IP Library Patent Application 15874601
Patent Application
App. No. 15/874,601

REFLECTOR AND A LASER DIODE ASSEMBLY USING SAME

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Quick Facts
Patent No.
US None
App. No.
15/874,601
Abstract

A laser diode assembly is disclosed, in which a transmissive reflector is used to redirect the laser beam upwards or to turn or rotate the laser beam. The reflector has at least one Brewster transmissive surface and at least one total internal reflection surface. Several total internal reflection surfaces rotated with respect to one another may be used in a single reflector to redirect and rotate the laser diode beam.

Claims (54)

1 - 20 . (canceled)

21 . A reflector for receiving and redirecting a laser beam, the reflector comprising:

an input face;

a reflector face; and

an output face disposed in an optical path of the laser beam,

wherein

the reflector is injection molded,

the reflector includes an optically dense transparent material that is in contact with air, and

the reflector has millimeter-size dimensions.

22 . The reflector of claim 21 , wherein the millimeter-size dimensions are no greater than 20 millimeters×20 millimeters×10 millimeters.

23 . The reflector of claim 21 , wherein the optically dense transparent material is optical-grade plastic.

24 . The reflector of claim 21 , wherein at least one of the input face or the output face is disposed at a Brewster's angle with respect to the laser beam impinging thereon.

25 . The reflector of claim 21 , wherein the input face is substantially parallel to a fast divergence axis of the laser beam impinging thereon.

26 . The reflector of claim 21 , wherein the output face is substantially parallel to a slow divergence axis of the laser beam impinging thereon.

27 . The reflector of claim 21 , wherein the input face, the reflector face, and the output face are disposed such that the laser beam exiting from the output face forms a 90° angle with the laser beam impinging on the input face.

28 . The reflector of claim 21 , wherein

the reflector face is configured to reflect the laser beam by total internal reflection, and

the output face is configured to transmit the laser beam reflected from the reflector face in a direction substantially orthogonal to a direction of laser beam when the laser beam is emitted from an end facet of a laser diode chip.

29 . The reflector of claim 21 , wherein

the reflector face is a first reflector face, and

the reflector further comprises:

a second reflector face, disposed in the optical path of the laser beam between the first reflector face and the output face, for reflecting the laser beam impinging on the second reflector face by total internal reflection.

30 . The reflector of claim 29 , wherein the first reflector face and the second reflector face are disposed such that planes of incidence of the first reflector face and the second reflector face are substantially perpendicular to each other.

31 . The reflector of claim 29 , wherein

the second reflector face is oriented to reflect the laser beam to propagate substantially parallel to a bottom surface of a laser diode chip that emits the laser beam, and

the second reflector face and the output face are oriented such that a fast axis of the laser beam exiting the output face is substantially parallel to the bottom surface of the laser diode chip.

32 . The reflector of claim 29 , further comprising:

a third reflector face, disposed in the optical path of the laser beam between the input face and the first reflector face, for reflecting the laser beam impinging on the third reflector face by total internal reflection.

33 . A laser diode assembly comprising:

a mount;

a laser diode chip comprising:

a bottom surface on the mount, and

an end facet for emitting a laser beam; and

a reflector comprising:

an input face;

a reflector face; and

an output face disposed in an optical path of the laser beam,

wherein

the reflector is injection molded,

the reflector includes an optically dense transparent material that is in contact with air, and

the reflector has millimeter-size dimensions.

34 . The laser diode assembly of claim 33 , herein the millimeter-size dimensions are no greater than 20 millimeters×20 millimeters×10 millimeters.

35 . The laser diode assembly of claim 33 , wherein the optically dense transparent material is optical-grade plastic.

36 . The laser diode assembly of claim 33 , wherein

the reflector face is a first reflector face, and

the reflector further comprises:

a second reflector face, disposed in the optical path of the laser beam between the first reflector face and the output face, for reflecting the laser beam impinging on the second reflector face by total internal reflection.

37 . The laser diode assembly of claim 36 , wherein the first reflector face and the second reflector face are disposed such that planes of incidence of the first reflector face and the second reflector face are substantially perpendicular to each other.

38 . The laser diode assembly of claim 36 , wherein

the second reflector face is oriented to reflect the laser beam to propagate substantially parallel to the bottom surface, and

the second reflector face and the output face are oriented such that a fast axis of the laser beam exiting the output face is substantially parallel to the bottom surface.

39 . The laser diode assembly of claim 36 , wherein the reflector further comprises:

a third reflector face, disposed in the optical path of the laser beam between the input face and the first reflector face, for reflecting the laser beam impinging on the third reflector face by total internal reflection.

40 . The laser diode assembly of claim 33 , wherein the output face is configured to transmit the laser beam reflected from the reflector face in a direction substantially orthogonal to a direction of laser beam when the laser beam is emitted from the end facet.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Dec 13, 2019
From: DEUTSCHE AG NEW YORK BRANCH
To: OCLARO FIBER OPTICS, INC.; LUMENTUM OPERATIONS LLC; OCLARO, INC.
Reel/Frame 051287/0556 →
PATENT SECURITY AGREEMENT Recorded Dec 11, 2018
From: LUMENTUM OPERATIONS LLC; OCLARO FIBER OPTICS, INC.; OCLARO, INC.
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 047788/0511 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2018
From: WONG, VINCENT V.; GUO, JAMES YONGHONG; LEE, KONG WENG; XU, JACK
To: JDS UNIPHASE CORPORATION
Reel/Frame 044665/0687 →
CHANGE OF NAME Recorded Jan 19, 2018
From: JDS UNIPHASE CORPORATION
To: LUMENTUM OPERATIONS LLC
Reel/Frame 044665/0709 →