IP Library Granted Patent US 11,490,479
Granted Patent B2
US 11,490,479 · App. 17/143,775 · Granted Nov 1, 2022

Systems and methods for tunable LED lighting

Inventors: William R. McGrath (Randolph, VT); Zachary Blanchard (Bellows Falls, VT); Oliver Piluski (Randolph, VT); Jason Orzell (Randolph, VT); Neil P. Cannon (Eldorado Springs, CO)
Assignee: LEDdynamics, Inc.
H05B45/20H05B45/46
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Quick Facts
Patent No.
US 11,490,479
App. No.
17/143,775
Granted
Nov 1, 2022
Kind
B2
Abstract

A tunable lighting system includes a first LED having a first spectral output, a second LED having a second spectral output, and a correction circuit including a correction LED. The correction circuit in the tunable lighting system controls the correction LED to emit light that, when combined with light output from the first LED and light output from the second LED, produces a selected spectral characteristic.

Claims (44)

1. A tunable lighting system, comprising:

a first LED having a first spectral output;

a second LED having a second spectral output; and

a correction circuit including a correction LED, the correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and light emitted from the second LED, produces a selected spectral characteristic.

2. The tunable lighting system of claim 1 wherein the correction circuit further comprises a microprocessor to control the correction LED.

3. The tunable lighting system of claim 1 wherein the first LED is a cool white LED, the second LED is a warm white LED, the correction LED is a green LED, and the spectral characteristic is a blackbody curve.

4. The tunable lighting system of claim 1 wherein the spectral characteristic is a circadian rhythm match.

5. A tunable lighting system, comprising:

a first LED having a first spectral output;

a second LED having a second spectral output;

a first correction circuit including a correction LED, the first correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and light emitted from the second LED, produces a selected spectral characteristic,

a third LED having a third spectral output;

a fourth LED having a fourth spectral output; and

a second correction circuit, the third LED, fourth LED and second correction circuit configured to enable the tunable lighting system to emit light having a second spectral characteristic.

6. A tunable lighting system, comprising:

a first LED having a first spectral output;

a second LED having a second spectral output; and

a correction circuit including a correction LED and a capacitor connected in series with a bridge rectifier, the bridge rectifier having a center diode and wherein the correction LED is the center diode, the correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and the light emitted from the second LED, produces a selected spectral characteristic.

7. A tunable lighting system, comprising:

a first LED having a first spectral output;

a second LED having a second spectral output; and

a correction circuit including

a capacitor;

two correction diodes connected in parallel and oppositely biased and where the capacitor is connected in series with the two correction diodes; and,

a correction LED, the correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and light emitted from the second LED, produces a selected spectral characteristic.

8. The tunable lighting system of claim 7 wherein a first correction diode of the two correction diodes is an LED.

9. The tunable lighting system of claim 7 wherein the two correction diodes are LEDs.

10. The tunable lighting system of claim 7 wherein the correction circuit further comprises a first charge restorative device and a second charge restorative device, wherein the first charge restorative device and second charge restorative device are selected to bias the correction circuit to favor the first LED over the second LED.

11. A correction circuit for a tunable lighting system, the tunable lighting system having a first LED having a first spectral output, and a second LED having a second spectral output, the correction circuit comprising:

a capacitor, and two correction diodes connected in parallel and oppositely biased and where the capacitor is connected in series with the two correction diodes; and

a correction LED, the correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and light emitted from the second LED, has a selected spectral characteristic.

12. The correction circuit of claim 11 wherein a first correction diode of the two correction diodes is an LED.

13. The correction circuit of claim 11 wherein the two correction diodes are LEDs.

14. The correction circuit of claim 11 further comprising: a first charge restorative device and a second charge restorative device, wherein the first charge restorative device and second charge restorative device are selected to bias the correction circuit to favor the first LED over the second LED.

15. A correction circuit for a tunable lighting system, the tunable lighting system having a first LED having a first spectral output, and a second LED having a second spectral output, the correction circuit comprising;

a capacitor connected in series with a bridge rectifier, the bridge rectifier having a center diode and wherein the correction LED is the center diode; and

a correction LED, the correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and light emitted from the second LED, has a selected spectral characteristic.

16. A correction circuit for a tunable lighting system, the tunable lighting system having a first LED having a first spectral output, and a second LED having a second spectral output, the correction circuit comprising:

a correction LED, the correction circuit to control the correction LED to emit light that, when combined with light emitted from the first LED and light emitted from the second LED, has a selected spectral characteristic.

17. The correction circuit of claim 16 further comprising a microprocessor to control the correction LED.

18. The correction circuit for a tunable lighting system of claim 16 wherein the spectral characteristic is a circadian rhythm match.

19. A method of operating a tunable lighting system wherein the lighting system comprises a first LED having a first spectral output, a second LED having a second spectral output, and a correction circuit including a correction LED, the method comprising:

establishing a spectral characteristic; and

generating signals in the correction circuit to control the correction LED to emit light that, when combined with light output from the first LED and light output from the second LED, produces the spectral characteristic.

Assignments (3)
CHANGE OF NAME Recorded Nov 25, 2025
From: FUSION OPTIX, INC.
To: 3LED, INC.
Reel/Frame 073707/0111 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2025
From: LEDDYNAMICS, INC.
To: FUSION OPTIX, INC.
Reel/Frame 071287/0675 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2021
From: MCGRATH, WILLIAM R.; BLANCHARD, ZACHARY; PILUSKI, OLIVER; ORZELL, JASON; CANNON, NEIL P.
To: LEDDYNAMICS, INC.
Reel/Frame 056219/0970 →
Continuity (2)
Provisional Application 62958978 · Jan 9, 2020
Related Publication 20210219395A1 · Jul 15, 2021
Cited By (1)
US 12,513,798