IP Library Granted Patent US 8,941,312
Granted Patent B2
US 8,941,312 · App. 13/694,755 · Granted Jan 27, 2015

Apparatus and method for controlling LED light strings

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,941,312
App. No.
13/694,755
Granted
Jan 27, 2015
Kind
B2
Abstract

An enhanced control mechanism for an LED light string system is provided for switching between one of two DC output phases or polarities so as to actuate one or the other of two LEDs within the bulbs on the light string. The control mechanism is further configured to allow switching so as to pass through the input power provided by a high-to-low voltage converter that is plugged into its electrical power feeding end. The control mechanism may then provide rectified AC voltage, or DC voltage, of various switched values to the LED string according to the particular needs of the LED bulbs.

Claims (36)

1. A lighting system comprising:

a voltage conversion module for converting a high voltage AC electric power source to a low voltage AC electric power source;

a controller electrically coupled to said low voltage AC power source at a first connection and electrically coupled to a plurality of light strings at a second connection, said second connection being polarized, said plurality of light strings having a polarized connector at one end for connection to said second connection of said controller, said light strings having a plurality of bulbs containing a first color LED and a second color LED, said LEDs within said bulbs electrically coupled so that a first voltage phase applied to said light string provides a turn-on bias to said first color LEDs within said bulbs and a second voltage phase applied to said light string provides a turn-on bias to said second color LEDs within said bulbs, said controller having a rectifier for accepting said input low voltage AC electrical power source and providing an output DC electrical power, said controller having a switch with a plurality of switch positions including:

a first switch position for providing said output DC electrical power at said second connection to said light string in said first voltage phase according to a first rectification provided by said rectifier within said controller;

a second switch position for providing said output DC electrical power at said second connection to said light string in said second voltage phase according to a second rectification provided by said rectifier within said controller, and

a third switch position for providing said electrical power source input to said connector directly as said output DC electrical power at said second connection and to said light string.

2. The lighting system of claim 1 including at least one additional controller having first and second polarized connections, a first connection of said additional controller connected to said second polarized connection of said controller and a second polarized connection of said another controller connected to said polarized connection of at least one of said light strings.

3. The lighting system of claim 2 wherein said lighting system includes a plurality of said light strings and a plurality of said additional controllers, said controller having said switch in either of said first or said second switch positions; each of said additional controllers having said switch in said third switch position.

4. The lighting system of claim 2 wherein either said controller or one of said additional controllers includes a fourth switch position that provides no output DC electrical power to said second connection of said one controller.

5. The lighting system of claim 1 wherein said rectifier is one of a full-wave bridge, half-wave bridge, or a rectifier contained with an integrated circuit.

6. The lighting system of claim 1 wherein said voltage conversion module has one of a power converter, a power inverter, a power adapter, or a transformer.

7. The controller of claim 1 wherein said polarized connector is a NEMA-standard plug.

8. The controller of claim 1 wherein said controller includes a second switch for providing variable effects.

9. The controller of claim 8 wherein said variable effects include one of flashing, fading, sequential following, and strobing.

10. A method of providing switched control to a lighting system comprising:

coupling a first connection of a voltage conversion module to a high voltage AC electric power source, said voltage conversion module converting said high voltage AC electric power to a low voltage AC electric power source and providing said low voltage AC electric power to a second connection of said voltage conversion module;

coupling said second connection of said voltage conversion module to a first connection of a controller, said controller rectifying said low voltage AC electric power to a low voltage DC power source, said controller providing a switching function among a first voltage phase, a second voltage phase and a pass-through; and

coupling said second connection of said controller to an LED light string so as to provide said low voltage DC power source to said LED light string.

11. The method of claim 10 further comprising:

coupling a first connection of a second controller to said second connection of said first controller for providing said low voltage electric power to said second controller;

coupling said second connection of said second controller to a second LED light string so as to provide said low voltage DC power source to said second LED light string;

switching said first controller to one of said first voltage phase or said second voltage phase so as to provide DC rectified power to said LED light string and said second controller; and

switching said second controller to said pass-through so as to provide low voltage, DC rectified power to said second LED light string.

12. The method of claim 10 further comprising coupling said second connection of said first controller to a second LED light string so as to provide said low voltage DC power source to said second LED light string.

13. A lighting system comprising:

a voltage conversion module for converting a high voltage AC electric power source to a low voltage AC electric power source;

a controller electrically coupled to said low voltage AC power source at a first connection and electrically coupled to a plurality of light strings at a second connection, said second connection being polarized, said plurality of light strings having a polarized connector at one end for connection to said second connection of said controller, said light strings having a plurality of bulbs containing a first color LED and a second color LED, said LEDs within said bulbs electrically coupled so that a first voltage phase applied to said light string provides a turn-on bias to said first color LEDs within said bulbs and a second voltage phase applied to said light string provides a turn-on bias to said second color LEDs within said bulbs, said controller having a rectifier for accepting said input low voltage AC electrical power source and providing an output DC electrical power, said controller having a switch with a plurality of switch positions including:

a first switch position for providing said output DC electrical power at said second connection to said light string in said first voltage phase according to a first rectification provided by said rectifier within said controller; and

a second switch position for providing said output DC electrical power at said second connection to said light string in said second voltage phase according to a second rectification provided by said rectifier within said controller.

14. The lighting system of claim 13 wherein said lighting system includes a plurality of said light strings and a plurality of said controllers, said controller having said switch in either of said first or said second switch positions; each of said additional controllers having said switch in said third switch position.

15. The lighting system of claim 14 wherein either said controller or one of said controllers includes a fourth switch position that provides no output DC electrical power to said second connection of said one controller.

16. The lighting system of claim 13 wherein said rectifier is one of a full-wave bridge, half-wave bridge, or a rectifier contained with an integrated circuit.

17. The lighting system of claim 13 wherein said voltage conversion module has one of a power converter, a power inverter, a power adapter, or a transformer.

18. The controller of claim 13 wherein said polarized connector is a NEMA-standard plug.

19. The controller of claim 13 wherein said controller includes a second switch for providing variable effects.

20. The controller of claim 19 wherein said variable effects include one of flashing, fading, sequential following, and strobing.

Assignments (3)
SECURITY INTEREST Recorded Apr 3, 2024
From: NATIONAL CHRISTMAS PRODUCTS, LLC
To: LOAN ADMIN CO LLC
Reel/Frame 066992/0765 →
SECURITY INTEREST Recorded Nov 18, 2019
From: NATIONAL CHRISTMAS PRODUCTS, LLC
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 051036/0403 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2019
From: MCRAE, MICHAEL M.
To: NATIONAL CHRISTMAS PRODUCTS LLC
Reel/Frame 050922/0380 →