of the first portion is larger than a difference between a refractive index of the core and a refractive index of the cladding of the second portion.

10. The receptacle according to claim 1 , wherein

the core diameter of the third portion is not less than 8 μm and not more than 20 μm.

11. The receptacle according to claim 1 , wherein

a difference between a refractive index of the core and a refractive index of the cladding of the third portion is smaller than a difference between a refractive index of the core and a refractive index of the cladding of the second portion.

12. The receptacle according to claim 1 , wherein

a difference between a refractive index of the core and a refractive index of the cladding of the second portion decreases from the side of the first portion toward the side of the third portion.

13. The receptacle according to claim 1 , wherein

the outer diameter of the first portion of the optical fiber is equal to the outer diameter of the third portion of the optical fiber, and

the outer diameter of the second portion of the optical fiber is smaller than both the outer diameter of the first portion of the optical fiber and the outer diameter of the third portion of the optical fiber.

14. The receptacle according to claim 1 , wherein

entire regions of the first portion, the second portion and the third portion are disposed in the through-hole.

15. The receptacle according to claim 1 , wherein

the first portion includes a portion protruding from the ferrule, and

entire regions of second portion and the third portion are disposed in the through-hole.

16. The receptacle according to claim 1 , wherein

on the end surface on the opposite side to the one end surface of the fiber stub configured to be optically connected to the plug ferrule, a part of an end surface of the ferrule and an end surface of the optical fiber have a prescribed angle from a plane perpendicular to a center axis of the fiber stub.

17. The receptacle according to claim 1 , wherein

the first portion, the second portion, and the third portion are fused together.

18. The receptacle according to claim 1 , wherein

a length of the first portion along a center axis of the fiber stub is not less than 100 μm.

19. The receptacle according to claim 1 , wherein

a length of the third portion along a center axis of the fiber stub is not less than 100 μm.

20. An optical transceiver comprising: the optical receptacle according to claim 1 , an optical element which emits light, and a controller.

21. An optical receptacle, comprising:

a fiber stub including an optical fiber, a ferrule, and an elastic member, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole; and

a holder holding the fiber stub,

the fiber stub having one end surface on a side of the ferrule configured to be optically connected to a plug ferrule, and one other end surface on an opposite side to the one end surface,

the optical fiber including a first portion having a length of at least 5 μm along a center axis of the fiber stub on an side of the one other end surface, a third portion having a length of at least 5 μm along a center axis of the fiber stub on a side of the one end surface, and a second portion between the first portion and the third portion,

a core diameter of the first portion being smaller than a diameter of the third portion,

a core diameter of the second portion increasing from a side of the first portion toward a side of the third portion,

the elastic member being provided between the optical fiber and an inner wall of the through-hole, and

a difference between a refractive index of the core and a refractive index of the cladding of the first portion is larger than a difference between a refractive index of the core and a refractive index of the cladding of the third portion.

22. An optical receptacle, comprising:

a fiber stub including an optical fiber, a ferrule, and an elastic member, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole; and

a holder holding the fiber stub,

the fiber stub having one end surface on a side of the ferrule configured to be optically connected to a plug ferrule, and one other end surface on an opposite side to the one end surface,

the optical fiber including a first portion having a length of at least 5 μm along a center axis of the fiber stub on an side of the one other end surface, a third portion having a length of at least 5 μm along a center axis of the fiber stub on a side of the one end surface, and a second portion between the first portion and the third portion,

a core diameter of the first portion being smaller than a diameter of the third portion,

a core diameter of the second portion increasing from a side of the first portion toward a side of the third portion,

the elastic member being provided between the optical fiber and an inner wall of the through-hole, and

a difference between a refractive index of the core and a refractive index of the cladding of the first portion is larger than a difference between a refractive index of the core and a refractive index of the cladding of the second portion.

23. An optical receptacle, comprising:

a fiber stub including an optical fiber, a ferrule, and an elastic member, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole; and

a holder holding the fiber stub,

the fiber stub having one end surface on a side of the ferrule configured to be optically connected to a plug ferrule, and one other end surface on an opposite side to the one end surface,

the optical fiber including a first portion having a length of at least 5 μm along a center axis of the fiber stub on an side of the one other end surface, a third portion having a length of at least 5 μm along a center axis of the fiber stub on a side of the one end surface, and a second portion between the first portion and the third portion,

a core diameter of the first portion being smaller than a diameter of the third portion,

a core diameter of the second portion increasing from a side of the first portion toward a side of the third portion,

the elastic member being provided between the optical fiber and an inner wall of the through-hole, and

a difference between a refractive index of the core and a refractive index of the cladding of the third portion is smaller than a difference between a refractive index of the core and a refractive index of the cladding of the second portion.

24. An optical receptacle, comprising:

a fiber stub including an optical fiber, a ferrule, and an elastic member, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole; and

a holder holding the fiber stub,

the fiber stub having one end surface on a side of the ferrule configured to be optically connected to a plug ferrule, and one other end surface on an opposite side to the one end surface,

the optical fiber including a first portion having a length of at least 5 μm along a center axis of the fiber stub on an side of the one other end surface, a third portion having a length of at least 5 μm along a center axis of the fiber stub on a side of the one end surface, and a second portion between the first portion and the third portion,

a core diameter of the first portion being smaller than a diameter of the third portion,

a core diameter of the second portion increasing from a side of the first portion toward a side of the third portion,

the elastic member being provided between the optical fiber and an inner wall of the through-hole, and

a difference between a refractive index of the core and a refractive index of the cladding of the second portion decreases from the side of the first portion toward the side of the third portion.

25. An optical receptacle, comprising:

a fiber stub including an optical fiber, a ferrule, and an elastic member, the optical fiber including a cladding and a core for conducting light, the ferrule having a through-hole fixing the optical fiber, the elastic member fixing the optical fiber in the through-hole; and

a holder holding the fiber stub,

the fiber stub having one end surface on a side of the ferrule configured to be optically connected to a plug ferrule, and one other end surface on an opposite side to the one end surface,

the optical fiber including a first portion having a length of at least 5 μm along a center axis of the fiber stub on an side of the one other end surface, a third portion having a length of at least 5 μm along a center axis of the fiber stub on a side of the one end surface, and a second portion between the first portion and the third portion,

a core diameter of the first portion being smaller than a diameter of the third portion,

a core diameter of the second portion increasing from a side of the first portion toward a side of the third portion,

the elastic member being provided between the optical fiber and an inner wall of the through-hole,

the first portion includes a portion protruding from the ferrule, and

entire regions of second portion and the third portion are disposed in the through-hole.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2024
From: ACACIA COMMUNICATIONS, INC.
To: ACACIA TECHNOLOGY, INC.
Reel/Frame 066832/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2020
From: TOTO LTD.
To: ACACIA COMMUNICATIONS, INC.
Reel/Frame 053433/0503 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2017
From: KONDO, SHO; AGATSUMA, HIROTSUGU; HAKOZAKI, SATOSHI; KANEYUKI, SATOSHI; TOMINAGA, KOHEI; SATO, HIROKI
To: TOTO LTD.
Reel/Frame 042817/0382 →
Priority Claims (3)
JP 2014-265175 · Dec 26, 2014 · national
JP 2015-156333 · Aug 6, 2015 · national
JP 2015-250459 · Dec 22, 2015 · national
Continuity (2)
Continuation PCTJP2015086113 · Dec 24, 2015
Related Publication 20170293072A1 · Oct 12, 2017