IP Library Granted Patent US 6,959,133
Granted Patent B2
US 6,959,133 · App. 10/752,130 · Granted Oct 25, 2005

Optical coupling module and method for forming the same

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Quick Facts
Patent No.
US 6,959,133
App. No.
10/752,130
Granted
Oct 25, 2005
Kind
B2
Abstract

A monolithic optical coupling module for coupling a light beam is disclosed. The optical coupling module has a light beam input portion, a light beam output portion and at least one integrally formed light beam attenuator between the light beam input portion and the light beam output portion. The monolithic optical coupling module may be unitarily fabricated of a moldable polymeric material. The light beam attenuator may be a roughened surface or a roughened internal portion. A method for forming the monolithic optical coupling module is also disclosed.

Claims (49)

1. A monolithic optical coupling module comprising:

a light input portion;

a light output portion; and

further comprising;

a first surface portion and a second surface portion opposite the first surface portion, wherein the first surface portion and the second surface portion define a gap in the monolithic optical coupling module;

a total internal reflection optical turn interface portion that turns a light beam incident on the optical turn interface portion towards the gap,

a third surface portion through which the light beam exits the monolithic optical coupling module; and

a fourth surface portion through which the light beam enters the monolithic optical coupling module,

wherein at least one of the first surface portion, the second surface portion, the optical turn interface portion, the third surface portion and the fourth surface portion comprises an integrally-formed light beam attenuator that attenuates a light beam propagating therethrough to provide an attenuated light beam.

2. A monolithic optical coupling module according to claim 1 , wherein the light beam output portion comprises an outlet adapted to couple to at least one optical fiber.

3. A monolithic optical coupling module according to claim 1 , wherein the light beam input portion comprises an inlet adapted to couple to at least one optical fiber.

4. A monolithic optical coupling module according to claim 1 , wherein the at least one integrally formed light beam attenuator comprises at least one light reflective portion that is disposed in the optical path to reflect at least some incident light away therefrom.

5. A monolithic optical coupling module according to claim 1 , wherein the at least one integrally formed light beam attenuator comprises a laser ablated portion.

6. A monolithic optical coupling module according to claim 1 , wherein the at least one integrally formed light beam attenuator comprises a roughened surface portion that has a predetermined degree of roughness;

wherein during use, the roughened surface portion partially scatters incident light away therefrom to attenuate the incident light by a degree of attenuation corresponding to the predetermined degree of roughness.

7. A monolithic optical coupling module according to claim 6 , wherein the roughened surface portion comprises a surface having molded surface irregularities;

wherein during use, the molded surface irregularities partially scatter incident light away therefrom.

8. A monolithic optical coupling module according to claim 6 , wherein the roughened surface portion comprises one of a sand-blasted, an electro-discharge machined, a turned, a face-milled, a charged particle-etched and a ground surface portion.

9. A monolithic optical coupling module according to claim 6 , wherein the roughened surface portion comprises a plurality of light reflective portions.

10. A monolithic optical coupling module according to claim 9 , wherein the plurality of light reflective portions are disposed to form a pattern.

11. A monolithic optical coupling module comprising:

a first surface portion and a second surface portion opposite the first surface portion, wherein the first surface portion and the second surface portion define a gap in the monolithic optical coupling module

a total internal reflection optical turn interface portion that turns a light beam incident on the optical turn interface portion towards the gap,

a third surface portion through which the light beam exits the monolithic optical coupling module; and

a fourth surface portion through which the light beam enters the monolithic optical coupling module,

wherein at least one of the first surface portion, the second surface portion the optical turn interface portion, the third surface portion and the fourth surface portion comprises an integrally-formed light beam attenuator that attenuates a light beam propagating therethrough to provide an attenuated light beam.

12. A monolithic optical coupling module according to claim 11 , wherein the at least one of the first surface portion and the second surface portion is roughened to a degree of roughness to define the integrally-formed light beam attenuator, the light beam attenuator being able to attenuate the light beam by a level of attenuation corresponding to the degree of roughness.

13. A monolithic optical coupling module according to claim 11 wherein at least one of the optical turn interface portion, the third surface portion and the fourth surface portion comprises a second integrally-formed light beam attenuator that attenuates a light beam propagating therethrough to provide an attenuated light beam.

14. A monolithic optical coupling module according to claim 11 wherein at least one of the optical turn interface portion, the third surface portion and the fourth surface portion is roughened to a degree of roughness to define the integrally-formed light beam attenuator, the light beam attenuator being able to attenuate the light beam by a level of attenuation corresponding to the degree of roughness.

15. A method for forming a monolithic optical coupling module, wherein the monolithic optical coupling module has

a light beam input portion and a light beam output portion,

a first surface portion and a second surface portion opposite the first surface portion, wherein the first surface portion and the second surface portion define a gap in the monolithic optical coupling module,

a total internal reflection optical turn interface portion that turns a light beam incident on the optical turn interface portion towards the gap,

a third surface portion through which the light beam exits the monolithic optical coupling module; and

a fourth surface portion through which the light beam enters the monolithic optical coupling module

wherein at least one of the first surface portion, the second surface portion, the optical turn interface portion, the third surface portion and the fourth surface portion comprises an integrally-formed light beam attenuator that attenuates a light beam propagating therethrough to provide an attenuated light beam,

the method further comprising:

integrally forming a light beam attenuator in a light path between the light beam input portion and the light beam output portion.

16. A method according to claim 15 , wherein integrally forming the light beam attenuator comprises:

providing an input light beam of known intensity to the light beam input portion, the input light beam propagating through the monolithic optical coupling module to exit the module via the light beam output portion as an output light beam;

measuring the intensity of the output light beam to determine an attenuation of the input light beam; and

integrally forming at least one light reflective portion to further attenuate the input light beam to thereby attain a predetermined attenuation relative to the intensity of the input light beam.

17. A method according to claim 15 , wherein the monolithic optical coupling module is mounted adjacent a light source of an optical coupling assembly, and wherein integrally forming the light beam attenuator comprises:

providing an input light beam from the light source to the light beam input portion, the input light beam propagating through the monolithic optical coupling module to exit the module via the light beam output portion as an output light beam;

measuring the intensity of the output light beam; and

integrally forming at least one light reflective portion to attenuate the input light beam to have the measured intensity of the output light beam at a predetermined level.

18. A method according to claim 15 , wherein integrally forming the light beam attenuator comprises laser ablating an internal portion of the monolithic optical coupling module.

19. A method according to claim 15 , wherein integrally forming the light beam attenuator comprises roughening a surface of the monolithic optical coupling module.

20. A method according to claim 19 , wherein roughening a surface comprises one of sand-blasting, electro-discharge machining, turning, face-milling, charged particle etching and grinding the surface.

Assignments (13)
MERGER Recorded Mar 3, 2023
From: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED; BROADCOM INTERNATIONAL PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 062952/0850 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2020
From: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
To: BROADCOM INTERNATIONAL PTE. LTD.
Reel/Frame 053771/0901 →
CORRECTIVE ASSIGNMENT TO CORRECT THE EXECUTION DATE PREVIOUSLY RECORDED AT REEL: 047196 FRAME: 0097. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Mar 6, 2019
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 048555/0510 →
MERGER Recorded Oct 4, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047196/0097 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041710/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 017207 FRAME 0020. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 6, 2016
From: AGILENT TECHNOLOGIES, INC.
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 038633/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037808/0001 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT RIGHTS (RELEASES RF 032851-0001) Recorded Feb 2, 2016
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 037689/0001 →
PATENT SECURITY AGREEMENT Recorded May 8, 2014
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 032851/0001 →
MERGER Recorded May 7, 2013
From: AVAGO TECHNOLOGIES FIBER IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 030369/0672 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2006
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES FIBER IP (SINGAPORE) PTE. LTD.
Reel/Frame 017675/0199 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2006
From: AGILENT TECHNOLOGIES, INC.
To: AVAGO TECHNOLOGIES GENERAL IP PTE. LTD.
Reel/Frame 017207/0020 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2004
From: VANCOILLE, ERIC; VAN HAASTEREN, ADRIANUS J.P.
To: AGILENT TECHNOLOGIES, INC.
Reel/Frame 014439/0261 →