IP Library Granted Patent US 10,813,183
Granted Patent B2
US 10,813,183 · App. 16/271,952 · Granted Oct 20, 2020

Photonic engine system for actuating the photosynthetic electron transport chain

Inventor: Zdenko Grajcar (Orono, MN)
Assignee: SIGNIFY NORTH AMERICA CORPORATION
H05B45/10A01G7/045H05B45/20H05B45/46Y02P60/149
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Quick Facts
Patent No.
US 10,813,183
App. No.
16/271,952
Granted
Oct 20, 2020
Kind
B2
Abstract

A horticultural system having lighting elements pulsed with an off time proportional to the turnover time of the photosynthetic electron transport chain of a plant. The lighting elements emit light at a wavelength within 20 nanometers (nm) of a peak absorption of the pigment of the plant and are controlled to provide light at predetermined intervals as needed by the plant cause photosynthesis and reduce excess unproductive light.

Claims (25)

1. A horticultural system for growing a plant under artificial lighting, the horticultural system comprising:

a first lighting element positioned in spaced relation to the plant and configured to emit a light onto the plant, the light comprising wavelengths that are within 20 nanometers (nm) of a first peak absorption of a first pigment of the plant;

wherein the first lighting element is configured to emit the first light during first, second, and third lighting intervals with a first dark interval provided between the first and second lighting intervals and a second dark interval provided between the second and third lighting intervals, the first dark interval having a different length of time than the second dark interval;

a second lighting element positioned in spaced relation to the plant and configured to emit a second light onto the plant, the second light comprising wavelengths that are within 20 nanometers (nm) of a second peak absorption of a second pigment of the plant; and

wherein the second lighting element is configured to emit the second light during one or more of the first dark interval and the second dark interval.

2. The horticultural system of claim 1 wherein the first lighting element is configured to emit the first light at a wavelength between 655 nm and 740 nm.

3. The horticultural system of claim 1 wherein the first lighting element is configured to emit the first light at a wavelength between 425 nm and 465 nm.

4. The horticultural system of claim 1 wherein one or more of the first lighting element and the second lighting element is a light emitting diode.

5. The horticultural system of claim 1 wherein the first lighting element is configured to emit the first light at a wavelength between 655 nm and 740 nm and the second lighting element is configured to emit the second light at a wavelength between 425 nm and 465 nm.

6. The horticultural system of claim 5 further comprising a third lighting element positioned in spaced relation to the plant and configured to emit third light onto the plant, the third light in a range between 495-570 nm to speed photosynthesis.

7. The horticultural system of claim 6 further comprising a lighting device, wherein the lighting device comprises the first, second, and third lighting elements.

8. The horticultural system of claim 1 wherein the second light in a range between 495-570 nm to speed photosynthesis.

9. The horticultural system of claim 1 wherein the first lighting element is configured to emit the first light in pulses with an off time proportional to a turnover time of a photosynthetic electron transport chain to reduce photoinhibition rate.

10. A horticultural system for growing a plant under artificial lighting, the horticultural system comprising:

a first lighting element positioned in spaced relation to the plant and configured to emit a light onto the plant, the light comprising wavelengths that are within 20 nanometers (nm) of a first peak absorption of a first pigment of the plant;

wherein the first lighting element is configured to emit the first light during first, second, and third lighting intervals with a first dark interval provided between the first and second lighting intervals and a second dark interval provided between the second and third lighting intervals, the first dark interval having a different length of time than the second dark interval;

a second lighting element positioned in spaced relation to the plant and configured to emit a second light onto the plant, the second light in a range between 495-570 nm to speed photosynthesis; and

wherein the second lighting element is configured to emit the second light during one or more of the first dark interval and the second dark interval.

11. A method of growing a plant under artificial lighting, the method comprising:

positioning the plant in spaced relation to a first lighting element to receive a first light emitted by the first lighting element;

emitting a first light, by the first lighting element, at a first wavelength that is within 20 nanometers (nm) of a first peak absorption of a first pigment of the plant;

wherein the first light from the first lighting element being emitted during first, second, and third lighting intervals with a first dark interval provided between the first and second lighting intervals and a second dark interval provided between the second and third lighting intervals, the first dark interval having a different length of time than the second dark interval;

positioning the plant in spaced relation to a second lighting element to receive a second light emitted by the second lighting element;

emitting a second light, by the second lighting element, at a second wavelength that is within 20 nm of a second peak absorption of a second pigment of the plant;

wherein the second light from the second lighting element being emitted during one or more or the first dark interval and the second dark interval.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2019
From: GRAJCAR, ZDENKO
To: ONCE INNOVATIONS, INC.
Reel/Frame 050020/0984 →
MERGER Recorded Aug 9, 2019
From: ONCE INNOVATIONS, INC.
To: SIGNIFY NORTH AMERICA CORPORATION
Reel/Frame 050016/0044 →
Continuity (7)
Continuation 14994819 · Jan 13, 2016
Continuation In Part 14804410 · Jul 21, 2015
Provisional Application 62104261 · Jan 16, 2015
Provisional Application 62027049 · Jul 21, 2014
Provisional Application 62061933 · Oct 9, 2014
Provisional Application 62102637 · Jan 13, 2015
Related Publication 20190174594A1 · Jun 6, 2019