IP Library › Granted Patent US 10,240,736
Granted Patent B2
US 10,240,736 · App. 16/137,433 · Granted Mar 26, 2019

Light engine for and method of simulating a flame

Inventors: William P. Green, Jr. (Foley, AL); Ninghua Wei (Guangzhou, CN)
Assignee: IDEA TECH LLC
F21S10/043F21K9/232F21V3/061F21V19/006F21V23/006F21V23/026F21V23/06H05B33/0842H05B33/0845H05B37/0245H05B37/0272H05B37/0281H05K999/99F21W2121/00F21W2131/10F21Y2107/00F21Y2107/30F21Y2115/10
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Quick Facts
Patent No.
US 10,240,736
App. No.
16/137,433
Granted
Mar 26, 2019
Kind
B2
Abstract

An apparatus, system, and method for lighting effects, including simulating a flame. A three dimensional carrier includes an array of a plurality of light sources distributed on it. A control circuit coordinates on/off of the light sources in a manner to simulate a jumping flame. In one embodiment, the three dimensional carrier and LEDs are encapsulated in an at least partially light transmissive cover. This light modular engine includes a control circuit and an interface to electrical power. The system can include the light engine in a light fixture such as an architectural fixture. The methodology can include a sequence of on/off and brightness variations for the array of light sources.

Claims (35)

1. A lighting device, comprising:

a substrate having a longitudinal axis and an operating orientation, first and second parts of the substrate being on opposite sides of a plane containing the longitudinal axis;

a plurality of discrete light emission points (DLEPs) positioned along the substrate; a first subset of the DLEPs being positioned along the first part of the substrate; a second subset of the DLEPs being positioned along the second part of the substrate; each of the plurality of DLEPs respectively being in one and only one of the first subset or the second subset; a lowermost grouping of the DLEPs containing some of the DLEPs of the first subset and some of the DLEPs of the second subset; a middle grouping of the DLEPs containing some of the DLEPs of the first subset and some of the DLEPs of the second subset; the middle grouping having more of the plurality of DLEPs than are in the lowermost grouping; an uppermost grouping of the DLEPs containing some of the DLEPs of the first subset and some of the DLEPs of the second subset; each of the plurality of DLEPs respectively being in one and only one of the lowermost grouping, the middle grouping, or the uppermost grouping; the DLEPs in the middle grouping being above the DLEPs in the lowermost grouping when the substrate is at the operating orientation; the DLEPs in the uppermost grouping being above the DLEPs in the middle grouping when the substrate is at the operating orientation; at least one of the DLEPs in the first subset having a light emission axis that is offset angularly away from a light emission axis of at least one of the DLEPs in the second subset; and

a controller to cause the plurality of DLEPs to simulate a flame, wherein the controller:

actuates at least some of the DLEPs in the lowermost grouping to simulate combustion at a bottom of a flame;

sequentially actuates at least some of the DLEPs in the middle grouping to simulate a rise in flame height; and

actuates at least some of the DLEPs in the uppermost grouping to flicker to simulate a flame tip.

2. The lighting device of claim 1 , wherein the substrate is a one-piece substrate.

3. The lighting device of claim 1 , wherein the substrate is cylindrical.

4. The lighting device of claim 1 , wherein each DLEP comprises a discrete LED.

5. The lighting device of claim 1 , further comprising a shroud at least partially around the substrate and the DLEPs.

6. A lighting device, comprising:

a substrate having a longitudinal axis and an operating orientation, a first part of the substrate extending at least partially on a first side of a plane containing the longitudinal axis, a second part of the substrate extending at least partially on a second side of the plane containing the longitudinal axis;

a plurality of discrete light emission points (DLEPs) positioned along the substrate; a first subset of the DLEPs being positioned along the first part of the substrate; a second subset of the DLEPs being positioned along the second part of the substrate; each of the plurality of DLEPs respectively being in one and only one of the first subset or the second subset; a lowermost grouping of the DLEPs containing some of the DLEPs of the first subset and some of the DLEPs of the second subset; a middle grouping of the DLEPs containing some of the DLEPs of the first subset and some of the DLEPs of the second subset; the middle grouping having more of the plurality of DLEPs than are in the lowermost grouping; an uppermost grouping of the DLEPs containing some of the DLEPs of the first subset and some of the DLEPs of the second subset; each of the plurality of DLEPs respectively being in one and only one of the lowermost grouping, the middle grouping, or the uppermost grouping; the DLEPs in the middle grouping being above the DLEPs in the lowermost grouping when the substrate is at the operating orientation; the DLEPs in the uppermost grouping being above the DLEPs in the middle grouping when the substrate is at the operating orientation; at least one of the DLEPs in the first subset having a light emission axis that is offset angularly away from a light emission axis of at least one of the DLEPs in the second subset; and

a controller to cause the plurality of DLEPs to simulate a flame, wherein the controller:

actuates at least some of the DLEPs in the lowermost grouping to simulate combustion at a bottom of a flame;

sequentially actuates at least some of the DLEPs in the middle grouping to simulate a rise in flame height; and

actuates at least some of the DLEPs in the uppermost grouping to flicker to simulate a flame tip.

7. The lighting device of claim 6 , wherein the substrate is a one-piece substrate.

8. The lighting device of claim 6 , wherein the substrate is cylindrical.

9. The lighting device of claim 6 , wherein each DLEP comprises a discrete LED.

10. The lighting device of claim 6 , further comprising a shroud at least partially around the substrate and the DLEPs.

11. A lighting device, comprising:

a substrate having a longitudinal axis and an operating orientation, a first part of the substrate extending at least partially on a first side of a plane containing the longitudinal axis, a second part of the substrate extending at least partially on a second side of the plane containing the longitudinal axis;

a plurality of LEDs positioned along the substrate; a first subset of the LEDs being positioned along the first part of the substrate; a second subset of the LEDs being positioned along the second part of the substrate; each of the plurality of LEDs respectively being in one and only one of the first subset or the second subset; a lowermost grouping of the LEDs containing some of the LEDs of the first subset and some of the LEDs of the second subset; a middle grouping of the LEDs containing some of the LEDs of the first subset and some of the LEDs of the second subset; the middle grouping having more of the plurality of LEDs than are in the lowermost grouping; an uppermost grouping of the LEDs containing some of the LEDs of the first subset and some of the LEDs of the second subset; each of the plurality of LEDs respectively being in one and only one of the lowermost grouping, the middle grouping, or the uppermost grouping; the LEDs in the middle grouping being above the LEDs in the lowermost grouping when the substrate is at the operating orientation; the LEDs in the uppermost grouping being above the LEDs in the middle grouping when the substrate is at the operating orientation; at least one of the LEDs in the first subset having a light emission axis that is offset angularly away from a light emission axis of at least one of the LEDs in the second subset, some of the LEDs forming a row in a plane extending generally perpendicular to the longitudinal axis; and

a controller to cause the plurality of LEDs to simulate a flame, wherein the controller:

actuates at least some of the LEDs in the lowermost grouping to simulate combustion at a bottom of a flame;

sequentially actuates at least some of the LEDs in the middle grouping to simulate a rise in flame height; and

actuates at least some of the LEDs in the uppermost grouping to flicker to simulate a flame tip.

12. The lighting device of claim 11 , wherein the substrate is a one-piece substrate.

13. The lighting device of claim 11 , wherein the substrate is cylindrical.

14. The lighting device of claim 11 , further comprising a shroud at least partially around the substrate and the LEDs.

15. The lighting device of claim 11 , wherein the LEDs forming the row are in the lowermost grouping.

16. The lighting device of claim 11 , wherein the LEDs forming the row are in the middle grouping.

17. The lighting device of claim 11 , wherein the LEDs forming the row are in the uppermost grouping.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2018
From: MJ PRODUCTS, INC.
To: IDEA TECH LLC
Reel/Frame 047592/0280 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2018
From: GREEN, WILLIAM P., JR; WEI, NINGHUA
To: MJ PRODUCTS, INC.
Reel/Frame 047119/0750 →
Priority Claims (2)
CN 2015 1 0152837 · May 5, 2015 · national
CN 2015 2 0282857 U · May 5, 2015 · national
Continuity (3)
Continuation 15583612 · May 1, 2017
Division 15090179 · Apr 4, 2016
Related Publication 20190024861A1 · Jan 24, 2019
Cited By (2)
US 12,203,610 US 12,203,611