IP Library › Granted Patent US 11,638,336
Granted Patent B2
US 11,638,336 · App. 17/216,032 · Granted Apr 25, 2023

AC light emitting diode and AC LED drive methods and apparatus

Inventors: Michael Miskin (Sleepy Hollow, IL); James N. Andersen (Elmwood Park, IL); Robert L. Kottritsch (Shefford, GB)
Assignee: Lynk Labs, Inc.
H05B45/10H05B45/37H05B45/40H05B45/42H05B45/50Y02B20/30
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Quick Facts
Patent No.
US 11,638,336
App. No.
17/216,032
Granted
Apr 25, 2023
Kind
B2
Abstract

A lighting system is disclosed. The example lighting system includes a printed circuit board. At least one LED circuit and a driver circuit are mounted on the printed circuit board. The at least one LED circuit has a plurality of phosphor coated LEDs. The driver circuit includes at least one bridge rectifier and at least one capacitor. The lighting system also includes a housing including a lens. The lighting system further includes a first power connection lead connected to a first input of the bridge rectifier and a second power connection lead connected to a second input of the bridge rectifier. At least a first portion of each power connection lead is contained within the housing and at least a second portion of each power connection lead extends beyond the housing to enable the printed circuit board to be connected to an AC power source.

Claims (44)

1. A lighting system comprising:

a printed circuit board;

at least one LED circuit mounted on the printed circuit board, the at least one LED circuit having a plurality of phosphor coated LEDs;

a driver circuit mounted on the printed circuit board, the driver circuit including at least one bridge rectifier and at least one capacitor;

a housing including a plastic lens, wherein the housing is a reflective material and the circuit board is encapsulated in the housing;

a first power connection lead connected to a first input of the bridge rectifier;

a second power connection lead connected to a second input of the bridge rectifier; and

an electromechanical switch electrically coupled between the driver circuit and the at least one LED circuit and configured to be selectable by an end user, the switch configured to change a level of power that is delivered to the at least one LED circuit,

wherein at least a first portion of each power connection lead is contained within the housing and at least a second portion of each power connection lead extends beyond the housing to enable the driver circuit to be electrically connected to an AC power source.

2. The lighting system of claim 1 , wherein the second portion of each of the power connection leads that extends beyond the housing to enable the printed circuit board to be connected to the AC power source includes an AC connector that is adaptable to the AC power source.

3. The lighting system of claim 1 , wherein the switch is a 3-way switch integrated in the housing.

4. The lighting system of claim 1 , further comprising an antenna for receiving data.

5. The lighting system of claim 1 , wherein the reflective material is a heat sinking material.

6. The lighting system of claim 1 , wherein the printed circuit board is a flexible printed circuit board.

7. The lighting system of claim 1 , wherein the at least the first portion of each power connection lead contained within the housing is electrically connected to the driver circuit.

8. A lighting system comprising:

a printed circuit board;

at least one LED circuit mounted on the printed circuit board, the at least one LED circuit having a plurality of phosphor coated LEDs that are configured to deliver a lumen output of a same color;

a driver circuit mounted on the printed circuit board, the driver circuit including at least one bridge rectifier and at least one capacitor;

a housing including a plastic lens, wherein the housing is a reflective material and the circuit board is encapsulated in the housing;

a first power connection lead connected to a first input of the bridge rectifier;

a second power connection lead connected to a second input of the bridge rectifier; and

an electromechanical switch electrically coupled between the driver circuit and the at least one LED circuit and configured to be selectable by an end user, the switch configured to change a level of power that is delivered to the at least one LED circuit,

wherein at least a first portion of each power connection lead is contained within the housing and at least a second portion of each power connection lead extends beyond the housing to enable the driver circuit to be electrically connected to an AC power source.

9. The lighting system of claim 8 , wherein the second portion of each of the power connection leads that extends beyond the housing to enable the printed circuit board to be connected to the AC power source includes an AC connector that is adaptable to the AC power source.

10. The lighting system of claim 8 , wherein the switch is a 3-way switch integrated in the housing.

11. The lighting system of claim 8 , further comprising an antenna for receiving data.

12. The lighting system of claim 8 , wherein the reflective material is a heat sinking material.

13. The lighting system of claim 8 , wherein the printed circuit board is a flexible printed circuit board.

14. The lighting system of claim 8 , wherein the at least the first portion of each power connection lead contained within the housing is electrically connected to the driver circuit.

15. A lighting system comprising:

a printed circuit board;

at least one LED circuit mounted on the printed circuit board, the at least one LED circuit having a plurality of phosphor coated LEDs, wherein at least one LED of the plurality of phosphor coated LEDs delivers a lumen output of a different color temperature than at least one other LED in the plurality of phosphor coated LEDs;

a driver circuit mounted on the printed circuit board, the driver circuit including at least one bridge rectifier and at least one capacitor;

a housing including a plastic lens, wherein the housing is a reflective material and the circuit board is encapsulated in the housing;

a first power connection lead connected to a first input of the bridge rectifier;

a second power connection lead connected to a second input of the bridge rectifier; and

an electromechanical switch electrically coupled between the driver circuit and the at least one LED circuit and configured to be selectable by an end user, the switch configured to change a level of power that is delivered to the at least one LED circuit,

wherein at least a first portion of each power connection lead is contained within the housing and at least a second portion of each power connection lead extends beyond the housing to enable the driver circuit to be electrically connected to an AC power source.

16. The lighting system of claim 15 , wherein the second portion of each of the power connection leads that extends beyond the housing to enable the printed circuit board to be connected to the AC power source includes an AC connector that is adaptable to the AC power source.

17. The lighting system of claim 15 , wherein the switch is a 3-way switch integrated in the housing.

18. The lighting system of claim 15 , further comprising an antenna for receiving data.

19. The lighting system of claim 15 , wherein the printed circuit board is a flexible printed circuit board.

20. The lighting system of claim 15 , wherein the at least the first portion of each power connection lead contained within the housing is electrically connected to the driver circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2021
From: MISKIN, MICHAEL; ANDERSEN, JAMES NORMAN, JR.; KOTTRITSCH, ROBERT L.
To: LYNK LABS, INC.
Reel/Frame 055771/0205 →
Continuity (10)
Continuation 16866119 · May 4, 2020
Continuation 16693081 · Nov 22, 2019
Continuation 16449273 · Jun 21, 2019
Continuation 16443759 · Jun 17, 2019
Continuation 16407076 · May 8, 2019
Continuation 16148945 · Oct 1, 2018
Continuation 15334029 · Oct 25, 2016
Continuation In Part 14948635 · Nov 23, 2015
Division 13697646 · Nov 13, 2012
Related Publication 20210219398A1 · Jul 15, 2021
Cited By (1)
US 12,435,860