IP Library Granted Patent US 11,927,343
Granted Patent B2
US 11,927,343 · App. 17/764,242 · Granted Mar 12, 2024

Dynamic lighting device with controlled color temperature

Inventors: Tigran Galstian (Québec, CA); Armen Zohrabyan (Québec, CA); Behzad Khodadad (Los Altos, CA); Karen Asatryan (Québec, CA)
F21V9/40F21V14/003F21V14/06H05B45/20
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Quick Facts
Patent No.
US 11,927,343
App. No.
17/764,242
Granted
Mar 12, 2024
Kind
B2
Abstract

A variable angle beam control device is capable of maintaining the same color temperature of the light source regardless of the changes in the angle of the beam. The controllable light beam device has a light source with primary optics producing a low divergence light beam having an inverted angular distribution of the correlated color temperature (CCT), and a liquid crystal device with an electrically variable refractive index distribution arranged to receive said light beam and to provide a variable angle beam.

Claims (42)

1. A controllable light beam device comprising:

a light source having primary optics producing a low divergence light beam having an inverted angular distribution of the correlated color temperature (CCT); and

a liquid crystal device with an electrically variable refractive index distribution arranged to receive said light beam and to provide a variable angle beam,

wherein a CCT variation in said variable angle beam between said liquid crystal device providing substantially no beam broadening and providing additional beam broadening is less than a CCT of said light source.

2. The device as defined in claim 1 , wherein a CCT variation in said variable angle beam at about 0 degrees of viewing angle between substantially no beam broadening by said liquid crystal device and providing about 15 additional degrees of beam broadening by said liquid crystal device is less than about 10% of a CCT of said light source.

3. The device as defined in claim 1 , wherein a CCT variation in said variable angle beam in the range of about 0 degrees and about 10 degrees of viewing angle is less than about 10%, of a CCT of said light source both under conditions of substantially no beam broadening by said liquid crystal device and under conditions of about additional 15 additional degrees of beam broadening by said liquid crystal device.

4. The device as defined in claim 1 , wherein said light source comprises a blue LED and a phosphor for producing white light in which shorter wavelengths of light have a greater divergence than longer wavelengths of light in said low divergence light beam.

5. A controllable light beam device comprising:

a light source having primary optics producing a low divergence light beam having an inverted angular distribution of CCT; and

a liquid crystal device with an electrically variable refractive index distribution arranged to receive said light beam and to provide a variable angle beam,

wherein said low divergence light beam has a lower CCT at a viewing angle of 0 degrees than a CCT at a viewing angle in the range of 10 to 15 degrees.

6. The device as defined in claim 5 , wherein said low divergence light beam has an inverted bell shape CCT profile as a function of viewing angle.

7. A controllable light beam device comprising:

a light source having primary optics producing a low divergence light beam;

a liquid crystal device with an electrically variable refractive index distribution arranged to receive said light beam and to provide a variable angle beam; and

a tunable color filter arranged to receive said light beam,

wherein a CCT variation in said variable angle beam in the range of about 0 degrees and about 10 degrees of viewing angle between substantially no beam broadening by said liquid crystal device and providing about 15 additional degrees of beam broadening by said liquid crystal device is less than about 10% of a CCT of said light beam at about 0 degrees of viewing angle by using said tunable color filter to adjust a CCT of said variable angle beam.

8. The device as defined in claim 7 ,

wherein the CCT variation in said variable angle beam in the range of 0 degrees and 10 degrees of viewing angle between no beam broadening by said liquid crystal device and providing about 15 additional degrees of beam broadening by said liquid crystal device is of the CCT of said light beam at 0 degrees of viewing angle by using said tunable color filter to adjust the CCT of said variable angle beam.

9. The device as defined in claim 7 , further comprising a controller responsive to a beam broadening input signal for outputting a first control signal to said liquid crystal device and a second control signal to said tunable color filter.

10. The device as defined in claim 7 , wherein said tunable color filter is a cholesteric liquid crystal filter.

11. The device as defined in claim 10 , wherein said cholesteric liquid crystal contains a polymer that stabilizes the position of its resonance.

12. A lighting apparatus with a variable angle beam, the apparatus comprising:

a light source having an adjustable color temperature;

a light module driver configured to adjust currents applied to said light source to adjust said color temperature accordingly;

a liquid crystal beam shaping device with variable refractive indices for different colors having a lens driver configured to receive a fixed angle beam from said light source and to provide a variable angle beam in response to a control signal;

an angle adjustor interface for receiving an input beam angle and providing said control signal;

a CCT correction unit receiving one of said input beam angle and said control signal and controlling said light module driver to adjust a color temperature as a function of said variable angle to control a color-temperature variation in said variable angle beam caused by said beam shaping device.

13. A beam control device for use with a lighting apparatus having:

a light source having an adjustable color temperature;

a light module driver configured to adjust currents applied to said light source to adjust said color temperature accordingly;

the beam control device comprising:

a liquid crystal beam shaping device with variable refractive indices for different colors having a lens driver configured to receive a fixed angle beam from said light source and to provide a variable angle beam in response to a control signal;

an angle adjustor interface for receiving an input beam angle and providing said control signal;

a CCT correction unit receiving one of said input beam angle and said control signal and outputting said currents applied to said light source to adjust a color temperature as a function of said variable angle to control a color-temperature variation in said variable angle beam caused by said beam shaping device.

14. The device as defined in claim 1 , wherein said low divergence light beam has an inverted bell shape CCT profile as a function of viewing angle.

15. The device as defined in claim 2 , wherein a CCT variation in said variable angle beam at about 0 degrees of viewing angle between substantially no beam broadening by said liquid crystal device and providing about 15 additional degrees of beam broadening by said liquid crystal device is less than about 7% of a CCT of said light source.

16. The device as defined in claim 3 , wherein a CCT variation in said variable angle beam in the range of about 0 degrees and about 10 degrees of viewing angle is less than about 7% of a CCT of said light source both under conditions of substantially no beam broadening by said liquid crystal device and under conditions of about 15 additional degrees of beam broadening by said liquid crystal device.

17. The device as defined in claim 5 , wherein a CCT variation in said variable angle beam in the range of about 0 degrees and about 10 degrees of viewing angle is less than about 10% of a CCT of said light source both under conditions of substantially no beam broadening by said liquid crystal device and under conditions of about 15 additional degrees of beam broadening by said liquid crystal device.

18. The device as defined in claim 7 , wherein said low divergence light beam has a lower CCT at a viewing angle of about 0 degrees than a CCT at a viewing angle in the range of about 10 to about 15 degrees.

19. The apparatus as defined in claim 12 , wherein said fixed angle beam has an inverted bell shape CCT profile as a function of viewing angle.

20. The device as defined in claim 13 , wherein said fixed angle beam has an inverted bell shape CCT profile as a function of viewing angle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2025
From: LENSVECTOR INC.
To: LENSVECTOR HOLDINGS, LLC
Reel/Frame 072036/0654 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2025
From: LENSVECTOR HOLDINGS, LLC
To: PATQER PHOTONIQUE INC.
Reel/Frame 072037/0045 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2024
From: GALSTIAN, TIGRAN; ZOHRABYAN, ARMEN; KHODADAD, BEHZAD
To: LENSVECTOR INC.
Reel/Frame 066408/0246 →
Continuity (2)
Provisional Application 62907826 · Sep 30, 2019
Related Publication 20220349554A1 · Nov 3, 2022