IP Library Patent Application 13228350
Patent Application
App. No. 13/228,350

COOLING SYSTEM FOR AN OPTICAL MODULE

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Quick Facts
Patent No.
US None
App. No.
13/228,350
Abstract

An optical module with a cooling system provides enhanced heat removal using one or more passive cooling devices. Such passive cooling devices include a protrusion through the housing of the optical module that thermally couples a heat-generating component in the optical module to a heat-sink module; a PGS material configured to form wetted contact with adjacent surfaces and therefore provide greater thermal conductivity; and one or more heat pipes configured to thermally couple a heat-generating component in the optical module to a remote heat-sink.

Claims (41)

1 . An optical component package comprising:

a heat-generating component;

a heat sink module;

a heat sink sheet interposed between the heat-generating component and the heat sink module;

a first wetting film interposed between the heat sink sheet and the heat-generating component; and

a second wetting film interposed between the heat sink sheet and the heat sink module.

2 . The optical component package of claim 1 , wherein the heat-generating component comprises a digital signal processor, an application specific integrated circuit, a field-programmable gate array, a laser package, or a wavelength-division multiplexer.

3 . The optical component package of claim 1 , further comprising a protective enclosure that contains the heat-generating component and at least one optical component.

4 . The optical component package of claim 1 , wherein the heat sink sheet comprises a pyrolytic graphite sheet.

5 . The optical component package of claim 1 , wherein at least one of the first wetting film and the second wetting film has a thickness that is less than about 20 microns.

6 . The optical component package of claim 1 , wherein at least one of the first wetting film and the second wetting film comprises an adhesive film deposited on the heat sink sheet.

7 . The optical component package of claim 1 , wherein the heat sink module includes a protrusion that is disposed in an opening in a protective enclosure containing the heat-generating component and is in thermal contact with the heat-generating component via the heat sink sheet.

8 . The optical component package of claim 1 , wherein the heat sink module includes a heat pipe thermally coupled to a remote heat sink.

9 . An optical module comprising:

one or more optical components;

a protective enclosure for the optical components having an opening aligned with a heat-generating component disposed in the protective enclosure; and

a heat sink module protruding through the opening to be in thermal contact with the heat-generating component.

10 . The optical component package of claim 9 , wherein thermal contact with the heat-generating component is via a heat sink sheet interposed between the heat sink module and the heat-generating component and having a first wetting film interposed between the heat sink sheet and the heat-generating component and a second wetting film interposed between the heat sink sheet and the heat sink module.

11 . The optical component package of claim 10 , wherein the heat sink sheet comprises a pyrolytic graphite sheet.

12 . The optical component package of claim 10 , wherein at least one of the first wetting film and the second wetting film has a thickness that is less than about 20 microns.

13 . The optical component package of claim 10 , wherein at least one of the first wetting film and the second wetting film comprises an adhesive film deposited on the heat sink sheet.

14 . The optical component package of claim 9 , wherein the heat sink module includes a heat pipe thermally coupled to a remote heat sink.

15 . An optical module with a cooling system, comprising:

an optical module having a protective enclosure and at least one heat-generating component housed in the protective enclosure;

a heat sink sheet;

a heat sink module;

a first wetting film interposed between the heat sink sheet and the at least one heat-generating component; and

a second wetting film interposed between the heat sink sheet and the heat sink module.

16 . The optical component package of claim 15 , wherein at least one of the first wetting film and the second wetting film comprises an adhesive film deposited on the heat sink sheet.

17 . The optical component package of claim 15 , wherein at least one of the first wetting film and the second wetting film has a thickness that is less than about 20 microns.

18 . The optical component package of claim 15 , wherein the heat sink sheet comprises a pyrolytic graphite sheet.

19 . The optical component package of claim 15 , wherein the heat sink module includes a protrusion that is disposed in an opening in the protective enclosure and is in thermal contact with the heat-generating component via the heat sink sheet.

20 . The optical component package of claim 15 , wherein the heat sink module includes a heat pipe thermally coupled to a remote heat sink.

21 . An optical module mounted on a line card, the optical module having a smaller footprint than the line card, the optical module comprising:

a heat-generating component;

a heat sink disposed within a footprint of the line card and extending beyond a footprint of the optical module; and

a heat pipe for transferring heat from the heat-generating component to the heat sink.

22 . The optical component package of claim 21 , wherein the heat pipe transfers heat from the heat-generating component via a protrusion from the heat sink that is disposed in an opening in a protective enclosure containing the heat-generating component and is in thermal contact with the heat-generating component.

23 . The optical component package of claim 22 , wherein the thermal contact with the heat-generating component is via a heat sink sheet that is interposed between the protrusion and the heat-generating component and has a first wetting film interposed between the heat sink sheet and the heat-generating component and a second wetting film interposed between the heat sink sheet and the protrusion.

24 . The optical component package of claim 23 , wherein the heat sink sheet comprises a pyrolytic graphite sheet.

25 . The optical component package of claim 21 , wherein a portion of the heat sink extending beyond the footprint of the optical module comprises a remote heat sink.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded May 9, 2017
From: SILICON VALLEY BANK
To: OCLARO, INC.; OCLARO TECHNOLOGY, INC.; OCLARO (NORTH AMERICA), INC.; MINTERA CORPORATION; OPNEXT, INC.; PINE PHOTONICS COMMUNICATIONS, INC.; OPNEXT SUBSYSTEMS INC.; BOOKHAM NOMINEES LIMITED; OCLARO TECHNOLOGY LIMITED; OCLARO INNOVATIONS LLP
Reel/Frame 042430/0235 →
SECURITY INTEREST Recorded Apr 2, 2014
From: OCLARO, INC.; OCLARO TECHNOLOGY, INC.; OCLARO (NORTH AMERICA), INC.; MINTERA CORPORATION; OPNEXT, INC.; PINE PHOTONICS COMMUNICATIONS, INC.; OPNEXT SUBSYSTEMS INC.; BOOKHAM NOMINEES LIMITED; OCLARO TECHNOLOGY LIMITED; OCLARO INNOVATIONS LLP
To: SILICON VALLEY BANK
Reel/Frame 032589/0948 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2011
From: GHANTIWALA, NAYANA
To: OCLARO TECHNOLOGY LIMITED
Reel/Frame 026883/0434 →