IP Library Granted Patent US 9,466,943
Granted Patent B2
US 9,466,943 · App. 14/642,678 · Granted Oct 11, 2016

Heat-swap device and method

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Quick Facts
Patent No.
US 9,466,943
App. No.
14/642,678
Granted
Oct 11, 2016
Kind
B2
Abstract

A TOSA can include: a light emitting element; and one or more heating elements thermally coupled to the light emitting element so as to provide a substantially constant heat generation profile and/or temperature profile across the TOSA during a light emitting element dormant period and a light emitting element firing period. The TOSA can include a controller operably coupled with the one or more heating elements so as to control the substantially constant heat generation profile and/or temperature profile. In one aspect, the one or more heating elements can include one or more dedicated heating elements. In one aspect, the one or more of the dedicated heating elements can include a resistor element or coil.

Claims (54)

1. A transmitting optical sub-assembly (TOSA) comprising:

a light emitting element;

a plurality of TOSA components;

a plurality of thermal elements thermally associated with the plurality of TOSA components, the plurality of thermal elements configured to provide a substantially constant heat generation profile and/or temperature profile across the TOSA during a light emitting element dormant period and a light emitting element firing period;

a controller operably coupled with the one or more thermal elements so as to control the substantially constant heat generation profile and/or temperature profile; and

wherein the TOSA has a constant heat generation profile and/or temperature profile with respect to the light emitting element and one or more TOSA components during the light emitting element dormant period and the light emitting element firing period.

2. The TOSA of claim 1 , wherein the plurality of thermal elements includes one or more dedicated heating elements.

3. The TOSA of claim 2 , wherein the one or more dedicated heating elements includes a resistor element or coil.

4. The TOSA of claim 1 , wherein one or more of the plurality of thermal elements is in thermal contact with the light emitting element.

5. The TOSA of claim 4 , wherein one or more of the plurality of thermal elements is within 1 mm of the light emitting element.

6. The TOSA of claim 1 , further comprising a thermoelectric cooler that is in contact with or adjacent to at least one of the plurality of thermal elements.

7. The TOSA of claim 1 , further comprising a plurality of thermocouples thermally coupled with the plurality of thermal elements.

8. The TOSA of claim 1 , wherein the constant heat generation profile and/or temperature profile includes a gradient.

9. The TOSA of claim 1 , further comprising one or more of the following:

at least one thermal element thermally coupled with a data source;

at least one thermal element thermally coupled with an optical spectrum reshaper;

at least one thermal element thermally coupled with an optical fiber

at least one thermal element thermally coupled with the controller; or

at least one thermal element thermally coupled with a photodetector.

10. The TOSA of claim 1 , further comprising the following:

at least one thermal element thermally coupled with a data source;

at least one thermal element thermally coupled with an optical spectrum reshaper;

at least one thermal element thermally coupled with an optical fiber

at least one thermal element thermally coupled with the controller; and

at least one thermal element thermally coupled with a photodetector.

11. The TOSA of claim 1 , further comprising at least one thermal element thermally coupled with an optical spectrum reshaper and a thermoelectric cooler in contact with or adjacent to the optical spectrum reshaper.

12. A method of controlling temperature of a transmitting optical sub-assembly (TOSA), the method comprising:

firing a light emitting element during a steady state light emitting element firing period;

measuring a heat generation profile and/or temperature profile across the TOSA during the steady state light emitting element firing period, the TOSA having a plurality of TOSA components thermally associated with a plurality of thermal elements;

identifying a substantially constant heat generation profile and/or temperature profile across the TOSA at the steady state light emitting element firing period; and

heating predetermined regions of the TOSA with the plurality of thermal elements to provide a substantially constant heat generation profile and/or temperature profile across the TOSA during a non-steady state light emitting element firing period and a light emitting element dormant period.

13. The method of claim 12 , the TOSA further comprising the following:

at least one thermocouple thermally coupled with a data source;

at least one thermocouple thermally coupled with an optical spectrum reshaper;

at least one thermocouple thermally coupled with an optical fiber

at least one thermocouple thermally coupled with the controller; or

at least one thermocouple thermally coupled with a photodetector.

14. The method of claim 12 , further comprising heating the predetermined regions of the TOSA with thermal elements under control of a controller.

15. The method of claim 12 , further comprising:

identifying the substantially constant heat generation profile and/or temperature profile across the TOSA; and

adjusting heat emitted from one or more of the thermal elements during the light emitting element dormant period and/or a light emitting element firing period so as to maintain the substantially constant heat generation profile and/or temperature profile across the TOSA.

16. The method of claim 12 , further comprising:

monitoring a first substantially heat generation profile and/or temperature profile across the TOSA; and

adjusting heat emitted from one or more of the thermal elements during the light emitting element dormant period and/or a light emitting element firing period so as to maintain the first substantially constant heat generation profile and/or temperature profile across the TOSA.

17. The method of claim 12 , further comprising:

firing a light emitting element at a steady state firing period;

ceasing firing the light emitting element to initiate the dormant period; and

adjusting heat emitted from one or more of the thermal elements during the dormant period so as to maintain the substantially constant heat generation profile and/or temperature profile across the TOSA.

18. A method of controlling temperature of a transmitting optical sub-assembly (TOSA), the method comprising:

providing the TOSA of claim 1 ;

firing the light emitting element during a steady state light emitting element firing period;

measuring a heat generation profile and/or temperature profile across the TOSA during the steady state light emitting element firing period;

identifying a substantially constant heat generation profile and/or temperature profile across the TOSA at the steady state light emitting element firing period; and

heating predetermined regions of the TOSA to provide a substantially constant heat generation profile and/or temperature profile across the TOSA during a non-steady state light emitting element firing period or a light emitting element dormant period.

Assignments (5)
PATENT RELEASE AND REASSIGNMENT Recorded Jul 5, 2022
From: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
To: II-VI INCORPORATED; MARLOW INDUSTRIES, INC.; EPIWORKS, INC.; LIGHTSMYTH TECHNOLOGIES, INC.; KAILIGHT PHOTONICS, INC.; COADNA PHOTONICS, INC.; OPTIUM CORPORATION; FINISAR CORPORATION; II-VI OPTICAL SYSTEMS, INC.; M CUBED TECHNOLOGIES, INC.; II-VI PHOTONICS (US), INC.; II-VI DELAWARE, INC.; II-VI OPTOELECTRONIC DEVICES, INC.; PHOTOP TECHNOLOGIES, INC.
Reel/Frame 060574/0001 →
SECURITY INTEREST Recorded Jul 1, 2022
From: II-VI INCORPORATED; II-VI DELAWARE, INC.; M CUBED TECHNOLOGIES, INC.; II-VI PHOTONICS (US), INC.; PHOTOP TECHNOLOGIES, INC.; COHERENT, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 060562/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2020
From: FINISAR CORPORATION
To: II-VI DELAWARE, INC.
Reel/Frame 052286/0001 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 25, 2019
From: II-VI INCORPORATED; MARLOW INDUSTRIES, INC.; EPIWORKS, INC.; LIGHTSMYTH TECHNOLOGIES, INC.; KAILIGHT PHOTONICS, INC.; COADNA PHOTONICS, INC.; OPTIUM CORPORATION; FINISAR CORPORATION; II-VI OPTICAL SYSTEMS, INC.; M CUBED TECHNOLOGIES, INC.; II-VI PHOTONICS (US), INC.; II-VI DELAWARE, INC.; II-VI OPTOELECTRONIC DEVICES, INC.; PHOTOP TECHNOLOGIES, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050484/0204 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2015
From: SJOLUND, T.H. OLA; MIZRAHI, IDAN
To: FINISAR CORPORATION
Reel/Frame 035120/0465 →