IP Library Granted Patent US 11,191,135
Granted Patent B2
US 11,191,135 · App. 16/995,408 · Granted Nov 30, 2021

Horticulture grow lights

Inventor: Anthony Vilgiate (Woodland Park, CO)
Assignee: CABATECH, LLC
H05B45/00A01G7/045A01G9/20H05B45/20H05B47/19F21W2131/109F21Y2115/10H05B47/16Y02P60/14
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Quick Facts
Patent No.
US 11,191,135
App. No.
16/995,408
Granted
Nov 30, 2021
Kind
B2
Abstract

A grow light includes a plurality of cool white LEDs, a plurality of warm white LEDs, and a driver electrically coupled to the cool white LEDs and the warm white LEDs. An intensity level and spectral composition of the radiant energy emitted by the grow light may be tuned or configured by varying a ratio of the quantity of cool white LEDs to the quantity of warm white LEDs, by varying a spatial arrangement among the cool white LEDs and the warm white LEDs, or by varying a level of current provided to some or all of the cool white LEDs and the warm white LEDs.

Claims (43)

1. A horticulture grow light comprising:

a first plurality of white light emitting diodes (LEDs) having a first color temperature;

a second plurality of white LEDs having a second color temperature, the second color temperature being different from the first color temperature; and

a driver configured to provide a first current to the first plurality of white LEDs and a second current to the second plurality of white LEDs,

wherein, in a first mode, an overall spectral composition of radiant energy collectively emitted at a same time by the first plurality of white LEDs and the second plurality of white LEDs has a first-highest peak wavelength in a range from 400 nm to 510 nm and a second-highest peak wavelength in a range from 560 nm to 780 nm, and

wherein the driver is configured to vary the first current and the second current to vary the first-highest peak wavelength and the second-highest peak wavelength.

2. The horticulture grow light of claim 1 , wherein, when the first-highest peak wavelength has a relative spectral value of 1, an entire wavelength range between the first-highest peak wavelength and the second-highest peak wavelength has a relative spectral value of at least 0.2.

3. The horticulture grow light of claim 2 , wherein, in the first mode, the first-highest peak wavelength is in a range from 430 nm to 470 nm, and the second-highest peak wavelength is in a range from 560 nm to 660 nm.

4. The horticulture grow light of claim 1 , wherein the driver comprises a first driver and a second driver, and

wherein the first driver is configured to provide the first current to the first plurality of white LEDs, and the second driver is configured to provide the second current to the second plurality of white LEDs.

5. The horticulture grow light of claim 1 , wherein the quantity of the first plurality of white LEDs is greater than the quantity of the second plurality of white LEDs.

6. The horticulture grow light of claim 1 , wherein the first plurality of white LEDs and the second plurality of white LEDs are arranged in a plurality of alternating strips of the first plurality of white LEDs and the second plurality of white LEDs.

7. The horticulture grow light of claim 1 , wherein each of the first plurality of white LEDs is adjacent to at least two of the second plurality of white LEDs.

8. The horticulture grow light of claim 1 , wherein the driver is a DC driver, and

wherein the DC driver is configured to provide to each of the first plurality of white LEDs and each of the second plurality of white LEDs a current level of at least 30 mA.

9. The horticulture grow light of claim 1 , further comprising a control module configured to automatically reconfigure the overall spectral composition based on a photoautotroph growth cycle.

10. The horticulture grow light of claim 1 , further comprising a plurality of supplemental radiation emitters,

wherein the supplemental radiation emitters are configured to emit at least one of visible light, ultraviolet radiation emitting wavelengths ranging from 300 nm to 400 nm, or infrared radiation emitting wavelengths ranging from 700 nm to 1 mm.

11. The horticulture grow light of claim 10 , wherein the driver comprises a first driver, a second driver, and a third driver, and

wherein the first driver is configured to provide the first current to the first plurality of white LEDs, the second driver is configured to provide the second current to the second plurality of white LEDs, and the third driver is configured to provide a third current to the supplemental radiation emitters.

12. The horticulture grow light of claim 1 , wherein the first plurality of white LEDs and the second plurality of white LEDs are directly mounted on a substrate.

13. The horticulture grow light of claim 1 , wherein the first plurality of white LEDs are directly mounted on a first substrate, and the second plurality of white LEDs are directly mounted on a second substrate.

14. A horticulture grow light comprising:

a first plurality of white light emitting diodes (LEDs) having a first color temperature;

a second plurality of white LEDs having a second color temperature, the second color temperature being different from the first color temperature; and

a driver configured to provide a first current to the first plurality of white LEDs and a second current to the second plurality of white LEDs, the driver being configured to vary the first current and the second current to vary a first-highest peak wavelength and a second-highest peak wavelength,

wherein, in a first mode, an overall spectral composition of the first plurality of white LEDs and the second plurality of white LEDs has the first-highest peak wavelength in a range from 400 nm to 510 nm and the second-highest peak wavelength in a range from 560 nm to 780 nm, and

wherein, in a second mode, the first-highest peak wavelength is in a range from 560 nm to 780 nm and the second-highest peak wavelength is in a range from 400 nm to 510 nm.

15. A horticulture grow light comprising a plurality of light engines, each of the light engines comprises:

a first plurality of white light emitting diodes (LEDs) having a first color temperature;

a second plurality of white LEDs having a second color temperature, the second color temperature being different from the first color temperature; and

a driver configured to provide a first current to the first plurality of white LEDs and a second current to the second plurality of white LEDs,

wherein, in a first mode, an overall spectral composition of radiant energy collectively emitted at a same time by the first plurality of white LEDs and the second plurality of white LEDs has a first-highest peak wavelength in a range from 400 nm to 510 nm and a second-highest peak wavelength in a range from 560 nm to 780 nm, and

wherein the driver is configured to vary the first current and the second current to vary the first-highest peak wavelength and the second-highest peak wavelength.

16. The horticulture grow light of claim 15 ,

wherein, in a second mode, the first-highest peak wavelength is in a range from 560 nm to 780 nm and the second-highest peak wavelength is in a range from 400 nm to 510 nm.

17. The horticulture grow light of claim 16 , wherein the driver comprises a first driver and a second driver, and

wherein the first driver is configured to provide the first current to the first plurality of white LEDs, and the second driver is configured to provide the second current to the second plurality of white LEDs.

18. The horticulture grow light of claim 15 , further comprising a supplemental radiation engine comprising a plurality of supplemental radiation emitters,

wherein the supplemental radiation emitters are configured to emit at least one of visible light, ultraviolet radiation emitting wavelengths ranging from 300 nm to 400 nm, or infrared radiation emitting wavelengths ranging from 700 nm to 1 mm.

19. The horticulture grow light of claim 18 , wherein the driver comprises a first driver, a second driver, and a third driver, and

wherein the first driver is configured to provide the first current to the first plurality of white LEDs, the second driver is configured to provide the second current to the second plurality of white LEDs, and the third driver is configured to provide a third current to the supplemental radiation emitters.

20. The horticulture grow light of claim 19 , the overall spectral composition of the first plurality of white LEDs, the second plurality of white LEDs, and the supplemental radiation emitters has a third-highest wavelength peak in a range from 300 nm to 400 nm.

Assignments (2)
SECURITY INTEREST Recorded Feb 26, 2021
From: CABATECH, LLC
To: BMO HARRIS BANK N.A.
Reel/Frame 055429/0527 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2020
From: VILGIATE, ANTHONY
To: CABATECH, LLC
Reel/Frame 053531/0641 →
Continuity (5)
Continuation 16230943 · Dec 21, 2018
Continuation 15785379 · Oct 16, 2017
Continuation 15280996 · Sep 29, 2016
Provisional Application 62234480 · Sep 29, 2015
Related Publication 20200375122A1 · Dec 3, 2020
Cited By (1)
US 12,336,065