IP Library Granted Patent US 10,791,599
Granted Patent B2
US 10,791,599 · App. 16/534,921 · Granted Sep 29, 2020

Systems and methods for controlling color temperature

Inventors: Thomas M. Shearer (Macungie, PA); Arya Abraham (Bethlehem, PA); Ethan C. Biery (Orefield, PA); Timothy P. Gredler (Center Valley, PA); Juha Mikko Hakkarainen (Palm Beach Gardens, FL)
Assignee: Lutron Technology Company LLC
H05B45/22H05B45/10H05B45/20H05B47/105H05B47/11Y02B20/46
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Quick Facts
Patent No.
US 10,791,599
App. No.
16/534,921
Granted
Sep 29, 2020
Kind
B2
Abstract

Controlling the color temperature of a composite light source including at least one discrete-spectrum light source is disclosed. For example, the color temperature of a composite light source including at least one discrete-spectrum light source may be determined and/or adjusted based on one or more of the ambient color temperature of a space, the actual temperature of the space, the relative brightness of the space, the occupancy of the space, a time clock, a demand response command (e.g., from an electrical utility), the absolute location of the composite light source, the location of the composite light source relative to other light sources, inputs from a camera or other external devices, the operation of appliances or other machines in the vicinity of the composite light source, media content being utilized in the vicinity of the composite light source, and/or other sensor inputs.

Claims (46)

1. A controller configured to:

receive data indicating that a first device of a plurality of devices within a space is in use;

responsive to determining that the first device within the space is in use, generate a first command configured to cause a lighting load within the space to emit light of a first color temperature;

automatically control the lighting load to emit light of the first color temperature based on the first command by communicating the first command to the lighting load;

receive data indicating that a second device of the plurality of devices within the space is in use;

responsive to determining that the second device within the space is in use, generate a second command configured to cause the lighting load within the space to emit light of a second color temperature that is different from the first color temperature; and

automatically control the lighting load to emit light of the second color temperature based on the second command by communicating the second command to the lighting load.

2. The controller of claim 1 ,

wherein the first device comprises a television; and

wherein the controller is further configured to:

identify media content the television is displaying; and

determine the first color temperature based on identifying the media content the television is displaying.

3. The controller of claim 2 , where to determine the first color temperature based on identifying the media content the television is displaying comprises to set the first color temperature to a cool color temperature based on a first media content and to set the first color temperature to a warm color temperature based on a second media content that is different from the first media content.

4. The controller of claim 1 , wherein the lighting load comprises a first discrete-spectrum light source and a second discrete-spectrum light source, wherein the first and second discrete-spectrum light sources emit light at different color temperatures, and wherein the lighting load is configured to adjust a composite color temperature of emitted light by varying a first intensity level of the first discrete-spectrum light source and varying a second intensity level of the second discrete-spectrum light source.

5. A controller configured to:

receive data indicating that a computing device within a space is executing a first application of a plurality of applications;

responsive to determining that the computing device is executing the first application, generate a first command configured to cause a lighting load within the space to emit light of a first color temperature;

automatically control the lighting load to emit light of the first color temperature based on the first command by communicating the first command to the lighting load;

receive data indicating that the computing device is executing a second application of the plurality of applications, wherein the second application is different from the first application;

responsive to determining that the computing device is executing the second application, generate a second command configured to cause the lighting load within the space to emit light of a second color temperature that is different from the first color temperature; and

automatically control the lighting load to emit light of the second color temperature based on the second command by communicating the second command to the lighting load.

6. The controller of claim 5 , wherein the first color temperature comprises a warm color temperature and the second color temperature comprises a cool color temperature.

7. The controller of claim 5 , wherein the lighting load comprises a first discrete-spectrum light source and a second discrete-spectrum light source, wherein the first and second discrete-spectrum light sources emit light at different color temperatures, and wherein the lighting load is configured to adjust a composite color temperature of emitted light by varying a first intensity level of the first discrete-spectrum light source and varying a second intensity level of the second discrete-spectrum light source.

8. A method comprising:

receiving data indicating that a first device of a plurality of devices within a space is in use;

responsive to determining that the first device within the space is in use, generating a first command configured to cause a lighting load within the space to emit light of a first color temperature;

automatically controlling the lighting load to emit light of the first color temperature based on the first command by communicating the first command to the lighting load;

receiving data indicating that a second device of the plurality of devices within the space is in use;

responsive to determining that the second device within the space is in use, generating a second command configured to cause the lighting load within the space to emit light of a second color temperature that is different from the first color temperature; and

automatically controlling the lighting load to emit light of the second color temperature based on the second command by communicating the second command to the lighting load.

9. The method of claim 8 ,

wherein the first device comprises a television; and

wherein the method further comprises:

identifying media content the television is displaying; and

determining the first color temperature based on identifying the media content the television is displaying.

10. The method of claim 9 , where determining the first color temperature based on identifying the media content the television is displaying comprises setting the first color temperature to a cool color temperature based on a first media content and setting the first color temperature to a warm color temperature based on a second media content that is different from the first media content.

11. The method of claim 8 , wherein the lighting load comprises a first discrete-spectrum light source and a second discrete-spectrum light source, wherein the first and second discrete-spectrum light sources emit light at different color temperatures, and wherein the lighting load is configured to adjust a composite color temperature of emitted light by varying a first intensity level of the first discrete-spectrum light source and varying a second intensity level of the second discrete-spectrum light source.

12. A method comprising:

receiving data indicating that a computing device within a space is executing a first application of a plurality of applications;

responsive to determining that the computing device is executing the first application, generating a first command configured to cause a lighting load within the space to emit light of a first color temperature;

automatically controlling the lighting load to emit light of the first color temperature based on the first command by communicating the first command to the lighting load;

receiving data indicating that the computing device is executing a second application of the plurality of applications, wherein the second application is different from the first application;

responsive to determining that the computing device is executing the second application, generating a second command configured to cause the lighting load within the space to emit light of a second color temperature that is different from the first color temperature; and

automatically controlling the lighting load to emit light of the second color temperature based on the second command by communicating the second command to the lighting load.

13. The method of claim 12 , wherein the first color temperature comprises a warm color temperature and the second color temperature comprises a cool color temperature.

14. The method of claim 12 , wherein the lighting load comprises a first discrete-spectrum light source and a second discrete-spectrum light source, wherein the first and second discrete-spectrum light sources emit light at different color temperatures, and wherein the lighting load is configured to adjust a composite color temperature of emitted light by varying a first intensity level of the first discrete-spectrum light source and varying a second intensity level of the second discrete-spectrum light source.

Continuity (6)
Continuation 15996569 · Jun 4, 2018
Continuation 15583689 · May 1, 2017
Continuation 15350507 · Nov 14, 2016
Continuation 14255845 · Apr 17, 2014
Provisional Application 61814109 · Apr 19, 2013
Related Publication 20200146122A1 · May 7, 2020